Setting machine for female shoe production
By setting up a pressing unit, a heating unit, and a fastening swing unit on the shaping machine, and combining multi-directional tension and heating, the problem of unidirectional stretching in the clamping and pulling mechanism of the existing shaping machine is solved, and uniform shaping and efficient production of leather are achieved.
Patent Information
- Application Number
- CN202423059703.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-12-12
AI Technical Summary
The clamping and pulling mechanism of existing shoe heel shaping machines can only stretch in one direction, resulting in asymmetrical heel shape, rough surface, and uneven shaping, which affects comfort and aesthetics.
A shaping machine for women's shoe production, including a pressing unit, a heating unit, and a fastening swing unit, was designed. By cooperating the pressing part and the limiting part, and combining multi-directional tension and heating, the machine ensures that the leather fits the shoe last shape evenly. The machine also uses a high-temperature wear-resistant coating and a hot glue film to improve its durability.
It achieves multi-directional tensioning of the leather, avoiding excessive or uneven stretching in certain areas, ensuring a smooth and well-shaped upper, improving production efficiency and product quality stability, and reducing human error.
Smart Images

Figure CN223452874U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to shoemaking machinery technical field, specifically, relate to a female shoe production with setting machine. BACKGROUND
[0002] The heel setting machine is one of the key equipment in the modern shoe manufacturing process, and is mainly used for the shaping treatment of the heel. The heel setting machine usually adopts the combination of high temperature and pressure, and through the action of heating and pressure, the heel material can reach the ideal setting effect in a short time. In the existing heel setting machine, the vamp needs to be clamped and pulled to make the vamp closely adhere to the mold during the pressing operation. However, the traditional heel setting clamp and pull mechanism uses a cylinder to realize the clamping and pulling actions. When the cylinder shaft goes down, the inclined outer jaw block is first clamped on the inner jaw block through a hinge, and then the cylinder shaft continues to go down to complete the pulling action. However, this clamp and pull mechanism can only pull the vamp on one end of the last in one direction, which may cause the heel shape to be asymmetric or the surface to be not smooth, thereby affecting the comfort and appearance of the shoe. At the same time, the vamp can only be pulled in one direction, which may cause uneven stretching and thus affect the setting effect and overall appearance of the heel, especially in the local area around the heel.
[0003] Therefore, there is an urgent need for a female shoe production setting machine to solve the problems existing in the current technology. CONTENT OF THE UTILITY MODEL
[0004] In view of this, the utility model provides a female shoe production setting machine, which aims to solve the problem that the clamp and pull mechanism of the existing setting machine can only stretch in one direction.
[0005] The utility model provides a female shoe production setting machine, which comprises:
[0006] A setting machine body;
[0007] A pressing unit comprising a pressing part and a limiting part, the pressing part being arranged on the setting machine body, the pressing part being in sliding connection with the setting machine body, and the limiting part being arranged below the pressing part and being fixedly connected with the setting machine body;
[0008] A heating unit arranged on the pressing part and the limiting part;
[0009] A fastening and swinging unit comprising a fastening part and a swinging part, the fastening part comprising a first fastening assembly and a second fastening assembly, the first fastening assembly being arranged on both sides of the limiting part, the second fastening assembly being arranged inside the first fastening assemblies, and the swinging part being swingably connected with the second fastening assembly.
[0010] Further, the first fastening assembly comprises a first pushing cylinder and a fastening block, the first pushing cylinder is arranged on both sides of the limiting part, and one end of the first pushing cylinder is fixedly connected with the fastening block.
[0011] Further, the second fastening assembly comprises a clamping block, a guide device and a driving block, the driving block is fixedly connected with the setting machine body, the guide device is rotatably connected with the driving block, and the clamping block is rotatably connected with the guide device.
[0012] Further, the guide device comprises a fixed plate, a first gear, a first connecting gear, a second connecting gear and a second connecting rod, the first gear is arranged on the fixed plate, the first gear is engaged with the first connecting gear, the first connecting gear is engaged with the second connecting gear, the first connecting gear and the second connecting gear are respectively connected with the clamping block, one end of the second connecting rod is connected with the clamping block, and the other end of the second connecting rod is connected with the front end of the fixed plate.
