Storage device for rice hulling rubber rollers

By designing an automated rice hulling roller storage device, the problems of high labor intensity, low efficiency, and dust pollution during the cleaning and storage of rice hulling rollers have been solved, realizing an efficient and safe storage and retrieval process and improving the working efficiency of the rice hulling machine.

CN223804420UActive Publication Date: 2026-01-16ANHUI ZINAN FOOD CO LTD
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Patent Information

Application Number
CN202520317741.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2026-01-16
Estimated Expiration
2035-02-26

AI Technical Summary

Technical Problem

The existing rice hulling roller cleaning and storage process suffers from high labor intensity, low cleaning efficiency, dust pollution, and cumbersome storage and retrieval, which affects the working efficiency of the rice hulling machine.

Method used

A rice hulling roller storage device was designed, comprising a main frame, storage section, adjustment section, cleaning section, transfer section, and control section. The device employs mechanized methods for cleaning and storage, and utilizes components such as conveyor belts, electric telescopic rods, and vacuum cleaners to achieve automated operation.

Benefits of technology

It significantly reduced labor intensity, improved cleaning efficiency, ensured the closed nature of the cleaning environment, simplified storage and retrieval processes, and significantly improved work efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a rice hulling rubber roller storage device which comprises a main body frame, a storage part, an adjusting part, a cleaning part, a transferring part and a control part, the main body frame comprises a base, a storage seat and a transferring carrier plate, and the storage part comprises a conveying mechanism and a storage box mechanism. The adjusting part comprises a vertical adjusting mechanism, a horizontal adjusting mechanism and a power mechanism, the cleaning part comprises an upward moving mechanism and a cleaning box mechanism, and the transferring part comprises a transferring mechanism and a grabbing mechanism. According to the utility model, the rice hulling rubber roller is mechanically transferred, so that the labor intensity is greatly reduced; the cleaning efficiency is stable and controllable; the cleaning environment is closed, and health of workers is facilitated; manual steps of storage and taking processes are simplified, consumed time is short, and working efficiency is remarkably improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of grain processing machinery, especially relates to a storage device of rice huller rubber roller. BACKGROUND

[0002] In the rice processing process, after the rice cleaning, the huller is used for shelling. The rubber roller is the main component of the huller, and the rubber roller is rotated at different speeds by a pair of elastic rubber rollers, and the two sides of the rice are subjected to extrusion force and friction force, so that the hulls are damaged and separated from the brown rice, so that the shelling purpose is achieved. For example, a polyurethane rubber roller disclosed in Chinese patent CN221753413U includes a rubber roller body and a pressure bearing. The rubber roller body includes a roller body and a polyurethane layer body. The polyurethane layer body is connected with the roller body through a plurality of groups of pressure bearing. The pressure bearing includes a pressure block, a groove and a dispersion groove. Two pressure blocks are symmetrically arranged on the circumferential surface of the roller body. A groove is arranged between the two pressure blocks. A dispersion groove is formed on the side of the two pressure blocks.

[0003] In order to reduce the production of brown rice and brown rice, different hardness of rubber roller is selected according to the different raw materials and production seasons. The replaced rubber roller needs to be cleaned and stored for reuse. At present, manual cleaning and storage are often used. Such method has the following defects:

[0004] Firstly, the labor intensity of manual cleaning is large due to the heavy weight of the rubber roller.

[0005] Secondly, the cleaning efficiency is low, and the open cleaning environment produces dust, which is not conducive to the health of workers.

[0006] Thirdly, the storage and use steps are complicated and time-consuming, which seriously restricts the working efficiency of the huller. UTILITY MODEL CONTENTS

[0007] The utility model provides a kind of storage device of rubber roller, can effectively solve the problem mentioned in background art.

[0008] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0009] A kind of storage device of rubber roller, including main frame, storage part, adjustment part, cleaning part, transfer part and control part.

[0010] Specifically, the main frame includes a base, a storage seat and a transfer carrier plate. The base includes a hollow cuboid container one, and universal wheels are arranged on the outer wall of the lower bottom plate. The storage seat includes a hollow cuboid container two, and a feeding through hole is arranged on the right side plate, and a discharge through hole is arranged on the upper bottom plate. The transfer carrier plate is arranged on the base through a support, and a strip-shaped through hole is arranged thereon. A compressor is arranged in the storage seat.

