Rubber plate water cooling processing and air drying transfer frame
By using an overhead transfer and air-drying device on a rubber sheet water-cooling transfer rack, the problem of water stains remaining on the surface of the rubber sheet after water cooling is solved, enabling rapid dewatering and smooth connection with automated production lines, thereby improving processing efficiency and equipment practicality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YICHANG ZHONGNAN RUBBER GRP CHANGZHENG RUBBER PROD CO LTD
- Filing Date
- 2025-09-22
- Publication Date
- 2026-07-31
AI Technical Summary
After existing water-cooling processing, a large amount of water stains remain on the surface of the rubber sheet, causing impurities to adhere and making it difficult to transfer or reprocess, thus affecting the smooth connection of automated production lines.
A rubber sheet drying transfer rack was designed, which combines overhead transfer and gravity sliding, and uses a drying device to help remove water stains. Through the coordination of the feeding and discharging structures, the connection of an automated production line is realized.
It significantly reduces the amount of water residue on the surface of the rubber sheet, improves transfer efficiency, adapts to the processing needs of automated production lines, and enhances the practicality of the equipment.
Smart Images

Figure CN224577652U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of rubber sheet production and processing equipment, and in particular to a rubber sheet drying and transfer rack after water-cooled processing. Background Technology
[0002] In rubber processing, if the rubber sheets cannot be cooled in time after mixing, the compounding agents may fail or the rubber compound may stick together due to high temperature, affecting subsequent processing. At the same time, the temperature of the vulcanization process is generally maintained at 150 to 160 degrees Celsius, and rapid cooling is also required after processing to avoid the rubber from deforming easily at high temperatures and to quickly lock in the molecular structure.
[0003] Traditional cooling methods are generally divided into three types: natural cooling, air cooling, and water cooling. Natural cooling is suitable for small-sized rubber products, air cooling is suitable for medium-sized rubber products that are easy to suspend and move, while water cooling is the fastest way to cool large rubber sheets. Existing equipment typically connects directly to a conveyor to transfer the rubber sheets after water cooling processing. However, too much water residue easily remains on the surface of the rubber sheets, which not only easily attracts impurities but also causes them to stick together after being stacked for a long time, making it difficult to separate, transfer, or reprocess them, resulting in many drawbacks. Summary of the Invention The technical problem this utility model aims to solve is to provide a drying and transfer rack for rubber sheets after water-cooling processing. By transferring the rubber sheets overhead, it facilitates rapid drainage after water cooling, significantly reducing the amount of residual water on the surface of the rubber sheets. By utilizing gravity in conjunction with the sliding and collision limiting of the rubber sheets, the residual water on the surface of the rubber sheets can be quickly peeled off through vibration. At the same time, the auxiliary blower device helps to blow away residual water stains on the surface, greatly reducing the amount of water residue on the surface of the rubber sheets. Through the coordination of the feeding and discharging structures, the connection between water-cooled discharge and conveying device receiving is improved, making it suitable for automated production line processing and highly practical.
[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is: a rubber sheet water-cooled processing and air-drying transfer frame, including a support frame, a support block symmetrically provided on one side of the support frame, a rotating shaft provided on the support block, the rotating shaft being hinged to multiple connecting blocks on one side of the adjustment frame, multiple sets of support plates and side baffles provided on the adjustment frame, multiple sets of guide pulleys provided in the support plates, a first connecting shaft symmetrically provided on both sides of the support frame, the first connecting shaft being hinged to a first connecting piece provided at the bottom of a first electric push rod, a second connecting piece being fixedly connected to the output end of the first electric push rod, the second connecting piece being hinged to a second connecting shaft provided on the adjustment frame, and the support frame being provided with a feeding structure, a discharging structure and an air-drying structure.
[0005] In a preferred embodiment, the air-drying structure includes a mounting frame disposed on a support frame, and multiple sets of fans are evenly distributed on the mounting frame.
[0006] In a preferred embodiment, the bottom of the support frame is provided with a reinforcing frame.
