WO2021047455A1 - 除螨仪的导流结构及除螨仪 - Google Patents

除螨仪的导流结构及除螨仪 Download PDF

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Publication number
WO2021047455A1
WO2021047455A1 PCT/CN2020/113576 CN2020113576W WO2021047455A1 WO 2021047455 A1 WO2021047455 A1 WO 2021047455A1 CN 2020113576 W CN2020113576 W CN 2020113576W WO 2021047455 A1 WO2021047455 A1 WO 2021047455A1
Authority
WO
WIPO (PCT)
Prior art keywords
air
cold air
air outlet
outlet side
mite
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2020/113576
Other languages
English (en)
French (fr)
Inventor
李进忠
武新新
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Beijing Xiaomi Mobile Software Co Ltd
Dreame Technology Tianjin Co Ltd
Original Assignee
Beijing Xiaomi Mobile Software Co Ltd
Dreame Technology Tianjin Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201910857735.9A external-priority patent/CN112450798A/zh
Priority claimed from CN201910857656.8A external-priority patent/CN112450796A/zh
Priority claimed from CN201910847806.7A external-priority patent/CN112450795A/zh
Priority claimed from CN201921513083.9U external-priority patent/CN211460003U/zh
Priority claimed from CN201910857574.3A external-priority patent/CN112450793A/zh
Priority to EP20848687.8A priority Critical patent/EP3818919A4/en
Priority to JP2021510162A priority patent/JP7152595B2/ja
Priority to KR1020207035992A priority patent/KR102370168B1/ko
Priority to US17/266,467 priority patent/US20220192451A1/en
Application filed by Beijing Xiaomi Mobile Software Co Ltd, Dreame Technology Tianjin Co Ltd filed Critical Beijing Xiaomi Mobile Software Co Ltd
Publication of WO2021047455A1 publication Critical patent/WO2021047455A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
    • A47L9/02Nozzles
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L7/00Suction cleaners adapted for additional purposes; Tables with suction openings for cleaning purposes; Containers for cleaning articles by suction; Suction cleaners adapted to cleaning of brushes; Suction cleaners adapted to taking-up liquids
    • A47L7/008Suction cleaners adapted for additional purposes; Tables with suction openings for cleaning purposes; Containers for cleaning articles by suction; Suction cleaners adapted to cleaning of brushes; Suction cleaners adapted to taking-up liquids adapted for mattresses or the like
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
    • A47L9/28Installation of the electric equipment, e.g. adaptation or attachment to the suction cleaner; Controlling suction cleaners by electric means
    • A47L9/2889Safety or protection devices or systems, e.g. for prevention of motor over-heating or for protection of the user
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01MCATCHING, TRAPPING OR SCARING OF ANIMALS; APPARATUS FOR THE DESTRUCTION OF NOXIOUS ANIMALS OR NOXIOUS PLANTS
    • A01M3/00Manual implements, other than sprayers or powder distributors, for catching or killing insects, e.g. butterfly nets
    • A01M3/007Manual heating or burning apparatus, e.g. using steam, heated elements or waves
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L5/00Structural features of suction cleaners
    • A47L5/12Structural features of suction cleaners with power-driven air-pumps or air-compressors, e.g. driven by motor vehicle engine vacuum
    • A47L5/22Structural features of suction cleaners with power-driven air-pumps or air-compressors, e.g. driven by motor vehicle engine vacuum with rotary fans
    • A47L5/24Hand-supported suction cleaners
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L7/00Suction cleaners adapted for additional purposes; Tables with suction openings for cleaning purposes; Containers for cleaning articles by suction; Suction cleaners adapted to cleaning of brushes; Suction cleaners adapted to taking-up liquids
    • A47L7/02Suction cleaners adapted for additional purposes; Tables with suction openings for cleaning purposes; Containers for cleaning articles by suction; Suction cleaners adapted to cleaning of brushes; Suction cleaners adapted to taking-up liquids with driven tools for special purposes
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
    • A47L9/22Mountings for motor fan assemblies
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
    • A47L9/24Hoses or pipes; Hose or pipe couplings
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
    • A47L9/28Installation of the electric equipment, e.g. adaptation or attachment to the suction cleaner; Controlling suction cleaners by electric means
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F9/00Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
    • F28F9/22Arrangements for directing heat-exchange media into successive compartments, e.g. arrangements of guide plates

Definitions

  • the application relates to the technical field of household appliances, and in particular to a diversion structure of a mite removing device and a mite removing device.
  • the mite removal instrument is specially used to clean the dust on the textiles such as bed, sofa, carpet and other allergens such as bacteria and mites.
  • the user uses the mite removal device to clean, he contacts the cleaned dusty surface, and sucks the dust, bacteria, mites and other allergens into the casing of the mite removal device through the fan, and sucks the dust into the dust cup.
  • the fan of the current mite removal device is working, the cold air generated is directly discharged through the air outlet, resulting in a waste of cold air.
  • the purpose of the present application is to provide a diversion structure of the mite removing device and the mite removing device, which can reasonably and effectively utilize the airflow generated by the fan.
  • the embodiment of the present application provides a diversion structure of a mite removing device, including a deflector arranged in a casing of the mite removing device, and a first cavity for accommodating the airflow generating unit of the mite removing device is formed in the casing Body and at least a second cavity for accommodating the heat source of the mite removal instrument.
  • the deflector includes: a cold air pipeline assembly connected to the air outlet side of the air flow generating unit, and the cold air pipeline assembly is used to send part of the air flow generated by the air flow generating unit into the second cavity Inside the body, the heat source contained in the second cavity is cooled, and the part of the housing corresponding to the second cavity has at least one first air outlet side (8), and the first air outlet side ( 8) Used to discharge the air flow sent into the second cavity by the cold air pipeline assembly; and a hot air pipeline, where at least part of the hot air pipeline is arranged in the second cavity for accommodating And fix the heating element of the mite removal instrument, the part of the housing corresponding to the second cavity also has a second air outlet side connected with the hot air pipeline, and the hot air pipeline is also connected to the air flow
  • the air outlet side of the generating unit is connected, and is used to directly discharge part of the airflow generated by the airflow generating unit out of the casing through the second air outlet side.
  • the embodiment of the present application also provides a mite removal instrument, which includes a casing, an airflow generating unit and a heat source arranged in the casing, and the diversion structure as described above.
  • the embodiment of the present application also provides a diversion structure of the mite removing device, including a deflector arranged in the casing of the mite removing device, and the casing is formed to contain the airflow generating unit of the mite removing device.
  • the first cavity and the second cavity for accommodating the heat source of the mite removing instrument.
  • the deflector includes: a cold air pipeline assembly connected to the air outlet side of the air flow generating unit, and the cold air pipeline assembly is used to send part of the air flow generated by the air flow generating unit into the second cavity Inside the body, the heat source contained in the second cavity is cooled; and a hot air pipeline is arranged in the second cavity for accommodating and fixing the heating element of the mite removal instrument, and the housing corresponds to the
  • the part of the second cavity also has an outlet side connected to the hot air pipeline; the hot air pipeline is used to discharge the air flow sent into the second cavity through the outlet side. Outside the casing, and the air flow discharged from the air outlet side is the air flow after the heat source has been cooled.
  • the embodiment of the present application also provides a mite removal instrument, which includes a casing, an airflow generating unit and a heat source arranged in the casing, and the diversion structure as described above.
  • the embodiment of the present application has a diversion structure of the mite removal device including a deflector arranged in the casing of the mite removal device, and a first cavity and a second cavity are formed in the casing of the mite removal device.
  • the first cavity is used for accommodating the airflow generating unit of the mite removing device
  • the second cavity is used for accommodating at least the heat source of the mite removing device.
  • the deflector includes a cold air pipeline assembly and a hot air pipeline.
  • the cold air pipeline assembly communicates with the air outlet side of the air flow generating unit, and sends part of the air flow generated by the air flow generating unit into the second cavity.
  • the heat source contained in the second cavity is cooled, and the part of the shell corresponding to the second cavity has at least one first air outlet side, and the cold air pipeline assembly is sent into the air flow in the second cavity through the first air outlet side
  • the hot air pipeline is at least partially set in the second cavity, and the heating element of the mite removal instrument is accommodated and fixed in the hot air pipeline.
  • the part of the shell corresponding to the second cavity also has a hot air pipe
  • the second air outlet side is connected to the second air outlet side, and the hot air pipeline is connected to the second air outlet side, and part of the air flow generated by the air flow generating unit is directly discharged out of the housing through the second air outlet side.
  • the cold air duct assembly is used to send part of the air flow generated by the air flow generating unit into the second cavity, and cool the heat source contained in the second cavity
  • the hot air pipeline is used to discharge the air flow sent into the second cavity out of the shell through the air outlet side, and the air flow discharged from the air outlet side is the air flow after the heat source has been cooled. Therefore, the airflow generated by the airflow generating unit can be sent into the second cavity through the deflector arranged in the casing of the mite removing device, so as to cool the heat source of the mite removing device, and the heating element of the mite removing device can be cooled. The generated heat is dissipated, so that the airflow generated by the airflow generating unit can be reasonably and effectively used.
  • the air deflector further includes an air inlet pipe, which is respectively connected to the air outlet side of the air flow generating unit, the cold air pipe assembly and the hot air pipe.
  • the cold air duct assembly includes at least one cold air duct.
  • Each of the cold air pipelines is connected with the air intake pipeline, and the air flow generated by the air flow generating unit is discharged from the first air outlet side out of the housing through each of the cold air pipelines.
  • one of the cold air pipelines is connected to the air intake pipeline, and the remaining cold air pipelines are arranged in sequence along a preset direction, and the air flow generating unit generates After passing through each of the cold air ducts in turn, the air flow is discharged from the first air outlet side to the outside of the housing.
  • each of the cold air pipelines is connected to the intake pipeline, and the number of the first air outlet side and the number of the cold air pipelines are the same as the number of the heat source, and the same One-to-one correspondence, and the air outlet of each cold air pipeline is opposite to the corresponding air outlet side, and each heat source is arranged at the air outlet of the corresponding cold air pipeline and the corresponding first Between one side of the wind.
  • one of the cold air ducts is connected to the air outlet side of the air flow generating unit, and the remaining cold air ducts are arranged in sequence along a preset direction, so The number of the cold air ducts is also the same as the number of the heat sources; and the air outlet of the last cold air duct along the preset direction is arranged opposite to the first air outlet side, and one of the cold air ducts is opposite to the first air outlet side.
  • the heat source is arranged between the air outlet of the cold air duct and the first air outlet side, and one heat source is provided between any two adjacent cold air ducts along the preset direction.
  • the air volume on the air outlet side of the airflow generating unit is greater than the air volume on the first air outlet side, and the air volume on the air outlet side of the airflow generating unit is greater than the air volume on the second air outlet side.
  • the deflector further includes an air inlet pipe, which is respectively connected to the air outlet side of the air flow generating unit and the cold air pipe assembly.
  • the cold air pipeline assembly includes at least one cold air pipeline, wherein one of the cold air pipelines is connected to the intake pipeline, and the other is the cold air pipeline and the hot air pipeline.
  • the remaining cold air pipelines are arranged in sequence along a preset direction, and the air flow generated by the air flow generating unit enters the hot air pipeline after passing through each cold air pipeline in turn, and passes through the air outlet side Exhaust from the housing.
  • there are multiple cold air ducts one of the cold air ducts is connected to the air outlet side of the air flow generating unit, and the remaining cold air ducts are arranged in sequence along a preset direction, so The number of cold air ducts is also the same as the number of heat sources; and the air outlet of the last cold air duct along the preset direction is arranged opposite to the hot air duct, and one of the heat generating The source is arranged between the air outlet of the cold air duct and the hot air duct, and a heat source is provided between any two adjacent cold air ducts along the preset direction.
  • Fig. 1 is a schematic structural diagram of the diversion structure of the mite removing apparatus in the first embodiment of the present application.
  • Fig. 2 is a schematic diagram of the bottom structure of the mite removing apparatus in the first embodiment of the present application.
  • Fig. 3 is a schematic diagram of the structure of the deflector in the first embodiment of the present application.
  • Fig. 4 is a side view of the deflector in the first embodiment of the present application.
  • Fig. 5 is a schematic diagram from another perspective of the deflector in the first embodiment of the present application.
  • Fig. 6 is a schematic diagram of the airflow direction of the deflector in the first embodiment of the present application.
  • Fig. 7 is a schematic diagram of the air flow direction of the air inlet and cold air pipeline components of the deflector in the first embodiment of the present application.
