EP3239072A1 - Dispositif de retenue de récipient - Google Patents

Dispositif de retenue de récipient Download PDF

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Publication number
EP3239072A1
EP3239072A1 EP17168219.8A EP17168219A EP3239072A1 EP 3239072 A1 EP3239072 A1 EP 3239072A1 EP 17168219 A EP17168219 A EP 17168219A EP 3239072 A1 EP3239072 A1 EP 3239072A1
Authority
EP
European Patent Office
Prior art keywords
container
guide rail
guide pin
retaining element
retaining
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.)
Granted
Application number
EP17168219.8A
Other languages
German (de)
English (en)
Other versions
EP3239072B1 (fr
Inventor
Marco NEUCHEL
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.)
Zoeller Kipper GmbH
Original Assignee
Zoeller Kipper GmbH
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
Application filed by Zoeller Kipper GmbH filed Critical Zoeller Kipper GmbH
Priority to PL17168219T priority Critical patent/PL3239072T3/pl
Publication of EP3239072A1 publication Critical patent/EP3239072A1/fr
Application granted granted Critical
Publication of EP3239072B1 publication Critical patent/EP3239072B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F3/00Vehicles particularly adapted for collecting refuse
    • B65F3/02Vehicles particularly adapted for collecting refuse with means for discharging refuse receptacles thereinto
    • B65F3/04Linkages, pivoted arms, or pivoted carriers for raising and subsequently tipping receptacles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F3/00Vehicles particularly adapted for collecting refuse
    • B65F3/02Vehicles particularly adapted for collecting refuse with means for discharging refuse receptacles thereinto
    • B65F2003/0293Means mounted on the vehicle for supporting the refuse receptacle in the tipping position

