CN220371018U - Reation kettle is used in raw materials production and processing - Google Patents

Reation kettle is used in raw materials production and processing Download PDF

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Publication number
CN220371018U
CN220371018U CN202321439559.5U CN202321439559U CN220371018U CN 220371018 U CN220371018 U CN 220371018U CN 202321439559 U CN202321439559 U CN 202321439559U CN 220371018 U CN220371018 U CN 220371018U
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wall surface
bearing
barrel
staving
barrel body
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CN202321439559.5U
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宫威
周涵
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Fushun Longye Chemical Co ltd
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Fushun Longye Chemical Co ltd
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Abstract

The utility model discloses a reaction kettle for raw material production and processing, which comprises a first barrel body, wherein two pairs of support columns are arranged on the lower wall surface of the first barrel body, first circular through holes are formed in the upper wall surface and the lower wall surface of the first barrel body, an annular groove is formed in one side, close to the first circular through holes, of the upper wall surface of the first barrel body, an annular chute is arranged on the lower wall surface of the inner part of the annular groove, a barrel cover mechanism is arranged in the first chute, two pairs of second rectangular fixed blocks are arranged on the side wall surface of the inner part of the first barrel body, a second barrel body is arranged on the side wall surface of the other end of the two pairs of second rectangular fixed blocks, a raw material mixing mechanism is arranged in the second barrel body, a discharging mechanism is arranged on the position, close to the lower end opening of the second barrel body, of the lower wall surface of the inner part of the first barrel body, and a cooling mechanism is arranged in the first barrel body.

