Forklift seam device for template machine leg
By designing the template machine's fork sewing device, and utilizing the drive mechanism and air holes to assist in fabric positioning, the problems of high skill requirements in manual sewing and fabric wrinkling are solved, enabling fast and safe fork forming, improving production efficiency and reducing costs.
Patent Information
- Application Number
- CN202423280807.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-30
AI Technical Summary
The existing foot-stitching process mainly relies on manual labor, which requires high skill levels. Furthermore, the fabric is prone to wrinkling during the folding process, affecting the subsequent sewing results.
Design a template machine fork sewing device, including a processing platform, an upper fork mold and a lower fork mold. A drive mechanism drives the pressure plate to cooperate with the mold. Air holes assist in the positioning and folding of the fabric. Combined with the template machine, the sewing is completed, reducing the need for manual operation.
It enables rapid and safe fork molding, reduces the skill requirements for workers, improves work efficiency and reduces costs, and has a simple structure that makes mold replacement easy.
Smart Images

Figure CN223723356U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of forklift sewing technology, specifically to a forklift sewing device for a template machine. Background Technology
[0002] Sewing is a process of stitching and wrapping fabrics using sewing machines and other equipment. Currently, the existing fork stitching is mainly done by hand, which requires a very high level of skill from the workers and involves many steps.
[0003] Modern cutting work is mostly mass production. Some production lines are responsible for cutting, which requires cutting templates to assist in the cutting process and improve work efficiency. Generally, different fork templates are customized according to different processing parts. When workers operate, they need to place the fabric on the base plate and perform a series of folding and pasting operations. During the folding operation, wrinkles are inevitable, which can easily affect the fabric of the garment after the fork is sewn. Utility Model Content
[0004] To address the technical deficiencies in the background art, this utility model proposes a template machine forklift sewing device, which solves the aforementioned technical problems and meets practical needs. The specific technical solution is as follows:
[0005] A template sewing machine fork sewing device includes a processing platform and an upper fork mold and a lower fork mold disposed on the processing platform. The end face of the processing platform is provided with a slot for fixing the lower fork mold and a pressure plate for fixing the upper fork mold. A driving mechanism is provided on one side of the pressure plate to drive the pressure plate to move toward the slot.
[0006] The end face of the lower mold of the foot fork is provided with a conical positioning block and a V-shaped sewing channel corresponding to both sides of the conical positioning block. The end of the lower mold of the foot fork corresponding to the V-shaped sewing channel is provided with an air hole that runs from top to bottom.
[0007] The V-shaped sewing channel includes a first straight sewing channel and a second straight sewing channel. One end of the first straight sewing channel and the second straight sewing channel intersects to form a V-shaped sewing channel. The surface of the lower mold of the foot fork is provided with scale lines on both sides corresponding to the V-shaped sewing channel.
[0008] As an improvement to the above solution, the lower mold of the foot fork is provided with a guide groove at one end corresponding to the intersection of the first straight sewing channel and the second straight sewing channel. One end of the guide groove is connected to the V-shaped sewing channel, and the other end extends to the outer edge of the lower mold of the foot fork.
[0009] As the improvement of the above-mentioned scheme, the middle part of the guide groove is provided with a partition strip vertically upward, the partition strip extends along the length direction of the guide groove and divides the guide groove into a first guide groove and a second guide groove symmetrically, and a plurality of air holes are arranged at the length direction of the first guide groove and the second guide groove at equal intervals.
[0010] As the improvement of the above-mentioned scheme, the lower mold of the fork corresponds to the first linear sewing channel and is provided with a first positioning strip extending along the length direction of the first linear sewing channel, and corresponds to the second linear sewing channel and is provided with a second positioning strip extending along the length direction of the second linear sewing channel, and the first positioning strip and the second positioning strip are integrally formed with the lower mold of the fork.
[0011] As the improvement of the above-mentioned scheme, the processing platform is provided with a fixing block one for fixing the lower mold of the fork corresponding to both sides of the notch, the lower mold of the fork is provided with a wing extending towards both sides, the fixing block one presses the lower mold of the fork in the notch, and the end surface of the lower mold of the fork is flush with the end surface of the processing platform.