[0007] In a preferred embodiment, the feeding mechanism includes a first mounting base symmetrically arranged on a support frame, a second electric push rod on the first mounting base, the output end of the second electric push rod being connected to a first movable frame, and a plurality of symmetrically arranged first mounting arms on the first movable frame, with a first guide roller between each symmetrically arranged first mounting arm.
[0008] In a preferred embodiment, the position of each symmetrically arranged first mounting arm is matched with the gap within the multiple sets of support plates, and the height of the multiple symmetrically arranged first mounting arms is the same. In a preferred embodiment, the discharge assembly structure includes a second mounting base symmetrically arranged on a support frame, a third electric push rod on the second mounting base, the output end of the third electric push rod being connected to a second movable frame, and a plurality of symmetrically arranged second mounting arms on the second movable frame, with a second guide roller between each symmetrically arranged second mounting arm.
[0009] In the preferred embodiment, the position of each group of symmetrically arranged second mounting arms is matched with the gap within the multiple sets of support plates, and the height of the multiple groups of symmetrically arranged first mounting arms gradually increases from one side to the other.
[0010] The rubber sheet drying and transfer rack provided by this utility model, by adopting the above-mentioned structure, has the following beneficial effects: (1) By transferring the rubber sheet over an overhead structure, it is convenient for the rubber sheet to drain water quickly after water cooling, which significantly reduces the amount of residual water on the surface of the rubber sheet after water cooling. (2) By using gravity to slide the rubber plate and then impact limiting, the residual water on the surface of the rubber plate can be quickly peeled off by vibration. At the same time, the auxiliary blower can blow away the residual water stains on the surface, which greatly reduces the amount of water residue on the surface of the rubber plate. (3) By coordinating the feeding structure and the discharging structure, the connection between the water-cooled discharge and the material receiving device is improved, which is suitable for the processing of automated production lines and has strong practicality. Attached Figure Description
[0011] The present invention will be further described below with reference to the accompanying drawings and embodiments: Figure 1 This is a schematic diagram of the overall structure of this utility model in the material receiving state.
[0012] Figure 2 This is a schematic diagram of the overall structure of this utility model, showing the material guiding and water vibration state.
[0013] Figure 3 This is a schematic diagram of the overall structure of this utility model, showing the material discharge state.
[0014] Figure 4 This is a schematic diagram of the support frame and its structure according to the present invention.
[0015] Figure 5 This is a schematic diagram of the adjustment frame structure of this utility model.
[0016] In the diagram: support frame 1, support block 2, rotating shaft 3, adjusting frame 4, connecting block 5, support plate 6, guide pulley 7, side baffle 8, mounting frame 9, fan 10, first connecting shaft 11, first connecting piece 12, first electric push rod 13, second connecting shaft 14, second connecting piece 15, reinforcing frame 16, first mounting seat 17, second electric push rod 18, first moving frame 19, first mounting arm 20, first guide roller 21, second mounting seat 22, third electric push rod 23, second moving frame 24, second mounting arm 25, second guide roller 26. Detailed Implementation
[0017] Example 1: like Figure 1-5 In this paper, a rubber sheet drying and transfer frame after water cooling processing includes a support frame 1 that provides overall load-bearing and support. Support blocks 2 are symmetrically arranged on one side of the support frame 1, providing stable mounting points for a rotating shaft 3. The rotating shaft 3 is mounted on the support blocks 2 and hinged to multiple connecting blocks 5 on one side of an adjusting frame 4, allowing the adjusting frame 4 to rotate around the rotating shaft 3. This allows for flexible adjustment of the rubber sheet's tilt within the adjusting frame 4, adapting to drying and transfer requirements. The adjusting frame 4 has multiple sets of support plates 6 for lifting the rubber sheet and side baffles 8 to prevent the rubber sheet from slipping and falling. Multiple sets of guide pulleys 7 are installed within the support plates 6, converting the sliding friction between the rubber sheet and the support plates 6 into rolling friction, reducing the friction of the rubber sheet entering and exiting the adjusting