Sole pressing mechanism for shoes

By designing a shoe sole pressing mechanism with flexible blocks and fixed point controllers, the problem of excessive compression and deformation of the sole in the prior art is solved, and a more stable pressing effect and better sole protection are achieved.

CN222997484UActive Publication Date: 2025-06-20QUANZHOU QIANGSHENG MASCH CO LTD
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Patent Information

Application Number
CN202421612592.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-09
Publication Date
2025-06-20
Estimated Expiration
2034-07-09

AI Technical Summary

Technical Problem

When used, the existing shoe sole pressing mechanism is used, since the metal hardness of the pressing head is higher than that of the sole, the sole is prone to excessive extrusion and irreversible deformation during the hot extrusion process, thereby reducing the shock absorption performance of the sole.

Method used

A sole pressing mechanism for shoes is designed, which includes a load-bearing main unit, a load-bearing member, an energized bracket, a switch button and a sole pressing main body. The pressing sole body is equipped with a fixed point controller, a vertical slide bar, a balance block, a locking bolt, a splicing block and a flexible block. It uses the rubber characteristics of the flexible block to contact the sole to avoid excessive compression, and achieve stable up and down sliding through the cooperation of the fixed point controller and the driving rotor.

Benefits of technology

Through direct contact between the flexible block and the sole, excessive compression and deformation are avoided, the compression sole strength and overall stability of the sole are improved, while protecting the shock absorption performance of the sole.

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Abstract

The utility model discloses a sole pressing mechanism for shoes, which structurally comprises a load-bearing main machine, two groups of loading pieces, an electrifying support, a switch button and a sole pressing main body, and the upper end of the load-bearing main machine is vertically spliced with the two groups of loading pieces; after the sole pressing main body is further improved, the vertical sliding rod can be stably driven to slide up and down according to the mutual matching of the limiting sleeve of the fixed-point controller and the driving rotating body, so that the pressing or resetting stability of the balance block and the flexible block can be improved; furthermore, the locking bolt on the balance block can be combined with the splicing block to finish detachable connection with the flexible block, so that the flexible block can be in direct contact with the sole by utilizing the rubber characteristic of the flexible block, any one of the two can be prevented from being damaged according to the same hardness when the two are mutually extruded, and meanwhile, the sole pressing strength of the sole can be improved by utilizing mutual buffering; the use stability of the sole pressing mechanism is further improved, and the effect of protecting the sole is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of shoe processing, and specifically relates to a sole pressing mechanism for shoes. Background Art

[0002] Shoes are usually made by fusing the upper and the sole of the same size together by means of adhesives. After the adhesive is baked, a sole pressing mechanism is used to further apply pressure to the sole, forcing the joint part between the sole and the upper to be fully squeezed and fused, so as to improve the manufacturing strength and quality characteristics of the whole shoe, avoid excessive degumming during wearing, and thus greatly improve the quality effect and overall firmness of the shoe through the sole pressing mechanism.

[0003] However, the existing sole pressing mechanisms still have the following defects: since the hardness of the metal material of the pressing head of the current sole pressing mechanism is higher than that of the sole when in use, the sole is extremely prone to excessive extrusion after being fully hot-extruded by the metal pressing head, and finally an irreversible deformation occurs, thus easily causing a reduction in the shock absorption performance of the sole when improving the overall quality of the shoe. Content of the Utility Model

[0004] In view of the above problems, the utility model provides a sole pressing mechanism for shoes.

[0005] In order to achieve the above object, the utility model is realized by the following technical solutions: a sole pressing mechanism for shoes, the structure of which includes: a load-bearing main body, a loading member, a power-on bracket, a switch button, and a sole pressing main body. The upper end of the load-bearing main body is vertically spliced with two groups of loading members. The power-on bracket is installed on the upper side of the load-bearing main body and is electrically connected thereto. The switch button is embedded in the front part of the power-on bracket. The sole pressing main body penetrates through the surface layer of the power-on bracket, is electrically connected to the switch button, and is located on the same vertical center line as the loading member and is connected thereto.

