A push wire and hair separating assembly for a hair implanting machine

By optimizing the structural design of the fiber pushing and separating component of the hair implantation machine, precise control and stable execution of the fiber pushing and separating actions have been achieved, solving the problems of inconvenient operation and uneven hair separation of traditional components, and improving the working efficiency and hair implantation quality of the hair implantation machine.

CN224522630UActive Publication Date: 2026-07-21YANGZHOU PAWO MASCH TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YANGZHOU PAWO MASCH TECH CO LTD
Filing Date
2025-02-28
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Traditional hair grafting machines have complex structures and inconvenient operation of the hair pushing and separating components, resulting in inaccurate and unstable pushing and separating actions. This can easily lead to hair tangling, breakage, or uneven distribution, affecting the aesthetics and performance of the grafted products.

Method used

The design incorporates components such as a pusher base plate, vertical plate, front upright plate, panel, drive unit, wire cutting connecting rod, and pusher device to achieve precise control and stable execution of wire pushing and splitting actions. This enhances the structural stability and transmission efficiency of the components. The refined design of the splitting shaft, bearing plate, and second splitting arm improves the accuracy and flexibility of splitting, ensuring the precision of the cutting process.

Benefits of technology

It improves the working efficiency and quality of the tufting machine, ensures the stability and consistency of the tuft pushing and tuft separating actions, enhances the durability and reliability of the components, and optimizes the tuft separating effect.

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Abstract

The utility model relates to a hairing machine technical field especially relates to a silk pushing and hair separating assembly for hairing machine, including silk pushing and hair separating assembly body, the silk pushing and hair separating assembly body includes silk pushing bottom plate, a plurality of groups of riser are arranged at intervals on the silk pushing bottom plate, be provided with former riser on the silk pushing bottom plate, the top of riser installs panel again, be provided with drive arrangement on the panel, the end cooperation of drive arrangement is provided with silk cutting connecting rod, the end connection of silk cutting connecting rod is provided with silk pushing device, and this assembly has adopted the combination mode including silk pushing bottom plate, riser, former riser, panel, drive arrangement, silk cutting connecting rod and silk pushing device etc. multiple components through the optimization structure design, has realized the accurate control and stable execution of silk pushing and hair separating action.
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Description

Technical Field

[0001] This utility model relates to the field of hair implantation machine technology, and in particular to a hair pushing and separating component for hair implantation machines. Background Technology

[0002] In the production process of a tufting machine, pushing and separating the tufts is a crucial step that directly affects the quality and efficiency of tufting. Traditional tufting and separating components in tufting machines often suffer from problems such as complex structure, inconvenient operation, and unsatisfactory separating results. Specifically, traditional components may lack an effective drive and transmission mechanism, resulting in imprecise and unstable pushing and separating movements. Furthermore, traditional tufting and separating components are prone to tuft entanglement, breakage, or uneven distribution during the separating process, affecting the aesthetics and performance of the tufted product. Utility Model Content

[0003] To address some of the problems existing in the prior art, this utility model provides a filament pushing and separating component for a filament implantation machine. Through optimized structural design, this component adopts a combination of multiple parts, including a filament pushing base plate, a vertical plate, a front upright plate, a panel, a drive device, a filament cutting connecting rod, and a filament pushing device, thereby achieving precise control and stable execution of filament pushing and separating actions.

[0004] To achieve the above objectives, this utility model provides a filament pushing and separating component for a filament implantation machine, comprising a filament pushing and separating component body, the filament pushing and separating component body including a filament pushing base plate, a plurality of vertical plates spaced apart on the filament pushing base plate, a front upright plate provided on the filament pushing base plate, a panel installed above the vertical plates, a driving device provided on the panel, a filament cutting connecting rod provided at the end of the driving device, and a filament pushing device connected to the end of the filament cutting connecting rod.

[0005] As a further improvement of this utility model, in order to enhance the structural stability of the component, ensure the stability and accuracy of the hair-separating shaft during operation, and help improve the durability and reliability of the hair-separating pusher component, the hair-separating device includes a main upright plate. One side of the main upright plate is connected to the front upright plate on the hair-separating base plate. A small reinforcing plate is provided on the front upright plate on the other side of the main upright plate. The hair-separating shaft is provided between the main upright plate and the small reinforcing plate. The small reinforcing plate is configured to cooperate with the hair-cutting connecting rod.

[0006] As a further improvement of this utility model, in order to achieve fine adjustment and fixation of the splitting shaft and provide stable support for the splitting shaft, so that the splitting shaft can be finely adjusted as needed, and to ensure the stability of the splitting shaft position after adjustment, a bearing plate is provided on the side of the splitting shaft near the main upright plate. The bearing plate is connected to the main upright plate. A second splitting arm is installed on the other side of the bearing plate. A clamping ring is installed on the other side of the second splitting arm. A splitting screw is connected to the second splitting arm. A locking pin is provided in cooperation with the splitting screw.