[0011] Specifically, the storage part includes a conveying mechanism and a storage box mechanism. The conveying mechanism includes a conveyor belt, a push rod motor one and a movable limit block. The right end of the conveyor belt is arranged on the right side plate of the cuboid hollow container two through a mounting plate, and the left end is arranged in the cuboid hollow container two. The push rod motor one is arranged in the cuboid hollow container two. The movable limit block is in the shape of a "C" and is arranged on the movable end of the push rod motor one. The storage box mechanism includes a rectangular container one, a movable carrier plate one and an iron sheet. The front side plate and the rear side plate of the rectangular container one are provided with a rectangular through slot on the outer wall. The bottom surface of the rectangular through slot is provided with a circular mounting slot. The iron sheet is arranged in the circular mounting slot.

[0012] Specifically, the adjusting part includes a vertical adjusting mechanism, a horizontal adjusting mechanism and a power mechanism. The vertical adjusting mechanism includes an electric telescopic rod one, a sliding rod one, a movable carrier plate one, a push rod motor two and an "E" shaped bracket. The electric telescopic rod one and the sliding rod one are arranged on the inner wall of the lower bottom plate of the storage seat. The movable carrier plate one is slidably connected to the sliding rod one and is connected to the movable end of the electric telescopic rod one. The push rod motor two is arranged on the movable carrier plate one. The "E" shaped bracket is arranged on the movable end of the push rod motor two and is provided with an electromagnet thereon. The horizontal adjusting mechanism includes an electric telescopic rod two and an "L" shaped bracket. The electric telescopic rod two is arranged on the inner wall of the left side plate of the storage seat. The "L" shaped bracket is arranged on the movable end of the electric telescopic rod two. The power mechanism includes a lead screw stepper motor, a movable carrier plate one, a vacuum chuck one, a push rod motor three and a positioning plate. The lead screw stepper motor and the sliding rod two are arranged on the side plate of the storage seat through a mounting plate. The movable carrier plate one is slidably connected to the sliding rod two and is connected to the nut seat of the lead screw stepper motor. The push rod motor three is arranged on the movable carrier plate one. The positioning plate is in the shape of a "C" and is arranged on the movable end of the push rod motor three. The vacuum chuck one is arranged on the positioning plate.

[0013] Specifically, the cleaning part includes an upward moving mechanism and a cleaning box mechanism. The upward moving mechanism includes an electric lifting device one and a movable push plate one. The electric lifting device one is arranged in the storage seat below the movable carrier plate one through a mounting base. The movable push plate one is arranged on the movable end of the electric lifting device one and is slightly smaller in size than the movable carrier plate one. The cleaning box mechanism includes a high-pressure spray head, an industrial vacuum cleaner, a rectangular container two and a push rod motor four. The rectangular container two is arranged on the inner wall of the upper bottom plate of the storage seat. A rectangular through hole one is arranged on the lower bottom plate, and circular pin holes one are symmetrically arranged on the left side plate and the right side plate. The high-pressure spray head is arranged in the rectangular container two through a strip-shaped plate. The suction head of the industrial vacuum cleaner is arranged in the rectangular container two. The push rod motor four is arranged on the left side plate and the right side plate of the rectangular container two, and a square push plate is arranged on the movable end thereof. A buffer pad is arranged on the square push plate and in the rectangular container two.

[0014] ​​Specific, the transfer part includes transfer mechanism and grabbing mechanism. The transfer mechanism includes servo motor one, servo motor two and movable carrier plate two; the servo motor one, the reel one, the slide rail and the fixed pulley are arranged on the transfer carrier plate; the servo motor one and the reel one are connected through the reduction gear box; the servo motor two and the reel two are arranged on the transfer carrier plate through the mounting frame and are connected through the reduction gear box; the servo motor two is located above the servo motor one; the movable carrier plate two is slidably connected to the transfer carrier plate and is provided with a circular pin hole two thereon; the reel one and the movable carrier plate two are connected through the traction rope one; the reel two, the movable carrier plate two and the fixed pulley are connected through the traction rope two, that is, one end of the traction rope two is arranged on the rear side of the movable carrier plate two, and the other end is arranged on the reel two through the fixed pulley. The grabbing mechanism includes servo motor three, electric lifting device two and movable frame structure; the servo motor three and the reel three are arranged on the movable carrier plate two and are connected through the reduction gear box; the movable frame structure is connected with the reel three through a rope chain; the movable frame structure includes a C-shaped fixed frame, a fixed screw rod and a rubber anti-skid block; the upper end of the C-shaped fixed frame is provided with a positioning nut; the fixed screw rod is arranged in the positioning nut; the rubber anti-skid block is arranged at the lower end of the fixed screw rod and the port of the C-shaped fixed frame.