Description

Reation kettle is used in raw materials production and processing
Technical Field
The utility model relates to the technical field of reaction kettles, in particular to a reaction kettle for raw material production and processing.
Background
The reaction kettle is widely applied to petroleum, chemical industry, rubber, pesticides, dyes, medicines and foods, the materials of the reaction kettle are carbon-manganese steel, stainless steel, zirconium, nickel-based (Ha, monel and Kang Nie) alloy and other composite materials, the mixing of the explosives is carried out by utilizing the reaction kettle, various reaction kettles exist in the prior art, such as a novel utility model in China with the patent number of CN201920463208.5, an explosive mixing device in the reaction kettle is disclosed, the explosive mixing device in the reaction kettle comprises a kettle body and a kettle cover connected with the upper end of the kettle body, a motor is fixedly arranged at the upper end of the kettle cover, the tail end of an output shaft of the motor penetrates through the kettle cover and is fixedly connected with a rotating shaft, and stirring blades are uniformly distributed on the rotating shaft.
This kind of reation kettle is in the use, start circulating pump, refrigeration water tank, can be with the low temperature cooling water that refrigeration water tank produced, in the cooling ring pipe is gone into to the circulating pump to at the internal wall internal circulation of cauldron, in circulating to the refrigeration water tank through the outlet pipe, can reduce the cooling to the cauldron body, avoid the cauldron body when explosive mixing stirs, the cauldron body temperature rises, but when stirring, the inside agitating unit drive direction of reation kettle is comparatively single, thereby can only carry out unidirectional stirring operation, the circumstances of stirring inhomogeneous or caking appears easily after the stirring finishes, thereby just need this kind of reation kettle's use.
Disclosure of Invention
In order to achieve the above purpose, the utility model is realized by the following technical scheme: the utility model provides a reation kettle is used in raw materials production and processing, includes first staving, two pairs of support columns are installed to first staving lower wall, first circular through-hole has all been seted up to first staving upper wall and lower wall, annular groove and annular groove inside lower wall are installed to one side that first staving upper wall is close to first circular through-hole, annular groove internally mounted has bung mechanism, two pairs of second rectangle fixed blocks and two pairs of second rectangle piece other end lateral wall are installed to first staving inside lateral wall, second staving internally mounted has raw materials mixing mechanism, first staving inside lower wall is close to second staving lower extreme open-ended position on install discharge mechanism, first staving internally mounted has cooling mechanism.
Preferably, the barrel cover mechanism comprises a sliding block, the sliding block is installed inside an annular sliding groove, a first rectangular fixing block is installed on the upper wall surface of the sliding block, a concave plate body is hinged to the upper wall surface of the first rectangular fixing block, a plurality of first rectangular through holes are formed in the cross section of one end of the annular groove, which is L-shaped, close to the wall surface of a first circular through hole, a T-shaped rod body is inserted into the upper wall surface of the concave plate body, a thread groove is formed in the outer wall surface of the end of the T-shaped rod body, a cross rod body is installed on the lower wall surface of the T-shaped rod body, and a barrel cover is installed on the upper wall surface of a second barrel body in a movable inserting mode.
Preferably, the raw material mixing mechanism comprises a first rod body, the first rod body is installed inside the second barrel body, the electric turntable is installed on the lower wall surface of the first rod body close to the center position, a first stirring plate body is installed on the lower wall surface of the electric turntable, a first bearing is sleeved on the lower wall surface of the first stirring plate body, a second pipe body is sleeved outside the first bearing, the second pipe body is installed on the side wall surface of the second barrel body close to the lower end opening, a first box body is installed on the lower wall surface of the first barrel body and is communicated with the second pipe body, a second bearing is inserted on the two side wall surfaces of the first rod body close to the electric turntable and a second stirring plate body is inserted on the two side wall surfaces of the first rod body, a pair of third bearings are sleeved on the lower wall surface of the second pipe body, a second motor is installed on the inner portion of the first box body, a fourth motor is sleeved on the upper wall surface of the second box body, a fourth motor is sleeved on the fourth motor tooth groove is formed on the wall surface of the second box body, and a driving plate body is arranged on the first end wall surface of the second stirring plate body and the second stirring plate body is sleeved on the first end wall surface of the second motor groove.
Preferably, the discharging mechanism comprises a second box body, the second box body is inserted on the lower wall surface of the first barrel body, a first motor is installed in the second box body, a second rod body is installed on the side wall surface of the driving end of the first motor, a fifth bearing is sleeved at the other end of the second rod body and is inserted on the side wall surface of the outlet end of the second barrel body, and a circular plate body is sleeved on the second rod body and is positioned in the outlet end of the second barrel body.
Preferably, the cooling mechanism comprises a spiral tube body, the spiral tube body is sleeved on the outer wall surface of the second barrel body, two ports of the spiral tube body are respectively inserted on the outer wall surface of the first barrel body, a first tube body is installed at one end of the spiral tube body, an electric fan is installed inside the first tube body and close to the opening end, a concave box body is installed inside the first tube body, a water absorbing sponge is installed inside the concave box body, a third rectangular through hole is formed in the position, close to the concave box body, of the first tube body, and a sliding door is hinged inside the third rectangular through hole.
