Vulcanizing equipment for new material processing and production

Through the combination of pressure devices, adjustment devices, transmission devices and limiting devices, the problems of idle staff and low processing efficiency in the vulcanization equipment of new materials are solved, and multiple sets of synchronous alternating vulcanization processing are realized, which improves efficiency and work time utilization of staff.

CN115922988BActive Publication Date: 2025-08-05DONGGUAN HAIMINGYU TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202211568471.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-08
Publication Date
2025-08-05
Estimated Expiration
2042-12-08

AI Technical Summary

Technical Problem

The existing new material vulcanization equipment causes idle staff during the processing process, and it is not convenient for multiple sets of alternating vulcanization processing to affect processing efficiency.

Method used

Using a combination of pressure device, adjustment device, transmission device and limiting device, the synchronous flip and alternating operation of the vulcanized top plate and the bottom plate are achieved through the cooperation of hydraulic cylinder, drive motor and chain sprocket, ensuring the synchronous alternating vulcanization processing of multiple sets of new materials.

Benefits of technology

Multiple groups of new materials have been synchronized and alternating vulcanization processing, which improves processing efficiency, avoids idleness of staff and increases effective working time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a vulcanization device for new material processing and production, including a pressure device, an adjustment device, a transmission device and a limit device. The adjustment device is slidably installed on the side of the pressure device. The limit devices are symmetrically and slidably installed inside the center of the side of the pressure device. The transmission device is rotatably installed at the center inside the pressure device and is located at the bottom of the limit device. A support base is fixedly installed inside the pressure device, and support platforms are symmetrically welded on the upper surface of the support base. By coordinating the operation among the pressure device, the adjustment device, the transmission device and the limit device, the present invention can facilitate multi-group synchronous and alternating vulcanization processing of new materials, improve the efficiency of vulcanization processing of new materials, and avoid the idleness of staff when vulcanizing new materials, thereby increasing the effective working time of the staff.
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Description

Technical Field

[0001] The present invention relates to the technical field of new material vulcanization equipment, in particular to vulcanization equipment for new material processing and production. Background Art

[0002] Vulcanization, also known as crosslinking or aging, is the process of adding crosslinking agents such as vulcanizing agents and accelerators to rubber, transforming linear macromolecules into a three-dimensional network structure under certain temperature and pressure conditions. Since sulfur was first used to crosslink natural rubber, it is called vulcanization. Vulcanization gets its name from the fact that sulfur was initially used as a crosslinking agent in natural rubber products. With the development of the rubber industry, a variety of non-sulfur crosslinking agents have been adopted. Therefore, the more scientific meaning of vulcanization should be "crosslinking" or "bridging," referring to the process by which linear macromolecules are formed into a network of macromolecules through crosslinking.

[0003] For example, the Chinese patent application number is: CN202022270434.7. This prior art discloses a vulcanization equipment for new material processing and production, including a box body. The interior of the box body is divided into a vulcanization bin, a drive bin, a control bin and a discharge bin. The vulcanization bin is located at the top of one side of the interior of the box body. A vulcanization assembly is provided in the vulcanization bin. The vulcanization assembly includes a first heating plate, a second heating plate, a mold, a heating plate fixing rod, a first movable plate, a second movable plate and four main fixing rods. The top ends of the four main fixing rods are fixedly connected to the top ends of the interior of the box body. The beneficial effects of the present utility model are as follows: by setting up a box body, vulcanization is carried out inside the box body to prevent damage to the heating plate and cause harm to the staff. A vulcanization bin is provided at the top of one side of the interior of the box body. A vulcanization assembly is provided in the vulcanization bin for vulcanizing materials. The first heating plate is also fixed by the four main fixing rods and the heating plate fixing rod. The second heating plate is slidably connected to the middle of the four main fixing rods. However, the above-mentioned prior art still has the following problems during use:

[0004] When vulcanizing new materials, the workers will be idle, making it impossible for them to work effectively. At the same time, it is inconvenient to perform multiple groups of synchronous alternating vulcanization processes on the new materials, and it is not convenient to improve the efficiency of the vulcanization processing of the new materials. Therefore, it is necessary to provide vulcanization equipment for new material processing and production to solve the problems raised in the above background technology. Summary of the Invention

[0005] The purpose of the present invention is to provide a vulcanization device for processing and producing new materials to solve the problems raised in the above background technology.