frame. To mitigate resistance and wear at 4 o'clock, the support frame 1 is symmetrically provided with first connecting shafts 11 on both sides. The first connecting shafts 11 are hinged to the first connecting piece 12 at the bottom of the first electric push rod 13, providing bottom hinge support for the first electric push rod 13. A second connecting piece 15 is fixedly connected to the output end of the first electric push rod 13. The second connecting piece 15 is hinged to the second connecting shaft 14 on the adjustment frame 4. Through the extension and retraction of the first electric push rod 13, the adjustment frame 4 can be driven to rotate around the rotating shaft 3 and fixed at the target angle. The support frame 1 is provided with a feeding structure for connecting water cooling equipment and guiding the rubber sheet into the adjustment frame 4, a discharging structure for exporting the dried rubber sheet to the subsequent process, and a drying structure for removing water stains from the surface of the rubber sheet. In a preferred embodiment, the air-drying structure includes a mounting frame 9 set on the support frame 1. The mounting frame 9 provides a uniform mounting carrier and positioning reference for the fans 10. Multiple sets of fans 10 are evenly distributed on the mounting frame 9. The multiple sets of fans 10 can form a uniform and comprehensive airflow coverage, ensuring that water stains in all areas of the rubber sheet surface can be effectively dried. In a preferred embodiment, the bottom of the support frame 1 is provided with a reinforcing frame 16, which can enhance the overall structural strength and stability of the support frame 1 and prevent the equipment from shaking or deforming when bearing the rubber plate. In a preferred embodiment, the feeding mechanism includes a first mounting base 17 symmetrically arranged on the support frame 1. The first mounting base 17 provides a fixed mounting foundation for the second electric push rod 18. The second electric push rod 18 is mounted on the first mounting base 17. The output end of the second electric push rod 18 is connected to the first movable frame 19. The extension and retraction of the second electric push rod 18 can drive the first movable frame 19 to move up and down, thereby adjusting the height of the first guide roller 21 to adapt to the discharge height of rubber sheets of different thicknesses and water-cooling equipment. The first movable frame 19 is provided with multiple sets of symmetrically arranged first mounting arms 20. A first guide roller 21 is provided between each set of symmetrically arranged first mounting arms 20. The first guide roller 21 can guide the water-cooled rubber sheet to smoothly enter the adjusting frame 4. In the preferred embodiment, the position of each symmetrically arranged first mounting arm 20 is matched with the gap in the multiple sets of support plates 6 to ensure that the first guide roller 21 and the support plate 6 do not interfere with each other and can smoothly connect the conveying of the rubber sheet. The multiple symmetrically arranged first mounting arms 20 have the same height to ensure that the first guide roller 21 is at the same horizontal height, so that the rubber sheet enters the adjustment frame 4 in a horizontal state. In a preferred embodiment, the discharge mechanism includes a second mounting base 22 symmetrically arranged on the support frame 1. The second mounting base 22 provides a fixed mounting foundation for the third electric push rod 23. The third electric push rod 23 is mounted on the second mounting base 22. The output end of the third electric push rod 23 is connected to the second movable frame 24. The extension and retraction of the third electric push rod 23 can drive the second movable frame 24 to move up and down, thereby adjusting the height of the second guide roller 26 to match the tilt angle of the adjustment frame 4 and the feeding height of subsequent processes. The second movable frame 24 is provided with multiple sets of symmetrically arranged second mounting arms 25. A second guide roller 26 is provided between each set of symmetrically arranged second mounting arms 25. The second guide roller 26 can smoothly guide the dried rubber sheet out of the adjustment frame 4. In the preferred embodiment, the position of each symmetrically arranged second mounting arm 25 is matched with the gap in the multiple sets of support plates 6 to avoid collision and interference between the second guide roller 26 and the support plate 6, ensuring smooth conveying of the rubber sheet. The height of the multiple symmetrically arranged second mounting arms 20 gradually increases from one side to the other, so that the second guide roller 26 forms a guide slope that matches the tilt angle of the adjustment frame 4, ensuring that the rubber sheet is stably discharged under the combined action of gravity and the guide roller.
