Improved multifunctional laminating machine for shoe production

By using a combination of a load-bearing panel and a metal plate heating module in the shoe production bonding machine, the heating module is used to increase the temperature of the metal plate, and the problem of shoe fabric displacement and offset caused by the glue being undryed is solved, achieving a more stable fitting effect and higher quality strength.

CN223041021UActive Publication Date: 2025-07-01QUANZHOU SHENGKANG TRADE CO LTD
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Patent Information

Application Number
CN202421652246.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-07-01
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

During the bonding process of existing shoe production, the glue is not dry, so the shoe fabric is prone to displacement and offset, and it is difficult to manually fine-tune to avoid secondary offset.

Method used

An improved multi-functional bonding machine is designed, using a combination of a load-bearing panel and a metal plate heating module. The heating module increases the temperature of the metal plate and causes the curing agent in the glue to react quickly, thereby achieving a stable combination of the two materials and avoiding displacement and offset.

Benefits of technology

Through heating and bonding technology, the displacement and offset problems caused by the glue not drying out are effectively avoided, the stability and mass strength of shoe fit are improved, and the bonding machine has the effect of multi-functional use.

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Abstract

The utility model discloses an improved multifunctional laminating machine for shoe production. The improved multifunctional laminating machine structurally comprises an anti-skid block, a main machine, a control end, a support, an automatic laminating body and a bearing panel, and the anti-skid block is embedded into the edge of the lower end of the main machine; after the bearing panel is further improved, the metal plate is covered according to the bottom layer of the restraining frame, then shoe materials can be flatly laid, and then the metal plate is combined with the bottom heating module to increase the temperature of the metal plate, so that after the automatic attaching body descends other materials to be accurately attached to the shoe materials on the metal plate, the shoe materials can be automatically attached to the metal plate. The metal plate can enable a curing agent in glue to react and act quickly by utilizing high temperature, so that the two materials can be stably combined together through a heating effect, the condition of slight deviation caused by the fact that the glue is not dried thoroughly after the two materials are taken out is avoided, and therefore, the practical effect of the laminating machine can be improved through heating and laminating; therefore, one function can be added for use, and the multifunctional use effect is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of shoe production, in particular to a multi-functional laminating machine for improved shoe production. Background Art

[0002] When shoes are produced, they need to go through the laminating process, so that a laminating machine can be used to replace manual labor to laminate shoe fabrics. The mechanical lamination according to the laminating machine can improve the lamination accuracy of shoes, ensure that each leather surface can achieve a completely overlapping effect, avoid the phenomenon of excessive errors, and effectively improve the quality and strength of shoes after manufacturing through the laminating machine;

[0003] However, the existing laminating machines still have the following defects: Since the current laminating machine can only repeatedly and accurately laminate shoe fabrics by combining mechanical structures, but the shoe materials will carry corresponding glue during lamination. After accurate lamination, the glue between the fabrics will be in an undried state, so that it is very easy to cause the fabric to shift again when displaced directly after lamination. Finally, due to the influence of the glue, the fabric position cannot be adjusted manually, so that the secondary offset of the lamination area will be caused by the displacement. Summary of the Utility Model

[0004] In view of the above problems, the utility model provides a multi-functional laminating machine for improved shoe production.

[0005] In order to achieve the above object, the utility model is realized by the following technical solutions: A multi-functional laminating machine for improved shoe production, its structure includes: anti-slip blocks, a main body, a control terminal, brackets, an automatic laminating body, and a bearing panel. The anti-slip blocks are embedded in the lower edge of the main body. The front end of the main body and the control terminal are of an integrated structure. The brackets are embedded on both sides of the upper end of the main body. The automatic laminating body is installed at the center of the upper end of the brackets and is on the same vertical line as the center of the surface of the main body. The bearing panel is embedded in the center of the surface of the main body and is communicated with the automatic laminating body above.

[0006] Furthermore, the bearing panel is provided with a restraint frame, a vertical groove, a metal plate, a heating module, and a power-on rod. The inside of the restraint frame and the vertical groove are of an integrated structure. The metal plate covers the inner bottom of the restraint frame through the vertical groove. The heating module is embedded in the lower part of the metal plate. The power-on rod is perpendicular to the heating module and is electrically connected.

[0007] Furthermore, a magnetic attraction block, a laminating plate, a clamping ring, a power-on groove, and a connecting wire spool are provided at the bottom of the power-on rod. The magnetic attraction block is embedded in the surface edge of the laminating plate. The clamping ring is embedded in the center of the surface of the laminating plate. The power-on groove is arranged inside the clamping ring. The connecting wire spool is arranged at the center of the circle of the clamping ring through the power-on groove and is led to the center of the bottom of the heating module for electrical connection.