Advantageous effects
The utility model provides a reaction kettle for raw material production and processing, which can be used for closing and sealing equipment through a barrel cover mechanism, shaking, scattering and stirring raw materials in the equipment through a raw material mixing mechanism, cooling an inner container in the equipment through a cooling mechanism during stirring, and realizing a protection and buffering effect through a first barrel body under the condition that the raw materials are accidentally exploded due to a double-layer design, and discharging through a discharging mechanism after the stirring is finished
Drawings
Fig. 1 is a schematic diagram of a front view structure of a reaction kettle for raw material production and processing in the utility model.
Fig. 2 is a schematic diagram of the internal structure of a first barrel of the reaction kettle for raw material production and processing of the utility model.
Fig. 3 is a schematic diagram of a second motor structure of the reaction kettle for raw material production and processing.
In the figure: 1. a first tub; 2. a first tube body; 3. a spiral tube body; 4. a support column; 5. a first rectangular fixed block; 6. a slide block; 7. a concave plate body; 8. a T-shaped rod body; 9. a cross rod body; 10. a barrel cover; 11. an electric fan; 12. a concave box body; 13. a water absorbing sponge; 14. a second tub; 15. a first rod body; 16. an electric turntable; 17. a first stirring plate body; 18. a second stirring plate body; 19. a second tube body; 20. a first case; 21. a second case; 22. a first motor; 23. a circular plate body; 24. a second rod body; 25. a second motor; 26. a belt body.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-3, the present utility model provides a technical solution: the utility model provides a reation kettle is used in raw materials production and processing, includes first staving 1, two pairs of support columns 4 are installed to first staving 1 lower wall, first circular through-hole has all been seted up to first staving 1 upper wall and lower wall, annular groove and annular groove inside lower wall are installed to first staving 1 upper wall near one side of first circular through-hole, annular groove internally mounted has bung mechanism, two pairs of second rectangle fixed blocks and two pairs of second rectangle piece other end lateral wall are installed to first staving 1 inside lateral wall, second staving 14 internally mounted has raw materials mixing mechanism, first staving 1 inside lower wall is close to second staving 14 lower extreme open-ended position on install discharge mechanism, first staving 1 internally mounted has cooling mechanism.
At this time, explosive raw materials to be mixed are placed in the second barrel body 14, at this time, the barrel cover 10 is inserted onto the upper wall surface of the second barrel body 14 by moving the concave plate body 7 on the first rectangular fixing block 5, one end of the concave plate body 7 is inserted into the annular groove through the first rectangular through hole, at this time, the concave plate body 7 is fixed with the upper wall surface of the first barrel body 1 through the linkage of the sliding block 6 and the annular sliding groove, at this time, the T-shaped rod body 8 is screwed, as the outer wall surface of the barrel cover 10 and the inner wall surface of the open end of the second barrel body 14 are provided with thread grooves, the open end of the second barrel body 14 is closed through the linkage of the T-shaped rod body 8, the barrel cover 10 and the cross rod body 9, at this time, the second motor 25 in the first box body 20 and the electric turntable 16 on the lower wall surface of the first rod body 15 are started, the first stirring plate 17 and the pair of second stirring plate bodies 18 are driven to rotate, thereby the first stirring plate 17 is driven to rotate downwards and the pair of second pipe bodies 19 is driven to rotate upwards, so that the raw materials in the second barrel body 14 are fully stirred, at the moment, water is poured into the concave box body 12 by opening the sliding door, at the moment, the electric fan 11 is started, so that the external air is discharged into the spiral pipe body 3, at the moment, the air is blown onto the water absorbing sponge 13, thereby realizing the sublimation of the water, realizing the cooling effect, and the spiral pipe body 3 is wound on the second barrel body 14, thereby realizing the cooling of the second barrel body 14, preventing the dangerous condition caused by high temperature during stirring, at the moment, the material is required to be discharged, the first motor 22 in the second box body 21 can be driven, the rotating circular plate body 23 at the driving end of the first motor 22 is driven to rotate, thereby discharging the stirred raw materials inside the second tub 14.
Further, the barrel cover mechanism comprises a sliding block 6, the sliding block 6 is arranged inside the annular sliding groove, a first rectangular fixing block 5 is arranged on the upper wall surface of the sliding block 6, a concave plate body 7 is hinged to the upper wall surface of the first rectangular fixing block 5, a plurality of first rectangular through holes are formed in the cross section of one end of the annular groove in an L shape, the annular groove is close to the first circular through hole wall surface, a T-shaped rod body 8 is inserted into the upper wall surface of the concave plate body 7, a thread groove is formed in the outer wall surface of the rod body end of the T-shaped rod body 8, a cross rod body 9 is arranged on the lower wall surface of the T-shaped rod body 8, and a barrel cover 10 is arranged on the upper wall surface of the second barrel body 14 in a movable inserting mode.
At this time, explosive materials to be mixed are placed inside the second barrel body 14, at this time, the first rectangular fixing block 5 is moved to form the concave plate body 7, so that the barrel cover 10 is inserted on the upper wall surface of the second barrel body 14, one end of the concave plate body 7 is inserted into the annular groove through the first rectangular through hole, at this time, the concave plate body 7 is fixed on the upper wall surface of the first barrel body 1 through the linkage of the sliding block 6 and the annular sliding groove, at this time, the T-shaped rod body 8 is screwed, and the threaded grooves are formed in the outer wall surface of the barrel cover 10 and the inner wall surface of the open end of the second barrel body 14, so that the open end of the second barrel body 14 is closed through the linkage of the T-shaped rod body 8, the barrel cover 10 and the cross-shaped rod body 9.
