High-performance rubber drying vehicle

By introducing side-standing support columns, guide rails, electric rollers and engagement mechanisms into the rubber drying vehicle, the problem of rubber being difficult to unload on the outer surface of the drying vehicle is solved, and the convenient disassembly of rubber and the improvement of production efficiency is achieved.

CN223165845UActive Publication Date: 2025-07-29DAWEI NATURAL RUBBER (YUNNAN) CO LTD
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Patent Information

Application Number
CN202422990821.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-07-29
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

After heating, the rubber is easily adhered to the outer surface, resulting in difficulty in unloading, increasing workers' labor intensity and reducing production efficiency.

Method used

A high-performance rubber drying vehicle is designed, using side-standing support columns, guide rails, electric rollers, drive cylinders and engaging mechanisms. The rubber bearing frame is separated from the base through the engaging mechanism, and combined with the wire mesh plate and the sliding trigger mechanism to achieve convenient disassembly and separation of rubber.

Benefits of technology

It realizes easy separation of rubber and rubber bearing frame, reduces worker labor, improves production efficiency, and facilitates the cleaning and replacement of wire mesh plates.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a high-performance rubber drying trolley which comprises side vertical supporting columns, a guide rail is fixedly installed on the outer surface between the side vertical supporting columns, electric rolling wheels are rotatably installed on the outer surfaces of the two sides of a base, and the outer surfaces of the electric rolling wheels are attached to the outer surface of the guide rail. A driving air cylinder is fixedly installed on the outer surface of the side-standing supporting column, the output end of the driving air cylinder penetrates through the outer surface of the side-standing supporting column, a clamping mechanism is arranged between the side-standing supporting column and the rubber bearing frame, and the rubber bearing frame can be separated from the base through the clamping mechanism so that rubber can be easily taken out. According to the high-performance rubber drying vehicle, when the base reaches the position below the side vertical supporting columns, a rubber bearing frame and supporting lifting lugs can enter a lifting plate, then a driving air cylinder is started to drive the rubber bearing frame to ascend, the rubber bearing frame can be separated from the base, and rubber can be separated from the rubber bearing frame; rubber can be conveniently detached and separated, and the labor amount and the labor intensity of workers are reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of rubber processing and manufacturing, and particularly relates to a high-performance rubber drying vehicle. Background Technique

[0002] A rubber drying vehicle is a device used for drying rubber in rubber processing. During the primary processing of natural rubber, the drying vehicle is usually used to carry the rubber materials to be dried. For example, the rubber products after granulation can be loaded into the drying vehicle for subsequent drying treatment. Traditional rubber drying vehicles are usually made of stainless steel plates on four sides. During the production and drying process of rubber, the upper and lower surfaces of the rubber material are heated more, which will cause the rubber to adhere to the outer surfaces of the stainless steel mesh and baffle at the bottom of the drying vehicle, increasing the difficulty of unloading the dried rubber by workers. At the same time, it will increase the labor intensity of workers, reduce the production efficiency, and cause more rubber materials to scatter. Content of the Utility Model

[0003] The purpose of the utility model is to provide a high-performance rubber drying vehicle to solve the problem that the rubber adheres to the outer surface of the drying vehicle and is not easy to unload after heating as mentioned in the above background technique.

[0004] To achieve the above purpose, the utility model provides the following technical solution: a high-performance rubber drying vehicle, including side support columns. The outer surface between the side support columns is fixedly installed with guide rails, and the guide rails are designed in an L shape. The outer surface of the guide rails is snap-fitted with a base, and the side surface of the base is fitted with a rubber-bearing frame. And a partition plate is fixedly installed inside the rubber-bearing frame. Electric rollers are rotatably installed on the outer surfaces of both sides of the base, and the outer surface of the electric rollers is fitted with the outer surface of the guide rails. A driving cylinder is fixedly installed on the outer surface of the side support columns, and the output end of the driving cylinder penetrates the outer surface of the side support columns. A latching mechanism is arranged between the side support columns and the rubber-bearing frame. Through the latching mechanism, the rubber-bearing frame can be separated from the base so that the rubber can be easily taken out.

[0005] Preferably, the latching mechanism includes: a lifting plate. The lifting plate is arranged between the side support columns, and the outer surface of the lifting plate is connected with the output end of the driving cylinder. Both ends of the lifting plate are located inside the side support columns, and the side support columns and the lifting plate are slidably connected. Support lifting ears are fixedly installed on the outer surfaces of both sides of the rubber-bearing frame, and the support lifting ears are fitted with the outer surface of the lifting plate, and the lifting plate is latched with the support lifting ears.