[0008] Furthermore, the metal plate is provided with grooves, a frame, a plate body, and restraint grooves. The grooves are arranged at the upper and lower central parts of the frame. The edge of the plate body is covered by the frame. The restraint grooves are arranged in the central area of the surface layer of the plate body.

[0009] Furthermore, the vertical grooves inside the restraint frame are set in the vertical direction. The surface of the metal plate is in a flattened shape. There are three heating modules in total on the lower layer of the metal plate. The energizing rod and the heating module form a stable "T" shape.

[0010] Furthermore, there are four magnetic attraction blocks in total on the edge of the surface layer of the fitting plate. The clamping ring has insulating and resilient properties. The energizing groove is in a hollow shape. The connecting wire shaft is provided with an electrical plug at the position where it is connected to the center of the energizing groove.

[0011] Furthermore, there is one groove at each of the upper and lower centers of the frame. The surface layer of the plate body is in a finely polished shape. The restraint grooves are square-shaped and there are three of them. Advantages

[0012] Compared with the prior art, the present utility model has the following advantages:

[0013] 1. After the present utility model is further improved through the bearing panel, based on the bottom layer of the restraint frame, the metal plate covers it so that the shoe materials can be laid flat. Then the metal plate combines with the bottom heating module to increase its own temperature. So that after the automatic fitting body lowers other materials and accurately fits the shoe materials on the metal plate, the metal plate can use high temperature to make the curing agent in the glue react and take effect quickly, so that the two materials can be stably combined through the heating effect, avoiding the slight deviation caused by the glue not being completely dry after being taken out. Therefore, the fitting machine can improve its own practical effect through heating and fitting, and further can add a function for itself to achieve the effect of multi-functional use.

[0014] 2. After the present utility model is further improved through the lower layer of the metal plate, based on the frame and grooves at the edge of the plate body, it can improve the parallel connection stability between the plate body and the bottom layer of the restraint frame. Furthermore, the three square restraint grooves on the plate body can be accurately connected with the three heating modules, so that the three heating modules can be used in positions that do not interfere with each other, preventing the verticality of the metal plate from being affected after mutual interference. Then, through the finely polished plate body, the stability of contact with the surface of the shoe materials can be improved, preventing the occurrence of scratching phenomena. Description of the Drawings

[0015] Figure 1 It is a schematic structural diagram of an improved multi-functional fitting machine for shoe production according to the present utility model.

[0016] Figure 2 This is a three-dimensional structural schematic diagram of an improved bearing panel of the present utility model.

[0017] Figure 3 This is a top-down structural schematic diagram of an improved bottom of an energizing rod of the present utility model.

[0018] Figure 4 This is a top-down structural schematic diagram of an improved lower layer of a metal plate of the present utility model.

[0019] In the figure: anti-slip block - 1, main body - 2, control end - 3, bracket - 4, automatic fitting body - 5, bearing panel - 6, restraint frame - 61, vertical groove - 62, metal plate - 63, heating module - 64, energizing rod - 65, magnetic attraction block - 651, fitting plate - 652, clamping ring - 653, energizing groove - 654, connecting wire spool - 655, groove - 631, frame - 632, plate body - 633, restraint groove - 634. Detailed implementation manners

[0020] Next, the technical solutions of the present utility model will be clearly and completely described in conjunction with the accompanying drawings. Obviously, the described embodiments are some, but not all, of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0021] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present utility model. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance. Embodiment

[0022] As Figures 1-4 shown, the present utility model provides an improved multi-functional laminating machine for shoe production.

[0023] Please refer to Figure 1, the present utility model provides an improved multi-functional laminating machine for shoe production, comprising: an anti-slip block 1, a main body 2, a control terminal 3, a support 4, an automatic laminating body 5, and a bearing panel 6. The anti-slip block 1 is embedded at the lower edge of the main body 2. The front end of the main body 2 and the control terminal 3 are of an integrated structure. The support 4 is embedded on both sides of the upper end of the main body 2. The automatic laminating body 5 is installed at the center of the upper end of the support 4 and is on the same vertical line as the center of the surface layer of the main body 2. The bearing panel 6 is embedded at the center of the surface layer of the main body 2 and communicates with the automatic laminating body 5 above.

[0024] Please refer to Figure 2 , the present utility model provides an improved multi-functional laminating machine for shoe production, comprising: the bearing panel 6 is provided with a restraint frame 61, a vertical groove 62, a metal plate 63, a heating module 64, and a power-on rod 65. The interior of the restraint frame 61 and the vertical groove 62 are of an integrated structure. The metal plate 63 covers the inner bottom layer of the restraint frame 61 through the vertical groove 62. The heating module 64 is embedded in the lower part of the metal plate 63. The power-on rod 65 is perpendicular to the heating module 64 and is electrically connected thereto. The vertical groove 62 inside the restraint frame 61 is set in a vertical orientation. The surface of the metal plate 63 is in a flattened form. There are three groups of the heating modules 64 in the lower layer of the metal plate 63. The power-on rod 65 and the heating module 64 form a stable "T" shape.