[0018] Example 2: like Figure 1-5The working principle of this utility model is as follows: The second electric push rod 18 can be raised and lowered to connect with the material receiving position of different water-cooled equipment. After the water-cooled rubber sheet is received onto multiple sets of first guide rollers 21, the second electric push rod 18 descends and places the rubber sheet on multiple sets of support plates 6 on the adjusting frame 4. Then the first electric push rod 13 works, the angle of the adjusting frame 4 changes, and the rubber sheet located on the high point side of the adjusting frame 4 slides to the other side with the help of the guide pulley 7 and collides with the side baffle 8. The residual water stains on the rubber sheet are quickly shaken off by vibration. During the process, the fan 10 continuously assists in removing water. Then the third electric push rod 23 works, and with the cooperation of multiple obliquely set second guide rollers 26, the material slides out obliquely and connects to the feeding position of the conveying equipment.
[0019] The beneficial effects of this utility model are as follows: By using overhead transfer, the rubber sheet can be quickly drained after water cooling, significantly reducing the amount of residual water on the surface of the rubber sheet after water cooling; by using gravity in conjunction with the sliding rubber sheet and collision limiting, the residual water on the surface of the rubber sheet can be quickly peeled off by vibration, and at the same time, the blower device can help blow away the residual water stains on the surface, greatly reducing the amount of water residue on the surface of the rubber sheet; by coordinating the feeding structure and the discharging structure, the connection between the water cooling discharge and the receiving of the conveying device is improved, making it suitable for automated production line processing and highly practical.
Claims
1. Rubber plate air-drying transfer frame after water cooling processing, comprising a support frame (1), characterized in that: The support frame (1) is provided with a support block (2) symmetrically on one side. The support block (2) is provided with a rotating shaft (3). The rotating shaft (3) is hinged to multiple connecting blocks (5) on one side of the adjustment frame (4). The adjustment frame (4) is provided with multiple sets of support plates (6) and side baffles (8). Multiple sets of guide pulleys (7) are provided in the support plate (6). The support frame (1) is provided with a first connecting shaft (11) symmetrically on both sides. The first connecting shaft (11) is hinged to the first connecting piece (12) at the bottom of the first electric push rod (13). The output end of the first electric push rod (13) is fixedly connected to a second connecting piece (15). The second connecting piece (15) is hinged to the second connecting shaft (14) on the adjustment frame (4). The support frame (1) is provided with a feeding structure, a discharging structure and a drying structure.
2. The rubber sheet air-drying and transferring rack after water cooling processing according to claim 1, characterized in that: The air-drying structure includes a mounting frame (9) set on a support frame (1), and multiple sets of fans (10) are evenly distributed on the mounting frame (9).
3. The rubber sheet air drying and transferring rack after water cooling processing according to claim 1, characterized in that: The bottom of the support frame (1) is provided with a reinforcing frame (16).
4. The rubber sheet air drying and transferring rack after water cooling processing according to claim 1, characterized in that: The feeding mechanism includes a first mounting base (17) symmetrically arranged on the support frame (1), a second electric push rod (18) on the first mounting base (17), the output end of the second electric push rod (18) being connected to the first movable frame (19), and a plurality of symmetrically arranged first mounting arms (20) on the first movable frame (19), with a first guide roller (21) between each symmetrically arranged first mounting arm (20).
5. The rubber sheet water-cooled processing and air-drying transfer rack according to claim 4, characterized in that: The positions of the first mounting arms (20) arranged symmetrically in each group are matched with the gaps in the multiple sets of support plates (6), and the heights of the first mounting arms (20) arranged symmetrically in the multiple groups are the same.
6. The rubber sheet air drying and transfer rack after water cooling processing according to claim 1, characterized in that: The discharge assembly structure includes a second mounting base (22) symmetrically arranged on the support frame (1), a third electric push rod (23) is provided on the second mounting base (22), the output end of the third electric push rod (23) is connected to the second movable frame (24), and multiple sets of symmetrically arranged second mounting arms (25) are provided on the second movable frame (24), with a second guide roller (26) between each set of symmetrically arranged second mounting arms (25).
7. The rubber sheet air-drying and transferring rack after water cooling processing according to claim 6, characterized in that: The positions of the symmetrically arranged second mounting arms (25) are matched with the gaps in the multiple sets of support plates (6), and the height of the symmetrically arranged first mounting arms (20) gradually increases from one side to the other.