[0006] To achieve the above object, the present invention provides the following technical solutions: A vulcanization device for new material processing and production, including a pressure device, an adjustment device, a transmission device, and a limiting device. The adjustment device is slidably installed on the side of the pressure device. The limiting devices are symmetrically and slidably installed inside the center of the side of the pressure device. The transmission device is rotatably installed at the center inside the pressure device and is located at the bottom of the limiting device. A support base is fixedly installed inside the pressure device. Support platforms are symmetrically welded on the upper surface of the support base. A first limiting chute is provided at the center of the upper surface of the support platform. A limiting slideway is provided at the center inside the support platform. Limiting columns are fixedly installed at the four corner edges of the support platform on the upper surface of the support base. A die-casting platform is slidably installed on the outer surface of the limiting columns. Hydraulic cylinders are uniformly fixedly installed on the outer surface of one side of the pressure device and at the top of the die-casting platform. Limiting columns are symmetrically welded on the outer surface of the upper part of one side of the pressure device.

[0007] Preferably, a limiting framework is fixedly installed inside the adjustment device. A winding shaft is rotatably installed on one side of the upper part of the limiting framework. A second connecting rope is fixedly connected to the outer surface of the middle part of the winding shaft. Third connecting ropes are symmetrically fixedly connected to the outer surface of one end of the winding shaft. First connecting ropes are symmetrically fixedly connected to the outer surface of the other end of the winding shaft. Limiting plates are welded at both bottom ends of the limiting framework. A second limiting chute is provided at the center of the upper surface of the limiting plate. Clamping plates are symmetrically welded on the bottom surface of the limiting plate. The bottom ends of the first connecting rope and the third connecting rope are both fixedly connected to a connecting frame. Insertion columns are symmetrically welded on the middle side surface of the connecting frame. Socket holes are provided at the edges of both ends of the top surface of the limiting framework. A first driving motor is fixedly installed at the center of the bottom surface of the limiting framework. The first driving motor, a transmission rod is rotatably clamped at the edge of the first driving motor at the center of the bottom surface of the limiting framework. Driving gears are welded on the outer surfaces of both ends of the transmission rod. Starting sprockets are fixedly connected to the outer surface of the middle part of the transmission rod and the center of one end face of the first driving motor. A first transmission chain is meshed with the outer surface of the starting sprocket.

[0008] Preferably, first limiting sprockets are uniformly rotatably installed inside the transmission device. A second transmission chain is meshed with the outer surface of the first limiting sprocket. A clamping frame is symmetrically fixedly connected to the center of the top surface of the second transmission chain. Clamping columns are fixedly connected to the four corners of the upper surface of the clamping frame. A second limiting sprocket is meshed with the inner surface of the second transmission chain. A first transmission sprocket is welded at the center of the bottom surface of the second limiting sprocket. A third transmission chain is meshed with the outer surface of the first transmission sprocket. A second driving motor is fixedly connected to the center of the bottom surface of the first transmission sprocket. A positioning frame is welded on the outer surface of the second driving motor.

[0009] Preferably, a vulcanization bottom plate is fixedly installed inside the limiting device. A vulcanization groove is formed in the center of the upper surface of the vulcanization bottom plate. Limiting rollers are rotatably installed at the four corners of the bottom surface of the vulcanization groove. Plug columns are slidably inserted at both ends of one side of the upper surface of the vulcanization bottom plate. A vulcanization top plate is rotatably connected to the top of the plug column. Plug holes are symmetrically formed in the upper surface of the vulcanization top plate. A transmission gear is welded at one end of one side surface of the vulcanization top plate and located at the edge of the plug column.