  • FIG. 8 is a schematic diagram of the air flow direction of the deflector in the second embodiment of the present application.
  • Fig. 9 is a schematic structural diagram of the diversion structure of the mite removing apparatus in the third embodiment of the present application.
  • Fig. 10 is a schematic diagram of the air flow direction of the deflector in the third embodiment of the present application.
  • Fig. 11 is a schematic diagram of the structure of the mite removing apparatus in the fourth embodiment of the present application.
  • Fig. 12 is a schematic diagram of the structure of the mite removing apparatus in the fifth embodiment of the present application.
  • Figure 13 is a schematic diagram of the structure of the mite-removing vacuum cleaner.
  • Figure 14 is a schematic view of the front structure of the mite removing vacuum cleaner.
  • Fig. 15 is a schematic diagram of the back structure of the mite-removing vacuum cleaner.
  • Fig. 16 is a schematic diagram of the structure of the installation groove of the mite-removing vacuum cleaner.
  • FIG. 17 is a schematic cross-sectional structure diagram of the mite removing apparatus in the sixth embodiment of the present application.
  • FIG. 18 is a schematic diagram of the installation method of the dust cup and the casing of the mite removing instrument in the sixth embodiment of the present application.
  • FIG. 19 is a schematic diagram of the structure of the dust cup and the dust cup release device of the mite removing instrument in the sixth embodiment of the present application.
  • FIG. 20 is a schematic diagram of the structure of the dust cup of the mite removing instrument and the dust cup releasing device with the bottom cover removed in the sixth embodiment of the present application.
  • FIG. 21 is a schematic diagram of the installation method of the dust cup and the casing of the mite removing instrument in the seventh embodiment of the present application.
  • Fig. 22 is a schematic diagram of the internal structure of the mite removing apparatus in the eighth embodiment of the present application.
  • FIG. 23 is a cross-sectional view of the internal structure of the mite removing apparatus in the eighth embodiment of the present application.
  • Fig. 24 is a schematic diagram of the bottom structure of the mite removing apparatus in the eighth embodiment of the present application.
  • FIG. 25 is a schematic diagram of the position of the bottom vent of the mite removing instrument in the eighth embodiment of the present application.
  • the first embodiment of the present application will be described with reference to FIG. 1 to FIG. 7.
  • the first embodiment of the application relates to a diversion structure of a mite removal instrument.
  • FIG. 1 it includes a flow deflector arranged in a casing 2 of the acarid removal device, and the casing 2 is formed to accommodate the removal of mites.
  • the first cavity 21 of the airflow generating unit 1 of the mite device, and the second cavity 22 at least for accommodating the heat source 6 of the mite device.
  • the deflector includes a cold air pipeline assembly 4 and a hot air pipeline 5.
  • the cold air duct assembly 4 communicates with the air outlet side of the airflow generating unit 1, and the cold air duct assembly 4 is used to send part of the airflow generated by the airflow generating unit 1 Into the second cavity 22 to cool the heat source 6 housed in the second cavity 22.
  • the housing 2 has at least one first air outlet side 8 at a position corresponding to the second cavity 22, and The first air outlet side 8 is used to discharge the air flow sent by the cold air pipe assembly 4 into the second cavity 22; the hot air pipe 5 is at least partially arranged in the second cavity 22, and the heating element of the mite removal device 7 is stored and fixed in the hot air pipeline 5.
  • the hot air pipeline 5 can be provided with a positioning groove, and the heating element 7 is set in the positioning groove to achieve heating The connection between the element 7 and the hot air pipeline 5 is fixed.
  • the hot air pipeline 5 communicates with the air outlet side of the air flow generating unit 1, and the portion of the housing 2 corresponding to the second cavity 22 also has a second air outlet side 9 connected to the hot air pipeline 5, The hot air pipeline 5 discharges part of the air flow generated by the air flow generating unit 1 out of the housing 2 through the second air outlet side 9.
  • the diversion structure of the mite removal device includes a deflector arranged in the casing 2 of the mite removal device, and the deflector includes a cold air pipeline assembly 4 and a hot air pipeline 5, and
  • the cold air duct assembly 4 and the hot air duct 5 are both connected to the air outlet side of the airflow generating unit 1, and part of the airflow generated by the airflow generating unit 1 is sent into the second cavity 22 through the cold air duct assembly 4.
  • the heat source 6 in the second cavity 22 is cooled.
  • the portion of the housing 2 corresponding to the second cavity 22 has at least one first air outlet side 8, and the first air outlet side 8 is used for the cold air pipeline
  • the air flow sent by the assembly 4 into the second cavity 22 is discharged; and the hot air pipeline 5 assembly is at least partially arranged in the second cavity 22, and the heating element 7 of the mite removal instrument is accommodated and fixed in the hot air pipeline 5.
  • the part of the housing 2 corresponding to the second cavity 22 also has a second air outlet side 9 connected to the hot air pipe 5, and the hot air pipe 5 communicates with the second air outlet side 9 and generates airflow. Part of the air flow generated by the unit 1 is directly discharged out of the housing 2 through the second air outlet side 9.
  • the airflow generated by the airflow generating unit 1 can be sent into the second cavity 22 through the deflector provided in the casing 2 of the mite removing device, so as to cool the heat source 6 of the mite removing device, and to remove the mites.
  • the heat generated by the heating element 7 of the mite meter is dissipated, so that the airflow generated by the airflow generating unit 1 can be reasonably and effectively used.
  • the deflector may further include an air inlet pipe 3, which is connected to the air outlet side of the air flow generating unit 1, the cold air pipe assembly 4, and the hot air pipe 5, respectively, so that The airflow generated by the airflow generating unit 1 first enters the air inlet pipe 3, and then distributes the airflow to the cold air pipe assembly 4 and the hot air pipe 5 through the air inlet pipe 3, and then blows the airflow out of the housing 2.
  • the cold air pipeline assembly 4 includes a plurality of cold air pipelines, each of the cold air pipelines is connected to the intake pipeline 3, and the air flow generated by the air flow generating unit 1 passes through each cold air pipeline.
  • the number of first air outlet sides 8 and the number of cold air ducts are the same as the number of heat sources 6 and correspond to each other, and the air outlets of each cold air duct correspond to their respective The air outlet sides are arranged opposite to each other, and at the same time, each heat source 6 is arranged between the air outlet of the corresponding cold air pipeline and the corresponding first air outlet side 8.
  • two heat sources 6 are provided, namely the battery pack assembly of the mite removal instrument and the rolling gear assembly of the mite removal instrument.
  • the battery pack assembly is arranged on any one of the cold air ducts and the corresponding first Between the air outlet side 8, the roller brush gear assembly is arranged between another cold air pipeline and the corresponding first air outlet side 8, and the battery pack assembly and the roller brush gear assembly can be respectively arranged in the second cavity 22 On the left and right sides of the inner side, the two first air outlet sides 8 are respectively arranged on the left and right sides of the housing 2; the heating element 7 can be a PTC electric heating element.
  • the air volume on the air outlet side of the airflow generating unit 1 is greater than the air volume on the first air outlet side 8, and the air volume on the air outlet side of the airflow generating unit 1 is still greater than the air volume on the second outlet side.
  • the air volume on the air side 9 therefore, after the air flow generated by the air intake generating unit enters the air intake pipe 3, it enters the cold air pipe assembly 4 and the hot air pipe 5 at the same time to achieve a split.
  • the airflow generating unit 1 can use a fan, and the casing 2 of the mite removal instrument is also provided with an air inlet communicating with the air inlet side of the airflow generating unit 1.
  • the air inlet is usually arranged at the bottom of the casing 2, corresponding to Yes, the bottom of the dust bucket of the mite removal instrument is provided with an air inlet communicating with the air inlet.
  • the airflow enters the dust bucket through the air inlet on the housing 2 and the air inlet on the dust bucket, and is covered by sponge and sea pail. After filtering, it enters the fan, and the fan opens an air outlet on the side facing the deflector. The airflow entering the fan is sent into the deflector through the air outlet. Finally, the airflow is divided by the deflector. The airflow generated by the fan is used reasonably and effectively.
  • the second embodiment of the present application relates to a diversion structure of a mite removal instrument.
  • the second embodiment is roughly the same as the first embodiment, with the main difference being: as shown in FIG. 8, in this embodiment, the first One is provided on the air outlet side 8, the cold air pipeline is set to multiple, one of the cold air pipelines is connected to the intake pipeline, the remaining cold air pipelines are arranged in a predetermined direction, and the airflow generated by the airflow generating unit passes through each in turn. After the cold air pipeline is discharged from the first air outlet side 8 to the outside of the housing.
  • the number of cold air ducts is also the same as the number of heat sources, and the air outlet of the last cold air duct along the preset direction is arranged opposite to the first air outlet side 8, and one of the heat sources is arranged in the cold air duct. Between the air outlet and the first air outlet side 8, and between any two adjacent cold air ducts along the preset direction, there is a heat source, so that the air flow can be sequentially flowed along the cold air ducts. The heat is dissipated from each heat source, and after the heat is dissipated in turn, the heat is discharged from the first air outlet side 8 to the outside of the housing. Therefore, the airflow generated by the airflow generating unit can be used reasonably and effectively.
  • the third embodiment of the present application relates to a diversion structure of a mite removal device, as shown in FIG. 9 and FIG. 10, including: a deflector provided in the casing 12 of the mite removal device, and a flow deflector is formed in the casing 12
  • the first cavity 121 for accommodating the airflow generating unit 11 of the acaricide device
  • the second cavity 122 for accommodating at least the heat source 16 of the acaricide device.
  • the deflector includes a cold air pipeline assembly 14 and a hot air pipeline (not marked in the figure).
  • the cold air duct assembly 14 communicates with the air outlet side 10 of the airflow generating unit, and the cold air duct assembly 14 is used to send part of the airflow generated by the airflow generating unit 11 into the second cavity 122.
  • the heat source 16 housed in the second cavity 122 is cooled; the hot air pipe is arranged in the second cavity 122, and the heating element of the mite removal instrument is housed and fixed in the hot air pipe.
  • the housing 12 The part corresponding to the second cavity 122 also has an air outlet side connected to the hot air pipeline, as shown in FIG. 10, the hot air pipeline is used to pass the air flow sent into the second cavity 122 through the air outlet side
  • the air flow discharged out of the casing 12 and discharged through the air outlet side is the air flow after cooling each heat source 16.
  • the deflector may further include an air inlet pipe 13, which is connected to the air outlet side 10, the cold air pipe assembly 14 and the hot air pipe of the airflow generating unit, respectively, so that the airflow
  • the air flow generated by the generating unit 11 first enters the air inlet pipe 13, and then distributes the air flow to the cold air pipe assembly 14 and the hot air pipe through the air inlet pipe 13, and then blows the air flow out of the housing 12.
  • the cold air pipeline assembly 14 includes a plurality of cold air pipelines, one of the cold air pipelines is connected to the intake pipeline 13, another cold air pipeline is connected to the hot air pipeline, and the remaining cold air pipelines are along a preset direction They are arranged in sequence, and the air flow generated by the air flow generating unit 11 enters the hot air pipeline after passing through the cold air pipelines in turn, and is discharged out of the housing 12 through the air outlet side on the housing 12.
  • the number of cold air ducts is the same as the number of heat sources 16, and the air outlet of the last cold air duct along the preset direction is arranged opposite to the hot air duct, and any two adjacent ones along the preset direction A heat source 16 is provided between the cold air pipelines.
  • the heating source 16 is the battery pack assembly of the mite removal instrument
  • one cold air pipeline is provided, and the battery pack assembly is arranged between the cold air pipeline and the hot air pipeline, and the airflow generated by the airflow generating unit 11 first passes through the outlet
  • the air side enters the cold air pipeline and blows to the battery pack assembly through the cold air pipeline, and then enters the hot air pipeline to dissipate the heat generated by the heating element, and finally blows out of the casing 12 through the air outlet side.
  • the heating source 16 includes the battery pack assembly of the mite removing device and the rolling brush gear assembly of the mite removing device
  • two cold air pipelines are provided, and any cold air pipeline is connected to the air outlet side 10 of the air flow generating unit, and the battery
  • the package assembly is arranged between two cold air pipelines
  • the rolling brush gear assembly is arranged between another cold air pipeline and a hot air pipeline.
  • the air flow generated by the air flow generating unit 11 passes through each cold air pipeline in turn and blows through the battery.
