Shoe production shaping device
By using hydraulically driven upper and lower mold components and a convenient mold replacement structure, the problems of molding interference and inconvenient mold replacement in existing devices are solved, achieving automatic material feeding and improved safety.
Patent Information
- Application Number
- CN202423321747.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2034-12-31
AI Technical Summary
In existing shoe production molding devices, the second push plate may affect the molding effect of the shoe during the molding process, and it is prone to breakage under high pressure, and it is inconvenient to change the mold.
A shoe production shaping device was designed, which uses upper and lower mold components driven by hydraulic cylinders. The shoe is automatically unloaded through the unloading component. The mold can be easily replaced by the snap-fit structure of the mounting component, and the shoe position is prevented by the support plate.
It enables automatic material feeding without affecting the shape of the shoe during the molding process, improving the practicality and safety of the device and simplifying the mold replacement process.
Smart Images

Figure CN223614274U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of shoe processing and shaping, and specifically relates to a shoe production shaping device. Background Technology
[0002] Shoes are an essential part of life. They are divided into different types according to different places of wearing. As demand increases, shoes have also added a variety of functions. The main components of shoes are the sole and the upper. The main ways to connect the sole and the upper are gluing and sewing. Gluing is inseparable from various adhesives. Adhesives not only make the connection between the upper and the sole stronger, but also make the process very simple.
[0003] Chinese Patent No. CN218784281U discloses a shoe upper shaping device for shoe production, including a base plate. A lower mold, a controller, and a fixing frame are fixedly connected to the upper end of the base plate. The lower mold and controller are located inside the fixing frame and do not contact each other. The lower mold is located to the left of the controller and does not contact each other. A demolding mechanism is provided on the upper side inside the lower mold. Support blocks are fixedly connected to the upper left and upper right ends of the lower mold. This shoe upper shaping device, by providing a demolding mechanism inside the lower mold, allows the shaped shoe upper to separate from the lower mold via a lifting mechanism. Workers can then push the first push plate in the demolding mechanism, causing two second push plates to push the shaped shoe upper out of the upper part of the lower mold. After releasing the first push plate, the demolding mechanism automatically resets, allowing subsequent operations to continue. The entire process eliminates the need for workers' hands to contact the shaped shoe upper, improving operational safety.
[0004] As can be seen from the above structure, the electric telescopic rod in the lifting mechanism is controlled by the controller to lift the support plate upward. The two support plates move upward to separate the shaped shoe upper from the lower mold. During separation, the hands do not need to come into contact with the shoe upper, which can prevent burns to the hands. Moreover, the shoe upper does not change its shape when it is lifted upward from the bottom. However, as can be seen from the above figure and text, the second push plate is positioned to extend out of the lower mold. When the shoe is being shaped, the extended second push plate will affect the shaping effect of the shoe. At the same time, under greater pressure, the second push plate may break while being squeezed. Utility Model Content
[0005] In view of the problems mentioned in the background art, the purpose of this utility model is to provide a shoe production shaping device to solve the problems mentioned in the background art.
[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution:
[0007] A shoe manufacturing shaping device includes a plate, a bracket fixedly connected to the upper end of the plate, a hydraulic cylinder fixedly connected to the upper end of the bracket, an mounting plate fixedly connected to the lower end of the hydraulic cylinder, mounting components fixedly connected to the upper end of the plate and the lower end of the mounting plate, an upper mold provided at the other end of the mounting component at the lower end of the mounting plate, a lower mold provided at the other end of the mounting component at the upper end of the plate, a feeding component provided inside the lower mold, the feeding component including a mounting hole provided inside the lower mold, a feeding screw rotatably connected inside the mounting hole, a threaded component threadedly connected to the outer surface of the feeding screw, a feeding block slidably connected to the upper end of the lower mold, the other end of the threaded component being fixedly connected to the feeding block, a motor fixedly connected to the other side of the lower mold, and the output shaft of the motor passing through the lower mold and fixedly connected to the feeding screw.
[0008] As a preferred technical solution, the unloading block includes a groove on the upper end of the lower mold, a sliding rod is slidably connected inside the groove, and an unloading plate is fixedly connected to the other end of the sliding rod. The threaded part is fixedly connected to the sliding rod.
[0009] As a preferred technical solution, the mounting assembly includes a mounting shell disposed at the upper end of the plate and the lower end of the mounting plate. The surface of the mounting shell is provided with snap-fit holes. Mounting blocks are fixedly connected to the other side of the upper mold and the lower mold. Circular holes are provided on both sides of the mounting blocks. Springs are fixedly connected inside the circular holes. The other end of the springs is fixedly connected to snap-fit connectors. The snap-fit connectors and snap-fit holes snap-fit into each other.