[0015] Specific, the control part includes control mechanism, feedback mechanism and PLC controller. The control mechanism includes start switch, upper wheel switch, roller loading switch, adjustment switch and pause switch. The feedback mechanism includes a plurality of distance sensor modules.

[0016] Further, the lifting box mechanism is arranged on the movable end of the electric lifting device; the lifting box mechanism includes a rectangular container three and an electric lifting device three; the movable end of the electric lifting device three is matched with the movable carrier plate.

[0017] The beneficial effects of the prior art are as follows:

[0018] In the utility model, through the integrated arrangement of the main frame, the storage part, the adjusting part, the cleaning part, the transfer part and the control part, the following functions are realized:

[0019] Firstly, the mechanical transfer of sago gum roller greatly reduces the labor intensity.

[0020] Secondly, the cleaning efficiency is stable and controllable, the cleaning environment is closed, and the health of the workers is beneficial.

[0021] Thirdly, the manual steps of the storage and taking process are simplified, the time consumption is short, and the work efficiency is significantly improved. DRAWINGS

[0022] Figure 1 It is a top view structure schematic diagram of the utility model;

[0023] Figure 2The utility model discloses a partial section structure schematic diagram of the utility model from the top Figure One ;

[0024] Figure 3 The utility model discloses a partial section structure schematic diagram of the utility model from the top Figure Two ;

[0025] Figure 4 The utility model discloses a partial section structure schematic diagram of the utility model from the top

[0026] Figure 5 The utility model discloses a partial section structure schematic diagram of the utility model from the top

[0027] Figure 6 The utility model discloses a partial section structure schematic diagram of the utility model from the top Figure One ;

[0028] Figure 7 The utility model discloses a partial section structure schematic diagram of the utility model from the top Figure Two .

[0029] In the drawing: 101. base, 102. storage seat, 103. transfer carrier plate, 201. conveying belt, 202. push rod motor one, 203. movable limit block, 204. storage box mechanism, 301. electric telescopic rod one, 302. push rod motor two, 303. electric telescopic rod two, 304. L-shaped bracket, 305. screw stepper motor, 306. push rod motor three, 307. positioning plate, 401. electric lifting device one, 402. high-pressure spray head, 403. rectangular container two, 404. push rod motor four, 501. servo motor one, 502. servo motor two, 503. servo motor three, 504. movable frame structure, 505. electric lifting device two. Specific implementation

[0030] Example 1, refer to the attached Figures 1-7 A storage device of cotton ginning roller, including main frame, storage part, adjustment part, cleaning part, transfer part and control part.

[0031] The main frame includes base 101, storage seat 102, transfer carrier plate 103 and compressor.

[0032] The base 101 includes a cuboid hollow container one.

[0033] The lower bottom plate outer wall of the base 101 is provided with universal wheel.

[0034] The storage seat 102 includes a cuboid hollow container two.

[0035] Universal wheel is arranged on the right side plate of the cuboid hollow container two.

[0036] Universal wheel is arranged on the right side plate of the cuboid hollow container two.

[0037] The transfer carrier plate 103 is mounted on the base 101 via a support column.

[0038] A strip-shaped through hole is provided on the transfer carrier plate 103.

[0039] The compressor is located inside the storage compartment 102.

[0040] The storage section includes a conveying mechanism and a storage box mechanism 204.

[0041] The conveying mechanism includes a conveyor belt 201, a push rod motor 202, and a movable limit block 203.

[0042] The right end of the conveyor belt 201 is mounted on the right side plate of the rectangular hollow container 2 via a mounting plate.

[0043] The left end of the conveyor belt 201 is located inside the rectangular hollow container 2.

[0044] The push rod motor 202 is installed inside the rectangular hollow container 2.