[0010] Preferably, the limiting framework is slidably sleeved on the outer surface of the limiting column through the socket hole. The bottom end of the hydraulic cylinder is fixedly connected to the top surface of the limiting framework. Both ends of the connecting frame are slidably clamped inside the second limiting chute. The connecting frame is slidably inserted through the plug column and aligned with the plug hole.

[0011] Preferably, the bottom end of the second connecting rope is fixedly connected to the outer surface of the middle part of the transmission rod. The transmission rod is meshed and connected to the transmission gear through the driving gears at both ends. The second transmission chain is rotatably connected to the inside of the support table through the limiting slideway.

[0012] Preferably, the second driving motor is fixedly connected to the bottom surface of the support table through the positioning frame. The clamping frame is slidably clamped on the upper surface of the support table through the first limiting chute. Connecting holes are evenly formed in the bottom surface of the vulcanization bottom plate. The clamping frame is inserted through the clamping column and aligned with the connecting hole in the bottom surface of the vulcanization bottom plate.

[0013] Preferably, a gap is reserved between the vulcanization top plate and the vulcanization bottom plate. The limiting plate is slidably clamped in the gap reserved between the vulcanization top plate and the vulcanization bottom plate through the clamping plate on the bottom surface. The vulcanization bottom plate is rollingly clamped on the upper surface of the support table through the limiting rollers on the bottom surface. Return springs are fixedly installed on the outer surfaces of both ends of the winding shaft. Second transmission sprockets are welded on the outer surfaces of the middle parts of the winding shaft and the transmission rod. A synchronous chain is meshed on the outer surface of the second transmission sprocket.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0015] First, by respectively pulling and protecting the vulcanization top plate through the first connecting rope and the third connecting rope, it can ensure that the first driving motor stably drives the vulcanization top plate to perform normal flipping adjustment through the transmission rod, so as to facilitate the staff to clean the new material inside the vulcanization groove. At the same time, the rotation of the second transmission chain can drive the two limiting devices to run synchronously and in opposite directions, which is conducive to realizing the alternating vulcanization processing of the new material.

[0016] Second, by coordinating the control operations among the pressure device, the adjustment device, the transmission device, and the limit device, it is possible to facilitate multi-group synchronous and alternating vulcanization processing of new materials, improve the efficiency of vulcanization processing of new materials, and avoid idling of staff during the vulcanization processing of new materials, thereby increasing the effective working time of the staff. Brief Description of the Drawings

[0017] Figure 1 Schematic diagram of the main structure of the present invention;

[0018] Figure 2 Front view schematic diagram of the main body of the present invention;

[0019] Figure 3 Schematic diagram of the pressure device structure of the present invention;

[0020] Figure 4 Schematic diagram of the adjustment device structure of the present invention;

[0021] Figure 5 Schematic diagram of the partial enlarged structure at B of the present invention;

[0022] Figure 6 Schematic diagram of the transmission device structure of the present invention;

[0023] Figure 7 Schematic diagram of the partial enlarged view at A of the present invention;

[0024] Figure 8 Expanded schematic diagram of the limit device of the present invention.

[0025] In the figure: 1 - pressure device; 2 - adjustment device; 3 - transmission device; 4 - limit device; 5 - limit column; 6 - die-casting table; 7 - first limit chute; 8 - support table; 9 - support base; 10 - limit slideway; 11 - limit column; 12 - hydraulic cylinder; 13 - first connecting rope; 14 - second connecting rope; 15 - limit framework; 16 - winding shaft; 17 - socket hole; 18 - third connecting rope; 19 - second limit chute; 20 - clamping plate; 21 - connecting frame; 22 - limit plate; 23 - inserting column; 24 - first transmission chain; 25 - driving gear; 26 - transmission rod; 27 - first driving motor; 28 - starting sprocket; 29 - second transmission chain; 30 - first limit sprocket; 31 - clamping column; 32 - positioning frame; 33 - second driving motor; 34 - third transmission chain; 35 - clamping frame; 36 - second limit sprocket; 37 - first transmission sprocket; 38 - inserting column; 39 - vulcanization bottom plate; 40 - limit roller; 41 - vulcanization tank; 42 - inserting hole; 43 - vulcanization top plate; 44 - transmission gear. Detailed Embodiment

