Sole pressing equipment
By designing a sole pressing device including a pressing assembly and an unlocking assembly, the existing equipment has solved the problems of pressure instability and difficult mold replacement during the pressing process, the quality and consistency of sole molding are achieved, and the production efficiency and equipment adaptability are improved.
Patent Information
- Application Number
- CN202422149544.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-09-03
AI Technical Summary
Existing sole pressing equipment cannot provide stable pressure when pressing the sole material, resulting in uneven sole molding, dimensional deviation or surface quality reduction, and the equipment has difficulties in the mold replacement process, affecting production efficiency.
A sole pressing device is designed, including a pressing assembly and an unlocking assembly. The pressing assembly is pressed by a cylinder driving the moving plate and the upper die, and the support column and the top plate ensures the stability of the pressing process. The unlocking assembly enables rapid replacement of the lower die by moving the rotating ring and slider.
The equipment ensures the quality and consistency of sole molding through stable pressure, simplifies the operation process, improves production efficiency, and supports the rapid replacement of soles of different sizes and shapes, improving the adaptability and flexibility of the equipment.
Smart Images

Figure CN222982574U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of pressing equipment, and more specifically, it relates to a sole pressing device. Background Art
[0002] In the existing technology, the existing sole pressing device may not be able to provide stable pressure when pressing the sole material. This may be due to the instability of the device structure, the insufficiency of the drive system, or the imperfection of the control system. Such instability may lead to uneven sole forming, dimensional deviation, or a decline in surface quality, thus affecting the quality and durability of the final product.
[0003] During the shoe-making process, different sole designs require the use of different shapes and sizes of molds. However, the existing sole pressing devices may have difficulties in the mold replacement process, such as complex mold fixing structures, cumbersome replacement steps, or the need for special tools. Such limitations may lead to low production efficiency, increased downtime, and affect the production schedule.
[0004] In some applications, it is necessary to quickly replace the mold to meet different production requirements. However, the existing sole pressing devices may lack an effective quick replacement mechanism, or the replacement process takes a long time. Such a slow replacement speed may lead to the interruption of the production line, reduce production efficiency, and increase operating costs. Summary of the Utility Model
[0005] (I) Technical Problems to be Solved
[0006] Aiming at the problems existing in the prior art, the utility model provides a sole pressing device to solve the technical problem that the existing sole pressing device may not be able to provide stable pressure when pressing the sole material as mentioned in the background art.
[0007] (II) Technical Solutions
[0008] To achieve the above object, the utility model provides the following technical solution: A sole pressing device, including a pressing table, a pressing assembly is arranged on the pressing table. The pressing assembly includes a placement table, support columns, a top plate, a cylinder, a moving plate, and a sliding seat. The placement table is fixedly installed on the pressing table. The support columns are arranged at both ends of the pressing table. The top plate is fixedly installed on the top of the support columns. The cylinder is fixedly installed on the top plate. The moving plate is connected to the output end of the cylinder. The sliding seats are arranged at both ends of the moving plate. An unlocking assembly is arranged on the placement table through an installation assembly. The unlocking assembly includes a lower mold, a stabilizing seat, and an installation rod. The lower mold is detachably installed on the placement table. The stabilizing seats are arranged at the four corners of the lower mold. The installation rod is fixedly installed on the placement table and penetrates through the stabilizing seat.
[0009] The present utility model is further configured such that a slide rail is installed on the support column, the sliding seat is slidably connected to the slide rail, a guide rod is fixedly installed on the top plate, and the guide rod is slidably connected to the moving plate. The sliding movement process of the sliding seat is completed through the cooperative use of various components.
[0010] The present utility model is further configured such that an upper mold is fixedly installed at the bottom of the moving plate, and the upper mold is adapted to the lower mold. The pressing process of the sole is completed by using the upper mold.
[0011] The present utility model is further configured such that a mounting sleeve is slidably connected to the mounting rod, the bottom of the mounting sleeve is in contact with the stabilizing seat, fixing rods are uniformly and fixedly installed on the mounting sleeve, mounting blocks are installed on the fixing rods, and a sliding block is slidably connected to the outside of the mounting sleeve. The sliding movement process of the sliding block is completed through the cooperative use of various components.
[0012] The present utility model is further configured such that a rotating ring is rotatably connected to the sliding block, a rotating groove is formed on the rotating ring, the rotating groove is adapted to the fixing rod, a moving groove is formed on the rotating groove, and the moving groove is adapted to the mounting block. The rotating process of the rotating ring is completed through the cooperative use of various components.
