Machining and forming die for shock-absorbing shoe insoles
By designing a mold that includes a support frame and a sliding seat, the problem of difficult removal of slag from holes during the molding process of shoe insoles was solved, achieving efficient and automatic removal and protecting the integrity of the shoe insoles.
Patent Information
- Application Number
- CN202520140428.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-01-21
AI Technical Summary
In existing technologies, it is difficult to efficiently remove the residue from the holes left during the molding process of shoe insoles, resulting in low work efficiency and high labor intensity.
A molding die for processing shock-absorbing shoe insoles was designed. Through the cooperation of a vertically arranged support frame, a sliding seat, and an elastic component, the relative movement of the sliding seat and the pressure rod enables the automatic discharge of material residue from the holes, thus avoiding damage to the shoe insoles.
It achieves efficient and automatic removal of material residue from holes, improving work efficiency, reducing labor intensity, and protecting the integrity of the shoe insole.
Smart Images

Figure CN223763376U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of shoe sole processing technology, and in particular to a processing mold for shock-absorbing shoe insoles. Background Technology
[0002] The insole of a shoe generally needs to be punched and punched during the molding process. The punching machine punches the outer contour of the insole and then punches the material. After punching, multiple holes are formed. However, not all the residue in these holes will fall off the insole. Usually, the remaining residue is removed manually, which is inefficient and labor-intensive. Utility Model Content
[0003] The purpose of this invention is to overcome the problems of the prior art and provide a processing mold for the insole of shock-absorbing shoes that is convenient for processing the insole.
[0004] To achieve the above objectives, the present invention adopts the following solution:
[0005] A molding die for processing the insole of a shock-absorbing shoe, capable of punching out material residue from holes in the insole, includes: a vertically arranged support frame; a mounting base connected to the lower side of the support frame; a first template detachably connected to the mounting base; a slot on the first template for the insole to be inserted into; a discharge hole corresponding to the hole in the insole on the bottom surface of the slot; a detachably connected pressure plate on the first template; a top pressing part that can be inserted into the slot on the pressure plate; a positioning hole corresponding to the position of the discharge hole on the pressure plate; a sliding seat connected to the support frame; multiple elastic components connected to the lower end of the sliding seat; a second template connected to the multiple elastic components; a stamping part on the second template that punches out material residue from the insole when the second template and the first template are closed; and a rotating pressure rod on the upper side of the support frame, which is rotatably connected to the sliding seat and can drive the sliding seat to slide up and down relative to the support frame when the pressure rod rotates.
[0006] A reset component capable of resetting the pressure rod is provided between the pressure rod and the support frame.
[0007] The support frame is also provided with a plurality of first slide rails, and a first slider that can slide along the first slide rail is connected to each of the first slide rails, and the sliding seat is connected between each of the first sliders.
[0008] The sliding seat is provided with a first movable groove that allows the pressure rod to move, and the sliding seat is provided with a connecting shaft that can pass through the first movable groove. The connecting shaft is rotatably connected to the middle of the pressure rod.
[0009] The support frame is also provided with a groove, and two connecting plates are connected to the support frame. The two connecting plates are inserted into the groove, and the two connecting plates are provided with sliding grooves. The pressure rod is also provided with an outwardly extending extension column, which is inserted into the sliding groove and can slide along the sliding groove.
[0010] The elastic component includes a first support plate connected to the sliding seat, and a hollow sleeve is connected to the first support plate. The reset component also includes a second support plate connected to the second template, and a sliding column that can extend into the sleeve and slide along the sleeve is connected to the second support plate. A first reset spring is provided between the sliding column and the sleeve.
[0011] The sleeve is also provided with a transversely inserted shaft pin, and the sliding column is provided with a clearance groove that can make way for the shaft pin.
[0012] The sleeve is also provided with a buffer assembly that can push the sliding column when it approaches the upper wall of the sleeve.
[0013] The buffer assembly includes a second movable groove disposed on a first support plate. The lower end of the second movable groove is provided with an opening. The second movable groove is connected to a sleeve through the opening. A top pressing block that can slide up and down relative to the second movable groove is provided inside the second movable groove. The top pressing block extends into the sleeve. A second elastic element that can push the top pressing block to reset is also provided between the top pressing block and the first support plate.
[0014] The mounting base includes two protruding protrusions, and a connecting frame that can rotate relative to the two protrusions is connected to the two protrusions. The connecting frame and the mounting base cooperate to form a snap-fit groove that can be snapped into by the first template.