[0026] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0027] Please refer to Figure 1-8 , the present invention provides a technical solution: a vulcanization device for new material processing and production, including a pressure device 1, an adjustment device 2, a transmission device 3 and a limit device 4. The adjustment device 2 is slidably installed on the side of the pressure device 1, and the limit device 4 is symmetrically and slidably installed inside the center of the side of the pressure device 1. The transmission device 3 is rotatably installed at the center inside the pressure device 1 and is located at the bottom of the limit device 4. A support base 9 is fixedly installed inside the pressure device 1. Support platforms 8 are symmetrically welded on the upper surface of the support base 9. A first limit chute 7 is opened at the center of the upper surface of the support platform 8, and a limit slideway 10 is opened at the center inside the support platform 8. Limit columns 11 are fixedly installed at the four corner edges of the support platform 8 on the upper surface of the support base 9. A die-casting table 6 is slidably installed on the outer surface of the limit columns 11. Hydraulic cylinders 12 are uniformly fixedly installed on the outer surface of one side of the pressure device 1 and at the top of the die-casting table 6. Limit columns 5 are symmetrically welded on the outer surface of the upper part of one side of the pressure device 1.

[0028] A limit skeleton 15 is fixedly installed inside the adjustment device 2. A winding shaft 16 is rotatably installed on one side of the upper part of the limit skeleton 15. A second connecting rope 14 is fixedly connected to the outer surface of the middle part of the winding shaft 16. Third connecting ropes 18 are symmetrically fixedly connected to the outer surface of one end of the winding shaft 16. First connecting ropes 13 are symmetrically fixedly connected to the outer surface of the other end of the winding shaft 16. Limit plates 22 are welded at both bottom ends of the limit skeleton 15. A second limit chute 19 is opened at the center of the upper surface of the limit plate 22. Clamping plates 20 are symmetrically welded on the bottom surface of the limit plate 22. Connecting frames 21 are fixedly connected to the bottom ends of the first connecting ropes 13 and the third connecting ropes 18. Insertion columns 23 are symmetrically welded on the middle side surface of the connecting frame 21. Socket holes 17 are opened at the edges of both ends of the top surface of the limit skeleton 15. A first driving motor 27 is fixedly installed at the center of the bottom surface of the limit skeleton 15. The first driving motor 27, and a transmission rod 26 is rotatably clamped at the edge of the center of the bottom surface of the limit skeleton 15 and located at the edge of the first driving motor 27. Driving gears 25 are welded on the outer surfaces of both ends of the transmission rod 26. Starting sprockets 28 are fixedly connected to the outer surface of the middle part of the transmission rod 26 and the center of one end surface of the first driving motor 27. A first transmission chain 24 is meshed and connected to the outer surface of the starting sprocket 28.

[0029] Inside the transmission device 3, a first limit sprocket 30 is evenly and rotatably installed. The outer surface of the first limit sprocket 30 is meshed and connected with a second drive chain 29. The top surface center of the second drive chain 29 is symmetrically and fixedly connected with a clamping frame 35. Four corners of the upper surface of the clamping frame 35 are fixedly connected with clamping columns 31. The inner surface of the second drive chain 29 is meshed and connected with a second limit sprocket 36. The bottom center of the second limit sprocket 36 is welded with a first drive sprocket 37. The outer surface of the first drive sprocket 37 is meshed and connected with a third drive chain 34. The bottom center of the first drive sprocket 37 is fixedly connected with a second drive motor 33. The outer surface of the second drive motor 33 is welded with a positioning frame 32.