Further, the raw materials mixing mechanism includes first body of rod 15, first body of rod 15 installs inside second staving 14, electric turntable 16 is installed near central point in the wall under the first body of rod 15, first stirring plate body 17 is installed to the wall under the electric turntable 16, first bearing and the outside cover of first bearing are equipped with second body of pipe 19 under the wall cover under the first stirring plate body 17, second body of pipe 19 is installed on the wall that second staving 14 is close to the lower extreme open-ended, first box 20 and first box 20 are linked together with second body of pipe 19 are installed to the wall under the inside portion of first staving 1, all insert second bearing and a pair of second bearing inside all insert second stirring plate body 18 on the wall that first body of rod 15 is close to electric turntable 16, a pair of the other end of second stirring plate body 18 all has the third bearing to insert on the wall under the inside second body of pipe 19, motor box 20 and second bearing 25 are equipped with the second bearing groove and the inside of second end cover 25, first end 25 are equipped with on the wall 25 and the wall cover is equipped with on the wall of second motor box 20 and second end cover inside 25.
The second motor 25 inside the first casing 20 and the electric turntable 16 on the lower wall surface of the first rod body 15 are started, so that the first stirring plate 17 and the pair of second stirring plates 18 are driven to rotate, the first stirring plate 17 is driven to rotate downwards, the pair of second pipe bodies 19 are driven to rotate upwards, and the raw materials inside the second barrel body 14 are fully stirred.
Further, the discharging mechanism comprises a second box body 21, the second box body 21 is inserted on the lower wall surface of the inner part of the first barrel body 1, a first motor 22 is installed in the second box body 21, a second rod body 24 is installed on the side wall surface of the driving end of the first motor 22, a fifth bearing is sleeved at the other end of the second rod body 24 and is inserted on the side wall surface of the outlet end of the second barrel body 14, and a circular plate body 23 is sleeved on the second rod body 24 and is positioned in the outlet end of the second barrel body 14.
When the materials are required to be discharged, the first motor 22 in the second box body 21 can be driven, so that the rotary circular plate body 23 driven by the driving end of the first motor 22 can be rotated, and the materials stirred in the second barrel body 14 can be discharged.
Further, the cooling mechanism comprises a spiral tube body 3, the spiral tube body 3 is sleeved on the outer wall surface of the second barrel body 14, two ports of the spiral tube body 3 are respectively inserted on the outer wall surface of the first barrel body 1, a first tube body 2 is installed at one end of the spiral tube body 3, an electric fan 11 is installed inside the first tube body 2 near the opening end, a concave box body 12 is installed inside the first tube body 2, a water absorbing sponge 13 is installed inside the concave box body 12, a third rectangular through hole is formed in the position, close to the concave box body 12, of the first tube body 2, and a sliding door is hinged inside the third rectangular through hole.
The electric fan 11 is started at the moment by opening the sliding door to pour water into the concave box body 12, so that external air is discharged into the spiral pipe body 3, and at the moment, the air is blown onto the water absorbing sponge 13, so that the sublimation of the water is realized, the cooling effect is realized, the spiral pipe body 3 is wound on the second barrel body 14, the cooling of the second barrel body 14 is realized, and the dangerous condition caused by high temperature during stirring is prevented.
The detailed connection means are known in the art, and the following mainly describes the working principle and process, and the specific work is as follows.
Examples: at this time, explosive raw materials to be mixed are placed in the second barrel body 14, at this time, the barrel cover 10 is inserted onto the upper wall surface of the second barrel body 14 by moving the concave plate body 7 on the first rectangular fixing block 5, one end of the concave plate body 7 is inserted into the annular groove through the first rectangular through hole, at this time, the concave plate body 7 is fixed with the upper wall surface of the first barrel body 1 through the linkage of the sliding block 6 and the annular sliding groove, at this time, the T-shaped rod body 8 is screwed, as the outer wall surface of the barrel cover 10 and the inner wall surface of the open end of the second barrel body 14 are provided with thread grooves, the open end of the second barrel body 14 is closed through the linkage of the T-shaped rod body 8, the barrel cover 10 and the cross rod body 9, at this time, the second motor 25 in the first box body 20 and the electric turntable 16 on the lower wall surface of the first rod body 15 are started, the first stirring plate 17 and the pair of second stirring plate bodies 18 are driven to rotate, thereby the first stirring plate 17 is driven to rotate downwards and the pair of second pipe bodies 19 is driven to rotate upwards, so that the raw materials in the second barrel body 14 are fully stirred, at the moment, water is poured into the concave box body 12 by opening the sliding door, at the moment, the electric fan 11 is started, so that the external air is discharged into the spiral pipe body 3, at the moment, the air is blown onto the water absorbing sponge 13, thereby realizing the sublimation of the water, realizing the cooling effect, and the spiral pipe body 3 is wound on the second barrel body 14, thereby realizing the cooling of the second barrel body 14, preventing the dangerous condition caused by high temperature during stirring, at the moment, the material is required to be discharged, the first motor 22 in the second box body 21 can be driven, the rotating circular plate body 23 at the driving end of the first motor 22 is driven to rotate, thereby discharging the stirred raw materials inside the second tub 14.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions.