  • the bag assembly and the rolling brush gear assembly then enter the hot air pipeline, and are discharged out of the housing 12 through the air outlet side 10 of the air flow generating unit.
  • at least one cold air pipeline is provided, and the number of cold air pipelines can be adjusted according to actual use.
  • Another embodiment of the present application relates to a mite removing apparatus, which includes a casing, an airflow generating unit and a heat source arranged in the casing, and the diversion structure as described in any one of the first to second embodiments.
  • this embodiment is a system embodiment corresponding to any one of the first to second embodiments, and this embodiment can be implemented in cooperation with any one of the first to second embodiments.
  • the related technical details mentioned in the first to second embodiments are still valid in this embodiment, and in order to reduce repetition, they will not be repeated here.
  • the related technical details mentioned in this embodiment can also be applied to the first to second embodiments.
  • Another embodiment of the present application relates to a mite removal instrument, which includes a casing, an airflow generating unit and a heat source arranged in the casing, and the diversion structure as described in the third embodiment.
  • this embodiment is a system embodiment corresponding to the third embodiment, and this embodiment can be implemented in cooperation with the third embodiment.
  • the related technical details mentioned in the third embodiment are still valid in this embodiment, and in order to reduce repetition, they will not be repeated here.
  • the related technical details mentioned in this embodiment can also be applied in the third embodiment.
  • the fourth embodiment of the present application relates to a mite removal instrument, as shown in FIG. 11, comprising: a housing 1, a main motor arranged in the housing 1 for vacuuming 2, a rolling brush arranged on the housing 1 The device, a roller brush motor 3 arranged in the housing 1 for driving the roller brush device, and a speed reduction device 4 arranged in the housing 1 for matching the rotation speed of the roller brush motor 3 and the roller brush device.
  • An air duct is provided in the housing 1, the air duct of the housing 1 communicates with the air outlet 7 of the main motor 2, and the air duct of the housing 1 leads to the deceleration device 4.
  • the reduction gear 4 includes a gear assembly 5 and a gear box 6 for accommodating the gear assembly 5.
  • the gear box 6 communicates with the air passage of the housing 1, and the air outlet 7 of the main motor 2 leads to the gear box 6 through the air passage of the housing 1.
  • the mite removal device is running, a part of the relatively low-temperature air flow can flow into the gear box 6 to cool down the gear assembly 5 inside the gear box 6.
  • the gearbox 6 is provided with an air inlet, and the air duct of the housing 1 is connected to the air inlet of the gearbox 6, so that the airflow can directly conduct convective heat transfer with the gear assembly 5 inside the gearbox 6 , Thereby reducing the temperature of the gear assembly 5.
  • the gear box 6 may also be provided with an air outlet to send the air flow after convection and heat transfer with the gear assembly 5 inside the gear box 6 to the outside of the mite removal instrument.
  • the air outlet 7 of the main motor 2 is close to the air inlet of the gear box 6, which can make the air duct connecting the air outlet 7 of the main motor 2 and the gear box 6 shorter to prevent airflow from passing through the wind. Too much heat is absorbed during the road to ensure the heat dissipation capacity.
  • the air duct of the housing 1 also leads to the brush motor 3, so that a part of the airflow at the air outlet 7 of the main motor 2 can circulate to the brush motor 3 to cool the brush motor 3. Heat dissipation.
  • the air outlet 7 of the main motor 2 is set close to the brush motor 3, so that part of the airflow at the air outlet 7 of the main motor 2 can directly cool the brush motor 3, preventing the brush motor 3 from running After the heat builds up.
  • the air outlet 7 is facing the roller brush motor 3, and a part of the air flow at the air outlet 7 of the main motor 2 can directly circulate to the roller brush motor 3, which can greatly restrain the roller brush motor from accumulating heat.
  • the embodiment of the present application communicates with the air outlet 7 of the main motor 2 through the air duct provided in the housing 1 and leads to the decelerating device 4, so that when the mite removal device is running, a part of the temperature is relatively low.
  • the low airflow can pass into the air duct through the air outlet 7 of the main motor 2 and finally lead to the deceleration device 4.
  • This part of the airflow conducts convective heat transfer with the deceleration device 4, which can effectively reduce the heat of the deceleration device 4 and prevent the deceleration device 4. The accumulation of heat at the place.
  • the fifth embodiment of the present application relates to a mite removal device.
  • the fifth embodiment is a further improvement on the fourth embodiment of the mite removal device.
  • the main improvement lies in: in the fifth embodiment, as shown in FIG. 12
  • the housing 1 also has a chamber for setting the thermistor, and the air channel of the housing 1 is also connected to the chamber of the thermistor 8, so that part of the airflow at the air outlet 7 of the main motor 2 can be used to set the thermistor.
  • the chamber of 8 is cooled and dissipated.
  • the housing 1 also has a cavity for installing the battery pack 9.
  • the air duct of the housing 1 is also connected with the cavity of the battery pack 9, so that part of the airflow at the air outlet 7 of the main motor 2 can be opposite to the cavity for installing the battery pack 9
  • the room is cooled and dissipated.
  • the air passage of the housing 1 is connected to the chamber of the thermistor 8, it is also connected to the chamber of the battery pack 9.
  • Part of the airflow at the air outlet 7 of the main motor 2 can pass through the chamber of the thermistor 8.
  • the cavity of the thermistor 8 and the cavity of the battery pack 9 can both effectively dissipate heat.
  • an air outlet may be provided in the chamber of the battery pack 9 to send the heat-exchanged air flow out of the mite removal device to improve the heat dissipation efficiency.
  • the air duct provided in the housing 1 communicates with the air outlet 7 of the main motor 2 and leads to the deceleration device 4, part of the airflow with a relatively low temperature during the operation of the mite control instrument It can lead to the air duct through the air outlet 7 of the main motor 2 and finally lead to the deceleration device 4.
  • This part of the air flow conducts convective heat transfer with the deceleration device 4, which can effectively reduce the heat of the deceleration device 4 and prevent the heat in the deceleration device 4. accumulation.
  • the air duct of the housing 1 also leads to the brush motor 3, a part of the airflow at the air outlet 7 of the main motor 2 can circulate to the brush motor 3, and the brush motor 3 can be cooled and dissipated.
  • the cavity of the thermistor 8 and the cavity of the battery pack 9 can also effectively dissipate heat.
  • the heat dissipation capacity of the mite removal device is greatly improved, so that the mite removal device can work for a long time.
  • One embodiment of the present application relates to a mite-removing vacuum cleaner, which is used for cleaning indoors, killing mites and adsorbing dust and mites corpses.
  • the mite-removing vacuum cleaner 1 includes: a housing 2, a handle 3 provided on the housing 2, a fan 4 provided in the housing 2, and a rolling brush provided at the bottom 23 of the housing 2. 5.
  • the bottom 23 of the housing 2 is provided with a mounting slot 24, the roller brush 5 is rotatably arranged in the mounting slot 24, and the axis YY' of the roller brush 5 is perpendicular to the propelling direction of the mite-removing vacuum cleaner 1, and the roller brush 5 has partial and The groove walls of the installation groove 24 are separated from each other to form an air inlet 25.
  • the bottom 23 of the housing 2 is close to the surface to be cleaned, the user holds the handle 3, pushes the mite-removing vacuum cleaner 1 forward, and the roller brush 5 of the mite-removing vacuum cleaner 1 rotates, pats the surface to be cleaned and rolls up the dust With mites, the fan 4 is activated to provide suction for the air inlet 25. Dust and mites are sucked into the mite-removing vacuum cleaner 1 from the air inlet 25.
  • the mite-removing vacuum cleaner 1 also includes: a dust collecting cup arranged between the air inlets of the fan 4 and the fan 4 6. The dust and mites sucked in by the air inlet 25 are separated and filtered in the dust collecting cup 6, and the clean air flows to the fan 4, and the fan 4 discharges the wind from the dust collecting cup 6 out of the housing 2.
  • the air inlet 25 is arranged horizontally and transversely.
  • the axis OO' of the fan 4 is generally arranged vertically, and the air inlet side of the fan 4 is opposite to the air inlet 25 to provide suction for the air inlet 25, but it is arranged vertically.
  • the fan 4 occupies a relatively large space in the vertical direction, which causes the mite-removing vacuum cleaner 1 to be higher in the height direction, and the overall volume of the mite-removing vacuum cleaner 1 is relatively large, which is inconvenient for users to use and store.
  • the housing 2 includes a first side 21 and a second side 22, and the first side 21 and the second side 22 are respectively located on the axis of the handle 3.
  • the two sides of XX′ are arranged opposite to each other, wherein the direction of the axis OO′ of the fan 4 is the direction in which the first side 21 and the second side 22 are opposite.
  • the axis YY' direction of the roller brush 5 is perpendicular to the advancing direction of the mite-removing vacuum cleaner 1, the air inlet 25 is elongated, the length of the air inlet 25 is the same as the axis YY' direction of the roller brush 5, and the axis OO' direction of the fan 4 It is parallel to the axis YY' direction of the roller brush 5.
  • the axis YY' direction of the roller brush 5 is the width direction of the mite-removing vacuum cleaner 1.
  • the mite-removing vacuum cleaner 1 needs to have at least the length of the rolling brush 5 in the width direction, and the axis OO' of the fan 4 in this embodiment is parallel to the axis YY' of the rolling brush 5, that is, the length direction of the fan 4 is also Set along the width direction of the mite-removing vacuum cleaner 1, the length of the fan 4 in the axial direction is less than the length of the roller brush 5 in the axial direction, so the length of the fan 4 does not increase the volume of the mite-removing vacuum cleaner 1 in the width direction;
  • the fan 4 occupies less space in the front and rear direction and the vertical direction of the mite removal vacuum cleaner 1, and can also reduce the volume of the mite removal vacuum cleaner 1 in the front and back direction and the vertical direction, so as to reduce the overall volume of the mite removal vacuum cleaner 1. ,
  • the storage space required for the mite removing vacuum cleaner 1 is reduced, and it is more convenient for the user to hold the operation.
  • the axis XX' of the handle 3 in this embodiment is set as the central axis of the mite cleaner 1 along the advancing direction of the mite cleaner 1, and the axis OO' of the fan 4 and the axis XX' of the handle 3 are at a certain angle to each other.
  • the axis OO' of the fan 4 and the axis XX' of the handle 3 are perpendicular to each other, and at the same time, the axis XX' of the handle 3 and the axis YY' of the roller brush 5 are perpendicular to each other.
  • the axis OO' of the fan 4 coincides with or parallel to the axis of the dust cup 6, and both are arranged in parallel with the axis YY' of the roller brush 5.
  • the fan 4 is arranged on the first side 21 or the second side.
  • the dust cup 6 is provided in the other side where the fan 4 is not installed, and the direction in which the first side 21 and the second side 22 face each other is parallel to the axis YY' direction of the roller brush 5 .
  • the blower 4 is provided in the first side 21, and the dust collecting cup 6 is provided in the second side 22 opposite to the blower 4.
  • the blower 4 can also be provided in the second side 22 to collect dust.
  • the cup 6 is provided in the first side portion 21.
  • the fan 4 is provided in the first side portion 21 as an example, and there is no specific limitation.
  • the symmetrical arrangement of the dust collecting cup 6 and the fan 4 can ensure the balance of the mite-removing vacuum cleaner 1, so that the internal components of the housing 2 are arranged more neatly and compactly.
  • the housing 2 further includes a bottom 23 connecting the first side 21 and the second side 22, the air inlet 25 of the mite removing vacuum cleaner 1 is formed in the installation groove 24, and the air outlet It is opened on the bottom 23, and a vent 26 is opened on the wall of the installation groove 24, and the vent 26 is used to connect the air inlet 25 and the dust collecting cup 6 to each other.
  • the axis of the vent 26 and the axis OO' of the fan 4 are at a certain angle, that is, the axis of the dust cup 6 is also at a certain angle.
  • the axis of the vent 26 and the axis OO' of the fan 4 are both perpendicular to reduce the wind speed and reduce the noise of the mite removing vacuum cleaner 1 when it is working.
  • the air inlet 25 sucks the airflow in the air, and the airflow enters the dust cup 6 through the vent 26, and then enters the fan 4 after being filtered by the dust cup.
  • the air outlet side of the fan 4 is located on the side of the fan 4. On the wall, an air outlet channel is provided between the air outlet side of the fan 4 and the air outlet of the bottom 23, and the air flow in the fan 4 flows out from the air outlet through the air outlet channel.