Definitions

  • the invention relates to a device for retaining containers to be emptied, in particular garbage containers of different size and shape, while tipping into the pouring opening of a collecting container, in particular a collecting container of a refuse collection vehicle, with at least one movable in the pouring opening retaining element, with an attacking on the retaining element Drive device which is adapted to selectively move the retaining element at least into a start position releasing the pouring opening and into a retaining position in which the retaining element acts on the container and prevents it from tipping over, with a controller connected to the drive device for outputting control signals to the drive device is and with at least one laterally of the pouring opening on a supporting structure of the device or a side wall of the collecting container of the shape arranged guide rail, that the guide pin during tipping with the guide rail in contact and / or is guided along this, wherein the lid performs an opening movement.
  • the generic container restraint device is in the patent application DE 102 21 828 A1 described. It is equipped with a signal generator, which is connected to the drive device and outputs a signal to the drive device for releasing the retaining element during tilting at a predetermined container position or after a predetermined period of time.
  • a Hebeund tilting device with pallet truck and swivel drive device is regularly provided.
  • the swivel drive device then includes, for example, a rotary encoder as a signal generator.
  • Such lifting and tilting devices are passively and / or actively adaptable to a variety of different container types and sizes designed. This does not apply to the previously known retaining devices, which always perform the same movement practically independent of the respective container type and the container size.
  • the example in FIG DE 102 21 828 A1 described container with sliding cover reference.
  • the sliding lid is opened in such a way that it partly covers the container wall at the top in the tilting position.
  • the lid protrudes into the travel path of the retaining element from the starting position into the retaining position, so that the retaining element does not act on the container wall but on the opened sliding cover, when it is triggered by the signal transmitter in its retaining position, see also below FIG. 1 ,
  • the holding force for retaining the container is therefore introduced into the sliding cover, for which this is not designed regularly.
  • the cover deforms elastically when starting and pressing the retaining element, in the less favorable case, it deforms plastically and can even, in particular with repeated use, break.
  • a container restraint device which has a cylinder-piston drive and is coupled to a light barrier. Interrupts a not compatible with the container restraint because too large container, the photocell, this interruption triggers the cylinder-piston drive, the kwen 29wen the container restraint from its retaining position into a release position for the pouring.
  • Object of the present invention is to eliminate the above disadvantages of the generic container restraint device.
  • the invention is achieved by means of a device according to claim 1.
  • the device mentioned above has according to the invention a arranged in the pivoting range of the Einkippterrorism the container signal generator, which is adapted to be triggered by a guide pin on the sliding cover of the container during tipping and then output a deactivation signal to the controller, the signal transmitter a touch-sensitive or a contact-free sensor, which is arranged in the region of the guide rail, that the guide pin interacts directly or indirectly with the sensor when in contact with and / or when traveling along the guide rail, wherein the controller is further set, upon receipt of the deactivation signal, a control signal for movement of the retaining element in the retaining position R to suppress.
  • the object is further achieved by a system according to claim 7, consisting of the device according to the invention as described above and a refuse container having a sliding lid on which at least one guide pin is arranged laterally.
  • the drive device comprises in an advantageous embodiment, such as the known container restraint device described above, for example, a pressure cylinder and a clamping device, which are arranged so that the pressure medium cylinder pivots the retaining element from a lower rest position to the start position and thereby biases the oppositely acting tensioning device. If the control signal is output by the controller, the pressure medium cylinder is depressurized and releases the retaining element so that the prestressed tensioning device can move the retaining element into the retaining position.
  • the drive device may comprise a pressure medium cylinder acting in both directions of movement, which holds the retaining element both from the rest position into the start position and vice versa moved from the start position to the retention position.
  • the control signal to the drive device is delivered as in the known restraint device upon reaching a predetermined container position, wherein the container position is substantially independent of the container size. So far, it has been assumed that a complex container detection system is dispensable in this case.
  • the invention now provides a signal generator, which outputs a deactivation signal to the controller when a certain feature of the container, namely the guide pin on the sliding cover, is present, with which the movement of the retaining element is deactivated in the retaining position by the control signal this movement of the retaining element otherwise triggers, is suppressed.
  • "Suppress" in the sense of the invention includes that the control signal for moving the retaining element, which is output, for example, from a rotary encoder of the swivel drive device, although received by the controller, but is not processed by the simultaneous application of the deactivation signal.
  • the guide rails for automatically opening the lid are basically known from the prior art, as the DE 102 21 828 A1 in Figure 5 shows. They are usually arranged together with the suspension of the retaining element laterally of the pouring opening on a supporting structure of the device or a side wall of the collecting container.
  • the guide rail describes a curved path along which slides the guide pin of the sliding cover of the container while the container is tipped into the dumping.
  • the curved path is shaped so that the lid during this Movement is forced open.
  • the invention provides for the first time that the guide rail is brought into contact with the signal transmitter or sensor in that the sensor is arranged in the region of the guide rail, that the guide pin upon contact with and / or when traveling along the guide rail directly or indirectly with the sensor interacts.
  • this can be done, for example, by placing the sensor adjacent the guide rail and detecting the passage of the guide pin contactless (e.g., optically or capacitively) or directly touching (e.g., by means of a roller sensor) a mechanical sensor.
  • the sensor adjacent the guide rail and detecting the passage of the guide pin contactless (e.g., optically or capacitively) or directly touching (e.g., by means of a roller sensor) a mechanical sensor.
  • the guide rail is resiliently attached to the support structure by a limited amount in one direction, which allows a limited deflection movement of the guide rail in contact with the guide pin and / or when driving along the guide pin.
  • the sensor is then preferably arranged so that it comes into contact with the guide rail in this evasive movement.
  • the guide rail is pivotally connected to the support structure about a horizontal axis oriented perpendicular to its longitudinal direction and the sensor is arranged at a distance from the axis on the rear side of the guide rail facing away from the contact side with the guide pin.