[0006] Adopting the above technical solution, when the base moves to the discharging end on the guide rail, the lifting plate will be inserted into both sides of the rubber-bearing frame, so that when the driving cylinder contracts and lifts the lifting plate, the rubber-bearing frame can be driven to rise together, enabling the rubber dried on the base to be easily separated.

[0007] Preferably, a wire mesh board is arranged inside the base, and the side surface of the wire mesh board is attached to the side surface of the base. A cross bar is arranged between the bases, and the outer surface of the cross bar of the base is attached to the outer surface of the wire mesh board. Moreover, the outer surface of the wire mesh board is attached to the outer surface of the partition board. A sliding guide rod is installed through the outer surface of the wire mesh board, and both ends of the sliding guide rod penetrate through the outer surface of the base.

[0008] With the above technical solution, the wire mesh board can accelerate the air drying of the rubber. At the same time, the sliding guide rod can be pulled out so that the wire mesh board can be taken out conveniently for cleaning and replacement.

[0009] Preferably, a sliding trigger mechanism is arranged inside the base. During the process of the rubber cart traveling and drying on the guide rail through the sliding trigger mechanism, the rubber bearing frame will not slide off the base.

[0010] With the above technical solution, it can prevent the rubber bearing frame from accidentally falling off during the movement of the base, and at the same time, it is convenient for subsequent separation.

[0011] Preferably, the sliding trigger mechanism includes: a side sliding plate, which is fixedly installed on the side surface of one end of the sliding guide rod. A positioning plate is installed through the end of the sliding guide rod far away from the side sliding plate, and the side surface of the positioning plate is attached to the outer surface of the base. The outer surface of the side sliding plate is attached to the outer surface of the base, and the base is slidably connected with the sliding guide rod. A three-dimensional engaging column is fixedly installed at one end of the rubber bearing frame close to the guide rail, and the three-dimensional engaging column is inserted into the base. A buckle plate is fixedly installed on the outer surface of the sliding guide rod, and the buckle plate is slidably connected with the base. Moreover, the outer surface of the base is attached to the outer surface of the buckle plate. The buckle plate is engaged with the three-dimensional engaging column.

[0012] With the above technical solution, when the base reaches the unloading position on the guide rail, the outer surface of the positioning plate will contact the outer surface of the guide rail, causing the sliding guide rod to move. Through the movement of the sliding guide rod, the buckle plate is disengaged from the three-dimensional engaging column, enabling the rubber bearing frame to be pulled out. Also, the rubber bearing frame can be fixed by pushing the sliding guide rod back.

[0013] Preferably, a screw cap is threadedly installed on the outer surface of the sliding guide rod, and the side surface of the screw cap is attached to the outer surface of the positioning plate, and the positioning plate is located between the screw caps.

[0014] With the above technical solution, the positioning plate can be fixed on the outer surface of the sliding guide rod through the screw cap, and the displacement of the sliding guide rod is restricted by the positioning plate, so that the sliding guide rod can be restricted on the outer surface of the base.

[0015] Preferably, a top glue stick is slidably installed on the outer surface of the lifting plate, and the top glue stick is snap-connected to the lifting plate, and a spring is provided between the lifting plate and the top glue stick, and a baffle is fixedly installed between the side support columns, and the baffle is located directly above the top glue stick.

[0016] By adopting the above technical solution, when the driving cylinder pulls the lifting plate to rise, the glue frame will be driven to rise, causing the glue pusher to rise together, so that the glue pusher will contact the baffle, so that the glue pusher will be squeezed to push out the rubber that may be adhered to the glue frame and cannot be separated. At the same time, when the driving cylinder is pushed out, the lifting plate will fall back, causing the spring to push the glue pusher back to its original position, so that the rubber that may be adhered to the glue frame will be pushed out, and no rubber blocks will remain in the glue frame.