[0045] The movable limit block 203 is set on the movable end of the push rod motor 202.

[0046] The active limit block 203 is C-shaped.

[0047] The storage box mechanism 204 includes a rectangular container, a movable carrier plate, and an iron sheet.

[0048] The front and rear side panels of the rectangular container are set with Through groove.

[0049] A circular mounting groove is provided on the bottom surface of the through groove.

[0050] The iron sheet is placed in a circular mounting groove.

[0051] The adjustment mechanism includes a vertical adjustment mechanism, a horizontal adjustment mechanism, and a power mechanism.

[0052] The vertical adjustment mechanism includes an electric telescopic rod 301, a slide rod 1, a movable carrier plate 1, a push rod motor 302, and an "E"-shaped support block.

[0053] The electric telescopic rod 301 and the slide rod 301 are installed on the inner wall of the lower base plate of the storage base 102.

[0054] The movable carrier plate is slidably connected to the slide rod.

[0055] The movable carrier plate is connected to the movable end of the electric telescopic pole 301.

[0056] The push rod motor 2 302 is mounted on the movable carrier plate 1.

[0057] The "E" shaped bracket is arranged on the movable end of the push rod motor two 302; and the electromagnet is arranged on the "E" shaped bracket.

[0058] The horizontal adjustment mechanism comprises the second electric telescopic rod 303 and the "L" shaped bracket 304.

[0059] The second electric telescopic rod 303 is arranged on the inner wall of the left side plate of the storage seat 102.

[0060] The "L" shaped bracket 304 is arranged on the movable end of the second electric telescopic rod 303.

[0061] The power mechanism comprises the lead screw stepper motor 305, the movable carrier plate one, the vacuum chuck one, the push rod motor three 306 and the positioning plate 307.

[0062] The lead screw stepper motor 305 and the second slide rod are arranged on the side plate of the storage seat 102 through the mounting plate.

[0063] The movable carrier plate one is slidably connected to the second slide rod and connected to the nut seat of the lead screw stepper motor 305.

[0064] The push rod motor three 306 is arranged on the movable carrier plate one.

[0065] The positioning plate 307 is arranged on the movable end of the push rod motor three 306.

[0066] The positioning plate 307 is in the shape of "C".

[0067] The vacuum chuck one is arranged on the positioning plate 307.

[0068] The cleaning part comprises the upward moving mechanism and the cleaning box mechanism.

[0069] The upward moving mechanism comprises the first electric lifting device 401 and the movable push plate one.

[0070] The first electric lifting device 401 is arranged in the storage seat 102 through the mounting base 101 and located below the movable carrier plate one.

[0071] The movable push plate one is arranged on the movable end of the first electric lifting device 401, and the size of the movable push plate one is slightly smaller than that of the movable carrier plate one.

[0072] The cleaning box mechanism comprises the high-pressure spray head 402, the industrial vacuum cleaner, the rectangular container two 403 and the push rod motor four 404.

[0073] The rectangular container two 403 is arranged on the inner wall of the upper bottom plate of the storage seat 102.

[0074] The rectangular through hole one is symmetrically arranged on the lower bottom plate of the rectangular container two 403.

[0075] The left and right side plates of the rectangular container two 403 are symmetrically provided with circular pin holes one.

[0076] The high-pressure nozzle 402 is arranged in the rectangular container two 403 through the strip-shaped plate.

[0077] The suction head of the industrial vacuum cleaner is arranged in the rectangular container two 403.

[0078] The push rod motor four 404 is arranged on the left and right side plates of the rectangular container two 403.

[0079] The movable end of the push rod motor four 404 is provided with a square push plate.

[0080] The square push plate and the rectangular container two 403 are both provided with a buffer pad.

[0081] The transfer part includes a transfer mechanism and a grabbing mechanism.

[0082] The transfer mechanism includes a servo motor one 501, a servo motor two 502, and a movable carrier plate two.

[0083] The servo motor one 501, the reel one, the slide rail, and the fixed pulley are arranged on the transfer carrier plate 103.

[0084] The servo motor one 501 and the reel one are connected through a reduction gear box.

[0085] The servo motor two 502 and the reel two are arranged on the transfer carrier plate 103 through a mounting frame.

[0086] The servo motor two 502 and the reel two are connected through a reduction gear box.