[0006] Furthermore, the sole pressing main body is provided with a fixed-point controller, a vertical sliding rod, a balance block, a locking bolt, a splicing block, and a flexible block. The center of the fixed-point controller is penetrated by the vertical sliding rod. The lower end of the vertical sliding rod is fixedly connected to the center of the surface layer of the balance block. The locking bolt penetrates through the left and right sides of the balance block and is detachably threadedly connected to the splicing block. The left and right sides of the surface layer of the flexible block are fixedly connected to the splicing block and are fixedly connected to the lower end of the balance block through the splicing block.

[0007] Furthermore, the fixed-point controller is provided with an electrical connector, an adsorption block, a vertical sleeve, a limit ring, a through cavity, and a driving rotating body. The electrical connector is embedded in the surface edge of the adsorption block. The vertical sleeve coincides with the adsorption block. The centers of the vertical sleeve and the limit ring coincide with each other. The through cavity penetrates through the center of the limit ring. The driving rotating body is embedded in the edge of the limit ring through the through cavity and is adapted to the edge of the vertical sliding rod.

[0008] Furthermore, the loading member is provided with a restraint groove, an insertion block, a constant temperature block, a frame, a pressing groove, and a ventilation net. The restraint groove is arranged at the front and rear centers of the surface of the insertion block. The constant temperature blocks are embedded on the left and right sides of the insertion block. The frame is fixed to the upper end of the insertion block and communicates with the constant temperature block. The pressing groove is arranged inside the frame. The ventilation net is arranged at the bottom of the inner layer of the frame through the pressing groove and communicates with the constant temperature block.

[0009] Furthermore, the fixed-point controller is in a circular ring shape. The surface of the vertical sliding rod is in a finely polished shape. The balance block carries two vertical locking bolts. There are two splicing blocks on the flexible block in total. The area of the flexible block is the same as that of the balance block.

[0010] Furthermore, the area of the vertical sleeve is larger than that of the adsorption block. The through cavity of the limit ring is set in the vertical direction. The driving rotating body carries multiple spherical runners.

[0011] Furthermore, the restraint groove is set in the vertical direction. The insertion block carries two constant temperature blocks. Beneficial Effects

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

[0013] 1. After the bottom pressing main body of the present utility model is further improved, based on the mutual cooperation of the limit sleeve of the fixed-point controller and the driving rotating body, it can stably drive the vertical sliding rod to slide up and down, so as to improve the pressing or reset stability of the balance block and the flexible block. Furthermore, the locking bolts on the balance block can be combined with the splicing blocks to complete the detachable connection with the flexible block. Thus, the rubber property of the flexible block can be used to directly contact the sole. When the two are mutually extruded, according to the same hardness, it can prevent damage to either party. At the same time, the mutual buffering can improve the bottom pressing strength of the sole, further improving the use stability of the bottom pressing mechanism and achieving the effect of protecting the sole.

[0014] 2. After the present utility model is further improved by the loading member, the vertical pressing groove in the frame can make the shoes be vertically inverted, improving the vertical alignment of the shoes and the sole pressing main body. Then, the insertion block at the lower end of the frame can be vertically installed on the load-bearing main machine in combination with the restraint groove. The insertion method can achieve the effect of facilitating disassembly and assembly. At the same time, the constant temperature blocks on both sides and the ventilation net inside the frame can neutralize the internal hot air, keeping the temperature of the pressing groove within a suitable range, ensuring the stability of sole pressing and avoiding damage to the shoes and the normal use of the flexible block due to excessive temperature. Description of the Drawings

[0015] Figure 1 It is a schematic structural diagram of a sole pressing mechanism for shoes of the present utility model.

[0016] Figure 2 It is a schematic three-dimensional structural diagram of the sole pressing main body of the present utility model after improvement.

[0017] Figure 3 It is a schematic three-dimensional structural diagram of the fixed-point controller of the present utility model after improvement.

[0018] Figure 4 It is a schematic three-dimensional structural diagram of the loading member of the present utility model after improvement.