[0013] Further, the swinging part comprises a first connecting piece, a second connecting piece, a first swinging piece, a second swinging piece, a third swinging piece and a first connecting rod, the first swinging piece is inserted into the rear end of the first connecting piece, the first swinging piece is provided with a through hole, the second swinging piece is inserted into the first swinging piece, one end of the third swinging piece is inserted into the second swinging piece, the first connecting rod is inserted into the front end of the first connecting piece, and the first connecting rod is inserted into the third swinging piece.
[0014] Further, the pressing part comprises a second pushing cylinder, a first pressing block, a first pressing rod and a second pressing block, the second pushing cylinder is connected with the first pressing block, the second pressing block is fixedly connected with the first pressing block, the first pressing block is movably connected with two first pressing rods on both sides, and the other ends of the two first pressing rods are fixedly connected with both sides of the second pressing block.
[0015] Further, the pressing part further comprises a hot adhesive film, and the hot adhesive film is arranged on the inner side of the second pressing block.
[0016] Further, the pressing part further comprises a sliding rail and a sliding rod, two sliding rails are arranged on the setting machine body and located below the pressing part on both sides, the sliding rod is slidably connected with the sliding rail, and the other end of the sliding rod is fixedly connected with both sides of the first pressing block.
[0017] Further, the limiting part comprises a first limiting block and a fixing screw, a threaded through hole is arranged in the middle of the first limiting block, the fixing screw is inserted into the threaded through hole, and the fixing screw is inserted into the setting machine body.
[0018] Further, the pressing unit and the fastening swing unit are provided with high-temperature wear-resistant coating on the surface.
[0019] Compared with the prior art, the utility model has the advantages that the utility model discloses a fixing machine for women's shoes production, which comprises a fixing machine body, a pressing unit, a heating unit and a fastening swing unit. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 A front view of the fixing machine for women's shoes production is provided for the utility model embodiment.
[0021] Figure 2 A second fastening assembly structure diagram in the fixing machine for women's shoes production is provided for the utility model embodiment.
[0022] Figure 3 A connection side view of the swing part and the second fastening assembly in the fixing machine for women's shoes production is provided for the utility model embodiment.
[0023] Figure 4 A swing part schematic view in the fixing machine for women's shoes production is provided for the utility model embodiment.
[0024] Wherein: 1, fixing machine body;2, pressing unit;210, second push air cylinder;220, first pressing block;230, first pressing rod;240, second pressing block;250, hot glue film;260, slide rail;270, first limit block;3, heating unit;4, fastening swing unit;4111, first push air cylinder;4112, fastening block;412, second fastening assembly;4121, clamping block;413, guide device;4131, fixed plate;4132, first gear;4133, first connecting gear;4134, second connecting gear;4135, second connecting rod;420, swing part;4201, first connecting piece;4202, second connecting piece;4203, first swing piece;4204, second swing piece;4205, third swing piece;4206, first connecting rod. DETAILED DESCRIPTION
[0025] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of the present application.
[0026] In the description of the present application, it should be understood that the terms "center", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0027] The terms "first", "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined with "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more.
[0028] In the description of the present application, it should be noted that unless otherwise specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral connection; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, or the communication between the two elements inside. For those of ordinary skill in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0029] Referring to Figure 1 , Figure 3 The present embodiment provides a setting machine for women's shoe production, which comprises a setting machine body 1.
[0030] The pressing unit 2 comprises a pressing part and a limiting part. The pressing part is arranged on the setting machine body 1 and is in sliding connection with the setting machine body 1. The limiting part is arranged below the pressing part and is fixedly connected with the setting machine body 1.
[0031] The heating unit 3 is arranged on the pressing part and the limiting part.
[0032] The fastening and swinging unit 4 comprises a fastening part and a swinging part 420, the fastening part comprises a first fastening assembly and a second fastening assembly 412, the first fastening assembly is arranged on both sides of the limiting part, and the second fastening assembly 412 is arranged inside the two first fastening assemblies, and the swinging part 420 is swingingly connected with the second fastening assembly 412.