[0012] As the improvement of the above-mentioned scheme, the pressing plate comprises a frame body surrounding the outer edge of the upper mold of the fork, a fixing block two for fixing the upper mold of the fork in the frame body and an L-shaped reinforcing plate connecting the fixing block two, and the bottom end of the L-shaped reinforcing plate is hinged to the surface of the processing platform.
[0013] As the improvement of the above-mentioned scheme, the driving mechanism is a linear driving air cylinder, the output end of the driving mechanism is hinged to the top of the pressing plate, and the rear end of the driving mechanism is hinged to the processing platform.
[0014] The processing platform of the utility model has the advantages that the lower mold of the fork is fixed on the processing platform, the pressing plate fixes the lower mold of the fork, the air suction mechanism is arranged below the processing platform, the air holes play an auxiliary role when the cloth is placed and folded, manual positioning and folding of the cloth are assisted by the air suction device, the pressing plate is pressed by the driving mechanism, the pattern is sewn by the template machine, the fork is quickly formed, manual pushing and supporting during sewing are not needed, the requirement for the skill of workers is reduced, the work efficiency is improved, the cost is saved, the device structure is simple in driving mode, different fork molds can be quickly switched with the template clamp of the template machine. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a processing platform structure schematic view of the utility model.
[0016] Figure 2 It is a lower mold structure schematic view of the fork of the utility model Figure One .
[0017] Figure 3The utility model discloses a foot fork lower die structure schematic diagram Figure Two .
[0018] Figure 4 The utility model discloses a pressing plate structure schematic view.
[0019] Among them: processing platform 1, fixed block one 11, foot fork upper die 2, foot fork lower die 3, guide groove 311, partition 312, first guide groove 313, second guide groove 314, air hole 315, first positioning strip 321, second positioning strip 322, conical positioning block 33, side wing 34, scale line 35, pressing plate 4, frame body 41, fixed block two 42, L type reinforcing plate 43, drive mechanism 5, V type sewing channel 6, first linear sewing channel 61, second linear sewing channel 62. DETAILED DESCRIPTION
[0020] The embodiment of the utility model is explained below in combination with the drawings and related examples, and the embodiment of the utility model is not limited to the following examples, and the utility model relates to the necessary components of the related technical field, and should be regarded as the known technology in the technical field, which can be known and mastered by the technical personnel in the technical field.
[0021] As Figures 1 to 4 The utility model discloses a foot fork sewing device of template machine, including processing platform 1 and setting foot fork upper die 2 and foot fork lower die 3 on the processing platform 1, the end surface of processing platform 1 is equipped with the slot for fixing foot fork lower die 3 and is equipped with the pressing plate 4 for fixing foot fork upper die 2, one side of pressing plate 4 is equipped with the drive mechanism 5 of moving towards the slot position of driving pressing plate 4,
[0022] In the use principle of the utility model, the foot fork lower die 3 is fixed on the processing platform 1, the foot fork upper die 2 is fixed on the pressing plate 4, the drive mechanism 5 drives the pressing plate 4 and the end surface of the workbench to be attached or separated, the foot fork lower die 3 is equipped with a plurality of air holes 315, in use, the drive mechanism 5 drives the pressing plate 4 and the workbench to separate, exposes the sewing position of foot fork, through manual foot fork cloth is placed into foot fork lower die 3, and according to the process requirement is folded or turned over, the drive mechanism 5 drives the pressing plate 4 to press down, so that the foot fork upper die 2 and the foot fork lower die 3 realize closure, and the folded cloth is pressed and combined and the pattern sewing is completed through the template machine, realizes the rapid forming of foot fork, does not need manual manual push to support sewing, thereby reduce the requirement to the skill of worker, also promote the sewing safety.