[0010] As a preferred technical solution, rubber membranes are fixedly connected to both sides of the mounting shell, and release blocks are fixedly connected to the inner side of each rubber membrane. The release blocks are engaged with the locking holes and are movably connected with the locking connectors.
[0011] As a preferred technical solution, the upper end of the mounting plate is slidably inserted into the bracket, and limit rods are fixedly connected to both sides of the upper end of the mounting plate. Limit holes are opened on both sides of the upper end of the bracket, and the limit holes and limit rods are slidably inserted into each other.
[0012] As a preferred technical solution, a housing is fixedly connected to the lower end of the plate, an electric push rod is fixedly connected inside the housing, and a rubber pad is fixedly connected to the other end of the electric push rod. The rubber pad and the housing are movably connected to each other.
[0013] As a preferred technical solution, support plates are slidably connected to both sides of the lower mold, mounting grooves are provided on both sides of the lower mold, and mounting rods are fixedly connected to one side of each support plate, with the mounting rods and mounting grooves slidably connected to each other.
[0014] In summary, the present invention has the following main advantages:
[0015] First, the present invention, through the setting of the feeding component, after the shoe is formed by the upper and lower molds, controls the rotation of the motor to rotate the feeding screw fixedly connected to it. The rotation of the feeding screw causes the threaded part to slide on the surface of the feeding screw, while the other end of the threaded part is fixedly connected to the feeding block. Thus, the movement of the threaded part causes the feeding block to move as well. In turn, the movement of the feeding block, under the action of the feeding plate, allows the shoe to be pushed out, thereby achieving the feeding effect. Moreover, this structure is located inside the lower mold, so it will not affect the normal forming of the shoe, thus increasing the practicality of the device.
[0016] Secondly, through the installation components, when installing the lower and upper molds, the mounting blocks on one side of the lower and upper molds are inserted into the interior of the mounting shell. During insertion, the snap-fit connector is squeezed into the interior of the round hole. After the mounting block is inserted into the appropriate position, the position of the round hole is aligned with the position of the snap-fit hole. At this time, the snap-fit connector is not squeezed by the mounting shell. Then, under the action of the spring, it pops out of the interior of the round hole to achieve a snap-fit effect with the snap-fit hole. Thus, after the snap-fit connector and the snap-fit hole are snapped together, the lower and upper molds can be installed, making it more convenient to replace the upper and lower molds. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of this utility model;
[0018] Figure 2 This is a side view structural diagram of the present invention;
[0019] Figure 3 This is a schematic diagram of the lower mold of this utility model;
[0020] Figure 4 This is the utility model Figure 1 A magnified structural diagram of part A.
[0021] Reference numerals: 1. Plate surface; 2. Bracket; 3. Hydraulic cylinder; 4. Mounting plate; 5. Mounting assembly; 51. Mounting shell; 52. Mounting block; 53. Snap-fit hole; 54. Round hole; 55. Spring; 56. Snap-fit connector; 6. Upper mold; 7. Lower mold; 8. Feeding assembly; 81. Motor; 82. Mounting hole; 83. Feeding screw; 84. Threaded part; 85. Feeding block; 851. Slide groove; 852. Slide rod; 853. Feeding plate; 9. Limiting hole; 10. Limiting rod; 11. Mounting groove; 12. Mounting rod; 13. Support plate; 14. Shell; 15. Electric push rod; 16. Rubber pad; 17. Rubber diaphragm; 18. Release block. Detailed Implementation
[0022] Example
[0023] refer to Figures 1 to 4 This embodiment of a shoe production shaping device includes a plate 1. A bracket 2 is fixedly connected to the upper end of the plate 1. A hydraulic cylinder 3 is fixedly connected to the upper end of the bracket 2. A mounting plate 4 is fixedly connected to the lower end of the hydraulic cylinder 3. Mounting components 5 are fixedly connected to both the upper end of the plate 1 and the lower end of the mounting plate 4. An upper mold 6 is provided at the other end of the mounting component 5 at the lower end of the mounting plate 4, and a lower mold 7 is provided at the other end of the mounting component 5 at the upper end of the plate 1. A feeding component 8 is provided inside the lower mold 7. The feeding component 8 includes a mounting hole 82 provided inside the lower mold 7, and the mounting hole 82 is rotatably connected to... There is a feeding screw 83, and a threaded part 84 is threadedly connected to the outer surface of the feeding screw 83. A feeding block 85 is slidably connected to the upper end of the lower mold 7. The other end of the threaded part 84 is fixedly connected to the feeding block 85. A motor 81 is fixedly connected to the other side of the lower mold 7. The output shaft of the motor 81 passes through the lower mold 7 and is fixedly connected to the feeding screw 83. The feeding block 85 includes a slide groove 851 opened at the upper end of the lower mold 7. A slide rod 852 is slidably connected inside the slide groove 851. The other end of the slide rod 852 is fixedly connected to the feeding plate 853. The threaded part 84 is fixedly connected to the slide rod 852.