[0019] In the figure: load-bearing main machine - 1, loading member - 2, energized support - 3, switch button - 4, sole pressing main body - 5, fixed-point controller - 51, vertical sliding rod - 52, balance block - 53, locking bolt - 54, splicing block - 55, flexible block - 56, electrical connection body - 511, adsorption block - 512, vertical sleeve - 513, limit ring - 514, through cavity - 515, driving rotating body - 516, restraint groove - 21, insertion block - 22, constant temperature block - 23, frame - 24, pressing groove - 25, ventilation net - 26. Detailed Embodiment

[0020] Next, the technical solutions of the present utility model will be clearly and completely described in conjunction with the 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 making 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. It 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. Therefore, it should not be construed as a limitation to 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 a sole pressing mechanism for shoes.

[0023] Please refer to Figure 1 , the present utility model provides a sole pressing mechanism for shoes, including: a load-bearing main body 1, a loading member 2, a power-on bracket 3, a switch button 4, and a sole pressing main body 5. The upper end of the load-bearing main body 1 is vertically spliced with two groups of loading members 2. The power-on bracket 3 is installed on the upper side of the load-bearing main body 1 and is electrically connected thereto. The switch button 4 is embedded in the front part of the power-on bracket 3. The sole pressing main body 5 penetrates through the surface layer of the power-on bracket 3 and is electrically connected to the switch button 4, and at the same time, the lower part is on the same vertical center line as the loading member 2 and is communicated.

[0024] Please refer to Figure 2 , the present utility model provides a sole pressing mechanism for shoes, including: the sole pressing main body 5 is provided with a fixed-point controller 51, a vertical sliding rod 52, a balance block 53, a locking bolt 54, a splicing block 55, and a flexible block 56. The center of the fixed-point controller 51 is penetrated by the vertical sliding rod 52. The lower end of the vertical sliding rod 52 is fixedly connected to the center of the surface layer of the balance block 53. The locking bolt 54 penetrates through the left and right sides of the balance block 53 and is detachably threadedly connected to the splicing block 55. The left and right sides of the surface layer of the flexible block 56 are fixedly connected to the splicing block 55 and are fixedly connected to the lower end of the balance block 53 through the splicing block 55; the fixed-point controller 51 is in a circular ring shape, the surface layer of the vertical sliding rod 52 is in a finely polished shape, there are two vertical locking bolts 54 on the balance block 53, there are two splicing blocks 55 on the flexible block 56, and the area of the flexible block 56 is the same as the area of the balance block 53;

[0025] The fixed-point controller 51 can be fitted with the shape of the vertical slide bar 52 in a circular ring form, enabling the vertical slide bar 52 to slide vertically within the fixed-point controller 51. The vertical slide bar 52 is finely polished on the surface to prevent jamming during sliding. The two vertical locking bolts 54 on the balance block 53 can lock the flexible block 56 in combination with the splicing block 55, enabling the flexible block 56 to achieve the effect of being convenient for disassembly and assembly. The flexible block 56 can cover the surface layer of the balance block 53 through its own area, replacing the metal surface to contact the sole. Through mutual buffering and extrusion, the fusion strength between the sole and the upper can be improved, and at the same time, the effect of protecting the sole can be achieved.

[0026] Please refer to Figure 3 , the present utility model provides a sole pressing mechanism for shoes, including: the fixed-point controller 51 is provided with an electrical connection body 511, an adsorption block 512, a vertical sleeve 513, a limiting ring 514, a through cavity 515, and a driving rotating body 516. The electrical connection body 511 is embedded in the surface edge of the adsorption block 512. The vertical sleeve 513 coincides with the adsorption block 512. The center of the vertical sleeve 513 coincides with the center of the limiting ring 514. The through cavity 515 penetrates through the center of the limiting ring 514. The driving rotating body 516 is embedded in the edge of the limiting ring 514 through the through cavity 515 and is adapted to the edge of the vertical slide bar 52. The area of the vertical sleeve 513 is larger than the area of the adsorption block 512. The through cavity 515 of the limiting ring 514 is set in a vertical orientation. The driving rotating body 516 is provided with multiple spherical runners.