[0033] Specifically, the shaping machine body 1 is provided with a pressing part and a limiting part, when the shoe sole needs to be shaped, the shoe sole is placed on the limiting part, the limiting part is consistent with the shape of the heel after final shaping, at the same time, the pressing part is slid downward and pressed by the air cylinder, the heating unit 3 heats the pressing part and the limiting part, and then the shoe upper leather is pressed and heated at the same time, when the pressing part is slid downward and pressed, the fastening part of the fastening and swinging unit 4 tightens the leather, and at the same time, the swinging part 420 drives the fastening part to swing.
[0034] It can be understood that the pressing part in the pressing unit 2 is in sliding connection with the setting machine body 1, which ensures the flexibility and uniformity of the pressing process. The pressing part can be accurately moved vertically according to different needs to adapt to different shapes and thicknesses of the upper leather. A limiting part is arranged below the pressing part, and the limiting part is fixedly connected with the setting machine body 1, which not only ensures the stability of the position of the upper leather during the setting process, but also avoids the problem of deformation during the pressing process. The heating unit 3 enables the upper leather to be uniformly heated during the setting process, ensuring the flexibility and setting effect of the leather. The heating part is directly arranged on the pressing part and the limiting part, so that the heating and pressing processes can be carried out synchronously, improving the working efficiency and being able to control the temperature and pressing strength during the setting process, thereby avoiding damage to the leather or poor setting caused by uneven temperature or inappropriate pressure. At the same time of heating, the molecular structure of the leather is effectively adjusted, so that the setting effect is more durable and the upper is more compact and flat. The design of the fastening oscillating unit 4 further optimizes the tensioning effect of the leather. The fastening part can tension the leather through the cooperation of the first and second fastening assemblies 412, ensuring that the leather is more closely attached to the limiting part. The first fastening assembly is arranged on both sides of the limiting part, and the second fastening assembly 412 is located on the inner side of the first assembly. This hierarchical fastening design can provide greater tension, ensuring the tightness of the leather. The connection mode of the oscillating part 420 and the second fastening assembly 412 enables the fastening part to realize oscillating movement, increasing the tensioning force of the leather and making the entire setting process more flexible and uniform, avoiding damage to the leather caused by excessive local pressure, thereby improving production efficiency and the stability of product quality. Since the pressing, heating and fastening processes can be carried out simultaneously during the setting process, the tedious multiple operations are avoided, the working efficiency of the production line is improved, the errors caused by manual operation are avoided, and the consistency and high quality of the products are ensured. The synchronous pressing and heating not only improve the efficiency, but also ensure the durability and appearance quality of the upper leather during the setting process. The operator only needs to perform simple starting and monitoring work, reducing the possibility of human error.
[0035] In some embodiments of the present application, the first fastening assembly includes a first push air cylinder 4111 and a fastening block 4112, and the first push air cylinder 4111 is fixedly connected with the fastening block 4112 at one end and arranged on both sides of the limiting part.
[0036] Specifically, after the upper leather is placed on the limiting part, the first push air cylinder 4111 drives the fastening block 4112 to move towards the limiting part, so that the fastening block 4112 is attached to the toe part of the upper leather, and then the outer side part of the toe is tensioned, and the inner side part of the toe is tensioned by the second fastening assembly 412.
[0037] It can be understood that the first fastening assembly includes the first push cylinder 4111 and the fastening block 4112, which can provide a dynamic and controllable tightening effect to ensure that the upper leather can be uniformly tightened and accurately fitted to the sole. By arranging the first push cylinder 4111 on both sides of the limiting part, the fastening block 4112 can move to the limiting part direction under the push of the cylinder, thereby tightening the lateral part of the toe cap, and the medial part of the toe cap is tightened by the second fastening assembly 412. Through the cooperation of the first fastening assembly and the second fastening assembly 412, uniform tightening and accurate fitting of the upper leather can be achieved, which not only improves the accuracy and quality of the shaping effect, but also optimizes the production efficiency and stability. Since the first push cylinder 4111 can control the accurate movement of the fastening block 4112 by controlling the air pressure, it ensures that the tightening of the lateral part of the toe cap will not be excessive or uneven, because the toe cap part is often the area most prone to deformation or uneven tightening during shaping. By coordinating the work of the first fastening assembly with the action of the second fastening assembly 412, it can ensure that both sides of the toe cap are tightened at the same time, avoiding the problem of insufficient or excessive tightening in some areas in traditional designs. The second fastening assembly 412 is responsible for tightening the medial side of the toe cap, further ensuring the overall tightening effect of the toe cap area. Since the fastening block 4112 driven by the first push cylinder 4111 can accurately adjust the position as needed, the operator does not need to manually adjust the pressure or tightening angle, thereby reducing the complexity and possible errors of manual operation. In addition, the first push cylinder 4111 realizes tightening through pneumatic control, which can improve the production efficiency of the production line, shorten the shaping time of each pair of shoes, and reduce the need for manual intervention, avoiding quality instability or time delay caused by manual operation. During production, the cooperation of the first fastening assembly and the second fastening assembly 412 can ensure that the upper leather is uniformly and properly tightened during the entire shaping process, avoiding problems such as uneven pressure and insufficient leather stretching in traditional shaping methods. Especially for upper leathers of different thicknesses and materials, flexible adjustment can be achieved, and through the cooperation of the cylinder and the fastening block 4112, customized operation can be performed according to different leather types and shaping needs, thereby improving the versatility and adaptability of the equipment.