[0024] refer to Figure 1 , Figure 2 and Figure 4The mounting assembly 5 includes a mounting shell 51 located at the upper end of the plate 1 and the lower end of the mounting plate 4. The surface of the mounting shell 51 has a snap-fit hole 53. Mounting blocks 52 are fixedly connected to the other side of the upper mold 6 and the lower mold 7. Circular holes 54 are opened on both sides of the mounting blocks 52. Springs 55 are fixedly connected inside the circular holes 54. A snap-fit connector 56 is fixedly connected to the other end of the springs 55. The snap-fit connector 56 snaps into the snap-fit hole 53. By inserting the mounting blocks 52 on one side of the lower mold 7 and the upper mold 6 into the mounting shell 51, the snap-fit connector 56 is squeezed into the circular hole 54 during insertion. After the mounting blocks 52 are inserted into the appropriate position, the position of the circular hole 54 is aligned with the position of the snap-fit hole 53. At this time, the snap-fit connector 56 is not squeezed by the mounting shell 51. Then, under the action of the springs 55, it pops out of the circular hole 54 to achieve a snap-fit effect with the snap-fit hole 53.
[0025] refer to Figure 2 and Figure 4 Rubber membranes 17 are fixedly connected to both sides of the mounting shell 51. Release blocks 18 are fixedly connected to the inner side of the rubber membranes 17. The release blocks 18 are engaged with the locking holes 53 and are movably connected with the locking connectors 56. When disassembling, the release blocks 18 can be moved into the locking holes 53 by pressing the rubber membranes 17. When the release blocks 18 move, the locking connectors 56 can be pushed into the round holes 54. Thus, after the locking connectors 56 are fully inserted into the round holes 54, there is no locking effect between the locking connectors 56 and the locking holes 53, which makes disassembly more convenient.
[0026] refer to Figure 1 The upper end of the mounting plate 4 is slidably inserted into the bracket 2. Limiting rods 10 are fixedly connected to both sides of the upper end of the mounting plate 4. Limiting holes 9 are opened on both sides of the upper end of the bracket 2. The limiting holes 9 and the limiting rods 10 are slidably inserted into each other.
[0027] refer to Figure 1 The lower end of the plate 1 is fixedly connected to the outer shell 14, and the inside of the outer shell 14 is fixedly connected to the electric push rod 15. The other end of the electric push rod 15 is fixedly connected to the rubber pad 16, and the rubber pad 16 and the outer shell 14 are movably connected to each other. By controlling the telescopic cylinder, the rubber pad 16 is moved into the inner part of the outer shell 14. However, during the movement of the rubber pad 16, the air pressure at the bottom of the rubber pad 16 decreases, thereby generating suction, which can firmly fix the device.
[0028] refer to Figure 3Both sides of the lower mold 7 are slidably connected to support plates 13, and both sides of the lower mold 7 are provided with mounting grooves 11. One side of each support plate 13 is fixedly connected to a mounting rod 12, and the mounting rod 12 and the mounting groove 11 are slidably connected to each other. The support plates 13 provide support for the placement of the shoes, and the support plates 13 also prevent the shoes from being misaligned when placed on the upper part of the lower mold 7.