  • the axis YY' of the roller brush 5 and the axis XX' of the handle 3 divides the housing 2 into a first side 21 and a second side 22 Later, the axis YY' of the roller brush 5 divides the first side 21 into a first front half 211 and a first rear half 212, and divides the second side 22 into a second front half 221 and The second rear half 222, in which the length of the first rear half 212 in the advancing direction of the mite removal vacuum cleaner 1 is greater than the length of the first front half 211 in the advancing direction, and the second rear half 222 is in the advancing direction of the mite removal cleaner.
  • the length of the cleaner 1 in the advancing direction is greater than the length of the second front half 221 in the advancing direction.
  • the fan 4 is arranged at any one of the first rear half side portion 212 or the first front half side portion 211, and the dust collecting cup 6 is opposite to the fan 4 and is arranged axially with the handle 3.
  • the fan 4 is arranged on the first rear half 212, and the dust cup 6 is arranged on the second rear half 222.
  • the fan 4 can also be arranged on the first front half 211. In this embodiment It is only taken as an example that the fan 4 is provided on the first rear half side 212, and there is no specific limitation.
  • FIG. 13 and 14 Another embodiment of the present application relates to a mite-removing vacuum cleaner, as shown in Figures 13 and 14, including a housing 2, a handle 3 arranged on the housing 2, a dust collecting cup 6, and a dust collecting cup 6 arranged in the housing 2 Fan 4, the handle 3 extends back and forth in the cleaning direction, the housing 2 is provided with an air inlet communicating with the dust collecting cup 6, and the path of the airflow from the air inlet into the dust collecting cup 6 is parallel to the axis of the handle 3. 4 is arranged downstream of the dust collecting cup 6, and the air flow path from the dust collecting cup 6 into the fan 4 is perpendicular to the axis of the handle 3, and the dust air path is non-linear as a whole.
  • the direction of the airflow entering the dust collecting cup 6 from the air inlet is parallel to the axis of the handle 3, that is, before and after the cleaning direction, and then flows from the inside of the dust collecting cup 6 to the fan 4, and the fan 4 is located
  • the axis of the fan 4 and the dust collection cup 6 coincide, that is, the fan 4 and the dust collection cup 6 are respectively located on both sides of the mite removal vacuum cleaner 1, which reduces the front and back and height directions of the fan 4 in the mite removal vacuum cleaner 1.
  • the occupied space reduces the overall volume of the mite removing vacuum cleaner 1, which is more convenient for users to operate and store.
  • the gas flow direction is non-linear, which can reduce noise.
  • FIGS. 17-20 which relates to a mite removal instrument, as shown in FIG. 17, comprising: a housing 1, a handle connected to the housing 1 for providing a grip 2. It is used to provide a motor 3 for vacuuming power, and a dust cup 4 for containing dust.
  • the mite removal instrument has a virtual cross section, which can divide the housing 1 into two parts. The central axis of the handle 2 is on the virtual cross section, and the virtual cross section is perpendicular to the placement surface of the mite removing instrument, and the motor 3 and the dust cup 4 are respectively located on both sides of the virtual cross section.
  • the central axis of the handle 2 is exactly on the central axis of the mite removing instrument, so that the appearance of the mite removing instrument is more beautiful, and the handle is convenient to hold.
  • the housing 1 and the handle 2 may also be an integrally formed structure, which is not limited here.
  • the dust cup 4 is cylindrical, and the connection between the casing 1 and the dust cup 4 has an arc-shaped concave surface.
  • the shape of the casing 1 matches the shape of the dust cup 4, and the dust cup 4 and the casing 1 can be connected and fixed. .
  • the dust cup 4 can be directly mounted on the housing 1 with a simple structure and can reduce the space occupied by the mite removing instrument.
  • the dust suction inlet on the casing 1 communicates with the suction port of the dust cup 4, and there is no need to provide an additional air duct in the casing 1, which can simplify the structure of the casing.
  • the dust cup 4 is assembled and connected to the housing 1 by a horizontal push.
  • the housing 1 has a loading slot for accommodating the dust cup 4 in the direction of the dust cup 4. Pushing in the direction of the loading slot can fix the dust cup and the casing 1, and the connection and disassembly between the dust cup 4 and the casing 1 is very simple and convenient.
  • the mite removal instrument further includes a dust cup release device 5, which is used to separate the dust cup 4 from the housing 1, so that it is more convenient to detach the dust cup 4 from the housing 1.
  • the dust cup release device 5 includes: a bottom cover 8, an elastic lock 6, and a button 7.
  • the bottom of the dust cup 4 is provided with a groove, and the elastic lock 6 is arranged in the groove at the bottom of the dust cup 4, and the dust cup 4 has a passage through the groove.
  • the passage corresponds to the buckle of the housing 1, and the elastic lock 6 can pass through
  • the channel of the groove at the bottom of the dust cup 4 is buckled with the buckle on the housing 1.
  • the bottom cover 8 is fixedly arranged at the bottom of the dust cup 4 and can cover the elastic lock 6 at the bottom of the dust cup 4.
  • the button 7 is arranged on the bottom cover 8 and is used to trigger the elastic lock 6 to be released from the buckle on the housing 1.
  • the dust cup release device 5 is simple in structure, strong in functionality, easy to use, and can enhance the user experience.
  • the button 7 is flush with the outside of the bottom cover 8 or slightly recessed toward the inside of the bottom cover 8.
  • the dust cup 4 can be released, and at the same time, it is possible to avoid pressing the button 7 by mistake.
  • the axis of the motor 3 and the axis of the dust cup 4 coincide with each other, which is convenient for installation and has a more compact structure.
  • the air outlet of the dust cup 4 is facing the air inlet of the motor 3, and the air flow from the air outlet of the dust cup 4 can directly lead to the air inlet of the motor 3.
  • the wind loss is small and the mite removal instrument is more energy-saving.
  • this embodiment has a virtual cross-section for dividing the housing 1 into two parts.
  • the virtual cross-section is perpendicular to the placement surface of the acar-removing device, and the central axis of the handle 2 is in the virtual cross-section.
  • the motor 3 and the dust cup 4 are respectively located on both sides of the virtual cross section. In this way, the connection structure of the dust cup 4, the motor 3 and the housing 1 can be relatively simple. There is no complicated assembly structure between the dust cup 4 and the motor 3.
  • the dust cup 4 can be easily disassembled, and since the dust cup 4 and the motor 3 are separate Located on both sides of the virtual section, the weight of the mite removal device will not be concentrated on one side of the mite removal device, and the center of gravity of the mite removal device will be closer to the middle position of the mite removal device, which will not cause inconvenience in use. Therefore, the mite removal instrument can greatly enhance the user experience.
  • the seventh embodiment of the present application relates to a mite removing instrument.
  • the seventh embodiment is substantially the same as the sixth embodiment, and the main difference is that: in the sixth embodiment, the dust cup 4 is assembled and connected to the housing 1 by means of a horizontal push, and the housing 1 has a direction facing the dust cup 4 For the loading slot accommodating the dust cup 4, as long as the dust cup 4 is pushed in the direction of the loading slot, the dust cup and the casing 1 can be fixed, and the connection and disassembly between the dust cup 4 and the casing 1 is very simple and convenient.
  • the dust cup 4 is assembled and connected to the housing 1 by tilting and turning, which can also make the connection and disassembly between the dust cup 4 and the housing 1 very simple and convenient.
  • the housing 1 has a snap mechanism for accommodating the dust cup 4 in the direction of the dust cup 4, and the dust cup 4 has a snapping structure adapted to the snap mechanism. It is only necessary to place the dust cup 4 in an oblique manner.
  • the engaging structure of the dust cup 4 is in contact with the snap mechanism of the housing 1.
  • the dust cup 4 can be fixed to the housing 1.
  • the connection and disassembly between the dust cup 4 and the housing 1 is the same as in the sixth embodiment, which is very simple and convenient.
  • the mite removal instrument has a virtual cross section for dividing the housing 1 into two parts, the virtual cross section is perpendicular to the placement surface of the mite removal device, and the central axis of the handle 2 is on the virtual cross section, the motor 3 and the dust cup 4 They are located on both sides of the virtual section 1.
  • the connection structure of the dust cup 4, the motor 3 and the housing 1 can be relatively simple. There is no complicated assembly structure between the dust cup 4 and the motor 3.
  • the dust cup 4 can be easily disassembled, and since the dust cup 4 and the motor 3 are separate Located on both sides of the virtual section, the weight of the mite removal device will not be concentrated on one side of the mite removal device, and the center of gravity of the mite removal device will be closer to the middle position of the mite removal device, which will not cause inconvenience in use. Therefore, the mite removal instrument can greatly enhance the user experience.
  • the eighth embodiment of the present application will be described in conjunction with FIGS. 22-25. It relates to a mite removing instrument, as shown in FIGS. 22 and 23, including: a housing, a handle set on the housing 2, a fan 3
  • the dust collecting and filtering device and the power module 1, and the dust collecting and filtering device and the power module 1 are all arranged in the casing.
  • the power module 1 is a battery pack and is fixed in the casing by bolts.
  • the housing includes a first side portion 5 and a second side portion 6 disposed opposite to the first side portion 5.
  • the axis X of the handle 2 is located between the first side portion 5 and the second side portion 6, and is connected to the first side portion 5 and the second side portion 6, respectively.
  • the side portion 5 and the second side portion 6 are arranged opposite to each other.
  • the fan 3 is arranged in the direction of the first side 5 in the housing, and the power module 1 is arranged in the direction of the second side 6 in the housing.
  • the housing includes the first side 5 and the second side 6, the axis X of the handle 2 is located between the first side 5 and the second side 6, and is respectively connected to the first side 5 and the second side 6 5 and the second side 6 are arranged oppositely, and the fan 3 of the dust collection filter device is arranged towards the first side 5, and the power module 1 is arranged towards the second side 6, so that the fan 3 and the power module 1 are arranged on both sides of the handle 2.
  • the side makes the weight of the mite removal instrument more uniform, and it is easy to take when using it. It will not be too heavy on one side to affect the use experience. And because the weight of the mite removal device is even, the whole machine is more suitable for the surface to be cleaned during use. Better results.
  • the dust collecting and filtering device further includes: a filter 7 connected to the fan 3, a dust collecting cup 8 sleeved on the filter 7, a filter 7, and a dust collecting cup 8. All are arranged coaxially with the fan 3.
  • the axis X of the fan 3 is perpendicular to the axis X of the handle 2
  • the axis X of the dust cup 8 and the filter cup are also perpendicular to the axis X of the handle 2
  • the dust cup 8 and the filter 7 face in the housing
  • the direction of the second side 6 is set, and the dust collecting cup 8 and the filter 7 are located on the same side of the axis X of the handle 2 as the power module 1.
  • the fan 3 and the filter 7 are directly connected and arranged coaxially, when the fan 3 sucks the wind, the wind loss after the wind passes through the filter 7 and reaches the fan 3 is small, which is beneficial to the use of the wind discharged by the fan 3 in the later period.
  • the dust cup 8 and the power module 1 are arranged opposite to each other along the axis X direction parallel to the handle 2. As a result, the components inside the housing are arranged more neatly and compactly.
  • the housing further includes: a bottom 9 connecting the first side 5 and the second side 6; the bottom 9 is provided with an air inlet 10, and the fan 3 is used to pass through The air inlet 10 generates air flow into the dust collecting cup 8.
  • the mite removing instrument also includes: a rolling brush 11 that is rolled in the installation groove.
  • the rolling brush 11 is at least partially separated from the groove wall 12 of the installation groove to form an air inlet 10.
  • the groove wall 12 of the installation groove is provided with a vent 13 connecting the dust collecting cup 8 and the air inlet 10.
  • the installation groove is arranged along the axis X direction of the fan 3, and the rolling brush 11 is arranged at both ends of the installation groove, and is also arranged along the axis X of the fan 3.
  • the rolling brush 11 can be installed in the installation groove. Roll inside and pat the surface to be cleaned.
  • the area separated from the rolling brush 11 and the groove wall 12 of the installation groove forms an air inlet 10.
  • the dust collecting cup 8 has an opening on the side facing the installation groove, and the opening and the vent 13 are connected by a connecting channel.
  • the wind enters from the air inlet 10 and enters into the dust collecting cup 8 through the vent 13 and the inlet.
  • the filter 7 in the dust collecting cup 8 After being filtered by the filter 7 in the dust collecting cup 8, the wind enters the fan 3 and is discharged from the air outlet of the fan 3.
  • the mite removal instrument also includes a plurality of pipeline structures.