  • the guide rail in this arrangement pivots in contact or when driving along the guide pin in the direction of the sensor and touches it.
  • This refinement is advantageously further developed in that the guide rail can be pressed resiliently against a restoring force in the direction of the sensor, the restoring force being particularly preferably adjustable.
  • the elastic restoring force attenuates on the one hand the evasive movement of the guide rail. It can also serve to define a minimum force at which contact with the sensor should occur. This minimum force is in turn correlated via the lever of the guide rail with the position of the guide pin. Due to the advantageous adjustment possibility of the restoring force, the process reliability of the switching operation for deactivating the movement of the retaining element into the retaining position R can be increased.
  • FIG. 1 the Einkipp ein a large container 10 is shown with sliding cover 12.
  • the container is lifted by means of a lift truck 14 and a pivoting drive device 16 and tilted about a pivot axis 18.
  • the container is emptied into the pouring opening 20 of a collecting container 22 of a refuse collection vehicle, not shown.
  • the retaining device 24 comprises a retaining element 26 and a drive device 28.
  • the retaining element essentially consists in turn of a stop bar 30 which may be padded to avoid noise and material protection, and a lever arm 32 on which the drive device in the form of a clamping device 34 and a pressure medium cylinder 36 attacks.
  • the pressure medium cylinder 36 pivots the retaining element 26 initially from a lower rest position into the upper starting position, in which the retaining element 26 and in particular the stop bar 30 release the pouring opening.
  • a guide rail 40 is arranged on a supporting structure or a side wall of the collecting container 22 such that a guide pin 42 on the sliding cover 12 of the container 10 comes into contact with the guide rail 40 during tipping and is guided along it.
  • the cover 12 forcibly performs an opening movement.
  • the sliding lid during emptying of the container 10 is such opened so that it partially covers the container wall lying in the Einkipphren above and protrudes into the travel of the retaining element 26 or more precisely the stop bar 30. Therefore, in this container 10, the retaining element 26 does not engage with the container wall, but actually with the opened sliding cover 12, causing the problems mentioned at the outset.
  • FIGS. 2a to 2c illustrated in three different tilt positions.
  • the large container 10 with sliding cover 12 corresponds to the FIG. 1 ,
  • the sliding cover 10 is pivotally suspended on both sides of the container 10 on pin 44.
  • the guide rail 50 is arranged on a support structure 54.
  • the guide pins 42 move in the combined stroke-tilting movement and the simultaneous positive opening of the lid 12 on the dashed line curve 52.
  • the large container 10 is raised and tilted by about 80 ° from the upright position in the direction of the pouring opening, not shown here.
  • the guide pin 42 was threaded when tilting the container 10 in the guide rail 50, so that the sliding cover 12 has already been swung in the lower pivot position shown by a small gap.
  • the container 10 is further tilted in an angular position of about 100 ° relative to the upright position. Due to the positive guidance by the guide rail 50, the sliding cover 12, driven by the lifting / tilting movement of the container 10, further opened until the container 10 in the Einkipp ein according to Figure 2c has reached an inclination of about 135 ° relative to the vertical and the sliding cover 12 is fully open. Of the Guide pin 42 has reached the upper end point of the curve 52, at which ends approximately the guide rail 50, where the signal generator 56 is located.
  • the signal generator 56 is during the basis of FIGS. 2a to 2c triggered Einklippterrorism and outputs a deactivation signal to a controller, not shown, as based on FIG. 3 is explained.
  • the guide rail 50 is, as already stated above, arranged laterally of the pouring opening 20 on a support structure 54.
  • the support structure in the embodiment shown can in turn be fastened by means of a flange 55 to a side wall of a collecting container, not shown. More precisely, the guide rail 50 is pivotable about a horizontal, oriented perpendicular to its longitudinal axis axis 62 and thus "flexible" in the meaning of the claims attached to the support structure 54 and articulated.
  • the articulation point 62 are located substantially at the beginning of the guide rail 50, based on the direction of movement of the guide pin 42 in the Einkippmony the container 10, and the signal generator 56 at the end of the guide rail 50th
  • the guide rail 50 has a degree of freedom of movement about the axis 62 and can, at least to a limited extent, execute an evasive movement in the plane of representation when the guide pin 42 contacts or when the guide pin 42 moves along the guide rail 50.
  • the signal generator 56 has a sensor 58 on the rear side 53 of the guide rail 50 facing away from the guide side 51 and comes into contact with the guide rail 50 when it makes the deflection movement when it comes into contact with the guide pin 42 or when the guide pin 42 passes.
  • the signal generator 56 further has a restoring element 60, which is likewise located on the rear side 53 facing away from the guide side 51 at the upper end of the guide rail 50.
  • the return element 60 is in Case shown here, a compression spring, against the restoring force of the guide rail 50 is pressed resiliently in contact with the guide pin 42 in the direction of the sensor 58.
  • the guide rail 50 and the return element 60 are in the enlarged section of FIG. 4a shown in the rest position, in which the sensor 58 does not trigger.
  • the restoring element 60 is prestressed and the pressure force can be adjusted by the degree of prestressing.
  • the Andschreibmoment of the guide pin 42 can be adjusted, in which the sensor 58 is activated.
  • the position along the curve 52 can be adjusted, in which the restoring force of the return element 60 is overcome to trigger the sensor 58. This position is in FIG. 4b shown.
  • the guide rail 50 can also be resilient in itself and rigidly connected to the support structure 54 in the region of its lower end. This also represents a variant of the "yielding" attachment in the sense of the claims.
  • Both the elastic restoring force of the restoring element and that of the resilient guide rail dampens the deflection movement of the guide rail on contact with the guide pin.
  • a stop or a separate damper element on the back 53 of the guide rail 50 may be arranged, which limits the deflection movement of the guide rail to a maximum deflection or that absorbs the impact energy of the guide rail in contact with the guide pin and the sensor 58 before too large mechanical Protects load.
  • a retaining element 64 in turn essentially consisting of a stop bar 66, which may be padded to avoid noise and material protection, and a lever arm 68 shown.
  • the lever arm 68 is pivoted to the support structure 54 about the axis 70.
  • opposite end 72 engages in comparison with FIG. 1 alternative drive means 74 in the form of a double-acting pressure medium cylinder 76 at.
  • the cylinder 76 is fully retracted and the retaining member 64 is pivoted to a rest position. In operation, the cylinder 76 extends and pivots the retaining member 64 as described above in the overhead start position to release the Ein forö Samuel.
  • the cylinder retracts from the starting position by a certain amount.
  • a pressure limiter to prevent damage to the container.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Refuse Receptacles (AREA)
  • Closures For Containers (AREA)
EP17168219.8A 2016-04-27 2017-04-26 Dispositif de retenue de récipient Active EP3239072B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL17168219T PL3239072T3 (pl) 2016-04-27 2017-04-26 Urządzenie przytrzymujące pojemnik