[0017] Compared with the prior art, the beneficial effects of the present invention are: the high-performance rubber drying vehicle:

[0018] 1. When the base reaches the bottom of the side support column, the rubber frame and the support ears will enter the interior of the lifting plate. Then the drive cylinder will be started to drive the rubber frame to rise, so that the rubber frame can be separated from the base, so that the rubber can be separated from the rubber frame, which is convenient for disassembly and separation of the rubber and reduces the workload and labor intensity of workers;

[0019] 2. When the base moves to the bottom of the side support column through the electric roller, the positioning plate will contact the side surface of the guide rail, allowing the sliding guide rod and the snap plate to move inside the base, so that the snap plate and the three-dimensional snap column are separated, so that the glue frame can be separated from the base. When unloading is completed, the glue frame can be pushed back by driving the cylinder, so that the glue frame is pushed back into the base, so that the glue frame will not fall when the base moves. The glue frame can automatically release the self-locking when unloading;

[0020] 3. When unloading, the driving cylinder contracts and the lifting plate will drive the rubber frame to rise together, so that the rubber pusher stick contacts the outer surface of the baffle, and the rubber pusher stick moves to push out the rubber that is driven up in the partition plate, so that no rubber will remain inside the partition plate. Then the driving cylinder is pushed out, so that the spring pushes the rubber pusher stick back to its original position, so that the rubber will not adhere to the inside of the partition plate, reducing the probability of the rubber rising with the partition plate, and preventing the air-dried rubber from rising with the partition plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a schematic diagram of the three-dimensional structure of the side support column and the rubber-bearing frame of the utility model;

[0022] Figure 2 This is a schematic diagram of the three-dimensional structure of the glue-bearing frame and the glue-pushing stick of the utility model;

[0023] Figure 3 This is a schematic diagram of the three-dimensional structure of the wire mesh plate and the adhesive frame of the utility model;

[0024] Figure 4 This is a schematic perspective sectional view of the base and the extraction plate of the present utility model;

[0025] Figure 5 This is a schematic perspective sectional view of the snap plate and the snap plate of the present utility model;

[0026] Figure 6 This is a schematic perspective view of the side sliding plate and the positioning plate of the present utility model.

[0027] In the figure: 1, side vertical support column; 2, guide rail; 3, base; 4, electric roller; 5, side sliding plate; 6, positioning plate; 7, snap plate; 8, screw cap; 9, wire mesh plate; 10, sliding guide rod; 11, rubber holding frame; 12, partition plate; 13, support lifting ear; 14, three-dimensional engaging column; 15, extraction plate; 16, top rubber roller; 17, spring; 18, baffle; 19, driving cylinder. Specific embodiments

[0028] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0029] Please refer to Figure 1-6 , the present utility model provides a technical solution: a high-performance rubber drying vehicle, including side vertical support columns 1, with guide rails 2 fixedly installed on the outer surfaces between the side vertical support columns 1, and the guide rails 2 are of an L-shaped design. The outer surface of the guide rail 2 is snap-fitted with a base 3, and the side surface of the base 3 is fitted with a rubber holding frame 11, and a partition plate 12 is fixedly installed inside the rubber holding frame 11. Electric rollers 4 are rotatably installed on the outer surfaces on both sides of the base 3, and the outer surface of the electric roller 4 is in contact with the outer surface of the guide rail 2. A driving cylinder 19 is fixedly installed on the outer surface of the side vertical support column 1, and the output end of the driving cylinder 19 penetrates through the outer surface of the side vertical support column 1.

[0030] Due to the L-shaped design of the guide rail 2, when the base 3 rotates and moves through the electric rollers 4, it can move without falling off the guide rail 2. At the same time, the rubber poured into the rubber holding frame 11 can be separated by the partition plate 12, so that the rubber can be quickly dried and conveniently removed.

[0031] A clamping mechanism is provided between the side-standing support column 1 and the rubber-bearing frame 11. Through the clamping mechanism, the rubber-bearing frame 11 can be disengaged from the base 3 so that the rubber can be easily taken out. The clamping mechanism includes: a lifting plate 15. The lifting plate 15 is arranged between the side-standing support columns 1, and the outer surface of the lifting plate 15 is connected to the output end of the driving cylinder 19. Both ends of the lifting plate 15 are located inside the side-standing support columns 1, and the side-standing support columns 1 and the lifting plate 15 are slidably connected. Support lugs 13 are fixedly installed on the outer surfaces of both sides of the rubber-bearing frame 11, and the support lugs 13 are in contact with the outer surface of the lifting plate 15, and the lifting plate 15 is engaged with the support lugs 13.

[0032] After air drying is completed, the base 3 will move on the guide rail 2 by the rotation of the electric roller 4, so that the base 3 reaches below the side-standing support column 1, the rubber-bearing frame 11 enters between the side-standing support columns 1, and the support lugs 13 are snapped into the lifting plate 15. Then, the lifting plate 15 is lifted by the contraction of the driving cylinder 19, so that the lifting plate 15 is separated from the rubber-bearing frame 11, facilitating the separation of the rubber from the rubber-bearing frame 11, reducing the labor volume and labor intensity of workers, and enabling the air-dried rubber material to be easily removed.