[0013] The present utility model is further configured such that the mounting assembly includes a sealing gasket, a sliding groove, and a locking block. The sealing gasket is installed inside the mounting sleeve, both ends of the sealing gasket are in contact with the inside of the mounting sleeve and the mounting rod respectively, the sliding groove is formed on the sliding block, and the locking block is slidably connected to the sliding groove. The moving process of the locking block is completed through the cooperative use of various components.
[0014] The present utility model is further configured such that a locking groove is formed on the mounting rod, and the locking groove is adapted to the locking block. The fixing process of the mounting rod is completed by using the locking groove.
[0015] The present utility model is further configured such that a tension spring is connected between the outside of the mounting sleeve and the sliding block. The stretching process of the tension spring is completed by using the tension spring.
[0016] (III) Beneficial effects
[0017] Compared with the prior art, the present utility model provides a sole pressing device, which has the following beneficial effects:
[0018] 1. The design of the pressing component allows the operator to drive the moving plate and the upper mold to perform the pressing action by starting the cylinder, thereby shaping the sole raw material into the desired shape. The setting of the support columns and the top plate further ensures the stability and safety of the pressing process. The installation of the guide rods makes the movement of the moving plate more accurate and smooth. This design simplifies the operation process, improves production efficiency, and ensures the quality and consistency of sole shaping.
[0019] 2. The design of the unlocking component allows the operator to quickly replace the lower mold by the movement of the rotating ring and the sliding block. The combined use of the mounting sleeve, the fixed rod, and the mounting block makes the replacement process more precise and flexible. The setting of the rotating ring and the moving groove further simplifies the operation process, improves production efficiency, and ensures the quick replacement of the lower mold. This design enables the equipment to adapt to the production requirements of soles of different sizes and shapes, improving the adaptability and flexibility of the equipment.
[0020] 3. The design of the installation component allows the operator to fix and release the lower mold by the movement of the sliding block and the locking block. The setting of the sealing gasket and the sliding groove further ensures the stability and sealing performance of the lower mold. The application of the tension spring enables the sliding block to quickly return to its original position during operation, ensuring the convenience and safety of the operation. This design simplifies the fixing and replacement process of the lower mold, improves production efficiency, and ensures the efficient operation of the equipment. Description of the Drawings
[0021] Figure 1 It is a schematic diagram of the overall structure of a sole pressing device in the present utility model;
[0022] Figure 2 It is an enlarged schematic diagram of A in the present utility model;
[0023] Figure 3 It is a schematic diagram of the unlocking component in the present utility model;
[0024] Figure 4 It is a sectional view schematic diagram of the unlocking component in the present utility model;
[0025] Figure 5 It is an enlarged schematic diagram of B in the present utility model.
[0026] In the figure: 1. Pressing table; 2. Placing table; 3. Support column; 4. Top plate; 5. Cylinder; 6. Moving plate; 7. Sliding seat; 8. Lower mold; 9. Stable seat; 10. Mounting rod; 11. Slide rail; 12. Guide rod; 13. Upper mold; 14. Mounting sleeve; 15. Fixed rod; 16. Mounting block; 17. Sliding block; 18. Rotating ring; 19. Rotating groove; 20. Moving groove; 21. Sealing gasket; 22. Sliding groove; 23. Locking block; 24. Locking groove; 25. Tension spring. Detailed Embodiment
[0027] It should be noted that, without conflict, the embodiments in this application and the features in the embodiments can be combined with each other. The following will describe the present utility model in detail with reference to the drawings and in conjunction with the embodiments.
[0028] It should be pointed out that, unless otherwise specified, all technical and scientific terms used in this application have the same meaning as commonly understood by those of ordinary skill in the technical field to which this application belongs.
[0029] In the present utility model, unless otherwise stated, the orientations such as "upper, lower" are usually in the directions shown in the drawings, or in the vertical, perpendicular or gravitational directions; similarly, for ease of understanding and description, "left, right" are usually in the left and right shown in the drawings; "inner, outer" refer to the inner and outer of the contours of the respective components themselves, but the above orientation terms do not limit the present utility model.
[0030] Please refer to Figures 1-5 , a sole pressing device, including a pressing table 1, a pressing component is arranged on the pressing table 1, the pressing component includes a placing table 2, support columns 3, a top plate 4, a cylinder 5, a moving plate 6 and a sliding seat 7, the placing table 2 is fixedly installed on the pressing table 1, the support columns 3 are arranged at both ends of the pressing table 1, the top plate 4 is fixedly installed on the top of the support columns 3, the cylinder 5 is fixedly installed on the top plate 4, the moving plate 6 is connected to the output end of the cylinder 5, the sliding seats 7 are arranged at both ends of the moving plate 6, an unlocking component is arranged on the placing table 2 through an installation component, the unlocking component includes a lower mold 8, a stabilizing seat 9 and an installation rod 10, the lower mold 8 is detachably installed on the placing table 2, the stabilizing seats 9 are arranged at the four corners of the lower mold 8, the installation rod 10 is fixedly installed on the placing table 2, and the installation rod 10 penetrates through the stabilizing seat 9.