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102016107825.5A DE102016107825A1 (de) 2016-04-27 2016-04-27 Behälterrückhaltevorrichtung

Publications (2)

Publication Number Publication Date
EP3239072A1 true EP3239072A1 (fr) 2017-11-01
EP3239072B1 EP3239072B1 (fr) 2019-04-24

Family

ID=58632891

Family Applications (1)

Application Number Title Priority Date Filing Date
EP17168219.8A Active EP3239072B1 (fr) 2016-04-27 2017-04-26 Dispositif de retenue de récipient

Country Status (6)

Country Link
EP (1) EP3239072B1 (fr)
DE (1) DE102016107825A1 (fr)
DK (1) DK3239072T3 (fr)
ES (1) ES2734811T3 (fr)
PL (1) PL3239072T3 (fr)
PT (1) PT3239072T (fr)

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE29907954U1 (de) 1999-05-04 1999-09-02 OTTO Entsorgungssysteme GmbH, 86179 Augsburg Hub-Kippvorrichtung zum Entleeren von Müllbehältern
DE10221828C1 (de) 2002-05-10 2003-06-05 Zoeller Kipper Behälterrückhaltevorrichtung

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE29907954U1 (de) 1999-05-04 1999-09-02 OTTO Entsorgungssysteme GmbH, 86179 Augsburg Hub-Kippvorrichtung zum Entleeren von Müllbehältern
DE10221828C1 (de) 2002-05-10 2003-06-05 Zoeller Kipper Behälterrückhaltevorrichtung

Also Published As

Publication number Publication date
DK3239072T3 (da) 2019-07-22
DE102016107825A1 (de) 2017-11-02
PT3239072T (pt) 2019-07-16
ES2734811T3 (es) 2019-12-12
PL3239072T3 (pl) 2019-09-30
EP3239072B1 (fr) 2019-04-24

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