  • the first side part 5 and the second side part 6 are both provided with air outlets, and each air outlet is connected to the air outlet of the fan 3 through the pipeline structure, thereby The wind in the fan 3 can be discharged.
  • the mite removing instrument further includes: a driving device 14 for driving the roller brush 11 to rotate.
  • the driving device 14 is arranged in the direction of the first side portion 5 in the housing. So that the weight of the mite removal instrument is more even.
  • the driving device 14 includes a motor and a drive shaft connected with the main shaft of the motor, the drive shaft is connected with the roller, the motor drives the drive shaft to rotate, and the drive drives the roller to rotate.
  • the fan 3 is arranged on the first side 5 and the power module 1 is arranged on the second side 6. Therefore, the fan 3 is fixed on the first side 5, and the power module 1 is fixed on the second side 6, so that both sides of the mite removal instrument can be smoothly pressed against the surface to be cleaned.
  • connection line between the head end of the first side portion 5 and the tail end of the second side portion 6 is the diagonal line of the housing, and the fan 3 and the power supply module 1 face along the diagonal line. Set in directions away from each other. As a result, the weight of the mite removing device is more balanced, and the two sides of the mite removing device can be smoothly pressed against the surface to be cleaned.
  • the fan 3 and the power module 1 are arranged opposite to each other along the axis X direction perpendicular to the handle 2.
  • the axis of the fan is parallel to the axis of the handle, and the dust cup and the power module are arranged opposite to each other in a direction perpendicular to the axis of the handle. That is to say, the dust collecting and filtering device and the power module are located on both sides of the axis of the handle. At this time, the fan and the power module are also located at both ends of the axis of the handle, and the weight of the mite removal instrument is equally distributed.

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Abstract

本申请公开了一种除螨仪的导流结构及除螨仪。导流结构包括设置在除螨仪壳体内的导流器,壳体内形成容纳气流发生单元的第一腔体和至少用于容纳发热源的第二腔体。导流器包括冷风管路组件与热风管路。冷风管路组件与气流发生单元的出风侧连通,将部分气流送入第二腔体对发热源进行冷却。壳体至少具有一个第一出风侧,排出由冷风管路组件送入第二腔体的气流。热风管路至少有部分设置于第二腔体内,收纳并固定除螨仪的加热元件。壳体具有与热风管路连接的第二出风侧,热风管路还与气流发生单元的出风侧连通,将部分气流通过第二出风侧排出壳体外。

Description

除螨仪的导流结构及除螨仪
相关申请的交叉引用
本申请基于申请号为201910857656.8、申请日为2019.09.09;申请号为201921513083.9、申请日为2019.09.09;申请号为201910847806.7、申请日为2019.09.09;申请号为201910857735.9、申请日为2019.09.09;申请号为201910857574.3、申请日为2019.09.09的中国专利申请提出,并要求该些中国专利申请的优先权。该些中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本申请涉及家用电器技术领域,特别涉及一种除螨仪的导流结构及除螨仪。
背景技术
除螨仪是专门用来清洁床上、沙发、地毯等纺织物上面的灰尘及滋生的细菌、螨虫等过敏源。用户使用除螨仪进行清洁时,与被清洁附尘面接触,并通过风机将灰尘及滋生的细菌、螨虫等过敏源吸入除螨仪壳体内,将灰尘等吸入尘杯内。目前除螨仪的风机在工作时,产生的冷风直接通过出风口排出,造成冷风的浪费。
发明内容
为解决上述技术问题,本申请的目的在于提供一种除螨仪的导流结构及除螨仪,能够对风机产生的气流进行合理有效的利用。
本申请的实施方式提供了一种除螨仪的导流结构,包括设置在除螨仪的壳体内的导流器,所述壳体内形成用于容纳除螨仪的气流发生单元的第一腔体和至少用于容纳除螨仪的发热源的第二腔体。所述导流器包括:冷风管路组件,与所述气流发生单元的出风侧连通,所述冷风管路组件用于将由所述气流发生单元所产生的部分气流送入所述第二腔体内,对收纳于所述第二腔体内的发热源进行冷却,所述壳体对应所述第二腔体的部位至少具有一个第一出风侧(8),所述第一出风侧(8)用于排出由所述冷风管路组件送入所述第二腔体内的气流;和热风管路,所述热风管路至少有部分设置于所述第二腔体内,用于收纳并固定除螨仪的加热元件,所述壳体对应所述第二腔体的部位还具有与所述热风管路连接的第 二出风侧,所述热风管路还与所述气流发生单元的出风侧连通,用于将所述气流发生单元所产生的部分气流直接通过所述第二出风侧排出所述壳体外。
另外,本申请的实施方式还提供了一种除螨仪,包括:壳体、设置于所述壳体内的气流发生单元和发热源,还包括如上所述的导流结构。
另外,本申请的实施方式还提供了一种除螨仪的导流结构,包括设置在除螨仪的壳体内的导流器,所述壳体内形成用于容纳除螨仪的气流发生单元的第一腔体和用于容纳除螨仪的发热源的第二腔体。所述导流器包括:冷风管路组件,与所述气流发生单元的出风侧连通,所述冷风管路组件用于将由所述气流发生单元所产生的部分气流送入所述第二腔体内,对收纳于所述第二腔体内的发热源进行冷却;和热风管路,设置于所述第二腔体内,用于收纳并固定除螨仪的加热元件,所述壳体对应所述第二腔体的部位还具有与所述热风管路连接的出风侧;所述热风管路用于将被送入所述第二腔体内的气流通过所述出风侧排出所述壳体外,且所述出风侧所排出的气流为已对所述发热源进行冷却后的气流。
另外,本申请的实施方式还提供了一种除螨仪,包括:壳体、设置于所述壳体内的气流发生单元和发热源,还包括如上所述的导流结构。
本申请实施方式相对于现有技术而言,由于该除螨仪的导流结构包括设置在除螨仪壳体内的导流器,且除螨仪的壳体内形成第一腔体与第二腔体,第一腔体用于容纳除螨仪的气流发生单元,第二腔体至少用于容纳除螨仪的发热源。具体的,导流器包括冷风管路组件及热风管路,其中,冷风管路组件与气流发生单元的出风侧连通,并将由气流发生单元产生的部分气流送入第二腔体内,对收纳于第二腔体内的发热源进行冷却,壳体对应第二腔体的部位至少具有一个第一出风侧,并通过第一出风侧将冷风管路组件送入第二腔体内的气流排出;热风管路则至少有部分设置于第二腔体内,且除螨仪的加热元件收纳并固定在热风管路内,在壳体对应第二腔体的部位还具有与热风管路连接的第二出风侧,且热风管路与第二出风侧连通,并将气流发生单元产生的部分气流直接通过第二出风侧排出壳体外。另外,本申请的实施方式提供的另一种导流结构中,冷风管路组件用于将气流发生单元产生的部分气流送入第二腔体内,对收纳于第二腔体内的发热源进行冷却,热风管路则用于将被送入第二腔体内的气流通过出风侧排出壳体外,且由出风侧排出的气流为已对发热源进行冷却后的气流。从而通过设置在除螨仪壳体内的导流器可将气流发生单元产生的气流送入第二腔体内,进而实现对除螨仪的发热源进行冷却,并可将除螨仪的加热元件所产生的热量进行散发,使得气流发生单元所产生的气流能够被合理有效地利用。
在一些实施例中,所述导流器还包括进气管路,分别与所述气流发生单元的出风侧、所述冷风管路组件和所述热风管路连接。
在一些实施例中,所述冷风管路组件包括至少一根冷风管路。各所述冷风管路均与所述进气管路连接,所述气流发生单元产生的气流经过各所述冷风管路从所述第一出风侧排出所述壳体外。或者,当所述冷风管路为多根时,其中一根所述冷风管路与所述进气管路连接,其余所述冷风管路沿预设方向依次排列设置,且所述气流发生单元产生的气流依次经过各所述冷风管路后从所述第一出风侧排出所述壳体外。
在一些实施例中,各所述冷风管路均与所述进气管路连接,所述第一出风侧的数量和所述冷风管路的数量均与所述发热源的数量相同,并一一对应,且各所述冷风管路的出风口均与各自所对应的出风侧彼此相对,且各所述发热源均设置在对应的所述冷风管路的出风口与对应的所述第一出风侧之间。
在一些实施例中,所述冷风管路为多根,其中一根所述冷风管路与所述气流发生单元的出风侧连接,其余所述冷风管路沿预设方向依次排列设置,所述冷风管路的数量还与所述发热源的数量相同;且沿所述预设方向的最后一根所述冷风管道的出风口与所述第一出风侧相对设置,且其中一个所述发热源设置于该冷风管道的出风口与所述第一出风侧之间,且沿所述预设方向的任意相邻两根所述冷风管道之间均设有一个所述发热源。
在一些实施例中,所述气流发生单元的出风侧的风量大于所述第一出风侧的风量,所述气流发生单元的出风侧的风量大于所述第二出风侧的风量。
在一些实施例中,所述导流器还包括进气管路,分别与所述气流发生单元的出风侧、所述冷风管路组件连接。
