Heel shaping machine assembly for shoes
By adding a displacement adjustment structure to the downward press and shaping module of the rear heel setting machine, the problem of unstable module coordination is solved and the quality of rear heel processing of the shoe is improved.
Patent Information
- Application Number
- CN202421961640.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-08-14
AI Technical Summary
The existing rear heel setting machine is unstable in the coordination between the downward press module and the shaping module and is difficult to adjust, resulting in poor quality of the rear heel processing of the shoe.
A shoe rear heel shaping machine assembly is designed, and by adding a displacement adjustment structure to the downward press module and the shaping module, including a slide chute plate, an adjustment knob and a telescopic cylinder, the fine adjustment and stable coordination between the modules are achieved.
Through fine adjustment between modules, the coordination between the downward module and the shaping module is more coordinated and stable, and the processing quality of the heel of the shoe is improved.
Smart Images

Figure CN222888687U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of shoe processing equipment, in particular to a shoe heel shaping machine component. Background Art
[0002] The heel shaping machine is a kind of equipment specially used for shoe processing, which is mainly used to shape the heel part of the shoe to ensure that the quality and appearance of the shoe meet the standards. The heel shaping machine under the existing technology is mainly divided into two structures. One is to directly suspend and fix the down-pressing module on the frame of the heel shaping machine. When this structure is used, there is no support point at both ends of the down-pressing module, and the position distance of the front, back, left and right cannot be adjusted after being fixed. Therefore, the cooperation with the shaping module is unstable and difficult to position during operation; the other is to control the relative movement between the down-pressing module and the shaping module respectively through multiple cylinders and electrical switches. This structure is complicated and cumbersome, with high production cost, and due to the irregularity of the structure, the instability of pneumatic or circuit control, etc., it is easy to cause the down-pressing module and the shaping module to cooperate uncoordinatedly, thereby affecting the processing quality of the heel of the shoe. Utility Model Content
[0003] The utility model aims to provide a shoe heel shaping machine component in view of the above problems existing in the prior art.
[0004] The purpose of the utility model can be achieved through the following technical solutions: a shoe heel shaping machine assembly, including a pressing module and a shaping module; the pressing module includes a pressing cylinder, a movable guide rod, a slide plate and an airbag mold, the bottom of the pressing cylinder is connected to a cylinder mounting plate, the movable guide rod is arranged at the front end of the pressing cylinder, the movable guide rod passes through the front end of the cylinder mounting plate from top to bottom and is fixedly connected to the guide rod mounting plate below, the bottom of the guide rod mounting plate is connected to a slide plate, the slide plate is a groove-shaped structure with an opening downward as a whole, a slider plate is installed inside, and the bottom of the slider plate is fixedly connected to the airbag mold;
[0005] The shaping module mainly includes a supporting base and an adjusting cylinder. A stainless steel tray which can slide forward and backward and adjustably is installed on the top surface of the front side of the supporting base, a telescopic cylinder is installed in the stainless steel tray, a supporting column is formed on the rear side of the supporting base, a last bracket is fixedly connected to the top end of the supporting column, convex arc-shaped rubber blocks are respectively fixedly connected to both sides of the front end of the last bracket, a chuck fixing seat is fixedly connected between the last bracket and the telescopic cylinder, clamping block brackets are respectively arranged on both sides of the chuck fixing seat, the clamping block bracket is V-shaped and can be swingably installed on the chuck fixing seat, a clamping block support is fixedly connected to the top end of the clamping block support, and a concave arc-shaped rubber clamp corresponding to the rubber block is arranged on the clamping block support; the adjusting cylinder is installed at the bottom of the supporting base.
[0006] In the above-mentioned shoe heel shaping machine assembly, an adjusting knob is provided at the front end of the slide plate, and an adjusting handle is provided at the side.
[0007] In the above-mentioned shoe heel shaping machine assembly, the telescopic cylinder is installed and fixed in the stainless steel tray through the cylinder fixing seat at the bottom.
[0008] In the above-mentioned shoe heel shaping machine assembly, a vertically upward copper rod is arranged at the front end top of the last bracket, and a welding lifting rod is installed at the rear side of the copper rod at the top of the last bracket through a welding seat, and the welding lifting rod can be telescopically lifted and retracted in the vertical direction.
[0009] In the above-mentioned shoe heel forming machine assembly, the adjusting cylinder is fixedly connected to the bottom of the supporting base through a Y-shaped joint, and an articulated cylinder seat is installed at the bottom of the adjusting cylinder, which is installed on the inner side wall of the heel forming machine through the articulated cylinder seat.