[0033] A wire mesh plate 9 is arranged inside the base 3, and the side surface of the wire mesh plate 9 is in contact with the side surface of the base 3. A cross bar is arranged between the bases 3, and the outer surface of the cross bar of the base 3 is in contact with the outer surface of the wire mesh plate 9, and the outer surface of the wire mesh plate 9 is in contact with the outer surface of the partition plate 12. A sliding guide rod 10 is installed through the outer surface of the wire mesh plate 9, and both ends of the sliding guide rod 10 penetrate the outer surface of the base 3.

[0034] Through the wire mesh plate 9, air can pass through during air drying so that the rubber can be quickly air-dried. After long-term use, rubber will remain on the wire mesh plate 9. Repeated drying for a long time will cause the rubber on the wire mesh plate 9 to denature and also cause subsequent rubber drying to be inconsistent. At this time, the sliding guide rod 10 can be removed from the base 3, and then the wire mesh plate 9 can be removed from the base 3, facilitating the removal of the wire mesh plate 9 for cleaning or replacing the deformed wire mesh plate 9.

[0035] The interior of the base 3 is provided with a sliding trigger mechanism. During the process of the rubber vehicle traveling on the guide rail 2 through the sliding trigger mechanism, the rubber-bearing frame 11 will not slide off the base 3. The sliding trigger mechanism includes: a side sliding plate 5, which is fixedly installed on the side surface of one end of the sliding guide rod 10. One end of the sliding guide rod 10 away from the side sliding plate 5 is penetrated and installed with a positioning plate 6, and the side surface of the positioning plate 6 is attached to the outer surface of the base 3. The outer surface of the side sliding plate 5 is attached to the outer surface of the base 3, and the base 3 is slidably connected to the sliding guide rod 10. One end of the rubber-bearing frame 11 close to the guide rail 2 is fixedly installed with a three-dimensional engaging column 14, and the three-dimensional engaging column 14 is inserted into the base 3. A snap plate 7 is fixedly installed on the outer surface of the sliding guide rod 10, and the snap plate 7 is slidably connected to the base 3, and the outer surface of the base 3 is attached to the outer surface of the snap plate 7. The snap plate 7 is engaged with the three-dimensional engaging column 14.

[0036] After the base 3 enters below the side-standing support column 1, the positioning plate 6 and the screw cap 8 will contact the outer surface of the guide rail 2, causing the sliding guide rod 10 to slide, separating the snap plate 7 from the three-dimensional engaging column 14, enabling the rubber-bearing frame 11 to be lifted by the driving cylinder 19, enabling the rubber-bearing frame 11 to be separated from the base 3. And after the rubber is unloaded, the driving cylinder 19 descends to lower and push back the rubber-bearing frame 11, causing the three-dimensional engaging column 14 to be inserted into the interior of the base 3. Then, the positioning plate 6 is pulled back, making the side sliding plate 5 fit against the outer surface of the base 3, causing the snap plate 7 to engage with the three-dimensional engaging column 14, making the rubber-bearing frame 11 engage with the snap plate 7, enabling the rubber-bearing frame 11 to be unloaded during unloading, and preventing the rubber-bearing frame 11 from jolting and falling when the base 3 moves.

[0037] A screw cap 8 is threadedly installed on the outer surface of the sliding guide rod 10, and the side surface of the screw cap 8 is attached to the outer surface of the positioning plate 6, and the positioning plate 6 is located between the screw caps 8.

[0038] The side sliding plate 5 and the positioning plate 6 can be removed from the base 3 through the screw cap 8, facilitating the fixing and removal of the wire mesh plate 9.

[0039] A top rubber roller 16 is slidably installed on the outer surface of the lifting plate 15, and the top rubber roller 16 is snap-connected to the lifting plate 15. A spring 17 is provided between the lifting plate 15 and the top rubber roller 16. A baffle 18 is fixedly installed between the side-standing support columns 1, and the baffle 18 is located directly above the top rubber roller 16.

[0040] When the driving cylinder 19 contracts, it will drive the lifting plate 15 to rise, causing the rubber pressing roller 16 to rise accordingly and contact the baffle 18, enabling the rubber pressing roller 16 to push out the non-demoulded rubber in the rubber holding frame 11, so that the rubber in the partition plate 12 will not stay inside the rubber holding frame 11, reducing the difficulty of discharging. At the same time, after the rubber is pushed out, the driving cylinder 19 will push the lifting plate 15 back, and the spring 17 will push the rubber pressing roller 16 back to its original position, preventing the rubber from adhering to the inside of the partition plate 12 and causing difficulty in discharging.