[0038] In some embodiments of the present application, referring to Figure 2 As shown, the second fastening assembly 412 includes a clamping block 4121, a guide device 413, and a driving block, the driving block is fixedly connected with the shaping machine body 1, the guide device 413 is rotationally connected with the driving block, and the clamping block 4121 is rotationally connected with the guide device 413.
[0039] In some embodiments of the present application, the guide device 413 includes a fixed plate 4131, a first gear 4132, a first connecting gear 4133, a second connecting gear 4134, and a second connecting rod 4135. The first gear 4132 is arranged on the fixed plate 4131, the first gear 4132 engages the first gear 4132, the first connecting gear 4133 engages the second connecting gear 4134, the first connecting gear 4133 and the second connecting gear 4134 are respectively connected to the clamping block 4121, and one end of the second connecting rod 4135 is connected to the clamping block 4121, and the other end of the second connecting rod 4135 is connected to the front end of the fixed plate 4131.
[0040] Specifically, when the staff places the upper leather to the limiting part, the second fastening assembly 412 drives the guide device 413 to displace, and then drives the clamping block to displace inward, thereby tightening the inner side of the toe position of the upper leather. Specifically, the first gear 4132 on the fixed plate 4131 rotates, drives the first connecting gear 4133 to rotate, the first connecting gear 4133 drives the second connecting gear 4134 to rotate, and then drives the clamping block to clamp the upper leather. Since the front end of the upper leather is clamped by the first fastening assembly, and the rear end of the upper leather is clamped by the second fastening assembly 412, the upper leather is kept in a clamped state.
[0041] It can be understood that the second fastening assembly 412 cooperates with the gear transmission and the guide device 413 to improve the tightness and uniformity of the inner side of the toe during the shaping of the upper leather, and ensures the consistency and high quality of the shaping effect. Through the linkage of gear transmission and mechanical structure, accurate tensioning of the inner side of the upper leather is provided, while the stability and integrity of the upper leather during the entire shaping process are ensured. The clamping block 4121 can uniformly apply torque during tensioning, ensuring that the inner side of the upper leather is uniformly and properly tensioned, avoiding the problem of local over-tensioning or insufficient tensioning that may occur in traditional tensioning. Secondly, the meshing transmission of the first gear 4132, the first connecting gear 4133, and the second connecting gear 4134 provides stable force transmission and reduces energy loss during mechanical transmission, not only ensuring that the clamping block 4121 can displace inward at an accurate speed and force, but also reducing frictional resistance in the system, thereby improving the operating efficiency of the equipment. The precision and stability of the gear transmission further enhance the tensioning effect of the upper leather during shaping, making the shaping effect of the inner side of the toe more consistent and stable. The advantage of the double clamping method is that it can prevent the upper leather from shifting or loosening during shaping, ensuring that the shape of the toe part is more compact and uniform, avoiding the possibility of leather relaxation or unevenness in traditional shaping processes. At the same time, the gear transmission of the second fastening assembly 412 avoids the uneven force distribution problem commonly seen in traditional tensioning devices.