[0030] Inside the limiting device 4, a vulcanization bottom plate 39 is fixedly installed. A vulcanization groove 41 is opened at the center of the upper surface of the vulcanization bottom plate 39. Four corners of the bottom surface of the vulcanization groove 41 are rotatably installed with limiting rollers 40. At both ends of one side of the upper surface of the vulcanization bottom plate 39, insertion columns 38 are slidably inserted. The top of the insertion column 38 is rotatably connected with a vulcanization top plate 43. Insertion holes 42 are symmetrically opened on the upper surface of the vulcanization top plate 43. At one end of one side surface of the vulcanization top plate 43 and at the edge of the insertion column 38, a transmission gear 44 is welded.

[0031] The limiting framework 15 is slidably sleeved on the outer surface of the limiting column 5 through a socket hole 17. The bottom end of the hydraulic cylinder 12 is fixedly connected with the top surface of the limiting framework 15. Both ends of the connecting frame 21 are slidably clamped inside the second limiting chute 19, so as to ensure that the insertion column 23 on the outer surface of the connecting frame 21 is aligned and inserted into the insertion hole 42. The connecting frame 21 is slidably inserted through the alignment of the insertion column 23 and the insertion hole 42, so that the first connecting rope 13 and the third connecting rope 18 can play a protective role in the flipping of the vulcanization top plate 43, thus avoiding the situation that one end of the vulcanization top plate 43 is too heavy to perform stable flipping operation.

[0032] The bottom end of the second connecting rope 14 is fixedly connected with the outer surface of the middle part of the transmission rod 26. The transmission rod 26 is meshed with the transmission gear 44 through the driving gears 25 at both ends, so as to drive the vulcanization top plate 43 to perform a flipping operation. The second drive chain 29 is rotatably connected with the inside of the support platform 8 through a limiting slideway 10, so as to facilitate the sliding of the clamping frame 35 inside the first limiting chute 7.

[0033] The second drive motor 33 is fixedly connected with the bottom surface of the support platform 8 through the positioning frame 32, which can ensure the stability of the operation of the second drive motor 33. The clamping frame 35 is slidably clamped with the upper surface of the support platform 8 through the first limiting chute 7, so as to limit the sliding of the clamping frame 35. Connecting holes are evenly opened on the bottom surface of the vulcanization bottom plate 39. The clamping frame 35 is aligned and inserted into the connecting holes on the bottom surface of the vulcanization bottom plate 39 through the clamping columns 31, which can facilitate the synchronous operation of the second drive chain 29 to drive the vulcanization bottom plate 39.

[0034] A gap is reserved between the vulcanized top plate 43 and the vulcanized bottom plate 39. The limiting plate 22 is slidably clamped through the clamping plate 20 on the bottom surface with the gap reserved between the vulcanized top plate 43 and the vulcanized bottom plate 39. The vulcanized bottom plate 39 is rollingly clamped with the upper surface of the support table 8 through the limiting rollers 40 on the bottom surface, which can ensure the smooth sliding of the vulcanized bottom plate 39 on the upper surface of the support table 8. Reset coil springs are fixedly installed on the outer surfaces of both ends of the winding shaft 16, which can enable the winding shaft 16 to wind up the loose first connecting rope 13 and the third connecting rope 18 under the elastic force of the reset coil springs. Second transmission sprockets are welded on the outer surfaces of the middle parts of the winding shaft 16 and the transmission rod 26, and the outer surfaces of the second transmission sprockets are meshed with a synchronous chain, which can enable the winding shaft 16 to rotate synchronously with the transmission rod 26.