[0015] Compared with existing technologies, this utility model has the following advantages: When using this utility model, the insole is aligned with the slot, then the top pressing part of the pressure plate is aligned with the slot, the pressure plate is pressed into the slot, and then the pressure rod is pulled down. The sliding seat slides down relative to the support frame under the action of the pressure rod. At this time, the second template connected to the sliding seat gradually moves closer to the first template and closes with the first template. During the mold closing process, the stamping part gradually enters the positioning hole and then gradually moves from the positioning hole to the discharge hole. During the movement, the material residue in the insole hole is flushed out, which is very convenient to use. Due to the setting of the elastic component, the stamping part can press elastically, which can avoid damaging the insole of the shoe, making it more convenient to use. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the processing mold for the inner sole of the shock-absorbing shoe of this utility model;
[0017] Figure 2This is a schematic diagram of the elastic component of the molding die for processing the insole of the shock-absorbing shoe of this utility model;
[0018] Figure 3 This is an exploded view of the sliding seat and support frame of the molding die for the shock-absorbing shoe insole of this utility model.
[0019] Figure 4 This is one of the exploded views of the mounting base, first template, and pressure plate of the molding die for the shock-absorbing shoe insole of this utility model;
[0020] Figure 5 This is the second exploded view of the mounting base, first template, and pressure plate of the molding die for the shock-absorbing shoe insole of this utility model;
[0021] Figure 6 This is a cross-sectional view of the molding die for processing the insole of the shock-absorbing shoe of this utility model;
[0022] Figure 7 This is a schematic diagram of the inner bottom structure.
[0023] Label:
[0024] Inner bottom 100, hole 101, support frame 1, first slide rail 11, first slider 12, groove 13, connecting plate 14, slide groove 141, mounting base 2, protrusion 21, connecting frame 22, snap-fit groove 23, first template 3, snap-fit groove 31, discharge hole 32, pressure plate 4, top pressing part 41, positioning hole 42, sliding seat 5, first movable groove 51, connecting shaft 52, elastic component 6, first support plate 61, sleeve 62, second support plate 63, sliding column 64, clearance groove 641, first return spring 65, shaft pin 66, buffer component 67, second movable groove 671, opening 672, top pressing block 673, second elastic element 674, second template 7, stamping part 71, pressure rod 8, extension column 81, return component 9. Detailed Implementation
[0025] The present invention will be further described in detail below with reference to embodiments:
[0026] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit its scope.
[0027] like Figures 1 to 7 As shown,
[0028] A molding die for processing a shock-absorbing shoe insole 100, capable of punching out material residue from holes 101 in the insole 100, includes: a vertically arranged support frame 1, a mounting base 2 connected to the lower side of the support frame 1, a first template 3 detachably connected to the mounting base 2, the first template 3 having a slot 31 for the insole 100 to be inserted into, a discharge hole 32 corresponding to the hole 101 in the insole 100 on the bottom surface of the slot 31, a detachably connected pressure plate 4 to the first template 3, and a top pressing part 41 that can be inserted into the slot 31. The pressure plate 4 is also provided with a positioning hole 42 corresponding to the position of the discharge hole 32. The support frame 1 is connected to a sliding seat 5 that can slide relative to it. The lower end of the sliding seat 5 is connected to a plurality of elastic components 6. The plurality of elastic components 6 are connected to a second template 7. The second template 7 is provided with a stamping part 71 that can punch the material residue out from the inner bottom 100 when the second template 7 and the first template 3 are closed. The upper side of the support frame 1 is provided with a pressure rod 8 that can rotate relative to it. The pressure rod 8 is rotatably connected to the sliding seat 5, and when the pressure rod 8 rotates, it can drive the sliding seat 5 to slide up and down relative to the support frame 1.
[0029] In use, the insole 100 is aligned with the slot 31, and then the top pressing part 41 of the pressure plate 4 is aligned with the slot 31. The pressure plate 4 is pressed into the slot 31, and then the pressure rod 8 is pulled down. The sliding seat 5 slides down relative to the support frame 1 under the action of the pressure rod 8. At this time, the second template 7 connected to the sliding seat 5 gradually moves closer to the first template 3 and closes with the first template 3. During the mold closing process, the stamping part 71 gradually enters the positioning hole 42 and then gradually moves from the positioning hole 42 to the discharge hole 32. During the movement, the material residue in the hole 101 of the insole 100 is punched out. It is very convenient to use. Due to the setting of the elastic component 6, the stamping part 71 can press elastically, which can avoid damaging the shoe insole 100, making it more convenient to use.