[0010] Compared with the prior art, the utility model provides a shoe heel shaping machine assembly, by respectively adding displacement adjustment structures on the pressing module and the shaping module, so that the two can be further fine-tuned after pneumatic or circuit control adjustment, so that the cooperation between the pressing module and the shaping module is coordinated and stable, thereby ensuring the processing quality of the shoe heel. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 This is a structural coordination diagram of the heel shaping machine components for this shoe;
[0012] Figure 2 It is a structural schematic diagram of a lower pressing module in a heel shaping machine assembly for shoes;
[0013] Figure 3 The utility model is a structural schematic diagram of a shaping module in a heel shaping machine component for shoes.
[0014] In the above figure, 100, the pressing module; 110, the pressing cylinder; 111, the cylinder mounting plate; 120, the moving guide rod; 121, the guide rod mounting plate; 130, the slide plate; 131, the slider plate; 132, the adjusting knob; 133, the adjusting handle; 140, the airbag mold;
[0015] 200. Forming module; 210. Support base; 211. Support column; 212. Stainless steel tray; 220. Telescopic cylinder; 221. Cylinder fixing seat; 222. Spring shaft; 230. Last bracket; 231. Welding lifting rod; 232. Welding seat; 233. Copper rod; 234. Rubber block; 240. Clamp fixing seat; 241. Clamp bracket; 242. Clamp support; 243. Rubber clamp; 250. Adjusting cylinder; 251. Y-type joint; 252. Articulated cylinder seat. DETAILED DESCRIPTION
[0016] The following are specific embodiments of the present invention and the accompanying drawings to further describe the technical solution of the present invention, but the present invention is not limited to these embodiments.
[0017] like Figures 1 to 3 As shown, the shoe heel shaping machine assembly includes a pressing module 100 and a shaping module 200. The lower end of the pressing module 100 and the upper end of the shaping module 200 correspond to each other to perform shoe heel shaping processing.
[0018] like Figure 2 As shown, the pressing module 100 includes a pressing cylinder 110, a moving guide rod 120, a slide plate 130 and an airbag mold 140. A cylinder mounting plate 111 is connected to the bottom of the pressing cylinder 110. The cylinder mounting plate 111 is rectangular and extends forward for a distance from the bottom of the pressing cylinder 110. The moving guide rod 120 is arranged at the front end of the pressing cylinder 110. The moving guide rod 120 passes through the front end of the cylinder mounting plate 111 from top to bottom and is fixedly connected to the guide rod mounting plate 121 below. The relative distance between the guide rod mounting plate 121 and the cylinder mounting plate 111 changes as the pressing cylinder 110 moves up and down on the moving guide rod 120.
[0019] The guide rod mounting plate 121 is connected to a chute plate 130 at the bottom. The chute plate 130 is a trough structure with an opening downward, and a slider plate 131 is installed inside. The bottom of the slider plate 131 is fixedly connected to the airbag mold 140. The slider plate 131 can move forward and backward in the groove of the chute plate 130, thereby driving the airbag mold 140 to move forward and backward. An adjustment knob 132 is provided at the front end of the chute plate 130, and a screw for adjusting the relative position of the chute plate 130 and the slider plate 131 is provided inwardly at the adjustment knob 132. An adjustment handle 133 is provided on the side of the chute plate 130 for relatively fixing the chute plate 130 and the slider plate 131.
[0020] like Figure 3 As shown, the shaping module 200 mainly includes a support base 210 and an adjusting cylinder 250. A stainless steel tray 212 is installed on the front top surface of the support base 210, and a cylinder fixing seat 221 is fixedly installed in the stainless steel tray 212. The stainless steel tray 212 and the cylinder fixing seat 221 are correspondingly provided with strip grooves, which are fixedly connected to the support base 210 with bolts. The stainless steel tray 212 and the structure thereon can be adjusted and slid forward and backward by adjusting the position of the bolts in the grooves, and a telescopic cylinder 220 is installed on the cylinder fixing seat 221.
[0021] A support column 211 is formed on the rear side of the support base 210, and a last bracket 230 is fixedly connected to the top of the support column 211. Convex arc-shaped rubber blocks 234 are respectively fixedly connected to both sides of the front end of the last bracket 230. A copper rod 233 is arranged vertically upward at the top of the front end of the last bracket 230. A welding lifting rod 231 is installed on the rear side of the copper rod 233 at the top of the last bracket 230 through a welding seat 232. The welding lifting rod 231 can be telescopically lifted and lowered in the vertical direction so as to match the processing and shaping of the heels of shoes of different sizes.