在一些实施例中,所述冷风管路组件包括至少一根冷风管路,其中一根所述冷风管路与所述进气管路连接,另有一根所述冷风管路与所述热风管路相连,其余所述冷风管路沿预设方向依次排列设置,且所述气流发生单元产生的气流依次经过各所述冷风管路后进入所述热风管路,并经所述出风侧排出所述壳体外。
在一些实施例中,所述冷风管路为多根,其中一根所述冷风管路与所述气流发生单元的出风侧连接,其余所述冷风管路沿预设方向依次排列设置,所述冷风管路的数量还与所述发热源的数量相同;且沿所述预设方向的最后一根所述冷风管道的出风口与所述热风管路相对设置,且其中一个所述发热源设置于该冷风管道的出风口与所述热风管路之间,且沿所述预设方向的任意相邻两根所述冷风管路之间均设有一个所述发热源。
附图说明
图1是本申请第一实施方式中除螨仪的导流结构的结构示意图。
图2是本申请第一实施方式中除螨仪的底部结构示意图。
图3是本申请第一实施方式中导流器结构示意图。
图4是本申请第一实施方式中导流器的侧视图。
图5是本申请第一实施方式中导流器的另一视角示意图。
图6是本申请第一实施方式中导流器的气流流向示意图。
图7是本申请第一实施方式中导流器的进风及冷风管路组件气流流向示意图。
图8是本申请第二实施方式中导流器的气流流向示意图。
图9是本申请第三实施方式中除螨仪的导流结构的结构示意图。
图10是本申请第三实施方式中导流器的气流流向示意图。
图11是本申请第四实施方式中的除螨仪的结构示意图。
图12是本申请第五实施方式中的除螨仪的结构示意图。
图13是除螨吸尘器的结构示意图。
图14是除螨吸尘器的正面结构示意图。
图15是除螨吸尘器的背面结构示意图。
图16是除螨吸尘器的安装槽的结构示意图。
图17是本申请第六实施方式中除螨仪的剖视结构示意图。
图18是本申请第六实施方式中除螨仪的尘杯与壳体的安装方式示意图。
图19是本申请第六实施方式中除螨仪的尘杯与尘杯释放装置结构示意图。
图20是本申请第六实施方式中除螨仪的尘杯与去除底盖后的尘杯释放装置结构示意图。
图21是本申请第七实施方式中除螨仪的尘杯与壳体的安装方式示意图。
图22是本申请第八实施方式中除螨仪内部结构示意图。
图23是本申请第八实施方式中除螨仪内部结构剖视图。
图24是本申请第八实施方式中除螨仪底部结构示意图。
图25是本申请第八实施方式中除螨仪的底部通风口位置结构示意图。
具体实施方式
为使本申请的目的、技术方案和优点更加清楚,下面将结合附图对本申请的各实施方式进行详细的阐述。然而,本领域的普通技术人员可以理解,在本申请各实施方式中,为了使读者更好地理解本申请而提出了许多技术细节。但是,即使没有这些技术细节和基于以下各实施方式的种种变化和修改,也可以实现本申请各权利要求所要求保护的技术方案。
参考图1-图7来描述本申请的第一实施方式。本申请的第一实施方式涉及一种除螨仪 的导流结构,如图1所示,包括设置在除螨仪的壳体2内的导流器,且壳体2内形成用于容纳除螨仪的气流发生单元1的第一腔体21、至少用于容纳除螨仪的发热源6的第二腔体22。具体的说,如图3、图5所示,导流器包括冷风管路组件4与热风管路5。其中,如图6、图7所示,冷风管路组件4与气流发生单元1的出风侧之间相互连通,且该冷风管路组件4用于将气流发生单元1所产生的部分气流送入第二腔体22内,对收纳于第二腔体22内的发热源6进行冷却,相应的,壳体2在对应第二腔体22的部位至少具有一个第一出风侧8,且第一出风侧8用于排出由冷风管路组件4送入第二腔体22内的气流;热风管路5至少有部分设置于第二腔体22内,且除螨仪的加热元件7收纳并固定在该热风管路5内,具体的说,如图2、图4所示,热风管路5内可设置有定位槽,将加热元件7设置在定位槽内,实现加热元件7与热风管路5之间的连接固定。此外,该热风管路5与气流发生单元1的出风侧相互连通,且壳体2对应第二腔体22的部位还具有与热风管路5连接的第二出风侧9,通过该热风管路5将气流发生单元1所产生的部分气流通过第二出风侧9排出壳体2外。
通过上述内容不难发现,由于该除螨仪的导流结构包括设置在除螨仪壳体2内的导流器,且该导流器包括冷风管路组件4与热风管路5,且冷风管路组件4及热风管路5均与气流发生单元1的出风侧连通,并通过冷风管路组件4将由气流发生单元1产生的部分气流送入第二腔体22,对收纳于第二腔体22内的发热源6进行冷却,相应的,壳体2对应第二腔体22的部位至少具有一个第一出风侧8,且第一出风侧8用于将冷风管路组件4送入第二腔体22内的气流排出;而热风管路5组件至少有部分设置于第二腔体22内,且除螨仪的加热元件7收纳并固定在热风管路5内,在壳体2对应第二腔体22的部位还具有与热风管路5连接的第二出风侧9,且热风管路5与第二出风侧9连通,并将气流发生单元1产生的部分气流直接通过第二出风侧9排出壳体2外。从而通过设置在除螨仪壳体2内的导流器可将气流发生单元1产生的气流送入第二腔体22内,进而实现对除螨仪的发热源6进行冷却,并可将除螨仪的加热元件7所产生的热量进行散发,使得气流发生单元1所产生的气流能够被合理有效地利用。
另外,在本实施方式中,如图1所示,导流器还可包括进气管路3,分别与气流发生单元1的出风侧、冷风管路组件4和热风管路5连接,使得气流发生单元1产生的气流首先进入进气管路3内,然后通过进气管路3将气流分散至冷风管路组件4及热风管路5,进而将气流吹出壳体2外。具体的说,如图7所示,冷风管路组件4包括多根冷风管路,各根冷风管路均与进气管路3连接,且气流发生单元1所产生的气流分别经过各冷风管路从第一出风侧8排出壳体2外。作为优选,在本实施方式中,第一出风侧8的数量和冷风 管路的数量均与发热源6的数量相同,并一一对应,且各冷风管路的出风口均与各自对应的出风侧彼此相对设置,同时,各发热源6均设置在对应的冷风管路的出风口与对应的第一出风侧8之间。在本实施方式中,发热源6设置有两个,分别为除螨仪的电池包组件与除螨仪的滚刷齿轮组件,电池包组件设置在其中任意一根冷风管路与对应的第一出风侧8之间,滚刷齿轮组件则设置在另外一根冷风管路与对应的第一出风侧8之间,且电池包组件与滚刷齿轮组件可分别设置在第二腔体22内的左右两侧,两第一出风侧8分别设置在壳体2的左右两侧;加热元件7可采用PTC电热元件。
另外,值得一提的是,在本实施方式中,气流发生单元1的出风侧的风量大于第一出风侧8的风量,且气流发生单元1的出风侧的风量还大于第二出风侧9的风量,因而进气发生单元产生的气流在进入进气管路3内后,会同时进入冷风管路组件4与热风管路5中,实现分流。
此外,气流发生单元1可采用风机,且除螨仪的壳体2上还开设有与气流发生单元1的进风侧相连通的进风口,该进风口通常设置在壳体2的底部,对应的,在除螨仪的尘桶底部设置有与进风口连通的进气口,气流通过壳体2上的进风口、尘桶上的进气口进入尘桶内,并在被海绵、海帕等过滤后,进入风机内,并且,风机在朝向导流器的一侧开设出风口,进入风机内的气流通过出风口送入导流器内,最后,由导流器对气流进行分流,对风机产生的气流进行合理有效的利用。
本申请的第二实施方式涉及一种除螨仪的导流结构,第二实施方式与第一实施方式大致相同,主要区别之处在于:如图8所示,在本实施方式中,第一出风侧8设置有一个,冷风管路设置为多根,其中一根冷风管路与进气管路连接,其余冷风管路沿预设方向依次排列设置,且气流发生单元产生的气流依次经过各冷风管路后从第一出风侧8排出壳体外。具体的说,冷风管路的数量还与发热源的数量相同,且沿预设方向的最后一根冷风管道的出风口与第一出风侧8相对设置,其中一个发热源设置在该冷风管道发出风口与第一出风侧8之间,并且,沿预设方向的任意相邻两根冷风管道之间均设有一个发热源,从而可使气流在沿各冷风管路流动过程中,依次对各个发热源进行散热,并在依次对各个发热源散热后从第一出风侧8排出壳体外。因而同样可对气流发生单元产生的气流进行合理有效的利用。
本申请的第三实施方式涉及一种除螨仪的导流结构,如图9、图10所示,包括:设置在除螨仪的壳体12内的导流器,且壳体12内形成用于容纳除螨仪的气流发生单元11的第一腔体121、至少用于容纳除螨仪的发热源16的第二腔体122。具体的说,如图9所示,导流器包括冷风管路组件14与热风管路(图中未标示)。其中,冷风管路组件14与气流发 生单元的出风侧10之间相互连通,且该冷风管路组件14用于将气流发生单元11所产生的部分气流送入第二腔体122内,对收纳于第二腔体122内的发热源16进行冷却;热风管路设置于第二腔体122内,且除螨仪的加热元件收纳并固定在热风管路内,同时,壳体12对应第二腔体122的部位还具有与热风管路连接的出风侧,如图10所示,该热风管路用于将被送入第二腔体122内的气流通过出风侧排出壳体12外,且经出风侧排出的气流为已对各发热源16进行冷却后的气流。
另外,在本实施方式中,如图9所示,导流器还可包括进气管路13,分别与气流发生单元的出风侧10、冷风管路组件14和热风管路连接,使得气流发生单元11产生的气流首先进入进气管路13内,然后通过进气管路13将气流分散至冷风管路组件14及热风管路,进而将气流吹出壳体12外。具体的说,冷风管路组件14包括多根冷风管路,其中一根冷风管路与进气管路13连接,另有一根冷风管路与热风管路相连,其余冷风管路沿预设方向依次排列设置,且气流发生单元11产生的气流依次经过各冷风管路后进入热风管路内,并经壳体12上的出风侧排出壳体12外。优选地,冷风管路的数量与发热源16的数量相同,并且,沿预设方向的最后一根冷风管道的出风口与热风管路相对设置,且沿预设方向的任意相邻两根冷风管路之间均设有一个发热源16。例如,当发热源16为除螨仪的电池包组件时,冷风管路设置有一根,且电池包组件设置在冷风管路与热风管路之间,气流发生单元11产生的气流首先通过出风侧进入冷风管路,并经冷风管路吹向电池包组件,然后进入热风管路内,对加热元件产生的热量进行散发,最后通过出风侧吹出壳体12外。当发热源16包括除螨仪的电池包组件与除螨仪的滚刷齿轮组件时,冷风管路设置有两根,任意一根冷风管路与气流发生单元的出风侧10相互连通,电池包组件设置在两根冷风管路之间,滚刷齿轮组件设置在另一根冷风管路与热风管路之间,气流发生单元11产生的气流依次经过各根冷风管路,吹过电池包组件与滚刷齿轮组件,然后进入热风管路内,经气流发生单元的出风侧10排出壳体12外。实际使用时,冷风管路至少设置有一根,且冷风管路的数量可根据实际使用情况进行调整。
本申请又一实施方式涉及一种除螨仪,包括:壳体、设置于壳体内的气流发生单元和发热源、如第一至第二实施方式中任一实施方式所述的导流结构。
不难发现,本实施方式为与第一至第二实施方式中任一实施方式相对应的系统实施方式,本实施方式可与第一至第二实施方式中任一实施方式互相配合实施。第一至第二实施方式中提到的相关技术细节在本实施方式中依然有效,为了减少重复,这里不再赘述。相应地,本实施方式中提到的相关技术细节也可应用在第一至第二实施方式中。
本申请另一实施方式涉及一种除螨仪,包括:壳体、设置于所述壳体内的气流发生单 元和发热源、如第三实施方式所述的导流结构。
不难发现,本实施方式为与第三实施方式相对应的系统实施方式,本实施方式可与第三实施方式互相配合实施。第三实施方式中提到的相关技术细节在本实施方式中依然有效,为了减少重复,这里不再赘述。相应地,本实施方式中提到的相关技术细节也可应用在第三实施方式中。
本申请的第四实施方式涉及一种除螨仪,如图11所示,包括:壳体1、设置在壳体1内用于抽真空的主电机2、设置在壳体1上的滚刷装置、设置在壳体1内用于驱动滚刷装置的滚刷电机3、设置在壳体1内用于匹配滚刷电机3与滚刷装置转速的减速装置4。壳体1内设置风道,壳体1的风道与主电机2的出风口7连通,且壳体1的风道通往减速装置4。
具体地说,如图11所示,减速装置4包括齿轮组件5、用于容纳齿轮组件5的齿轮箱6。齿轮箱6与壳体1的风道连通,主电机2的出风口7通过壳体1的风道通往齿轮箱6。在除螨仪运行时,一部分温度相对较低的气流可以通往齿轮箱6,对齿轮箱6内部的齿轮组件5进行降温。
另外,值得一提的是,齿轮箱6上开设有进风口,壳体1的风道与齿轮箱6的进风口连通,这样可以使气流直接与齿轮箱6内部的齿轮组件5进行对流传热,从而降低齿轮组件5的温度。齿轮箱6也可以设置一个出风口,将与齿轮箱6内部的齿轮组件5进行对流传热后的气流送到除螨仪外部。