[0042] In some embodiments of the present application, referring to Figure 4As shown, the swinging part 420 includes a first connecting piece 4201, a second connecting piece 4202, a first swinging piece 4203, a second swinging piece 4204, a third swinging piece 4205, and a first connecting rod 4206. The first swinging piece 4203 is inserted into the rear end of the first connecting piece 4201, and a through hole is formed in the first swinging piece 4203. The second swinging piece 4204 is inserted into the first swinging piece 4203. One end of the third swinging piece 4205 is inserted into the second swinging piece 4204. The first connecting rod 4206 is inserted into the front end of the first connecting piece 4201, and the first connecting rod 4206 is inserted into the third swinging piece 4205.
[0043] Specifically, the swinging part 420 controls the second fastening assembly 412 to swing, thereby realizing multi-angle tensioning of the leather. Specifically, the first swinging piece 4203 rotates, thereby driving the second swinging piece 4204 to rotate and displace up and down on the third swinging piece 4205, thereby driving the third swinging piece 4205 to swing. The front end of the third swinging piece 4205 is connected to the second fastening assembly 412, thereby driving the second fastening assembly 412 to realize the function of clamping while swinging left and right.
[0044] It can be understood that through the rotation of the first swinging piece 4203, the second swinging piece 4204 is driven to rotate and displace up and down on the third swinging piece 4205, and finally the front end of the third swinging piece 4205 is connected to the second fastening assembly 412 to realize left and right swinging. This multi-angle tensioning method can ensure that each part of the upper leather can be fully tensioned, avoiding the problems of uneven tensioning, asymmetric shape, or excessive tensioning that may occur in traditional shaping processes. Especially when dealing with more complex leather shapes or parts that need fine tensioning, the swinging part 420 can tension the leather in a more flexible and precise way, ensuring uniform and consistent shaping effect, so that the tensioning force and angle can be adjusted according to different shaping needs. Especially in the toe, side, and other difficult-to-operate parts of the upper leather, the swinging part 420 can provide more detailed control, avoiding the limitations of fixed angles of mechanical arms or clamps in traditional shaping equipment that cannot adapt to complex shapes. In addition, through the connection of the front end of the third swinging piece 4205 and the second fastening assembly 412, the swinging action can be realized, and during the tensioning process, the left and right swinging of the swinging part 420 can ensure that the leather in each part can be uniformly pressed. This left and right swinging method prevents wrinkles or uneven stretching of the leather caused by single-direction tensioning, thereby improving the consistency of the shaping effect.
[0045] In some embodiments of the present application, the pressing part includes a second pushing cylinder 210, a first pressing block 220, a first pressing rod 230, and a second pressing block 240, the second pushing cylinder 210 is connected to the first pressing block 220, the second pressing block 240 is fixedly connected to the first pressing block 220, the first pressing block 220 is movably connected to two first pressing rods 230 on both sides, and the other ends of the two first pressing rods 230 are fixedly connected to the two sides of the second pressing block 240.
[0046] Specifically, when it is necessary to press the upper leather on the limiting part, the second pushing cylinder 210 drives the first pressing block 220 to move downward, and then the first pressing rod 230 drives the second pressing block 240 to move downward, and at the same time, the first pressing rod 230 applies a pressing force to the inside, so that the upper leather is attached to the limiting part.
[0047] It can be understood that the pressing part ensures the attachment between the upper leather and the limiting part. Due to the precise control of the second pushing cylinder 210 and the first pressing block 220, uniform and controllable displacement of the pressing block can be achieved. When the second pushing cylinder 210 drives the first pressing block 220 to move downward, the first pressing rod 230 will drive the second pressing block 240 to move downward, and at the same time, the first pressing rod 230 applies a uniform pressing force to the upper leather. This pressing method can avoid the problem of leather damage or poor shaping caused by uneven pressing or excessive pressing in traditional methods. The pressing force can be uniformly distributed to every part of the upper leather, ensuring that the upper leather is tightly attached to the limiting part, so that the shape of the upper leather after shaping is more perfect. Secondly, the traditional footwear shaping equipment often needs to realize the pressing of the upper leather through multiple steps and relatively complex operations, while the embodiment simplifies the pressing process into a highly automated and adjustable system through the pneumatic and mechanical linkage. When the second pushing cylinder 210 is started, the entire pressing process is quickly and stably completed, saving a lot of operation time. In addition, compared with the traditional electric system, the pneumatic system usually has higher energy efficiency and lower energy consumption, which reduces energy consumption and improves the operation efficiency of the production line. This efficient pressing method not only improves the production efficiency, but also reduces the operation cost, especially in large-scale production, which can shorten the production cycle of each pair of shoes, thereby improving the overall production capacity. At the same time, the pressing part has flexibility and adaptability, which can be adjusted according to different shaping needs. Since the movement of the pressing part is controlled by pneumatic, the operator can accurately control the pressing force by adjusting the air pressure, so as to adapt to different leather materials of different shoe models and different thicknesses. When facing different shaping needs, the operator only needs to make a simple adjustment to the pneumatic system, without the need to replace the pressing part or manually intervene, so as to realize the accurate pressing of various upper leathers.