[0035] Working principle: When vulcanizing a new material, first place the new material inside the vulcanizing tank 41, and then start the first driving motor 27 to rotate forward, so that the first driving motor 27 drives the transmission rod 26 to rotate synchronously through the first transmission chain 24 at one end. While the transmission rod 26 is rotating, it will drive the transmission gear 44 to rotate in place through the driving gear 25 at one end. When the transmission gear 44 is rotating, it will drive the vulcanizing top plate 43 to deflect in place until the vulcanizing top plate 43 deflects to be parallel to the vulcanizing bottom plate 39 at the bottom, and the vulcanizing top plate 43 is located directly above the vulcanizing bottom plate 39. At the same time, start the hydraulic cylinder 12 to extend, so as to drive the overall descent of the limiting framework 15 at the bottom. At the same time, the limiting framework 15 will slide on the outer surface of the limiting column 5 through the socket hole 17. When the limiting framework 15 is descending, it will drive the vulcanizing top plate 43 to descend through the clamping plate 20 at the bottom. At the same time, the vulcanizing top plate 43 will drive the insertion column 38 at one side end to descend synchronously on the upper surface of the vulcanizing bottom plate 39 until the bottom surface of the vulcanizing top plate 43 is completely clamped with the vulcanizing tank 41 on the upper surface of the vulcanizing bottom plate 39, thereby limiting the new material between the vulcanizing bottom plate 39 and the vulcanizing top plate 43. When the transmission rod 26 is rotating, it will drive the winding shaft 16 to rotate synchronously through the second transmission sprocket and the synchronous chain on the outer surface of the middle part. When the winding shaft 16 is rotating, it will unwind the first connecting rope 13 and the third connecting rope 18 on the outer surface synchronously, so as to ensure the stable downward turning of the vulcanizing top plate 43 connected to the bottom of the third connecting rope 18. When the vulcanizing top plate 43 is clamped with the upper surface of the vulcanizing bottom plate 39, start the second driving motor 33 to rotate, and the second driving motor 33 will drive the second transmission chain 29 to rotate synchronously through the second limiting sprocket 36 and the first transmission sprocket 37 at the top. While the second transmission chain 29 is rotating, it will drive the two groups of clamping frames 35 connected to the top to slide in opposite directions synchronously. When the clamping frames 35 are sliding, they will slide on the upper surface of the support table 8 under the limitation of the first limiting chute 7. While the clamping frames 35 are sliding, they will drive the vulcanizing bottom plate 39 connected to the upper surface to slide on the upper surface of the support table 8. At the same time, the vulcanizing bottom plate 39 will drive the vulcanizing top plate 43 on the upper surface to slide synchronously, so that the two groups of limiting devices 4 slide in opposite directions and alternately synchronously. When the vulcanizing top plate 43 is sliding, the socket hole 42 will be separated from the insertion column 23, and at the same time, the other vulcanizing top plate 43 will approach the other insertion column 23 until the socket hole 42 on the upper surface of the second group of vulcanizing top plates 43 is aligned and inserted with the second group of insertion columns 23. Since the winding shaft 16 rotated before and unwound the first connecting rope 13, the second group will drive the connecting frame 21 to drive the first connecting rope 13 to slide until the gap between the second group of vulcanizing top plates 43 and the vulcanizing bottom plate 39 is clamped with the clamping plate 20, and ensure that the transmission gear 44 at one end of the second group of vulcanizing top plates 43 is meshed and clamped with the driving gear 25 at one end of the transmission rod 26.At the same time, the first set of limiting devices 4 runs to the bottom of the die-casting table 6, and the operation of the pressure device 1 will drive the die-casting table 6 to descend and squeeze the upper surface of the vulcanization top plate 43, so that the bottom surface of the vulcanization top plate 43 squeezes the inside of the vulcanization tank 41, and at the same time, the vulcanization tank 41 will heat and limit the new material, thereby realizing the cross-linking reaction of the new material, and then start the hydraulic cylinder 12 to drive the limiting frame 15 at the bottom to rise synchronously, so that the limiting frame 15 drives the clamping plate 20 to lift the vulcanization top plate 43 and separate it from the vulcanization bottom plate 39, and then start the first drive motor 27 to rotate in the opposite direction, thereby driving the transmission rod 26 to rotate synchronously through the first transmission chain 24, and the transmission rod 26 will drive the winding shaft 16 to rotate synchronously in the opposite direction through the second transmission sprocket and the synchronous chain, so that the winding shaft 16 will synchronously reel the first connecting rope 13 and the third connecting rope 18, so under the rotation of the transmission rod 26, the second set of vulcanization top plates 43 will be driven to flip, so that the vulcanization top plate 43 and the vulcanization bottom plate 3 9 is separated, and then it is convenient for the staff to clean the new material products on the inner surface of the vulcanization tank 41. When the reel 16 reels the third connecting rope 18, the third connecting rope 18 will drive the two ends of the connecting frame 21 to slide horizontally inside the second limiting slide 19 until the two ends of the connecting frame 21 conflict with one end of the second limiting slide 19. Therefore, when the second set of vulcanization top plates 43 are flipped, the alternating operation of the two sets of limiting devices 4 is completed, and the new material can be alternately vulcanized. Then, continuing the above operation can make the two sets of limiting devices 4 alternately vulcanize the new material. Therefore, by coordinating and controlling the operation between the pressure device 1, the adjustment device 2, the transmission device 3 and the limiting device 4, it is convenient to perform multiple groups of synchronous alternating vulcanization processing on the new material, and at the same time, it is convenient to improve the efficiency of the vulcanization processing of the new material, and avoid the idleness of the staff when the new material is vulcanized, thereby increasing the effective working time of the staff.