[0027] The vertical sleeve 513 can coincide with the adsorption block 512 through its own area, and then the vertical fixing of the vertical sleeve 513 can be improved by combining the magnetic adsorption effect of the adsorption block 512. The limiting ring 514 can enable the components to move in a vertical orientation through the vertical through cavity 513. The driving rotating body 516 can control the components to slide up and down through the multiple spherical runners it carries, and then the stability of the up and down sliding can be achieved according to the effect of electronically controlled adjustment of the runner speed.

[0028] Please refer to Figure 4 , the present utility model provides a sole pressing mechanism for shoes, including: the loading member 2 is provided with a restraint groove 21, an insertion block 22, a constant temperature block 23, a frame 24, a pressing groove 25, and a ventilation net 26. The restraint groove 21 is arranged at the front and rear centers of the surface of the insertion block 22. The constant temperature block 23 is embedded on the left and right sides of the insertion block 22. The frame 24 is fixed to the upper end of the insertion block 22 and is communicated with the constant temperature block 23. The pressing groove 25 is arranged inside the frame 24. The ventilation net 26 is arranged at the bottom of the inner layer of the frame 24 through the pressing groove 25 and is communicated with the constant temperature block 23. The restraint groove 21 is set in a vertical orientation. The insertion block 22 is provided with two constant temperature blocks 23.

[0029] The restraint groove 21 can effectively embed the shoe in an inverted vertical orientation through vertical orientation setting. The two constant temperature blocks 23 carried by the insertion block 22 can balance the temperature inside the pressing groove 25 through the breathable net 26, avoiding the continuous increase of internal heat energy during hot extrusion and affecting the normal force-bearing sole pressing stability of the shoe.

[0030] The working principle of the present invention is described as follows:

[0031] First: The sole pressing mechanism for shoes can be connected to an external power supply through the load-bearing main body 1 and then provide electrical energy and program support for the switch button 4 and the sole pressing main body 5 through the power-on bracket 3. So that after the shoe is vertically inverted inside the loading member 2, the operator can start the sole pressing main body 5 by triggering the switch button 4, enabling the sole pressing main body 5 to vertically descend to perform the sole pressing operation on the shoe inside the loading member 2, and thus completing the sole pressing process of the shoe;

[0032] Second: The fixed-point controller 51 of the sole pressing main body 5 can be stably installed at the upper end of the power-on bracket 3, and then the vertical slide rod 52 can vertically slide up and down in combination with the fixed-point controller 51. So that the balance block 53 at the lower end of the vertical slide rod 52 can be connected to the splicing block 55 of the flexible block 56 through two locking bolts 54, thereby achieving the flexible block 56 covering the metal surface at the lower end of the balance block 53. Furthermore, according to the detachable threaded connection, it is convenient to replace the flexible block 56 later. Finally, the rubber property of the flexible block 56 can match the hardness of the sole material, avoiding any damage to either party during sole pressing. Then, combined with the mutual buffering and extrusion effect, it can improve the sole pressing stability of the sole and achieve the protection strength of the sole;

[0033] Third: The vertical sleeve 513 of the fixed-point controller 51 can be vertically installed at the upper end of the power-on bracket 3 in combination with the adsorption block 512 and the electrical connection body 511. Then, the limiting ring 514 inside the vertical sleeve 513 can control the vertical slide rod 52 through the driving rotating body 516 inside the through cavity 515, enabling the driving rotating body 516 to drive the vertical slide rod 52 to move through the rotation effect, so that it can achieve stable up and down sliding. Therefore, it can further improve the sole pressing stability of driving the balance block 53 and the flexible block 56. Subsequently, the driving rotating body 516 can adjust its own rotation speed according to external electronic control cooperation, so that it can achieve the characteristics of high-speed operation or low-speed stable operation, and thus can improve the efficiency and stability effect of sole pressing;

[0034] Fourth: The frame 24 of the loading part 2 can vertically insert the shoe through the pressing groove 25. Then the shoe will come into contact with the internal breathable net 26. Subsequently, the insertion block 22 at the bottom of the frame 24 can be stably inserted into the load-bearing main body 1 by combining with the restraint groove 21 for assembly. At the same time, the constant temperature blocks 23 on both the left and right sides can operate according to the power support. Then, by utilizing the air permeability of the breathable net 26, the temperature inside the pressing groove 25 can be effectively dissipated. Furthermore, based on the temperature neutralization effect of the constant temperature blocks 23, the temperature balance inside the pressing groove 25 can be improved, avoiding the influence of excessive temperature on the stable use effect of the sole and the flexible block 56. Therefore, it is possible to achieve bottom pressing of the shoe in a constant temperature state.