[0048] In some embodiments of the present application, the pressing part further comprises a hot glue film 250 arranged inside the second pressing block 240.
[0049] It can be understood that the hot glue film 250 can improve the uniformity and stability of the pressing force. In traditional pressing systems, the upper leather is usually pressed by direct mechanical contact or an air pressure system, which can achieve the purpose of pressing, but it is difficult to ensure that each part of the leather is uniformly stressed. The hot glue film 250 can solve this problem. The hot glue film 250 will uniformly cover the surface of the leather after heating, forming a soft and strong adhesive layer that can relieve the uneven pressure caused by mechanical pressing when stressed, allowing the leather surface to be more uniformly and gently pressed. This hot glue film 250 can disperse the pressing force, avoiding excessive or uneven local pressure during the shaping process, preventing the leather from wrinkling, deforming or damaging, thereby ensuring that each part of the upper leather can be accurately shaped. Secondly, the hot glue film 250 has good adhesion, which can improve the adhesion effect between the leather and the limiting part. The hot glue film 250 becomes viscous after heating, which can produce stronger adhesion with the surface of the upper leather. This feature allows the hot glue film 250 to firmly fix the leather on the limiting part during the pressing process, preventing the leather from sliding or shifting. Especially when shaping the upper with a complex shape, the hot glue film 250 can work well, ensuring that every detail of the upper leather can accurately fit the limiting part during the pressing process, improving the accuracy of shaping. This adhesion can also reduce the probability of air bubbles or gaps during the leather shaping process, further ensuring the close contact between the upper leather and the limiting part, thereby improving the shaping quality. In addition, the hot glue film 250 can also speed up the completion of the shaping process. In traditional pressing methods, the contact between the leather and the limiting part requires a long time of pressure to achieve stable shaping effect. The application of the hot glue film 250 introduces a heating mechanism to the entire process, which quickly softens and adheres after heating, speeding up the fixing process of the leather. Especially in high-frequency production lines, shortening the shaping time means improving production efficiency. Through the action of the hot glue film 250, the waiting time in the shaping process is shortened, and the upper leather can reach the expected shaping effect faster, thereby improving the working efficiency of the production line. The hot glue film 250 has good heat melting and adhesion, which allows the leather to better fit the limiting part and the mold surface when heated and pressed. During the pressing process, the hot glue film 250 can make the leather material become more flexible in a short time, helping the leather better adapt to the shape of the limiting part, and the adhesion tightly fixes the leather on the limiting part, reducing the risk of poor shaping caused by excessive stretching or displacement of the leather.
[0050] In some embodiments of the present application, the pressing part further comprises slide rails 260 and a slide rod. Two slide rails 260 are formed on the shaping machine body 1 and are located on both sides below the pressing part. The slide rod is slidingly connected to the slide rails 260, and the other end of the slide rod is fixedly connected to the two sides of the first pressing block 220.