Claims (5)

1. The utility model provides a reation kettle is used in raw materials production and processing, includes first staving (1), its characterized in that, two pairs of support columns (4) are installed to first staving (1) lower wall, first circular through-hole has all been seted up to first staving (1) upper wall and lower wall, annular groove and annular groove inside lower wall have been seted up to one side that first staving (1) upper wall is close to first circular through-hole, annular groove internally mounted has bung mechanism, two pairs of second rectangle fixed blocks and two pairs of second rectangle piece other end lateral wall are installed to first staving (1) inside lateral wall, second staving (14) internally mounted has raw materials mixing mechanism, first staving (1) inside lower wall is close to second staving (14) lower extreme open-ended position on install discharge mechanism, first staving (1) internally mounted has cooling mechanism.
2. The reaction kettle for raw material production and processing according to claim 1, wherein the barrel cover mechanism comprises a sliding block (6), the sliding block (6) is installed inside an annular sliding groove, a first rectangular fixing block (5) is installed on the upper wall surface of the sliding block (6), a concave plate body (7) is hinged to the upper wall surface of the first rectangular fixing block (5), a plurality of first rectangular through holes are formed in one end cross section of the annular groove in an L shape, the annular groove is close to the first circular through hole wall surface, a T-shaped rod body (8) is inserted into the upper wall surface of the concave plate body (7), a thread groove is formed in the outer wall surface of the rod body end of the T-shaped rod body (8), a cross rod body (9) is installed on the lower wall surface of the T-shaped rod body (8), and the barrel cover (10) is movably inserted into the upper wall surface of the second barrel body (14).
3. The reaction kettle for raw material production and processing according to claim 1, wherein the raw material mixing mechanism comprises a first rod body (15), the first rod body (15) is installed inside a second barrel body (14), an electric rotary table (16) is installed on the lower wall surface of the first rod body (15) near the center position, a first stirring plate body (17) is installed on the lower wall surface of the electric rotary table (16), a first bearing is sleeved on the lower wall surface of the first stirring plate body (17) and a second pipe body (19) is sleeved outside the first bearing, the second pipe body (19) is installed on the side wall surface of the second barrel body (14) near the opening of the lower end, a first box body (20) is installed on the lower wall surface of the inner part of the first barrel body (1) and is communicated with the second pipe body (19), a second bearing is inserted on both side wall surfaces of the first rod body (15) near the electric rotary table (16) and a pair of second stirring plates are inserted inside the second bearing, a second bearing is inserted on both side wall surfaces of the first stirring plate body (18) near the electric rotary table and a second bearing is installed on the upper wall surface of the second bearing (20), a second bearing is installed on the upper wall surface of the second bearing plate body (25) near the inner side of the second bearing (20) and a third bearing is installed on the upper wall surface of the second bearing (25) near the inner side of the second bearing body (20), the driving end wall surfaces of the pair of second stirring plate bodies (18) and the second motor (25) are respectively provided with a tooth slot, and the tooth slot ends of the pair of second stirring plate bodies (18) and the second motor (25) are sleeved with a belt body (26).
4. The reaction kettle for raw material production and processing according to claim 1, wherein the discharging mechanism comprises a second box body (21), the second box body (21) is inserted on the lower wall surface of the inner part of the first barrel body (1), a first motor (22) is installed inside the second box body (21), a second rod body (24) is installed on the side wall surface of the driving end of the first motor (22), a fifth bearing is sleeved at the other end of the second rod body (24) and is inserted on the side wall surface of the outlet end of the second barrel body (14), a circular plate body (23) is sleeved on the second rod body (24), and the circular plate body (23) is located inside the outlet end of the second barrel body (14).
5. The reaction kettle for raw material production and processing according to claim 1, wherein the cooling mechanism comprises a spiral tube body (3), the spiral tube body (3) is sleeved on the outer wall surface of the second barrel body (14), two ports of the spiral tube body (3) are respectively inserted on the outer wall surface of the first barrel body (1), the first tube body (2) is installed at one end of the spiral tube body (3), an electric fan (11) is installed inside the first tube body (2) close to the opening end, a concave box body (12) is installed inside the first tube body (2), a water absorbing sponge (13) is installed inside the concave box body (12), a third rectangular through hole is formed in a position, close to the concave box body (12), of the first tube body (2), and a sliding door is hinged inside the third rectangular through hole.
CN202321439559.5U 2023-06-07 2023-06-07 Reation kettle is used in raw materials production and processing Active CN220371018U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321439559.5U CN220371018U (en) 2023-06-07 2023-06-07 Reation kettle is used in raw materials production and processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321439559.5U CN220371018U (en) 2023-06-07 2023-06-07 Reation kettle is used in raw materials production and processing

Publications (1)

Publication Number Publication Date
CN220371018U true CN220371018U (en) 2024-01-23

Family

ID=89572023

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321439559.5U Active CN220371018U (en) 2023-06-07 2023-06-07 Reation kettle is used in raw materials production and processing

Country Status (1)

Country Link
CN (1) CN220371018U (en)

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