[0029] Operating principle and advantages: First, the device is moved to a suitable position. Then, the telescopic cylinder is controlled to move the rubber pad 16 into the housing 14. During the movement of the rubber pad 16, the air pressure at the bottom of the rubber pad 16 decreases, thereby generating suction, which firmly fixes the device. Then, the mounting blocks 52 on one side of the lower mold 7 and the upper mold 6 are respectively inserted into the housing 51. During insertion, the snap-fit connector 56 is squeezed into the round hole 54. After the mounting block 52 is inserted into the appropriate position, the position of the round hole 54 is aligned with the snap-fit hole 54. With the positions aligned, the snap-fit connector 56 will not be squeezed by the mounting shell 51. Then, under the action of the spring 55, it pops out of the round hole 54 to engage with the snap-fit hole 53. After the snap-fit connector 56 engages with the snap-fit hole 53, the lower mold 7 and the upper mold 6 can be installed. After installation, the device can be used normally. By placing the shoe on the upper part of the lower mold 7, the support plate 13 can support the shoe and prevent positional deviation when the shoe is placed on the upper part of the lower mold 7. In this case, the upper mold 6 can be controlled by the hydraulic cylinder 3 to achieve the molding effect. After molding, the motor 81 is controlled to rotate, and the feeding screw 83 fixedly connected to it rotates under the rotation of the motor 81. The rotation of the feeding screw 83 causes the threaded part 84 to slide on the surface of the feeding screw 83. The other end of the threaded part 84 is fixedly connected to the feeding block 85, so that the feeding block 85 will also move under the movement of the threaded part 84. In turn, under the action of the feeding plate 853, the shoe can be placed on the feeding plate 853. The material is pushed out under the action of the feeding plate 85 to achieve the feeding effect. The feeding screw 83, which is fixedly connected to the motor 81, is rotated by the control of the motor 81. The rotation of the feeding screw 83 causes the threaded part 84 to slide on the surface of the feeding screw 83. The other end of the threaded part 84 is fixedly connected to the feeding block 85. As the threaded part 84 moves, the feeding block 85 also moves. As the feeding block 85 moves, the shoe can be pushed out under the action of the feeding plate 853 to achieve the feeding effect.
Claims
1. A shoe manufacturing shaping device, characterized in that: The device includes a plate, with a bracket fixedly connected to the upper end of the plate, a hydraulic cylinder fixedly connected to the upper end of the bracket, and a mounting plate fixedly connected to the lower end of the hydraulic cylinder. Mounting components are fixedly connected to both the upper end of the plate and the lower end of the mounting plate. An upper mold is provided at the other end of the mounting component at the lower end of the mounting plate, and a lower mold is provided at the other end of the mounting component at the upper end of the plate. A feeding component is provided inside the lower mold, including a mounting hole inside the lower mold. A feeding screw is rotatably connected inside the mounting hole, and a threaded component is threaded onto the outer surface of the feeding screw. A feeding block is slidably connected to the upper end of the lower mold, and the other end of the threaded component is fixedly connected to the feeding block. A motor is fixedly connected to the other side of the lower mold, and the output shaft of the motor passes through the lower mold and is fixedly connected to the feeding screw.
2. The shoe production shaping device according to claim 1, characterized in that: The material feeding block includes a groove on the upper end of the lower mold, a sliding rod slidably connected inside the groove, and a material feeding plate fixedly connected to the other end of the sliding rod. The threaded part is fixedly connected to the sliding rod.
3. The shoe production shaping device according to claim 1, characterized in that: The mounting assembly includes a mounting shell disposed at the upper end of the plate and the lower end of the mounting plate. The surface of the mounting shell is provided with snap-fit holes. Mounting blocks are fixedly connected to the other side of the upper mold and the lower mold. Circular holes are provided on both sides of the mounting blocks. Springs are fixedly connected inside the circular holes. The other end of the springs is fixedly connected to snap-fit connectors. The snap-fit connectors and snap-fit holes snap together.
4. The shoe production shaping device according to claim 3, characterized in that: Both sides of the mounting shell are fixedly connected to rubber membranes, and the inner side of each rubber membrane is fixedly connected to a release block. The release block is engaged with the snap-fit hole and the release block is movably connected with the snap-fit connector.
5. A shoe production shaping device according to claim 1, characterized in that: The upper end of the mounting plate is slidably inserted into the bracket. Limiting rods are fixedly connected to both sides of the upper end of the mounting plate. Limiting holes are opened on both sides of the upper end of the bracket. The limiting holes and the limiting rods are slidably inserted into each other.
6. A shoe production shaping device according to claim 1, characterized in that: The lower end of the plate is fixedly connected to a housing, and an electric push rod is fixedly connected inside the housing. The other end of the electric push rod is fixedly connected to a rubber pad, and the rubber pad is movably connected to the housing.
7. A shoe production shaping device according to claim 1, characterized in that: Both sides of the lower mold are slidably connected to support plates, and both sides of the lower mold are provided with mounting grooves. One side of each support plate is fixedly connected to a mounting rod, and the mounting rod and the mounting groove are slidably connected to each other.
Citation Information
Patent Citations
Vamp shaping device for shoe production
CN218784281U