[0051] It can be understood that the slide rails 260 and the slide rod enable the pressing component to move accurately along the preset track, thereby achieving precise control of the movement path. The slide rails 260 serve as a guide device, providing a smooth and accurate movement trajectory for the slide rod, while the slide rod serves as a movement component, ensuring that the pressing component can move in the intended direction by sliding on the slide rails 260. Through the cooperation of the slide rails 260 and the slide rod, the pressing component of the shaping machine can be accurately displaced up and down, enabling efficient execution of the pressing operation while avoiding deviations or instability caused by mechanical errors or human factors. The guiding action of the slide rails 260 enables the pressing force to be more evenly distributed onto the upper leather, improving the precision and consistency of shaping and avoiding the potential bias problem in traditional pressing equipment, ensuring stable shaping quality for each pair of shoes. Secondly, the slide rails 260 and the slide rod improve the stability and durability of the pressing component. During long-term use, the slide rails 260 can reduce wear caused by friction, maintaining stable movement of the pressing component. The sliding design of the slide rod enables the pressing component to smoothly slide on the slide rails 260, thereby avoiding common problems such as mechanical component jamming or inflexible movement. This not only improves the overall durability of the equipment, but also reduces the failure rate of the equipment due to wear and tear, thereby reducing maintenance costs and equipment downtime, improving the stability and sustainability of the production line.
[0052] In some embodiments of the present application, the limiting part comprises a first limiting block 270 and a fixing screw. A threaded hole is formed in the middle of the first limiting block 270, and the fixing screw is inserted into the threaded hole and fixed on the shaping machine body 1.
[0053] It can be understood that the threaded through hole and the fixing screw enhance the structural stability of the limiting part. In the working process of the shaping machine, the limiting part bears a large mechanical pressure and temperature change, especially when the upper leather is shaping, the pressing force often needs to be accurately applied to the upper. Therefore, as a key positioning and supporting component, the stability of the limiting part is directly related to the shaping accuracy and the long-term operation of the equipment. And by using the threaded through hole and the fixing screw, not only can the limiting block be firmly fixed on the shaping machine body 1, but also the loosening or displacement of the component caused by long-term pressure can be avoided. Through the fastening effect of the fixing screw, the position of the limiting part is locked, ensuring the stable position of the upper leather in each shaping operation, and avoiding the shaping defects caused by the displacement or loosening of the limiting part. Therefore, it can improve the overall stability of the shaping machine and ensure the accuracy of the shaping process. Secondly, the threaded through hole and the fixing screw also provide a more convenient way for the adjustment of the equipment. The traditional design of the limiting part is usually fixed on the equipment by welding or other non-adjustable methods, so once the limiting part needs to be replaced or the limiting position needs to be adjusted, it needs to be disassembled and adjusted more complicatedly. However, the design of the threaded through hole and the fixing screw makes the limiting part easy to disassemble or adjust. When the limiting part needs to be replaced, the operator only needs to loosen the fixing screw, and then the limiting part can be quickly disassembled and replaced or repaired, saving the downtime of the equipment.
[0054] In some embodiments of the present application, the pressing unit 2 and the fastening oscillating unit 4 are provided with a high-temperature wear-resistant coating on the surface.
[0055] It can be understood that during the shaping of the upper leather, the pressing unit 2 and the fastening swinging unit 4 of the shaping machine will directly contact the heat source. Especially during the heating process, the temperature will reach a high level. If the surface of these components does not have good high-temperature resistance, long-term exposure to high temperatures can easily cause deformation, aging, and even damage to the material. The high-temperature wear-resistant coating improves the stability of these components in a high-temperature environment, enabling them to maintain strong resistance to thermal deformation at high temperatures. In this way, the pressing unit 2 and the fastening swinging unit 4 will not be deformed, warped, or degraded due to excessive heat when used in a long-term high-temperature environment, ensuring that the shaping machine can maintain good working accuracy and high efficiency even in a high-temperature working state. During the production process of the footwear shaping machine, the pressing unit 2 and the fastening swinging unit 4 not only face a high-temperature environment but also need to withstand a large amount of friction and mechanical impact. These components are susceptible to friction during frequent operation, especially when in contact with the surface of the leather, which can cause surface wear and affect the working efficiency and service life of the equipment. The high-temperature wear-resistant coating typically has excellent wear resistance, reducing the friction between the component surface and the upper leather and slowing down the rate of surface wear. The protective film formed by the coating can reduce the surface friction coefficient, allowing the pressing unit 2 and the fastening swinging unit 4 to operate smoothly even in a high-load, high-frequency environment. These components can maintain their functionality without being prone to scratches, wear, or failure.