[0036] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A vulcanizing device for processing and producing new materials, comprising a pressure device (1), an adjusting device (2), a transmission device (3) and a limiting device (4), wherein the adjusting device (2) is slidably mounted on the side of the pressure device (1), the limiting device (4) is symmetrically slidably mounted inside the center of the side of the pressure device (1), and the transmission device (3) is rotatably mounted inside the center of the pressure device (1) and located at the bottom of the limiting device (4), characterized in that: A support base (9) is fixedly installed inside the pressure device (1), and a support platform (8) is symmetrically welded on the upper surface of the support base (9), a first limiting slide groove (7) is provided at the center of the upper surface of the support platform (8), and a limiting slideway (10) is provided at the inner center of the support platform (8). A limiting column one (11) is fixedly installed on the upper surface of the support base (9) and at the four corner edges of the support platform (8), and a die-casting table (6) is slidably installed on the outer surface of the limiting column one (11). A hydraulic cylinder (12) is evenly fixedly installed on the outer surface of one side of the pressure device (1) and at the top of the die-casting table (6), and a limiting column two (5) is symmetrically welded on the outer surface of one side of the upper part of the pressure device (1); A limiting frame (15) is fixedly installed inside the regulating device (2), a winding shaft (16) is rotatably installed on one side of the upper part of the limiting frame (15), a second connecting rope (14) is fixedly connected to the outer surface of the middle part of the winding shaft (16), a third connecting rope (18) is symmetrically fixedly connected to the outer surface of one end of the winding shaft (16), and a first connecting rope (13) is symmetrically fixedly connected to the outer surface of the other end of the winding shaft (16). The bottom of both ends of the limiting frame (15) is welded with a limiting plate (22), the center of the upper surface of the limiting plate (22) is provided with a second limiting groove (19), the bottom surface of the limiting plate (22) is symmetrically welded with a clamping plate (20), the bottom ends of the first connecting rope (13) and the third connecting rope (18) are fixedly connected to the outer surface of the other end of the winding shaft (16). The connecting frame (21) is fixedly connected to the connecting frame (21), and a plug-in column (23) is symmetrically welded on the middle side of the connecting frame (21). The edges of both ends of the top surface of the limiting frame (15) are provided with a socket hole (17). The center of the bottom surface of the limiting frame (15) is fixedly installed with a first drive motor (27). The center of the bottom surface of the limiting frame (15) and the edge of the first drive motor (27) are rotatably connected with a transmission rod (26). The outer surfaces of the two end edges of the transmission rod (26) are welded with a driving gear (25). The outer surface of the middle part of the transmission rod (26) and the center of one end surface of the first drive motor (27) are fixedly connected with a starting sprocket (28). The outer surface of the starting sprocket (28) is meshed with the first transmission chain (24).