[0030] A reset component 9 is provided between the pressure rod 8 and the support frame 1 to reset the pressure rod 8. The reset component 9 is a spring, which is located between the pressure rod 8 and the support frame 1 so that after the force applied to the pressure rod 8 is removed, the reset component 9 can push the pressure rod 8 back to its original position, and the user only needs to remove the pressure plate 4.
[0031] The support frame 1 is also provided with multiple first slide rails 11, and each of the first slide rails 11 is connected to a first slider 12 that can slide along the first slide rail 11. The sliding seat 5 is connected between each of the first sliders 12. The first slider 12 cooperates with the first slide rail 11 to guide the sliding seat 5 to slide up and down, which is very convenient to use.
[0032] The sliding seat 5 is provided with a first movable groove 51 that allows the pressure rod 8 to move. The sliding seat 5 is also provided with a connecting shaft 52 that can pass through the first movable groove 51. The connecting shaft 52 is rotatably connected to the middle of the pressure rod 8. The connecting shaft 52 is designed to facilitate connection with the pressure rod 8, while the first movable groove 51 allows for clearance of the pressure rod 8, making the pressure rod 8 fit more snugly against the sliding seat 5.
[0033] The support frame 1 is also provided with a groove 13, and two connecting plates 14 are connected to the support frame 1. The two connecting plates 14 are inserted into the groove 13, and the two connecting plates 14 are provided with sliding grooves 141. The pressure rod 8 is also provided with an outwardly extending extension post 81. The extension post 81 is inserted into the sliding groove 141 and can slide along the sliding groove 141. The setting of the sliding groove 141 can adjust the position of the extension post 81, so that the pressure rod 8 can extend or retract into the groove 13, so that the pressure rod 8 can be adapted to sliding seats 5 of different widths, and thus adapt to the waste material of shoe insoles 100 of different widths, thus expanding its application range.
[0034] The reset assembly 9 includes a first support plate 61 connected to the sliding seat 5, and a hollow sleeve 62 connected to the first support plate 61. The reset assembly 9 also includes a second support plate 63 connected to the second template 7, and a sliding post 64 connected to the second support plate 63, which can extend into the sleeve 62 and slide along the sleeve 62. A first reset spring 65 is provided between the sliding post 64 and the sleeve 62. The first reset spring 65 enables the second support plate 63 to elastically contact the pressure plate 4, avoiding damage to the pressure plate 4, and also enables the top pressing part 41 to elastically contact the shoe insole 100.
[0035] The sleeve 62 is also provided with a transversely inserted pivot pin 66, and the sliding column 64 is provided with a clearance groove 641 that can make way for the pivot pin 66. The pivot pin 66 is used to connect the sleeve 62 and the sliding sleeve. The clearance groove 641 can make way for the sliding column 64 when it slides, thus preventing the surface from getting stuck.
[0036] The sleeve 62 is also provided with a buffer component 67 that can push the sliding column 64 when it approaches the upper wall of the sleeve 62, which can prevent the sliding column 64 from directly hitting the lower bottom surface of the first support plate 61 when it slides upward, thus preventing damage to the sliding column 64.
[0037] The buffer assembly 67 includes a second movable groove 671 disposed on the first support plate 61. The lower end of the second movable groove 671 has an opening 672, and the second movable groove 671 is connected to the sleeve 62 through the opening 672. A pressing block 673, capable of sliding up and down relative to the second movable groove 671, is disposed within the second movable groove 671. A portion of the pressing block 673 extends into the sleeve 62. A second elastic element 674, capable of pushing the pressing block 673 back to its original position, is also disposed between the pressing block 673 and the first support plate 61. When the sliding column 64 slides upward, it gradually contacts the lower surface of the pressing block 673, gradually pushing the pressing block 673 into the second movable groove 671. At this time, the second elastic element 674 is gradually compressed, preventing the top surface of the sliding column 64 from contacting the lower surface of the first support plate 61 due to excessive force.
[0038] The mounting base 2 includes two protruding protrusions 21, and a connecting frame 22 that can rotate relative to the two protrusions 21 is connected to the two protrusions 21. The connecting frame 22 cooperates with the mounting base 2 to form a snap-fit groove 23 for the first template 3 to snap into. The design of the connecting frame 22 facilitates adaptation to the shape of the first template 3, thus broadening its application range.
[0039] The present invention has been described in detail above. However, modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, any modifications or improvements that do not depart from the spirit of the present invention are within the protection scope of the present invention.