[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 various technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope described in this specification.

[0036] Therefore, from any perspective, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be encompassed within the present invention. Any reference signs in the claims should not be regarded as limiting the claimed rights.

Claims

1. A sole pressing mechanism for shoes, comprising: A load-bearing main unit (1), a loading part (2), an energized bracket (3), a switch button (4), and a bottom pressing body (5), characterized in that: the upper end of the load-bearing main unit (1) is vertically spliced ​​with two groups of loading parts (2), the energized bracket (3) is installed on the upper side of the load-bearing main unit (1) and is electrically connected thereto, the switch button (4) is embedded in the front end of the energized bracket (3), the bottom pressing body (5) penetrates the surface of the energized bracket (3) and is electrically connected to the switch button (4), and the bottom is on the same vertical center line as the loading part (2) and is in communication therewith; The bottom pressing body (5) is provided with a fixed point controller (51), a vertical slide bar (52), a balancing block (53), a locking bolt (54), a splicing block (55), and a flexible block (56). The center of the fixed point controller (51) is penetrated by the vertical slide bar (52). The lower end of the vertical slide bar (52) is fixedly connected to the center of the surface of the balancing block (53). The locking bolt (54) penetrates the left and right sides of the balancing block (53) and is detachably threadedly connected to the splicing block (55). The left and right sides of the surface of the flexible block (56) are fixedly connected to the splicing block (55) and are fixedly connected to the lower end of the balancing block (53) through the splicing block (55).

2. A sole pressing mechanism for shoes according to claim 1, characterized in that: The fixed-point controller (51) is provided with an electrical connector (511), an adsorption block (512), a vertical sleeve (513), a limiting ring (514), a through cavity (515), and a driving rotator (516); the electrical connector (511) is embedded in the surface edge of the adsorption block (512); the vertical sleeve (513) and the adsorption block (512) overlap with each other; the center of the vertical sleeve (513) and the center of the limiting ring (514) overlap with each other; the through cavity (515) passes through the center of the limiting ring (514); and the driving rotator (516) is embedded in the edge of the limiting ring (514) through the through cavity (515) and is adapted to the edge of the vertical slide bar (52).

3. A sole pressing mechanism for shoes according to claim 1, characterized in that: The loading part (2) is provided with a restraining groove (21), an interpenetrating block (22), a constant temperature block (23), a frame (24), a pressing groove (25), and a breathable net (26); the restraining groove (21) is arranged at the front and rear center of the surface layer of the interpenetrating block (22); the constant temperature block (23) is embedded in the left and right sides of the interpenetrating block (22); the frame (24) is fixed to the upper end of the interpenetrating block (22) and communicates with the constant temperature block (23); the pressing groove (25) is arranged on the inner side of the frame (24); and the breathable net (26) is arranged at the bottom of the inner layer of the frame (24) through the pressing groove (25) and communicates with the constant temperature block (23).

4. A sole pressing mechanism for shoes according to claim 1, characterized in that: The fixed-point controller (51) is in the form of a circular ring, the surface of the vertical slide bar (52) is in the form of a fine polish, the balancing block (53) carries two vertical locking bolts (54), and the splicing block (55) is provided with two bolts on the flexible block (56), and the area of ​​the flexible block (56) is consistent with the area of ​​the balancing block (53).

5. The sole pressing mechanism for shoes according to claim 2, characterized in that: The area of ​​the vertical sleeve (513) is larger than the area of ​​the adsorption block (512), the through cavity (515) of the limiting ring (514) is set in a vertical orientation, and the driving rotor (516) carries a plurality of spherical rotating wheels.

6. A sole pressing mechanism for shoes according to claim 3, characterized in that: The containment groove (21) is set in a vertical orientation, and the interlaced block (22) carries two constant temperature blocks (23).