[0022] A chuck fixing seat is fixedly connected between the last bracket 230 and the telescopic cylinder 220, and a clamping block bracket 241 is respectively arranged on both sides of the chuck fixing seat. The clamping block brackets 241 on both sides are installed on the chuck fixing seat in a V-shape as a whole, and the clamping block bracket 241 can swing with the connection between it and the clamping block fixing seat 240 as the center of the circle. A clamping block support 242 is fixedly connected to the top of the clamping block bracket 241, and a concave arc-shaped rubber clamping block 243 corresponding to the rubber block 234 is arranged on the clamping block support 242. The clamping block fixing seat 240 and its upper structure together with the last bracket 230 constitute a clamping structure in the shaping module 200, which is used to clamp the two sides of the heel of the processed shoe material.
[0023] When the shaping module 200 is installed on the frame, its support base 210 is located above the operating plane. To achieve the adjustment of different angles of the shaping module 200 during processing, the shaping module 200 is below the operating plane, and the bottom of the support base 210 is connected and installed with an adjusting cylinder 250. The adjusting cylinder 250 is fixedly connected to the bottom of the supporting base 210 through a Y-shaped joint 251, and a hinged cylinder seat 252 is installed at the bottom of the adjusting cylinder 250, which is installed on the inner side wall of the heel shaping machine through the hinged cylinder seat 252.
[0024] The specific embodiments described herein are merely examples of the spirit of the present invention. Those skilled in the art may make various modifications or additions to the specific embodiments described or replace them in similar ways, but they will not deviate from the spirit of the present invention or exceed the scope defined by the appended claims.
[0025] Although various terms are used more frequently in this article, the possibility of using other terms is not excluded. These terms are used only to more conveniently describe and explain the essence of the utility model; interpreting them as any additional restrictions is contrary to the spirit of the utility model.
Claims
1. A shoe heel shaping machine assembly, comprising a pressing module (100) and a shaping module (200); characterized in that: The pressing module (100) comprises a pressing cylinder (110), a movable guide rod (120), a slide plate (130) and an airbag mold (140); the bottom of the pressing cylinder (110) is connected to a cylinder mounting plate (111); the movable guide rod (120) is arranged at the front end of the pressing cylinder (110); the movable guide rod (120) passes through the front end of the cylinder mounting plate (111) from top to bottom and is fixedly connected to the guide rod mounting plate (121) below; the bottom of the guide rod mounting plate (121) is connected to a slide plate (130); the slide plate (130) is a groove-shaped structure with an opening facing downward as a whole, and a slider plate (131) is installed inside; the bottom of the slider plate (131) is fixedly connected to the airbag mold (140); The shaping module (200) mainly comprises a support base (210) and an adjusting cylinder (250); a stainless steel tray (212) which can be adjusted and slid forward and backward is installed on the front top surface of the support base (210); a telescopic cylinder (220) is installed in the stainless steel tray (212); a support column (211) is formed on the rear side of the support base (210); a last bracket (230) is fixedly connected to the top of the support column (211) facing forward; convex arc-shaped rubber blocks (234) are respectively fixedly connected to the two sides of the front end of the last bracket (230); A chuck fixing seat is fixedly connected between the last bracket (230) and the telescopic cylinder (220), and clamping block brackets (241) are respectively arranged on both sides of the chuck fixing seat. The clamping block bracket (241) is swingably mounted on the chuck fixing seat in a V shape, and a clamping block support (242) is fixedly connected to the top end of the clamping block bracket (241) facing forward, and a concave arc-shaped rubber clamping block (243) corresponding to the rubber block (234) is arranged on the clamping block support (242); the regulating cylinder (250) is mounted on the bottom of the supporting base (210).
2. A shoe heel shaping machine assembly according to claim 1, characterized in that: The front end of the slide plate (130) is provided with an adjustment knob (132), and the side surface is provided with an adjustment handle (133).
3. A shoe heel shaping machine assembly according to claim 1, characterized in that: The telescopic cylinder (220) is installed and fixed in the stainless steel tray (212) via a cylinder fixing seat (221) at the bottom.
4. A shoe heel shaping machine assembly according to claim 1, characterized in that: A copper rod (233) extending vertically upward is arranged at the top of the front end of the shoe last bracket (230); a welding lifting rod (231) is installed at the rear side of the copper rod (233) at the top of the shoe last bracket (230) through a welding seat (232); and the welding lifting rod (231) can be telescopically lifted and lowered in the vertical direction.
5. The shoe heel shaping machine assembly according to claim 1, characterized in that: The regulating cylinder (250) is fixedly connected to the bottom of the supporting base (210) via a Y-shaped joint (251); a hinged cylinder seat (252) is installed at the bottom of the regulating cylinder (250), and the regulating cylinder (250) is installed on the inner side wall of the heel shaping machine via the hinged cylinder seat (252).