[0031] A slide rail 11 is installed on the support column 3, the sliding seat 7 is slidably connected to the slide rail 11, a guide rod 12 is fixedly installed on the top plate 4, and the guide rod 12 is slidably connected to the moving plate 6.
[0032] An upper mold 13 is fixedly installed at the bottom of the moving plate 6, and the upper mold 13 is adapted to the lower mold 8.
[0033] An installation sleeve 14 is slidably connected to the installation rod 10, the bottom of the installation sleeve 14 is in contact with the stabilizing seat 9, fixing rods 15 are uniformly fixedly installed on the installation sleeve 14, installation blocks 16 are installed on the fixing rods 15, and a sliding block 17 is slidably connected to the outside of the installation sleeve 14.
[0034] A rotating ring 18 is rotatably connected to the sliding block 17, a rotating groove 19 is formed on the rotating ring 18, the rotating groove 19 is adapted to the fixing rod 15, and a moving groove 20 is formed on the rotating groove 19, and the moving groove 20 is adapted to the installation block 16.
[0035] In this embodiment, during use, the raw material of the sole is manually placed on the top of the lower mold 8. At this time, the cylinder 5 is manually activated, which drives the moving plate 6 at the output end to slide on the slide rail 11 by means of the sliding seats 7 at both ends. Moreover, the guide rod 12 provided on the top plate 4 guides the movement of the moving plate 6. When the upper mold 13 on the moving plate 6 is moved to fit with the lower mold 8, the sole raw material is pressed, so that the sole is pressed out. During use, the support column 3 on the pressing table 1 fixes the top plate 4, thus promoting the pressing process. Since different-sized soles require different lower molds 8, they need to be replaced in a timely manner. Therefore, when the lower mold 8 needs to be replaced, the rotating ring 18 rotatably connected to the mounting sleeve 14 is rotated manually. During the rotation process, the rotating groove 19 on the rotating ring 18 rotates along the fixed rod 15. After the moving groove 20 on the rotating ring 18 is rotated and moved to coincide with the mounting block 16 on the fixed rod 15, the rotation of the rotating ring 18 is stopped.
[0036] Please refer to Figures 3-5 , as an implementation mode of a sole pressing device for the installation component: The installation component includes a sealing gasket 21, a sliding groove 22, and a locking block 23. The sealing gasket 21 is installed inside the mounting sleeve 14. Both ends of the sealing gasket 21 are respectively in contact with the inside of the mounting sleeve 14 and the mounting rod 10. The sliding groove 22 is opened on the sliding block 17, and the locking block 23 is slidably connected to the sliding groove 22.
[0037] A locking groove 24 is opened on the mounting rod 10, and the locking groove 24 is adapted to the locking block 23.
[0038] A tension spring 25 is connected between the outside of the mounting sleeve 14 and the sliding block 17.
[0039] More specifically, then manually slide the sliding block 17 along the outer side of the mounting sleeve 14. During the sliding process, the locking block 23 is driven to slide along the sliding groove 22 on the sliding block 17, so that one end of the locking block 23 moves out from the locking groove 24 of the mounting rod 10, thus releasing the fixation of the mounting rod 10. Moreover, during the sliding process of the sliding block 17, the tension spring 25 between the sliding block 17 and the mounting sleeve 14 is stretched. After releasing the fixation of the mounting rod 10, manually slide the mounting sleeve 14 along the mounting rod 10 and take it out, thus releasing the fixation of the lower die 8. At this time, the lower die 8 can be slid out along the mounting rod 10. Under the action of the tension spring 25, the sliding block 17 is driven to slide back to the initial position. Then rotate the rotating ring 18 to the initial position. After placing a new lower die 8 on the mounting rod 10, repeat the above operations to complete the fixation process of the lower die 8.
[0040] In summary, when the whole device is in use or operation: during the use process, manually place the raw material of the shoe sole on the top of the lower die 8. At this time, manually start the air cylinder 5, which drives the moving plate 6 at the output end to slide along the slide rail 11 by means of the sliding seats 7 at both ends, and the guide rod 12 provided on the top plate 4 guides the movement process of the moving plate 6. When the upper die 13 on the moving plate 6 moves to fit with the lower die 8, the shoe sole raw material is pressed, so that the shoe sole is pressed out. During the use process, the support column 3 on the pressing table 1 fixes the top plate 4, thus promoting the pressing process. Since shoe soles of different sizes require the use of different lower dies 8, it is necessary to replace them in time. Therefore, when the lower die 8 needs to be replaced, manually rotate the rotating ring 18 rotatably connected to the mounting sleeve 14. During the rotation process, the rotating groove 19 on the rotating ring 18 rotates along the fixed rod 15. After rotating the moving groove 20 on the rotating ring 18 to a position where it coincides with the mounting block 16 on the fixed rod 15, stop rotating the rotating ring 18.