需要说明的是,本实施方式中,主电机2的出风口7贴近齿轮箱6的进风口,可以使连接主电机2的出风口7与齿轮箱6的风道较短,防止气流在通过风道时吸收过多热量,以保证散热能力。
在本实施方式中,壳体1的风道还通往滚刷电机3处,这样可以使主电机2出风口7处的一部分气流可以流通至滚刷电机3处,对滚刷电机3进行降温散热。
值得一提的是,主电机2的出风口7设置在靠近滚刷电机3处,这样主电机2出风口7处的部分气流可以直接对滚刷电机3进行降温,防止了滚刷电机3运行后热量堆积。本实施方式中,出风口7正对滚刷电机3处,主电机2出风口7处的一部分气流可以直接流通至滚刷电机3处,可以很大程度抑制滚刷电机堆积热量。
本申请实施方式相对于现有技术而言,在壳体1内设置的风道与主电机2的出风口7连通,并通往减速装置4,这样在除螨仪运行时,一部分温度相对较低的气流可以通过主电机2的出风口7通往风道内,最终通向减速装置4,这部分气流与减速装置4进行对流传热,可以有效地降低减速装置4的热量,防止减速装置4处热量的堆积。同时,由于壳体1的风道还通往滚刷电机3处,这样可以使主电机2出风口7处的一部分气流可以流通 至滚刷电机3处,对滚刷电机3进行降温散热。因而,除螨仪运行时,滚刷电机3与减速装置4均可以有效地进行散热,从而可以使除螨仪进行长时间工作。
本申请的第五实施方式涉及一种除螨仪,第五实施方式在第四实施方式的除螨仪上做了进一步改进,主要改进之处在于:在第五实施方式中,如图12所示,壳体1上还具有设置热敏电阻的腔室,壳体1的风道还与热敏电阻8的腔室连通,可以使主电机2出风口7处的部分气流对设置热敏电阻8的腔室进行降温散热。此外,壳体1还具有设置电池包9的腔室,壳体1的风道还与电池包9的腔室连通,可以使主电机2出风口7处的部分气流对设置电池包9的腔室进行降温散热。
具体地说,壳体1的风道连通热敏电阻8的腔室后,还与电池包9的腔室连通,主电机2出风口7处的一部分气流可以通过热敏电阻8的腔室后,通往电池包9的腔室,因而,热敏电阻8的腔室与电池包9的腔室均可以有效散热。当然,在电池包9的腔室内可以设置一个出风口,将换热后的气流送出除螨仪以提高散热效率。
与第四实施方式类似地,由于在壳体1内设置的风道与主电机2的出风口7连通,并通往减速装置4,这样在除螨仪运行时,一部分温度相对较低的气流可以通过主电机2的出风口7通往风道内,最终通向减速装置4,这部分气流与减速装置4进行对流传热,可以有效地降低减速装置4的热量,防止减速装置4处热量的堆积。同时,由于壳体1的风道还通往滚刷电机3处,这样可以使主电机2出风口7处的一部分气流可以流通至滚刷电机3处,对滚刷电机3进行降温散热。除螨仪运行时,除滚刷电机3与减速装置4可以有效地进行散热以外,热敏电阻8的腔室与电池包9的腔室也可以有效散热,相对于第四实施方式而言,大大提高了除螨仪的散热能力,使除螨仪可以进行长时间工作。
参考图13-图16,对本申请的其他实施方式进行描述。本申请的一个实施方式涉及一种除螨吸尘器,用于清洁室内,杀死螨虫和吸附灰尘和螨虫的尸体。
如图13和图16所示,除螨吸尘器1包括:壳体2、设在壳体2上的手柄3、设在壳体2内的风机4、设在壳体2的底部23的滚刷5,壳体2的底部23开设安装槽24,滚刷5可转动地设在安装槽24内,且滚刷5的轴线YY’垂直于除螨吸尘器1的推进方向,滚刷5有部分和安装槽24的槽壁之间相互隔开形成进风口25。除螨吸尘器1工作时,将壳体2的底部23贴近待清洁面,用户手持手柄3,向前推动除螨吸尘器1,除螨吸尘器1的滚刷5转动,拍打待清洁面并卷起灰尘和螨虫,风机4启动为进风口25提供吸力,灰尘和螨虫从进风口25吸入除螨吸尘器1,除螨吸尘器1还包括:设在风机4和风机4的进气口之间的集尘杯6,进风口25吸入灰尘和螨虫在在集尘杯6中被分离过滤,干净的气流向风机4,风机4将来自集尘杯6的风排出壳体2外。
进风口25呈水平横向设置,在现有技术中,风机4的轴线OO’一般呈竖直设置,风机4的进风侧与进风口25相对,为进风口25提供吸力,但竖直设置的风机4在竖直方向上占用的空间较大,导致除螨吸尘器1在高度方向上较高,除螨吸尘器1整体体积较大,不便于用户使用和存放。
如图14所示,本实施方式中的除螨吸尘器1,壳体2包括:第一侧部21和第二侧部22,第一侧部21和第二侧部22分别位于手柄3的轴线XX’的两侧相对设置,其中风机4的轴线OO’方向为第一侧部21与第二侧部22相对的方向。滚刷5的轴线YY’方向垂直于除螨吸尘器1的推进方向,进风口25呈长条型,进风口25的长度方向与滚刷5的轴线YY’方向相同,风机4的轴线OO’方向与滚刷5的轴线YY’方向平行。在除螨吸尘器1中,滚刷5的轴线YY’方向为除螨吸尘器1的宽度方向,除螨吸尘器1在向前推进时,滚刷5在宽度方向具有一定距离,保证除螨一定清洁宽度和清洁效率。即除螨吸尘器1在宽度方向上,至少需要有收纳滚刷5的长度,而本实施方式中的风机4的轴线OO’与滚刷5的轴线YY’方向平行,即风机4的长度方向也沿除螨吸尘器1的宽度方向设置,风机4在轴线方向上的长度小于滚刷5在轴线方向上的长度,故风机4的长度不会增加除螨吸尘器1的宽度方向的体积;而如此设置的风机4在除螨吸尘器1的前后方向和竖直方向占用的空间较小,也可以减小除螨吸尘器1在前后方向上和竖直方向上的体积,达到减小除螨吸尘器1整体体积,降低除螨吸尘器1存放所需的空间,且更加便于用户手持操作。
值得注意的是,本实施方式中的手柄3的轴线XX’沿除螨吸尘器1的推进方向设置为除螨吸尘器的中心轴线,风机4的轴线OO’与手柄3的轴线XX’互成一定角度,本实施方式中,风机4的轴线OO’与手柄3的轴线XX’相互垂直,同时,手柄3的轴线XX’与滚刷5的轴线YY’相互垂直,除螨吸尘器在使用时,尘气自进风口25被吸入,沿手柄轴线XX’的方向进入集尘杯6,在集成杯6内经尘气分离后,气流沿风机4的轴线OO’进入风机,气流进入集成杯6的路径与进入风机的路径相互垂直,整个气流呈非线性路径流动。
除螨吸尘器1中,风机4的轴线OO’和集尘杯6的轴线重合或平行,均与滚刷5的轴线YY’平行设置,其中,风机4设在第一侧部21或第二侧部22中的任意一个内,集尘杯6设在未安装有风机4的另一个侧部内,第一侧部21与第二侧部22彼此相对的方向与滚刷5的轴线YY’方向平行。本实施方式中,风机4设在第一侧部21内,集尘杯6设在第二侧部22内与风机4相对,当然,风机4也可以设在第二侧部22内,集尘杯6设在第一侧部21内,本实施方式中仅以风机4设在第一侧部21内为例,不做具体限定。集尘杯6和风机4的对称设置可以保证除螨吸尘器1的平衡,从而壳体2内部各部件排布更为整齐、 紧凑。
如图16所示,本实施方式中,壳体2还包括:连接第一侧部21和第二侧部22的底部23,除螨吸尘器1的进风口25形成在安装槽24内,出风口开设在底部23上,安装槽24的槽壁上开设有通风口26,通风口26用于将进风口25和集尘杯6导通。通风口26的轴线与风机4的轴线OO’互成一定角度,即与集尘杯6的轴线也成一定角度,本实施方式中,通风口26的轴线与风机4的轴线OO’、通风口26与集尘杯6的轴线均垂直,以降低风速,减小除螨吸尘器1工作时的噪音。风机4在工作时,进风口25吸取空气中的气流,气流通过通风口26进入集尘杯6中,经过集尘杯的过滤再进入风机4中,风机4的出风侧位于风机4的侧壁上,风机4的出风侧和底部23的出风口之间设有出风通道,风机4中的气流通过出风通道从出风口中流出。
值得注意的是,除螨吸尘器1还可以具有更多的出风口,风机4中的气流可以通过多个出风口排出壳体2外,本实施方式中不做具体限定。
其中,如图15所示,由于滚刷5的轴线YY’与手柄3的轴线XX’相互垂直,在手柄3的轴线XX’将壳体2分割呈第一侧部21和第二侧部22后,滚刷5的轴线YY’将所述第一侧部21分割成第一前半侧部211和第一后半侧部212,并将第二侧部22分割呈第二前半侧部221和第二后半侧部222,其中第一后半侧部212在除螨吸尘器1推进方向上的长度大于第一前半侧部211在推进方向上的长度,第二后半侧部222在除螨吸尘器1推进方向上的长度大于第二前半侧部221在推进方向上的长度。风机4设在第一后半侧部212或第一前半侧部211中的任意一个,集尘杯6与风机4相对与手柄3轴向设置。本实施方式中,风机4设在第一后半侧部212,集尘杯6设在第二后半侧部222,当然,风机4也可以设在第一前半侧部211,本实施方式中仅以风机4设在第一后半侧部212为例,不做具体限定。
本申请的另一实施方式涉及一种除螨吸尘器,如图13和图14所示,包括壳体2、设置于壳体2上的手柄3、集尘杯6及设置于壳体2内的风机4,所述手柄3沿清洁方向前后延伸,所述壳体2设置有连通集尘杯6的进风口,气流自进风口进入集尘杯6的路径与手柄3的轴线平行,所述风机4设置于所述集尘杯6的下游,自集尘杯6进入风机4的气流路径垂直于所述手柄3的轴线,尘气路径整体呈非线性。
本申请实施方式相对于现有技术而言,气流从进风口进入集尘杯6时的方向与手柄3轴线平行,即清洁方向的前后,然后自集尘杯6内部流向风机4,风机4位于集尘杯6下游时,风机4与集尘杯6的轴线重合,即风机4与集尘杯6分别位于除螨吸尘器1的两侧,降低了风机4在除螨吸尘器1前后方向和高度方向占用的空间,减小了除螨吸尘器1整体 的体积,更加便于用户操作和存放。且气体流向非线性,可以降低噪音。
结合图17-图20描述本申请的第六实施方式,其涉及一种除螨仪,如图17所示,包括:壳体1、与壳体1连接用于提供握持的手柄2、用于提供抽真空动力的电机3、用于容纳粉尘的尘杯4。除螨仪具有一个虚拟截面,虚拟截面可以将壳体1分割成两部分。手柄2的中轴线在虚拟截面上,且虚拟截面垂直于除螨仪的放置面,而电机3和尘杯4分别位于该虚拟截面的两侧。本实施方式中,手柄2的中轴线正好位于除螨仪的中心轴线上,使除螨仪外观更为美观,手柄便于握持。壳体1与手柄2也可以是一体式成型结构,这里不作限定。
需要说明的是,尘杯4呈圆柱状,壳体1与尘杯4衔接处具有弧状的凹面,壳体1的外形与尘杯4的外形适配,尘杯4与壳体1可以连接固定。尘杯4可以直接装在壳体1上,结构简单,且可以降低除螨仪占用空间。另外,壳体1上的吸尘入口与尘杯4的吸入口连通,壳体1内不需要额外设置风道,可以简化壳体的结构。本实施方式中,如图18所示,尘杯4通过平推的方式与壳体1装配连接,壳体1朝向尘杯4的方向具有容置尘杯4的装载槽,只要将尘杯4朝向装载槽的方向推压,即可使尘杯与壳体1固定,尘杯4与壳体1之间连接拆卸非常简单方便。
还需要说明的是,本实施方式中,除螨仪还包括尘杯释放装置5,尘杯释放装置5用于将尘杯4脱离壳体1,使尘杯4脱离壳体1更为方便。
具体地说,如图19、4所示,尘杯释放装置5包括:底盖8、弹性锁扣6、按钮7。尘杯4底部设置有一凹槽,弹性锁扣6设置在尘杯4底部的凹槽内,尘杯4具有贯通凹槽的通道,该通道对应壳体1的卡扣,弹性锁扣6可以穿过尘杯4底部凹槽的通道与壳体1上的卡扣扣合。底盖8固定设置在尘杯4底部,可以在尘杯4底部遮盖住弹性锁扣6。按钮7设置在底盖8上,用于触发弹性锁扣6脱离壳体1上的卡扣。该尘杯释放装置5结构简单,功能性强,便于使用,可以增强用户的使用体验。
另外,值得一提的是,在弹性锁扣6与壳体1上的卡扣扣合时,按钮7与底盖8外侧平齐或向底盖8内侧略微凹陷。按钮7向内侧按压时,可释放尘杯4,同时尽可能地避免了误按按钮7。
此外,值得关注的是,本实施方式中,电机3的轴线与尘杯4的轴线相互重合,便于安装,且结构更为紧凑。同时,尘杯4的出风口正对电机3的进风口,尘杯4出风口的气流可以直接通往电机3的进风口,风力损失小,使除螨仪更为节能。
本实施方式相对于现有技术而言,由于除螨仪具有用于将壳体1分割成两部分的虚拟截面,虚拟截面垂直于除螨仪的放置面,且手柄2的中轴线在虚拟截面上,电机3和尘杯 4分别位于虚拟截面的两侧。这样,尘杯4、电机3与壳体1的连接结构可以相对简单,尘杯4与电机3之间没有复杂的装配结构,尘杯4拆卸起来较为方便,且由于尘杯4与电机3分别位于虚拟截面的两侧,除螨仪的重量不会集中在除螨仪的一侧,除螨仪的重心会更靠近除螨仪的中间位置,不会造成使用不便的情况。因此,该除螨仪可以大大提升用户的使用体验。