[0023] The utility model discloses a technical scheme of the lower mould 3 of foot fork, the end face of lower mould 3 of foot fork is equipped with conical locating block 33 and the V-shaped sewing channel 6 corresponding to the both sides of conical locating block 33, and the end of lower mould 3 of foot fork corresponding V-shaped sewing channel 6 is equipped with the air hole 315 that penetrates from top to bottom,
[0024] The V-shaped sewing channel 6 includes a first linear sewing channel 61 and a second linear sewing channel 62, one end of the first linear sewing channel 61 and the second linear sewing channel 62 intersects to form a V-shaped sewing channel 6, and the surface of the lower mould 3 of foot fork is provided with a scale line 35 corresponding to the both sides of the V-shaped sewing channel 6. In use, the conical locating block 33 separates the two ends of the foot fork cloth, and the two ends of the foot fork cloth are placed along the first linear sewing channel 61 and the second linear sewing channel 62 respectively, and the air hole 315 adsorbs the foot fork cloth.
[0025] Further, in the above-mentioned scheme, the lower mould 3 of foot fork is provided with a guide groove 311 corresponding to the intersection of the first linear sewing channel 61 and the second linear sewing channel 62, one end of the guide groove 311 communicates with the V-shaped sewing channel 6, and the other end extends to the outer edge of the lower mould 3 of foot fork.
[0026] Further, in the above-mentioned scheme, the middle part of the guide groove 311 is provided with a partition strip 312 vertically rising upwards, the partition strip 312 extends along the length direction of the guide groove 311 and symmetrically divides the two sides of the guide groove 311 into a first guide groove 313 and a second guide groove 314, a plurality of air holes 315 are arranged at equal intervals in the length direction of the first guide groove 313 and the second guide groove 314, in use, the foot fork cloth is placed into the first linear sewing channel 61 and the second linear sewing channel 62 along the first guide groove 313 and the second guide groove 314 respectively, after the placement is completed, the air holes 315 are opened to realize auxiliary fixation of the foot fork cloth.
[0027] Further, in the above-mentioned scheme, the lower mould 3 of foot fork is provided with a first positioning strip 321 extending along the length direction in the first linear sewing channel 61, and a second positioning strip 322 extending along the length direction in the second linear sewing channel 62, and the first positioning strip 321 and the second positioning strip 322 are integrally formed with the lower mould 3 of foot fork.
[0028] It should be noted that the guide groove 311 is arranged on the surface of the foot fork lower mold 3, the first positioning strip 321 and the second positioning strip 322 are arranged close to the bottom of the foot fork lower mold 3, and different structures of the foot fork mold are required according to different process requirements, and when different processes are required, the guide groove 311, the first positioning strip 321 and the second positioning strip 322 of different sizes or structures are replaced, and the foot fork lower mold 3 can be directly replaced by disassembling the fixed block one 11.
[0029] Further, in the above scheme, the machining platform 1 is provided with a fixed block one 11 for fixing the foot fork lower mold 3 on both sides of the slot, the foot fork lower mold 3 is provided with a side wing 34 extending towards both sides, the fixed block one 11 is pressed in the slot, and the end face of the foot fork lower mold 3 is flush with the end face of the machining platform 1.
[0030] The foot fork lower mold 3 is embedded in the slot of the machining platform 1, the side wing 34 of the foot fork lower mold 3 is fixed and compacted between the fixed block one 11 and the machining platform 1 by screws, so that the foot fork lower mold 3 is flush with the machining platform 1, and the pressing block can flushly press the foot fork upper mold 2 onto the foot fork lower mold 3.
[0031] Further, in the above scheme, the pressing plate 4 includes a frame 41 surrounding the outer edge of the foot fork upper mold 2, a fixed block two 42 for fixing the foot fork upper mold 2 in the frame 41, and an L-shaped reinforcing plate 43 connecting the fixed block two 42, and the bottom end of the L-shaped reinforcing plate 43 is hinged to the surface of the machining platform 1.
[0032] It should be noted that when the foot fork upper mold 2 is replaced, the frame 41 can be directly replaced by directly screwing the screws, and when the foot fork lower mold 3 is replaced, the foot fork upper mold 2 can be taken out by loosening the fixed block one 11.