[0087] The servo motor two 502 is located above the servo motor one 501.

[0088] The movable carrier plate two is slidingly connected to the transfer carrier plate 103, and the movable carrier plate two is provided with a circular pin hole two.

[0089] The reel one and the movable carrier plate two are connected through a traction rope one.

[0090] The reel two, the movable carrier plate two, and the fixed pulley are connected through a traction rope two, that is, one end of the traction rope two is arranged on the rear side surface of the movable carrier plate two, and the other end is arranged on the reel two after passing through the fixed pulley.

[0091] The grabbing mechanism includes a servo motor three 503, an electric lifting device two 505, and a movable frame structure 504.

[0092] The servo motor three 503 and the reel three are arranged on the movable carrier plate two.

[0093] The servo motor three 503 and the reel three are connected through a reduction gear box.

[0094] The rope is connected between the movable frame structure 504 and the reel three.

[0095] The movable frame structure 504 comprises a “C” shaped fixing frame, a fixing screw rod and a rubber anti-skid block.

[0096] The upper end of the “C” shaped fixing frame is provided with a positioning nut.

[0097] The fixing screw rod is arranged in the positioning nut.

[0098] The rubber anti-skid block is arranged at the lower end of the fixing screw rod and the port of the “C” shaped fixing frame.

[0099] The control part comprises a control mechanism, a feedback mechanism and a PLC controller.

[0100] The control mechanism comprises a start switch, an up wheel switch, a roller loading switch, an adjustment switch and a pause switch.

[0101] The start switch, the up wheel switch, the roller loading switch and the pause switch are arranged on the front side plate of the storage seat 102.

[0102] The adjustment switch is arranged on the rear side plate of the storage seat 102.

[0103] The feedback mechanism comprises a distance sensor module one, a distance sensor module two, a distance sensor module three, a distance sensor module four and a distance sensor module five.

[0104] The distance sensor module one is arranged on the right side plate of the storage seat 102, and is used to assist the PLC controller in detecting the position of the storage box mechanism 204.

[0105] The distance sensor module two is arranged on the inner wall of the front side plate of the storage seat 102, and is used to assist the PLC controller in detecting the position of the storage box mechanism 204.

[0106] The distance sensor module three is arranged on the inner wall of the left side plate of the storage seat 102, and is used to assist the PLC controller in detecting the position of the storage box mechanism 204.

[0107] The distance sensor module four is arranged on the movable loading plate one, and is used to assist the PLC controller in detecting the position of the storage box mechanism 204.

[0108] The distance sensor module five is arranged on one side of the rectangular through hole one, and is used to assist the PLC controller in detecting the position of the storage box mechanism 204.

[0109] The lead screw stepper motor 305 of this utility model includes a servo motor, a ball screw assembly, and a nut seat; the servo motor and the ball screw assembly are connected by a lead screw drive. The ball screw assembly includes a ball screw, a ball nut, a rotating steel ball, and a recirculating component. The nut seat is connected to the ball nut of the ball screw assembly.

[0110] Working principle and usage:

[0111] Step 1, Pre-setting:

[0112] Press the start switch to perform a no-load test. Place the rice hulling roller into the storage box mechanism 204.

[0113] The second step is storage:

[0114] The storage box mechanism 204 is placed on the conveyor belt 201. The distance sensor module 1 outputs the collected signal to the PLC controller. The PLC controller outputs a signal to the conveyor belt 201, and the conveyor belt 201 starts to transfer the storage box mechanism 204 into the storage base 102.

[0115] Step 3, cleaning:

[0116] Pressing the upper wheel switch activates the PLC controller, which outputs a signal to the conveyor belt 201. The conveyor belt 201 starts, causing the storage box mechanism 204 to move to the left behind the distance sensor module 2. The distance sensor module 2 then outputs the collected signal to the PLC controller, which in turn outputs signals to the electric telescopic rod 301, push rod motor 202, push rod motor 302, and the electromagnet.

[0117] The push rod motor 202 is started to correct the position of the storage box mechanism 204.

[0118] The push rod motor 2302 drives the "E"-shaped support block to insert. Inside the through slot; the electromagnet starts after a delay, completing the fixation of the storage box mechanism 204.