[0056] One of the above embodiments is a shaping machine for women's shoe production. By setting the fastening swinging unit on the shaping machine body, when the shaping machine starts working, the pressing part is displaced downward to fit the limiting part to achieve the effect of heating and pressing. At the same time, the fastening part tightens the leather, making it more fit the limiting part, and the swinging part connected to the fastening part can swing in both left and right directions, so that the leather not only bears the tension from the up-down direction, but also applies a horizontal tension through the swinging part, thereby enhancing the fit of the leather and ensuring that it better adapts to the shape of the shoe. This helps to avoid excessive or uneven stretching, ensures a smoother leather surface, avoids wrinkles or irregular deformation, and the leather becomes soft during heating, making it easier to shape. Through multi-directional tension, the leather can better adapt to the shape of the last, ensuring that the shoe perfectly fits the foot shape.
[0057] Obviously, those skilled in the art can make various modifications and variations to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the present application fall within the scope of the claims of the present application and their equivalents, the present application also intends to include these modifications and variations.
Claims
1. A female shoe production with a setting machine, characterized in that, Include: The setting machine body; The pressing unit, including the pressing part and the limiting part, the pressing part is arranged on the setting machine body, the pressing part is in sliding connection with the setting machine body, the limiting part is arranged below the pressing part, and the limiting part is fixedly connected with the setting machine body; The heating unit is arranged on the pressing part and the limiting part; The fastening swing unit includes a fastening part and a swing part, the fastening part includes a first fastening assembly and a second fastening assembly, the first fastening assembly is arranged on both sides of the limiting part, the second fastening assembly is arranged inside the first fastening assembly, and the swing part is swing connected with the second fastening assembly.
2. The female shoe production shaper according to claim 1, characterized in that, The first fastening assembly includes a first push cylinder and a fastening block, the first push cylinder is arranged on both sides of the limiting part, and one end of the first push cylinder is fixedly connected with the fastening block.
3. The female shoe production shaper according to claim 1, characterized in that, The second fastening assembly includes a clamping block, a guide device and a driving block, the driving block is fixedly connected with the setting machine body, the guide device is rotatably connected with the driving block, and the clamping block is rotatably connected with the guide device.
4. The female shoe production shaper according to claim 3, characterized in that, The guide device includes a fixed plate, a first gear, a first connecting gear, a second connecting gear and a second connecting rod, the fixed plate is provided with the first gear, the first gear is engaged with the first gear, the first connecting gear is engaged with the second connecting gear, the first connecting gear and the second connecting gear are respectively connected with the clamping block, one end of the second connecting rod is connected with the clamping block, and the other end of the second connecting rod is connected with the front end of the fixed plate.
5. The female shoe production shaping machine according to claim 4, characterized in that, The swing part includes a first connecting piece, a second connecting piece, a first swing piece, a second swing piece, a third swing piece and a first connecting rod, the first swing piece is inserted into the rear end of the first connecting piece, the first swing piece is provided with a through hole, the second swing piece is inserted into the first swing piece, one end of the third swing piece is inserted into the second swing piece, the first connecting rod is inserted into the front end of the first connecting piece, and the first connecting rod is inserted into the third swing piece.
6. The female shoe production shaper according to claim 1, characterized in that, The pressing part includes a second push cylinder, a first pressing block, a first pressing rod and a second pressing block, the second push cylinder is connected with the first pressing block, the second pressing block is fixedly connected with the first pressing block, the first pressing block is movably connected with two first pressing rods on both sides, and the other ends of the two first pressing rods are fixedly connected on both sides of the second pressing block.
7. The female shoe production shaping machine according to claim 6, characterized in that, The pressing part further includes a heat adhesive film, and the heat adhesive film is arranged inside the second pressing block.
8. The female shoe production shaper according to claim 7, characterized in that, The pressing part further includes a sliding rail and a sliding rod, two sliding rails are formed in the setting machine body, and the two sliding rails are located below both sides of the pressing part, the sliding rod is slidably connected with the sliding rail, and the other end of the sliding rod is fixedly connected with the first pressing block on both sides.
9. The female shoe production shaper according to claim 8, characterized in that, The limiting part includes a first limiting block and a fixing screw, a threaded through hole is formed in the middle of the first limiting block, the fixing screw is inserted into the threaded through hole, and the fixing screw is inserted into the setting machine body.
10. The female shoe production shaper according to claim 1, characterized in that, The pressing unit and the fastening swing unit are provided with a high-temperature wear-resistant coating on the surface.