[0007] As a further improvement of this utility model, in order to further enhance the flexibility and adjustability of the wire pushing and hair separating assembly, so that the C-shaped bending plate can be bent and adjusted as needed, a small fixing plate is provided on the main upright plate, a C-shaped plate support is fixedly provided on the small fixing plate, a C-shaped plate shaft is provided inside the C-shaped plate support, a C-shaped bending plate is connected to the C-shaped plate shaft, and the other end of the C-shaped bending plate is connected to the locking pin shaft.

[0008] As a further improvement of this utility model, in order to achieve effective transmission between the slicing connecting rod and the pushing device, so that the driving force of the slicing connecting rod can be accurately transmitted to the pushing device, thereby improving the transmission efficiency and accuracy, a first splitting arm is installed on the outer side of the small reinforcing plate, and a connecting shaft head is provided at the end of the first splitting arm, which is connected to the slicing connecting rod.

[0009] As a further improvement of this utility model, in order to make the cutting process more stable and accurate, improve cutting efficiency and cutting quality, and enhance the structural stability of the cutting system, the cooperation between the fixed blade support block and the lower fixed blade ensures the accuracy and consistency of the cutting. A blade core seat is provided on one side of the main upright plate, and a seat block reinforcing rib is provided on the blade core seat. A lower blade support block is provided below the blade core seat, and a fixed blade support block is installed on the lower blade support block. A lower fixed blade is provided at one end of the fixed blade support block.

[0010] As a further improvement of this utility model, in order to enable the drive device to provide driving force stably and accurately, facilitate the connection between the drive device and the external power source, and improve the convenience and practicality of the components, the drive device includes a main shaft plate disposed on the panel, a drive main shaft disposed between the main shaft plates, a drive main arm disposed on the drive main shaft, the drive main arm being connected to the wire cutting connecting rod, and the drive main shaft being connected to an external drive end.

[0011] In operation, the main body of this invention's wire-pushing and separating component consists of a wire-pushing base plate, several vertical plates, a front upright plate, and a panel, forming the basic framework of the component. A drive device is installed on the panel, which is the power source for driving the entire wire-separating action. The drive device includes a main shaft upright plate, a drive main shaft, and a drive main arm. When the external drive end is activated and connected to the drive main shaft, the drive main shaft begins to rotate. The rotation of the drive main shaft drives the drive main arm to move, which in turn transmits power through the wire-cutting connecting rod.

[0012] The end of the slicing connecting rod is connected to the slicing pushing device, which includes a main upright plate, a small reinforcing plate, and a splitting shaft. When the slicing connecting rod is pushed by the drive arm, it drives the relevant components in the slicing pushing device to move. A bearing plate is installed on the side of the splitting shaft near the main upright plate, and the bearing plate is connected to the main upright plate to ensure the stable rotation of the splitting shaft. A second splitting arm is connected to the splitting shaft. The second splitting arm is connected to the C-shaped bending plate through components such as a clamping ring, splitting screw, and locking pin, forming the actuator for the splitting action. At the same time, the first splitting arm on the outside of the small reinforcing plate is also connected to the slicing connecting rod through a connecting shaft head, participating in the splitting action. The C-shaped bending plate is connected to the C-shaped plate support seat through a C-shaped plate shaft. When the locking pin is driven, the C-shaped bending plate will rotate and extend, thereby realizing the slicing pushing and splitting action.

[0013] The cutting system consists of a blade holder, reinforcing ribs, a lower blade support block, a fixed blade pad block, and a lower fixed blade on one side of the main upright plate. During the wire pushing and hair separation process, the lower fixed blade is used to cut or trim the hair to ensure the quality and effect of hair implantation.

[0014] The beneficial effects of this utility model are as follows:

[0015] Structured design improves stability and efficiency:

[0016] The main body of the filament pushing and splitting component forms a stable structural frame through the combination design of the filament pushing base plate, vertical plate, front upright plate and panel, ensuring the stability and durability of the component during the operation of the filament planting machine.

[0017] The spacing of the vertical plates and the support of the front upright plate provide a stable installation foundation for the wire pushing device, which helps to maintain the accuracy and consistency of the wire pushing process.

[0018] High efficiency of drive and transmission mechanisms:

[0019] The drive unit achieves efficient power transmission through the design of the main shaft plate and drive shaft. The connection between the drive arm and the wire cutting connecting rod allows the wire pushing action to respond quickly and accurately to commands from the external drive end, improving the working efficiency of the tufting machine.

[0020] The coordinated design of the slicing link and the slicing device ensures the continuity and precision of the slicing action, which helps to improve the tufting effect.