[0119] The electric telescopic rod 301, after a delay, moves the storage box mechanism 204 upward. The distance sensor module 3 outputs the collected signal to the PLC controller, which in turn outputs a signal to the electric telescopic rod 303. The electric telescopic rod 303 moves the "L"-shaped bracket 304 to the right, the electromagnet closes, and the electric telescopic rod 303 moves the storage box mechanism 204 above the positioning plate 307. The distance sensor module 4 outputs the collected signal to the PLC controller, which in turn outputs a signal to the lead screw stepper motor 305 and the push rod motor 306. The push rod motor 306 moves the positioning plate 307 upward, lifting the storage box mechanism 204. The lead screw stepper motor 305 moves the storage box mechanism 204 below the cleaning box mechanism.

[0120] The distance sensor module five outputs the collected signal to the PLC controller, and the PLC controller outputs the signal to the electric lifting device one 401, the push rod motor four 404, the compressor and the industrial dust collector.

[0121] The electric lifting device one 401 and the push rod motor three 306 cooperate to push the rubber roller into the cleaning box mechanism. The compressor and the electromagnetic valve are started, the high-pressure nozzle starts to work, and the push rod motor four 404 moves in an orderly manner to drive the rubber roller to rotate in an orderly manner. The industrial dust collector is started synchronously.

[0122] The screw stepper motor 305 is synchronously transferred to below the rectangular through hole one on the other side. Then, the rubber roller enters the storage box mechanism 204 again.

[0123] Fourthly, the rubber roller is installed:

[0124] The rubber roller installation switch is pressed, and the PLC controller outputs the signal to the electric lifting device one 401, the push rod motor three 306 and the screw stepper motor 305.

[0125] The screw stepper motor 305 delays the transfer of the storage box mechanism 204 to below the discharging through hole, and the electric lifting device one 401 and the push rod motor three 306 drive the storage box mechanism 204 to move upwards to the discharging through hole.

[0126] The PLC controller controls the servo motor three 503 to start, so that the grabbing mechanism moves downwards.

[0127] The worker fixes the grabbing mechanism on the rubber roller. Then, the adjustment switch is pressed, the PLC controller outputs the signal to the servo motor one 501, the servo motor two 502 and the servo motor three 503. The servo motor three 503 drives the rubber roller to move upwards by a distance, and the servo motor one 501 and the servo motor two 502 drive the rubber roller to move orderly backwards, so as to facilitate the installation of the rubber roller. In the embodiment 1, the lifting box mechanism is arranged on the movable end of the electric lifting device. The lifting box mechanism comprises a rectangular container three and an electric lifting device three. The movable end of the electric lifting device three is matched with the movable loading plate.

Claims

1. A storage device for a rubber roll, characterized by: The utility model provides a kind of automatic wafer cleaning and transferring device, including main body frame, storage part, adjustment part, cleaning part, transfer part and control part;Main body frame includes base (101), storage seat (102) and transfer carrier plate (103);Storage part includes conveying mechanism and storage box mechanism (204);Adjustment part includes vertical adjustment mechanism, horizontal adjustment mechanism and power mechanism;Vertical adjustment mechanism includes electric telescopic rod one (301), slide bar one, movable carrier plate one, push rod motor two (302) and ''E'' shaped support block;Electric telescopic rod one (301), slide bar one are set on the lower bottom plate inner wall of storage seat (102);Movable carrier plate one is slidably connected on slide bar one;Movable carrier plate one is connected with the active end of electric telescopic rod one (301);Push rod motor two (302) is set on movable carrier plate one;''E'' shaped support block is set on the active end of push rod motor two (302);Electromagnet is set on ''E'' shaped support block;Horizontal adjustment mechanism includes electric telescopic rod two (303) and ''L'' shaped bracket (304);Electric telescopic rod two (303) is set on the left side plate inner wall of storage seat (102);''L'' shaped bracket (304) is set on the active end of electric telescopic rod two (303);Power mechanism includes screw stepper motor (305), movable carrier plate one, vacuum chuck one, push rod motor three (306) and positioning plate (307);Cleaning part includes upward moving mechanism and cleaning box mechanism;Transfer part includes transfer mechanism and grabbing mechanism.