[0041] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A high-performance rubber drying vehicle, comprising side vertical support columns (1), an outer surface between the side vertical support columns (1) is fixedly installed with a guide rail (2), and the guide rail (2) is designed in an L shape. An outer surface of the guide rail (2) is snap-fitted with a base (3), and a side surface of the base (3) is adhesively attached with a rubber-bearing frame (11). And a partition plate (12) is fixedly installed inside the rubber-bearing frame (11). Electric rollers (4) are rotatably installed on two outer surfaces of the base (3), and an outer surface of the electric roller (4) is in contact with an outer surface of the guide rail (2). A driving cylinder (19) is fixedly installed on an outer surface of the side vertical support column (1), and an output end of the driving cylinder (19) penetrates through the outer surface of the side vertical support column (1). It is characterized in that: A clamping mechanism is provided between the side-standing support column (1) and the rubber-bearing frame (11). Through the clamping mechanism, the rubber-bearing frame (11) can be disengaged from the base (3) so that the rubber can be easily taken out.

2. The high-performance rubber drying vehicle according to claim 1, characterized in that: The clamping mechanism includes: a lifting plate (15). The lifting plate (15) is arranged between the side-standing support columns (1), and the outer surface of the lifting plate (15) is connected to the output end of the driving cylinder (19). Both ends of the lifting plate (15) are located inside the side-standing support columns (1), and the side-standing support columns (1) are slidably connected to the lifting plate (15). Support lifting lugs (13) are fixedly installed on the outer surfaces of both sides of the rubber-bearing frame (11), and the support lifting lugs (13) are attached to the outer surface of the lifting plate (15), and the lifting plate (15) is engaged with the support lifting lugs (13).

3. A high-performance rubber drying vehicle according to claim 1, characterized in that: A wire mesh plate (9) is arranged inside the base (3), and the side surface of the wire mesh plate (9) is attached to the side surface of the base (3). A cross bar is arranged between the bases (3), and the outer surface of the cross bar of the base (3) is attached to the outer surface of the wire mesh plate (9), and the outer surface of the wire mesh plate (9) is attached to the outer surface of the partition plate (12). A sliding guide rod (10) is installed through the outer surface of the wire mesh plate (9), and both ends of the sliding guide rod (10) penetrate through the outer surface of the base (3).

4. A high-performance rubber drying vehicle according to claim 1, characterized in that: A sliding triggering mechanism is arranged inside the base (3). Through the sliding triggering mechanism, the rubber-bearing frame (11) will not slide off the base (3) during the process of the rubber cart traveling and drying on the guide rail (2).

5. The high-performance rubber drying vehicle according to claim 4, characterized in that: The sliding triggering mechanism includes: a side sliding plate (5). The side sliding plate (5) is fixedly installed on the side surface of one end of the sliding guide rod (10), and a positioning plate (6) is installed through the end of the sliding guide rod (10) far away from the side sliding plate (5), and the side surface of the positioning plate (6) is attached to the outer surface of the base (3). The outer surface of the side sliding plate (5) is attached to the outer surface of the base (3), and the base (3) is slidably connected to the sliding guide rod (10). A three-dimensional engaging column (14) is fixedly installed at one end of the rubber-bearing frame (11) close to the guide rail (2), and the three-dimensional engaging column (14) is inserted into the base (3). A buckle plate (7) is fixedly installed on the outer surface of the sliding guide rod (10), and the buckle plate (7) is slidably connected to the base (3), and the outer surface of the base (3) is attached to the buckle plate (7). The buckle plate (7) is engaged with the three-dimensional engaging column (14).

6. A high-performance rubber drying vehicle according to claim 3, characterized in that: A screw cap (8) is threadedly installed on the outer surface of the sliding guide rod (10), and the side surface of the screw cap (8) is attached to the outer surface of the positioning plate (6), and the positioning plate (6) is located between the screw caps (8).

7. The high-performance rubber drying vehicle according to claim 2, characterized in that: A rubber pressing rod (16) is slidably installed on the outer surface of the lifting plate (15), and the rubber pressing rod (16) is engaged and linked with the lifting plate (15), and a spring (17) is arranged between the lifting plate (15) and the rubber pressing rod (16). A baffle (18) is fixedly installed between the side-standing support columns (1), and the baffle (18) is located directly above the rubber pressing rod (16).