[0025] The restraint frame 61 can place the shoe upper material in a flat manner through the internal vertical groove 62, and then improve the alignment effect with the materials carried by the upper components in combination with the restraint frame 61. The flattened surface of the metal plate 63 can prevent the shoe materials from tilting after being placed. The three groups of the heating modules 64 can quickly increase the temperature of the metal plate 63. The "T" shape formed by the power-on rod 65 and the heating module 64 can stably electrically connect with the components, thereby improving the verticality effect of the restraint frame 61.

[0026] Please refer to Figure 3 , the present utility model provides an improved multi-functional laminating machine for shoe production, comprising: the bottom of the power-on rod 65 is provided with a magnetic attraction block 651, a laminating plate 652, a clamping ring 653, a power-on slot 654, and a connecting wire spool 655. The magnetic attraction block 651 is embedded at the edge of the surface layer of the laminating plate 652. The clamping ring 653 is embedded at the center of the surface layer of the laminating plate 652. The power-on slot 654 is arranged inside the clamping ring 653. The connecting wire spool 655 is arranged at the center of the circle of the clamping ring 653 through the power-on slot 654 and is pulled to the bottom center of the heating module 64 for electrical connection. There are four magnetic attraction blocks 651 in total at the edge of the surface layer of the laminating plate 652. The clamping ring 653 has insulating rebound performance. The power-on slot 654 is in a hollow form. The connecting wire spool 655 and the center of the circle of the power-on slot 654 carry electrical connectors at the mutually connected positions.

[0027] The magnetic attraction block 651 can improve the overlapping firmness between the fitting plate 652 and the component through four pieces, avoiding the shaking and instability caused by mechanical automatic fitting. The clamping ring 653 is made of rubber, enabling it to achieve an insulating effect and clamp the edge of the component. The power supply groove 654 allows the power supply component to be inserted through its hollow shape, so that the electrical plug-in of the internal connecting spool 655 can be stably spliced with the power supply component.

[0028] Please refer to Figure 4 This utility model provides an improved multi-functional fitting machine for shoe production, including: the metal plate 63 is provided with a groove 631, a frame 632, a plate body 633, and a restraint groove 634. The groove 631 is arranged at the upper and lower central positions of the frame 632. The edge of the plate body 633 is covered by the frame 632. The restraint groove 634 is arranged in the central area of the surface layer of the plate body 633. There is one groove 631 at each of the upper and lower centers of the frame 632. The surface layer of the plate body 633 is in a finely polished state. The restraint groove 634 is square in shape and there are three of them.

[0029] The groove 631 can improve the overlapping stability between the frame 632 and the component by its upper and lower positions on the frame 632. The plate body 633 can improve the parallel contact effect with the component and shoe materials through the finely polished surface layer. The restraint groove 634 can match the shape of the component through its square shape, and then the three quantities can be matched with the quantity of the components to achieve the effect of one-by-one splicing.

[0030] The working principle of this utility model is described as follows:

[0031] First: The multi-functional fitting machine for shoe production can stably install the main machine 2 at a specific origin area for use through the anti-slip block 1. After the main machine 2 is connected to an external power supply, it can electronically control the automatic fitting body 5 on the bracket 4 through the control terminal 3. When the automatic fitting body 5 clamps the shoe materials, the operator can place the corresponding shoe fabrics on the bearing panel 6. Finally, the automatic fitting body 5 can accurately and vertically fit the carried shoe materials onto the shoe fabrics on the bearing panel 6 through vertical up-and-down sliding, achieving the effect of accurate fitting, replacing the manual fitting process, and improving the quality strength of the shoes after manufacturing.

[0032] Second: The restraint frame 61 on the bearing panel 6 can vertically embed the metal plate 63 through the vertical groove 62, so that the metal plate 63 can cover the lower layer area of the vertical groove 62. Subsequently, the three heating modules 64 and the energizing rod 65 at the lower end of the metal plate 63 can be vertically inserted into the main body 2 for stable electrical connection. Subsequently, the control terminal 3 can set the temperature of the heating module 64 through the energizing rod 65, so that the temperature generated by the heating module 64 can change the overall temperature of the metal plate 63. Therefore, after the shoe materials and other materials on the metal plate 63 are bonded by glue, high-temperature heating can be used to promote the effect of firm fusion. According to the fact that high-temperature heating can make the curing agent of the glue react and play a role quickly, the two can be well combined into one body, avoiding the situation of the two offset due to the unreacted glue when directly taken out after the materials are bonded to each other;