[0021] The meticulous design of the wool-separating mechanism:

[0022] The combination of the hair separating shaft, bearing plate, second hair separating arm, clamping ring, hair separating screw, and locking pin constitutes a sophisticated hair separating mechanism. This design not only improves the accuracy of hair separating but also enhances the adaptability and flexibility of the components, enabling it to handle hair of different sizes and materials.

[0023] The C-shaped plate support, C-shaped plate shaft, and C-shaped bend plate provide additional support and adjustment capabilities for the hair-separating mechanism, which helps to optimize the hair-separating effect.

[0024] Strengthening the structure and support:

[0025] The addition of a small reinforcing plate, a first splitting arm, and a connecting shaft enhances the structural strength of the wire pushing and splitting assembly, improving its ability to withstand thrust and pressure.

[0026] The combined design of the blade holder, seat block reinforcing rib, lower blade support block, fixed blade lower pad block, and lower fixed blade provides stable support and precise cutting position for the cutting process, ensuring the accuracy and consistency of the cutting. Attached Figure Description

[0027] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to the accompanying drawings:

[0028] Figure 1 This is a structural diagram of the present invention.

[0029] Figure 2 This is a right-side structural view of the present invention.

[0030] Figure 3 This is a left-side structural view of the present invention.

[0031] The components include: 1. Wire pusher base plate, 2. Vertical plate, 3. Front upright plate, 4. Panel, 5. Drive device, 6. Wire cutting connecting rod, 7. Wire pusher device, 8. Main upright plate, 9. Small reinforcing plate, 10. Wire splitting shaft, 11. Bearing plate, 12. Second wire splitting arm, 13. Clamping ring, 14. Wire splitting screw, 15. Locking pin, 16. Small fixing plate, 17. C-shaped plate support seat, 18. C-shaped plate shaft, 19. C-shaped bent plate, 20. First wire splitting arm, 21. Connecting shaft head, 22. Cutter core seat, 23. Seat block reinforcing rib, 24. Lower cutter support block, 25. Fixed cutter lower pad block, 26. Lower fixed cutter, 27. Main spindle upright plate, 28. Drive main spindle, and 29. Drive main arm. Detailed Implementation

[0032] To enable those skilled in the art to better understand the technical solutions in this application, the following description is provided in conjunction with the appendix. Figure 1-3The present invention will be further described below. The following embodiments are only used to illustrate the technical solution of the present invention more clearly, and should not be used to limit the protection scope of the present invention.

[0033] like Figure 1-3 The diagram shows a filament pushing and separating assembly for a filament implantation machine, comprising a filament pushing and separating assembly body, the filament pushing and separating assembly body including a filament pushing base plate 1, a plurality of vertical plates 2 spaced apart on the filament pushing base plate 1, a front upright plate 3 on the filament pushing base plate 1, a panel 4 mounted above the vertical plates 2, a driving device 5 mounted on the panel 4, a filament cutting connecting rod 6 fitted at the end of the driving device 5, and a filament pushing device 7 connected to the end of the filament cutting connecting rod 6.

[0034] The wire pushing device 7 includes a main upright plate 8. One side of the main upright plate 8 is connected to the front upright plate 3 on the wire pushing base plate 1. The other side of the main upright plate 8 is provided with a small reinforcing plate 9 on the front upright plate 3. A hair separating shaft 10 is provided between the main upright plate 8 and the small reinforcing plate 9. The small reinforcing plate 9 is configured to cooperate with the wire cutting connecting rod 6.

[0035] A bearing plate 11 is provided on the side of the splitting shaft 10 near the main upright plate 8. The bearing plate 11 is connected to the main upright plate 8. A second splitting arm 12 is installed on the other side of the bearing plate 11. A clamping ring 13 is installed on the other side of the second splitting arm 12. A splitting screw 14 is connected to the second splitting arm 12. A locking pin 15 is provided in cooperation with the splitting screw 14.

[0036] A small fixing plate 16 is provided on the main upright plate 8. A C-shaped plate support 17 is fixedly provided on the small fixing plate 16. A C-shaped plate shaft 18 is provided inside the C-shaped plate support. A C-shaped bending plate 19 is connected to the C-shaped plate shaft 18. The other end of the C-shaped bending plate 19 is connected to the locking pin 15.

[0037] A first splitting arm 20 is installed on the outer side of the small reinforcing plate 9. A connecting shaft head 21 is provided at the end of the first splitting arm 20. The connecting shaft head 21 is connected to the shredding connecting rod 6.

[0038] A blade holder 22 is provided on one side of the main upright plate 8. A seat block reinforcing rib 23 is provided on the blade holder 22. A lower blade support block 24 is provided below the blade holder 22. A fixed blade lower pad block 25 is installed on the lower blade support block 24. A lower fixed blade 26 is provided at one end of the fixed blade lower pad block 25.