[0033] Further, in the above scheme, the pressing plate 4 is driven to press onto the machining platform 1 by the driving mechanism 5, the driving mechanism 5 is a linear driving cylinder, the output end of the driving mechanism 5 is hinged to the top of the pressing plate 4, and the rear end of the driving mechanism 5 is hinged to the machining platform 1.
[0034] The above is only a preferred embodiment of the present application, and it should be noted that those skilled in the art can make some improvements and refinements without departing from the principles of the present application, and these improvements and refinements should also be considered as the protection scope of the present application.
Claims
1. A template machine foot forker sewing device, characterized in that, The processing platform (1) and the foot fork upper die (2) and the foot fork lower die (3) arranged on the processing platform (1), the end face of the processing platform (1) is provided with a notch for fixing the foot fork lower die (3) and a pressing plate (4) for fixing the foot fork upper die (2), one side of the pressing plate (4) is provided with a driving mechanism (5) for driving the pressing plate (4) to move towards the notch position; The end face of the foot fork lower die (3) is provided with a tapered positioning block (33) and a V-shaped sewing channel (6) corresponding to the two sides of the tapered positioning block (33), and the end of the foot fork lower die (3) corresponding to the V-shaped sewing channel (6) is provided with a gas hole (315) penetrating from top to bottom; The V-shaped sewing channel (6) includes a first straight sewing channel (61) and a second straight sewing channel (62), one end of the first straight sewing channel (61) and the second straight sewing channel (62) intersects to form a V-shaped sewing channel (6), and the surface of the foot fork lower die (3) is provided with a scale line (35) corresponding to the two sides of the V-shaped sewing channel (6).
2. The template foot jockey sewing apparatus of claim 1, wherein, The foot fork lower die (3) is provided with a guide groove (311) corresponding to the intersection of the first straight sewing channel (61) and the second straight sewing channel (62), one end of the guide groove (311) communicates with the V-shaped sewing channel (6), and the other end extends to the outer edge of the foot fork lower die (3).
3. The template foot jockey wheel sewing apparatus of claim 2, wherein, The middle part of the guide groove (311) is provided with a partition strip (312) vertically rising upwards, the partition strip (312) extends along the length direction of the guide groove (311) and symmetrically divides the two sides of the guide groove (311) into a first guide groove (313) and a second guide groove (314), and a plurality of gas holes (315) are arranged at equal intervals in the length direction of the first guide groove (313) and the second guide groove (314).
4. The template foot jockey sewing apparatus of claim 1 wherein, The foot fork lower die (3) is provided with a first positioning strip (321) extending along the length direction in the first straight sewing channel (61) and a second positioning strip (322) extending along the length direction in the second straight sewing channel (62), and the first positioning strip (321) and the second positioning strip (322) are integrally formed with the foot fork lower die (3).
5. The template foot jockey sewing apparatus of claim 1 wherein, The processing platform (1) is provided with a fixing block one (11) for fixing the foot fork lower die (3) corresponding to the two sides of the notch, the foot fork lower die (3) is provided with a wing (34) extending towards the two sides, the foot fork lower die (3) is pressed in the notch by the fixing block one (11), and the end face of the foot fork lower die (3) is flush with the end face of the processing platform (1).
6. The template foot jockey sewing apparatus of claim 1 wherein, The pressing plate (4) includes a frame (41) surrounding the outer edge of the foot fork upper die (2), a fixing block two (42) for fixing the foot fork upper die (2) in the frame (41), and an L-shaped reinforcing plate (43) connecting the fixing block two (42), and the bottom end of the L-shaped reinforcing plate (43) is hinged to the surface of the processing platform (1).
7. The template leg forker sewing apparatus of claim 1 wherein, The driving mechanism (5) is a linear driving cylinder, the output end of the driving mechanism (5) is hinged to the top of the pressing plate (4), and the rear end of the driving mechanism (5) is hinged to the machining platform (1).