[0033] Third: The fitting plate 652 at the lower end of the energizing rod 65 can be stably installed inside the main body 2 through the magnetic attraction block 651. At the same time, the magnetic attraction block 651 can improve the fitting firmness with the inside of the main body 2. Subsequently, the clamping ring 653 at the center of the fitting plate 652 can determine the position of the energizing groove 654. After the components inside the main body 2 are inserted into the energizing groove 654, the clamping ring 653 can achieve the effect of positioning insulation, avoiding the situation of power leakage. At the same time, according to the position limitation, the electrical connectors of the connecting wire spool 655 can be accurately inserted and electrically connected with the inside of the main body 2, so that stable electrical connection can be achieved through vertical insertion and further improve the parallelism of the metal plate 63;

[0034] Fourth: The edge of the plate body 633 under the metal plate 63 can improve the vertical connection effect with the inside of the restraint frame 61 through the frame 632 and the groove 631. Then, the plate body 633 can prevent surface scratches generated after the shoe materials are put in through overall fine polishing, so as to improve the safety factor when the shoe materials are bonded, avoiding the scrapping caused by the scratching damage of the leather materials. Furthermore, the three square restraint grooves 634 in the plate body 633 can be accurately connected with the three heating modules 64. Through the position restraint of the restraint grooves 634, the three heating modules 64 can maintain a safe distance, avoiding mutual obstruction and affecting the normal operation effect and damaging the parallel use effect of the metal plate 63.

[0035] The technical features of the above-described embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above-described embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered to be within the scope described in this specification.

[0036] Therefore, in any aspect, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present utility model is defined by the appended claims rather than the above description. Thus, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be embraced within the present utility model. Any reference signs in the claims should not be construed as limiting the claims involved.

Claims

1. An improved multifunctional laminating machine for shoe production, the structure of which includes: An anti-sliding block (1), a main unit (2), a control terminal (3), a bracket (4), an automatic laminating body (5), and a bearing panel (6), characterized in that: the anti-sliding block (1) is embedded in the lower edge of the main unit (2); the front end of the main unit (2) and the control terminal (3) are an integrated structure; the bracket (4) is embedded in both sides of the upper end of the main unit (2); the automatic laminating body (5) is installed at the upper center of the bracket (4) and is on the same vertical line as the surface center of the main unit (2); the bearing panel (6) is embedded in the surface center of the main unit (2) and is in communication with the automatic laminating body (5) at the top; The bearing panel (6) is provided with a restraining frame (61), a vertical groove (62), a metal plate (63), a heating module (64), and an energizing rod (65); the interior of the restraining frame (61) and the vertical groove (62) are an integrated structure; the metal plate (63) covers the inner bottom of the restraining frame (61) through the vertical groove (62); the heating module (64) is embedded in the lower layer of the metal plate (63); and the energizing rod (65) and the heating module (64) are perpendicular to each other and are electrically connected.

2. The improved multifunctional laminating machine for shoe production according to claim 1, characterized in that: The bottom of the power rod (65) is provided with a magnetic block (651), a bonding plate (652), a clamping ring (653), a power-on slot (654), and a connecting wire shaft (655); the magnetic block (651) is embedded in the surface edge of the bonding plate (652); the clamping ring (653) is embedded in the surface center of the bonding plate (652); the power-on slot (654) is arranged inside the clamping ring (653); the connecting wire shaft (655) is arranged at the center of the clamping ring (653) through the power-on slot (654) and is pulled to the bottom center of the heating module (64) for electrical connection.

3. The improved multifunctional laminating machine for shoe production according to claim 1, characterized in that: The metal plate (63) is provided with a groove (631), a frame (632), a plate body (633), and a restraining groove (634); the groove (631) is arranged at the upper and lower center parts of the frame (632); the edge of the plate body (633) is covered by the frame (632); and the restraining groove (634) is arranged at the center area of ​​the surface of the plate body (633).

4. The improved multifunctional laminating machine for shoe production according to claim 1 is characterized in that: The vertical groove (62) inside the restraining frame (61) is set in a vertical orientation, the surface of the metal plate (63) is in a polished flat state, three groups of heating modules (64) are provided in the lower layer of the metal plate (63), and the power rod (65) and the heating module (64) form a stable "T" shape.

5. The improved multifunctional laminating machine for shoe production according to claim 2 is characterized in that: A total of four magnetic blocks (651) are provided on the edge of the surface of the bonding plate (652); the clamp ring (653) has an insulating rebound performance; the power supply slot (654) is hollow; and an electrical plug-in is carried at a position where the connecting wire shaft (655) and the center of the power supply slot (654) are connected to each other.

6. The improved multifunctional laminating machine for shoe production according to claim 3 is characterized in that: The groove (631) is provided at one position each at the upper and lower centers of the frame (632); the surface of the plate body (633) is finely polished; and the restraining grooves (634) are square in shape and are provided at three positions.