本申请的第七实施方式涉及一种除螨仪。第七实施方式与第六实施方式大致相同,主要区别之处在于:在第六实施方式中,尘杯4通过平推的方式与壳体1装配连接,壳体1朝向尘杯4的方向具有容置尘杯4的装载槽,只要将尘杯4朝向装载槽的方向推压,即可使尘杯与壳体1固定,尘杯4与壳体1之间连接拆卸非常简单方便。而在本申请第七实施方式中,如图21所示,尘杯4通过倾斜翻转的方式与壳体1装配连接,同样可以使尘杯4与壳体1之间连接拆卸非常简单方便。
具体地说,壳体1朝向尘杯4的方向具有容置尘杯4的卡扣机关,尘杯4上具有与卡扣机关适配的卡合结构,只需将尘杯4倾斜的放置到壳体1的衔接处,使尘杯4的卡合结构接触到壳体1的卡扣机关上,此时翻转尘杯4使尘杯4的卡合结构与壳体1的卡扣机关卡合,尘杯4就可以固定到壳体1上。尘杯4与壳体1之间连接拆卸与第六实施方式一样,非常简单方便。
同样地,由于除螨仪具有用于将壳体1分割成两部分的虚拟截面,虚拟截面垂直于除螨仪的放置面,且手柄2的中轴线在虚拟截面上,电机3和尘杯4分别位于虚拟截面的1两侧。这样,尘杯4、电机3与壳体1的连接结构可以相对简单,尘杯4与电机3之间没有复杂的装配结构,尘杯4拆卸起来较为方便,且由于尘杯4与电机3分别位于虚拟截面的两侧,除螨仪的重量不会集中在除螨仪的一侧,除螨仪的重心会更靠近除螨仪的中间位置,不会造成使用不便的情况。因此,该除螨仪可以大大提升用户的使用体验。
结合图22-25描述本申请的第八实施方式,其涉及一种除螨仪,如图22和图23所示,包括:壳体、设置于壳体上的手柄2、带有风机3的集尘过滤装置和电源模块1,集尘过滤装置和电源模块1均设置于壳体内,电源模块1为电池包,通过螺栓固定在壳体内。壳体包括:第一侧部5、与第一侧部5相对设置的第二侧部6,手柄2的轴线X位于第一侧部5和第二侧部6之间,且分别与第一侧部5和第二侧部6相对设置。风机3在壳体内朝第一侧部5的方向设置,电源模块1在壳体内朝第二侧部6的方向设置。
通过上述内容不难发现,由于壳体包括第一侧部5和第二侧部6,手柄2的轴线X位于第一侧部5和第二侧部6之间,且分别与第一侧部5和第二侧部6相对设置,而集尘过滤装置的风机3朝向第一侧部5设置,电源模块1朝向第二侧部6设置,从而风机3和电 源模块1设置在手柄2的两侧,使得除螨仪配重更为均匀,使用时便于拿取,不会一侧太重影响使用体验,且由于除螨仪配重均匀,在使用时整机更加贴合待清洁面,使用效果更好。
具体的说,如图22和图23所示,集尘过滤装置还包括:与风机3连接的过滤器7、套设于过滤器7上的集尘杯8,过滤器7、集尘杯8均与风机3同轴设置。在本实施方式中,风机3的轴线X垂直于手柄2的轴线X,集尘杯8和过滤杯的轴线X也垂直于手柄2的轴线X,集尘杯8和过滤器7在壳体内朝向第二侧部6的方向设置,集尘杯8和过滤器7与电源模块1位于手柄2轴线X的同一侧。由于风机3和过滤器7直接连接,且同轴设置,从而风机3吸风时,风通过过滤器7后到达风机3内的风力损失较小,有利于后期对风机3排出的风的利用。
另外,如图22和图23所示,集尘杯8和电源模块1沿平行于手柄2的轴线X方向相对设置。从而壳体内部各部件排布更为整齐、紧凑。
进一步的,如图22、图23和图24所示,壳体还包括:连接第一侧部5和第二侧部6的底部9;底部9上开设有进风口10,风机3用于通过进风口10产生进入集尘杯8内的气流。
具体的说,如图22、图24和图25所示,底部9上开设有安装槽。除螨仪还包括:滚动设置在安装槽内的滚刷11。滚刷11至少部分与安装槽的槽壁12之间相互隔开形成进风口10,安装槽的槽壁12上开设有连通集尘杯8与进风口10的通风口13。在本实施方式中,安装槽沿风机3的轴线X方向设置,滚刷11设置在安装槽的两端,也沿风机3的轴线X设置,使用除螨仪时,滚刷11可在安装槽内滚动,拍打待清洁面。滚刷11与安装槽的槽壁12分开的区域形成进风口10。集尘杯8朝向安装槽的一侧上有开口,开口与通风口13之间通过连接通道相连接。风机3工作下,风从进风口10进入,通过通风口13和进口进入到集尘杯8内。风在集尘杯8内通过过滤器7过滤后,进入到风机3内,从风机3的出风口排出。除螨仪还包括多个管路结构,第一侧部5和第二侧部6上均开有出排风口,各排风口均通过管路结构与风机3的出风口相连通,从而实现将风机3内的风排出。
进一步的,如图22、图24和图25所示,除螨仪还包括:驱动装置14,用于驱动滚刷11转动。驱动装置14在壳体内朝第一侧部5的方向设置。从而让除螨仪的配重更为均匀。驱动装置14包括电机和与电机的主轴相连的驱动轴,驱动轴与滚轮相连,电机带动驱动轴转动,驱动带动滚轮转动。另外,风机3设置在第一侧部5上,电源模块1设置在第二侧部6上。从而风机3固定在第一侧部5上,电源模块1固定在第二侧部6,让除螨仪两侧可平稳的与待清洁面压持。
优选的,如图22所示,第一侧部5的头端至第二侧部6的尾端之间的连线为壳体的对角线,风机3和电源模块1沿对角线朝着彼此相互远离的方向进行设置。从而使得除螨仪的配重更为均衡,除螨仪两侧可平稳的与待清洁面压持。
另外,也可以是,风机3和电源模块1沿垂直于手柄2的轴线X方向相对设置。
本申请的其他实施方式涉及一种除螨仪。在本实施方式中,风机的轴线平行于手柄的轴线,集尘杯和电源模块沿垂直于手柄的轴线方向相对设置。也就是说,集尘过滤装置和电源模块位于手柄的轴线两侧,此时,风机和电源模块也是位于手柄的轴线两端,除螨仪的配重一样得到合理分配。
本领域的普通技术人员可以理解,上述各实施方式是实现本申请的具体实施例,而在实际应用中,可以在形式上和细节上对其作各种改变,而不偏离本申请的精神和范围。

Claims (12)

  1. 一种除螨仪的导流结构,其特征在于,包括设置在除螨仪的壳体(2)内的导流器,所述壳体(2)内形成用于容纳除螨仪的气流发生单元的第一腔体(21)和至少用于容纳除螨仪的发热源(6)的第二腔体(22),所述导流器包括:
    冷风管路组件(4),与所述气流发生单元(1)的出风侧连通,所述冷风管路组件(4)用于将由所述气流发生单元(1)所产生的部分气流送入所述第二腔体(22)内,对收纳于所述第二腔体(22)内的发热源(6)进行冷却,所述壳体(2)对应所述第二腔体(22)的部位至少具有一个第一出风侧(8),所述第一出风侧(8)用于排出由所述冷风管路组件送入所述第二腔体(22)内的气流;和
    热风管路(5),所述热风管路至少有部分设置于所述第二腔体(22)内,用于收纳并固定除螨仪的加热元件,所述壳体(2)对应所述第二腔体(22)的部位还具有与所述热风管路(5)连接的第二出风侧(9),所述热风管路(5)还与所述气流发生单元(1)的出风侧连通,用于将所述气流发生单元(1)所产生的部分气流直接通过所述第二出风侧(9)排出所述壳体(2)外。
  2. 根据权利要求1所述的除螨仪的导流结构,其特征在于,所述导流器还包括进气管路(3),分别与所述气流发生单元(1)的出风侧、所述冷风管路组件(4)和所述热风管路(5)连接。
  3. 根据权利要求2所述的除螨仪的导流结构,其特征在于,所述冷风管路组件(4)包括至少一根冷风管路,
    各所述冷风管路均与所述进气管路(3)连接,所述气流发生单元(1)产生的气流经过各所述冷风管路从所述第一出风侧(8)排出所述壳体(2)外;或者
    当所述冷风管路为多根时,其中一根所述冷风管路与所述进气管路(3)连接,其余所述冷风管路沿预设方向依次排列设置,且所述气流发生单元(1)产生的气流依次经过各所述冷风管路后从所述第一出风侧(8)排出所述壳体(2)外。
  4. 根据权利要求3所述的除螨仪的导流结构,其特征在于,各所述冷风管路均与所述进气管路(3)连接,所述第一出风侧(8)的数量和所述冷风管路的数量均与所述发热源(6)的数量相同,并一一对应,且各所述冷风管路的出风口均与各自所对应的出风侧彼此相对,且各所述发热源(6)均设置在对应的所述冷风管路的出风口与对应的所述第一出风侧(8)之间。
  5. 根据权利要求3所述的除螨仪的导流结构,其特征在于,所述冷风管路为多根,其中一根所述冷风管路与所述气流发生单元(1)的出风侧连接,其余所述冷风管路沿预设方 向依次排列设置,所述冷风管路的数量还与所述发热源(6)的数量相同;且
    沿所述预设方向的最后一根所述冷风管道的出风口与所述第一出风侧(8)相对设置,且其中一个所述发热源(6)设置于该冷风管道的出风口与所述第一出风侧(8)之间,且沿所述预设方向的任意相邻两根所述冷风管道之间均设有一个所述发热源(6)。
  6. 根据权利要求1所述的除螨仪的导流结构,其特征在于,所述气流发生单元(1)的出风侧的风量大于所述第一出风侧(8)的风量,所述气流发生单元(1)的出风侧的风量大于所述第二出风侧(9)的风量。
  7. 一种除螨仪的导流结构,其特征在于,包括设置在除螨仪的壳体(2)内的导流器,所述壳体(2)内形成用于容纳除螨仪的气流发生单元(1)的第一腔体(21)和用于容纳除螨仪的发热源(6)的第二腔体(22),所述导流器包括:
    冷风管路组件(4),与所述气流发生单元(1)的出风侧连通,所述冷风管路组件(4)用于将由所述气流发生单元(1)所产生的部分气流送入所述第二腔体(22)内,对收纳于所述第二腔体(22)内的发热源(6)进行冷却;和
    热风管路(5),设置于所述第二腔体(22)内,用于收纳并固定除螨仪的加热元件(7),所述壳体(2)对应所述第二腔体(22)的部位还具有与所述热风管路(5)连接的出风侧,所述热风管路(5)用于将被送入所述第二腔体(22)内的气流通过所述出风侧排出所述壳体(2)外,且所述出风侧所排出的气流为已对所述发热源(6)进行冷却后的气流。
  8. 根据权利要求7所述的除螨仪的导流结构,其特征在于,所述导流器还包括进气管路(3),分别与所述气流发生单元(1)的出风侧、所述冷风管路组件(4)连接。
  9. 根据权利要求8所述的除螨仪的导流结构,其特征在于,所述冷风管路组件(4)包括至少一根冷风管路,其中一根所述冷风管路与所述进气管路(3)连接,另有一根所述冷风管路与所述热风管路(5)相连,其余所述冷风管路沿预设方向依次排列设置,且所述气流发生单元(1)产生的气流依次经过各所述冷风管路后进入所述热风管路(5),并经所述出风侧排出所述壳体(2)外。
  10. 根据权利要求9所述的除螨仪的导流结构,其特征在于,所述冷风管路为多根,其中一根所述冷风管路与所述气流发生单元(1)的出风侧连接,其余所述冷风管路沿预设方向依次排列设置,所述冷风管路的数量还与所述发热源(6)的数量相同;且
    沿所述预设方向的最后一根所述冷风管道的出风口与所述热风管路(5)相对设置,且其中一个所述发热源(6)设置于该冷风管道的出风口与所述热风管路(5)之间,且沿所述预设方向的任意相邻两根所述冷风管路之间均设有一个所述发热源(6)。
  11. 一种除螨仪,包括:壳体(2)、设置于所述壳体(2)内的气流发生单元(1)和 发热源(6),其特征在于,还包括权利要求1至6中任意一项所述的导流结构。
  12. 一种除螨仪,包括:壳体(2)、设置于所述壳体(2)内的气流发生单元(1)和发热源(6),其特征在于,还包括权利要求7至10中任意一项所述的导流结构。
PCT/CN2020/113576 2019-09-09 2020-09-04 除螨仪的导流结构及除螨仪 Ceased WO2021047455A1 (zh)

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CN201910847806.7A CN112450795A (zh) 2019-09-09 2019-09-09 一种除螨吸尘器
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