Claims
1. A processing forming die of a shock-absorbing shoe insole, capable of flushing out the residue in the hole (101) on the insole (100), characterized in that, The utility model provides a kind of shoe sole moulding device, including: Vertical support frame (1), the lower side of the support frame (1) is connected with mounting seat (2), the first mould plate (3) is detachably connected on the mounting seat (2), the first mould plate (3) is provided with the card slot (31) that can be inserted into inner bottom (100) on, the bottom surface of the card slot (31) is equipped with the material discharge hole (32) corresponding with the hole (101) of inner bottom (100), the first mould plate (3) is connected with the detachable pressing plate (4), the pressing plate (4) is equipped with the top pressure part (41) that can be inserted into card slot (31), the pressing plate (4) is further equipped with the positioning hole (42) corresponding with material discharge hole (32) position, the support frame (1) is connected with the sliding seat (5) that can slide relatively, the lower end of the sliding seat (5) is connected with multiple elastic components (6), multiple the elastic component (6) is connected with second mould plate (7), the second mould plate (7) is provided with the punch (71) when second mould plate (7) and first mould plate (3) are combined moulding and can be ejected from inner bottom (100) on material slag, the upper side of the support frame (1) is provided with the pressure rod (8) that can rotate relatively, the pressure rod (8) is rotatably connected with sliding seat (5), and when the pressure rod (8) rotates, can drive sliding seat (5) to slide up and down relative to support frame (1).
2. The molding die for a cushioning shoe insole according to claim 1, wherein Reset component (9) is equipped between the pressure rod (8) and the support frame (1), and the pressure rod (8) can be reset.
3. The molding die for a cushioning shoe insole according to claim 1, wherein The support frame (1) is further provided with a plurality of first sliding rails (11), each first sliding rail (11) is connected with a first sliding block (12) capable of sliding along the first sliding rail (11), and the sliding seat (5) is connected between each first sliding block (12).
4. The molding die for a cushioning shoe insole according to claim 1, wherein The sliding seat (5) is provided with a first movable groove (51) capable of moving the pressure rod (8), the sliding seat (5) is provided with a connecting shaft (52) capable of crossing the first movable groove (51), and the connecting shaft (52) is rotatably connected to the middle part of the pressure rod (8).
5. The molding die for a cushioning shoe insole according to claim 1, wherein The support frame (1) is further provided with a groove (13), and the support frame (1) is further connected with two connecting plates (14), the two connecting plates (14) are inserted into the groove (13), the two connecting plates (14) are provided with a sliding groove (141), the pressure rod (8) is further provided with an extension column (81) extending outward, and the extension column (81) is inserted into the sliding groove (141) and can slide along the sliding groove (141).
6. The shoe insole according to claim 2, wherein The elastic component (6) includes a first support plate (61) connected to the sliding seat (5), the first support plate (61) is connected with a hollow sleeve (62), the reset component (9) further includes a second support plate (63) connected to the second mould plate (7), the second support plate (63) is connected with a sliding column (64) capable of extending into the sleeve (62) and capable of sliding along the sleeve (62), and the first reset spring (65) is arranged between the sliding column (64) and the sleeve (62).
7. The shoe insole processing forming mold according to claim 6, characterized in that, The sleeve (62) is further provided with an axial pin (66) transversely arranged, and the sliding column (64) is provided with a clearance slot (641) capable of allowing the axial pin (66) to clear.
8. The molding die for a cushioning shoe insole according to claim 6, wherein The sleeve (62) is further provided with a buffer assembly (67) capable of pushing the sliding column (64) when the sliding column (64) approaches the upper wall of the sleeve (62).
9. The molding die for a cushioning shoe insole according to claim 8, wherein The buffer assembly (67) comprises a second movable slot (671) arranged on the first supporting plate (61), the lower end of the second movable slot (671) is provided with an opening (672), the second movable slot (671) is connected with the sleeve (62) through the opening (672, the second movable slot (671) is provided with a pushing block (673) capable of sliding up and down relative thereto, the pushing block (673) partially extends into the sleeve (62), and the pushing block (673) and the first supporting plate (61) are further provided with a second elastic member (674) capable of pushing the pushing block (673) to reset.
10. The molding die for a cushioning shoe insole according to claim 1, wherein The mounting seat (2) comprises two protruding protrusions (21), the two protrusions (21) are connected with a connecting frame (22) capable of rotating relative thereto, and the connecting frame (22) and the mounting seat (2) cooperatively form a clamping groove (23) capable of clamping the first template (3).