[0041] Next, manually slide the sliding block 17 along the outer side of the mounting sleeve 14. During the sliding process, the locking block 23 is driven to slide along the sliding groove 22 on the sliding block 17, so that one end of the locking block 23 moves out of the locking groove 24 of the mounting rod 10, thus releasing the fixing of the mounting rod 10. Moreover, during the sliding process of the sliding block 17, the tension spring 25 between the sliding block 17 and the mounting sleeve 14 is stretched. After releasing the fixing of the mounting rod 10, manually slide the mounting sleeve 14 along the mounting rod 10 and take it out, so as to release the fixing of the lower die 8. At this time, the lower die 8 can be slid out along the mounting rod 10. Under the action of the tension spring 25, the sliding block 17 is driven to slide back to the initial position. Then, rotate the rotating ring 18 back to the initial position. After placing a new lower die 8 on the mounting rod 10, repeat the above operations to complete the fixing of the lower die 8.
[0042] In all the solutions mentioned above, for the connection between two components, welding, bolt and nut connection, bolt or screw connection, or other well-known connection methods can be selected according to the actual situation, which will not be elaborated here one by one. For those mentioned above that involve fixed connection, welding is preferably considered. Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A sole pressing device, comprising a pressing platform (1), characterized in that: The pressing table (1) is provided with a pressing assembly, and the pressing assembly comprises a placing table (2), a supporting column (3), a top plate (4), a cylinder (5), a movable plate (6) and a sliding seat (7). The placing table (2) is fixedly mounted on the pressing table (1), the supporting column (3) is arranged at both ends of the pressing table (1), the top plate (4) is fixedly mounted on the top of the supporting column (3), the cylinder (5) is fixedly mounted on the top plate (4), the movable plate (6) is connected to the output end of the cylinder (5), and the sliding seat (7) is arranged at both ends of the movable plate (6). An unlocking assembly is provided on the placing table (2) through the mounting assembly, and the unlocking assembly comprises a lower mold (8), a stabilizing seat (9) and a mounting rod (10). The lower mold (8) is detachably mounted on the placing table (2), the stabilizing seat (9) is arranged at the four corners of the lower mold (8), and the mounting rod (10) is fixedly mounted on the placing table (2), and the mounting rod (10) passes through the stabilizing seat (9).
2. A sole pressing device according to claim 1, characterized in that: A slide rail (11) is installed on the support column (3), the slide seat (7) is slidably connected to the slide rail (11), a guide rod (12) is fixedly installed on the top plate (4), and the guide rod (12) is slidably connected to the movable plate (6).
3. A sole pressing device according to claim 2, characterized in that: An upper die (13) is fixedly mounted on the bottom of the movable plate (6), and the upper die (13) is adapted to the lower die (8).
4. A sole pressing device according to claim 3, characterized in that: A mounting sleeve (14) is slidably connected to the mounting rod (10), the bottom of the mounting sleeve (14) is in contact with the stabilizing seat (9), a fixing rod (15) is evenly fixedly mounted on the mounting sleeve (14), a mounting block (16) is mounted on the fixing rod (15), and a sliding block (17) is slidably connected to the outer side of the mounting sleeve (14).
5. A sole pressing device according to claim 4, characterized in that: The sliding block (17) is rotatably connected with a rotating ring (18), the rotating ring (18) is provided with a rotating groove (19), the rotating groove (19) is matched with the fixed rod (15), the rotating groove (19) is provided with a moving groove (20), and the moving groove (20) is matched with the mounting block (16).
6. A sole pressing device according to any one of claims 1 to 5, characterized in that: The mounting assembly comprises a sealing gasket (21), a sliding groove (22) and a locking block (23); the sealing gasket (21) is mounted on the inner side of the mounting sleeve (14); two ends of the sealing gasket (21) are respectively fitted with the inner side of the mounting sleeve (14) and the mounting rod (10); the sliding groove (22) is provided on the sliding block (17); and the locking block (23) is slidably connected to the sliding groove (22).
7. A sole pressing device according to claim 6, characterized in that: The installation rod (10) is provided with a locking groove (24), and the locking groove (24) is adapted to the locking block (23).
8. A sole pressing device according to claim 7, characterized in that: A tension spring (25) is connected between the outer side of the installation sleeve (14) and the sliding block (17).