2. The vulcanizing equipment for new material processing and production according to claim 1, characterized in that: A first limiting sprocket (30) is evenly rotated and installed inside the transmission device (3); the outer surface of the first limiting sprocket (30) is meshedly connected to the second transmission chain (29); the top center of the second transmission chain (29) is symmetrically fixedly connected to a clamping frame (35); the four corners of the upper surface of the clamping frame (35) are fixedly connected to clamping columns (31); the inner surface of the second transmission chain (29) is meshedly connected to the second limiting sprocket (36); the center of the bottom surface of the second limiting sprocket (36) is welded with the first transmission sprocket (37); the outer surface of the first transmission sprocket (37) is meshedly connected to the third transmission chain (34); the center of the bottom surface of the first transmission sprocket (37) is fixedly connected to the second drive motor (33); and the outer surface of the second drive motor (33) is welded with a positioning frame (32).

3. The vulcanization equipment for new material processing and production according to claim 2, characterized in that: A vulcanized base plate (39) is fixedly installed inside the limiting device (4), a vulcanized groove (41) is provided at the center of the upper surface of the vulcanized base plate (39), and limiting rollers (40) are rotatably installed at the four corners of the bottom surface of the vulcanized groove (41), and plug-in columns (38) are slidably inserted at both ends of one side of the upper surface of the vulcanized base plate (39), and the top of the plug-in column (38) is rotatably connected to a vulcanized top plate (43), and plug-in holes (42) are symmetrically provided on the upper surface of the vulcanized top plate (43), and a transmission gear (44) is welded to one end of one side of the vulcanized top plate (43) and at the edge of the plug-in column (38).

4. The vulcanization equipment for new material processing and production according to claim 3, characterized in that: The limiting frame (15) is slidably connected to the outer surface of the limiting column 2 (5) through the socket hole (17), the bottom end of the hydraulic cylinder (12) is fixedly connected to the top surface of the limiting frame (15), the two ends of the connecting frame (21) are slidably connected to the inside of the second limiting slide groove (19), and the connecting frame (21) is aligned and slidably connected with the plug hole (42) through the plug column 1 (23).

5. The vulcanization equipment for new material processing and production according to claim 4, characterized in that: The bottom end of the second connecting rope (14) is fixedly connected to the middle outer surface of the transmission rod (26), and the transmission rod (26) is meshed and connected with the transmission gear (44) through the driving gears (25) at both ends. The second transmission chain (29) is connected to the inner rotation of the support platform (8) through the limiting slideway (10).

6. The vulcanizing equipment for new material processing and production according to claim 5, characterized in that: The second drive motor (33) is fixedly connected to the bottom surface of the support platform (8) through the positioning frame (32), the clamping frame (35) is slidably clamped to the upper surface of the support platform (8) through the first limiting sliding groove (7), the bottom surface of the vulcanized base plate (39) is evenly provided with connecting holes, and the clamping frame (35) is aligned and plugged with the connecting holes on the bottom surface of the vulcanized base plate (39) through the clamping column (31).

7. The vulcanization equipment for new material processing and production according to claim 6, characterized in that: A gap is reserved between the vulcanized top plate (43) and the vulcanized bottom plate (39); the limiting plate (22) is slidably engaged with the gap reserved between the vulcanized top plate (43) and the vulcanized bottom plate (39) through the clamping plate (20) on the bottom surface; the vulcanized bottom plate (39) is rolling engaged with the upper surface of the support platform (8) through the limiting roller (40) on the bottom surface; the outer surfaces of both ends of the winding shaft (16) are fixedly mounted with a reset coil spring; the outer surfaces of the middle parts of the winding shaft (16) and the transmission rod (26) are welded with a second transmission sprocket; the outer surface of the second transmission sprocket is meshed with a synchronous chain.

Citation Information

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