2. The storage device for rubber roll of huller as claimed in claim 1, wherein: Screw stepper motor (305), slide bar two are set on the side plate of storage seat (102) by mounting plate;Movable carrier plate one is slidably connected on slide bar two, and is connected with the nut seat of screw stepper motor (305);Push rod motor three (306) is set on movable carrier plate one;Positioning plate (307) is ''C'' shaped, and is set on the active end of push rod motor three (306);Vacuum chuck one is set on positioning plate (307).

3. The storage device for rubber roll of huller as claimed in claim 1 wherein: Base (101) includes rectangular hollow container one, universal wheel is set on the lower bottom plate outer wall thereof;Storage seat (102) includes rectangular hollow container two, feed through hole is set on the right side plate thereof, and discharge through hole is set on the upper bottom plate thereof;Transfer carrier plate (103) is set on base (101) by support column;Strip-shaped through hole is set on transfer carrier plate (103).

4. The storage device for rubber roll of claim 1, wherein: Conveying mechanism includes conveying belt (201), push rod motor one (202) and movable limit block (203);Push rod motor one (202) is set in rectangular hollow container two;Movable limit block (203) is ''C'' shaped, and is set on the active end of push rod motor one (202).

5. The storage device for rubber roll of claim 1, wherein: The storage box mechanism (204) comprises a rectangular container I, a movable loading plate I and an iron sheet; the front side plate and the rear side plate of the rectangular container I are provided with a rectangular through groove; A circular mounting groove is arranged on the bottom surface of the rectangular through groove; the iron sheet is arranged in the circular mounting groove.

6. The storage device for hulling rubber rolls according to claim 1, characterized in that: Upward moving mechanism includes electric lifting device one (401) and movable push plate one;Electric lifting device one (401) is set in storage seat (102) by mounting base (101), and is located below movable carrier plate one;Movable push plate one is set on the active end of electric lifting device one (401), and the size of movable push plate one is less than that of movable carrier plate one.

7. The storage device for rubber roll of claim 1, wherein: The cleaning box mechanism comprises a high-pressure spray head (402), an industrial dust collector, a rectangular container two (403) and a push rod motor four (404); the rectangular container two (403) is arranged on the inner wall of the upper bottom plate of the storage seat (102), a rectangular through hole one is arranged on the lower bottom plate, a circular pin hole one is arranged on the left side plate and the right side plate; the high-pressure spray head (402) is arranged in the rectangular container two (403) through a strip-shaped plate; the suction head of the industrial dust collector is arranged in the rectangular container two (403); the push rod motor four (404) is arranged on the left side plate and the right side plate of the rectangular container two (403), and a square push plate is arranged on the movable end of the push rod motor four (404); a buffer pad is arranged on the square push plate and in the rectangular container two (403).

8. The storage device for rubber roll of claim 1, wherein: The transfer mechanism comprises a servo motor one (501), a servo motor two (502) and a movable carrier plate two; the servo motor one (501), a reel one, a slide rail and a fixed pulley are arranged on the transfer carrier plate (103); the servo motor one (501) and the reel one are connected through a reduction gear box; the servo motor two (502) and the reel two are arranged on the transfer carrier plate (103) through a mounting frame; the servo motor two (502) and the reel two are connected through a reduction gear box; the movable carrier plate two is slidably connected to the transfer carrier plate (103); the reel one and the movable carrier plate two are connected through a traction rope one; one end of a traction rope two is arranged on the rear side of the movable carrier plate two, and the other end is arranged on the reel two through the fixed pulley.

9. The storage device for rubber roll of claim 1, wherein: The grabbing mechanism comprises a servo motor three (503), an electric lifting device two (505) and a movable frame structure (504); the servo motor three (503) and a reel three are arranged on the movable carrier plate two; the servo motor three (503) and the reel three are connected through a reduction gear box; the movable frame structure (504) and the reel three are connected through a rope chain.

10. The storage device for hulling rubber rolls according to claim 9, characterized in that: The movable frame structure (504) comprises a "C" shaped fixing frame, a fixed screw rod and a rubber anti-skid block; a positioning nut is arranged at the upper end of the "C" shaped fixing frame; the fixed screw rod is arranged in the positioning nut; the rubber anti-skid block is arranged at the lower end of the fixed screw rod and the port of the "C" shaped fixing frame.

Citation Information

Patent Citations

  • Polyurethane paddy hulling rubber roller

    CN221753413U