[0039] The drive device 5 includes a spindle plate 27 disposed on the panel 4, a drive spindle 28 disposed between the spindle plates 27, a drive arm 29 disposed on the drive spindle 28, the drive arm 29 being connected to the wire cutting connecting rod 6, and the drive spindle 28 being connected to an external drive end.

[0040] In operation, the main body of this invention consists of a pusher base plate 1, several vertical plates 2, a front upright plate 3, and a panel 4, forming the basic framework of the assembly. A drive device 5 is mounted on the panel 4, which is the power source for the entire splitting action. The drive device 5 includes a main shaft upright plate 27, a drive main shaft 28, and a drive main arm 29. When the external drive end is activated and connected to the drive main shaft 28, the drive main shaft 28 begins to rotate. The rotation of the drive main shaft 28 drives the drive main arm 29 to move, which in turn transmits power through the cutting connecting rod 6.

[0041] The end of the slicing connecting rod 6 is connected to the slicing pushing device 7, which includes a main upright plate 8, a small reinforcing plate 9, and a splitting shaft 10. When the slicing connecting rod 6 is pushed by the drive arm 29, it drives the relevant components in the slicing pushing device 7 to move. A bearing plate 11 is provided on the side of the splitting shaft 10 near the main upright plate 8. The bearing plate 11 is connected to the main upright plate 8 to ensure the stable rotation of the splitting shaft 10. A second splitting arm 12 is connected to the splitting shaft 10. The second splitting arm 12 is connected to the C-shaped bent plate 19 through components such as a clamping ring 13, a splitting screw 14, and a locking pin 15, forming the actuator for the splitting action. At the same time, the first splitting arm 20 on the outside of the small reinforcing plate 9 is also connected to the slicing connecting rod 6 through a connecting shaft head 21 and participates in the splitting action. The C-shaped bending plate 19 is connected to the C-shaped plate support 17 via the C-shaped plate shaft 18. When the locking pin 15 is driven, the C-shaped bending plate 19 will rotate and extend, thereby realizing the pushing and separating of the fibers.

[0042] The main plate 8 has a cutting system consisting of a blade holder 22, a reinforcing rib 23, a lower blade support block 24, a fixed blade pad 25, and a lower fixed blade 26 on one side. During the wire pushing and hair separation process, the lower fixed blade 26 is used to cut or trim the hair to ensure the quality and effect of hair implantation.

[0043] This utility model is not limited to the above embodiments. Based on the technical solutions disclosed in this utility model, those skilled in the art can make some substitutions and modifications to some of the technical features without creative labor, and these substitutions and modifications are all within the protection scope of this utility model.

Claims

1. A filament pushing and separating component for a filament implantation machine, comprising a filament pushing and separating component body, characterized in that, The main body of the filament pushing and hair separating component includes a filament pushing base plate (1), a number of vertical plates (2) are arranged at intervals on the filament pushing base plate (1), a front upright plate (3) is arranged on the filament pushing base plate (1), a panel (4) is installed above the vertical plates (2), a driving device (5) is arranged on the panel (4), a filament cutting connecting rod (6) is arranged at the end of the driving device (5), and a filament pushing device (7) is connected to the end of the filament cutting connecting rod (6).

2. The fiber pushing and separating component for a fiber implantation machine according to claim 1, characterized in that, The wire pushing device (7) includes a main upright plate (8). One side of the main upright plate (8) is connected to the front upright plate (3) on the wire pushing base plate (1). The other side of the main upright plate (8) is provided with a small reinforcing plate (9) on the front upright plate (3). A hair separating shaft (10) is provided between the main upright plate (8) and the small reinforcing plate (9). The small reinforcing plate (9) is configured to cooperate with the wire cutting connecting rod (6).

3. The fiber pushing and separating component for a fiber implantation machine according to claim 2, characterized in that, A bearing plate (11) is provided on one side of the splitting shaft (10) near the main upright plate (8). The bearing plate (11) is connected to the main upright plate (8). A second splitting arm (12) is installed on the other side of the bearing plate (11). A clamping ring (13) is installed on the other side of the second splitting arm (12). A splitting screw (14) is connected to the second splitting arm (12). A locking pin (15) is provided in cooperation with the splitting screw (14).

4. A fiber pushing and separating component for a fiber implantation machine according to claim 3, characterized in that, A small fixing plate (16) is provided on the main upright plate (8), and a C-shaped plate support seat (17) is fixedly provided on the small fixing plate (16). A C-shaped plate shaft (18) is provided inside the C-shaped plate support seat (17), and a C-shaped bending plate (19) is connected to the C-shaped plate shaft (18). The other end of the C-shaped bending plate (19) is connected to the locking pin shaft (15).

5. A filament pushing and separating component for a filament implantation machine according to claim 2, characterized in that, A first splitting arm (20) is installed on the outer side of the small reinforcing plate (9), and a connecting shaft head (21) is provided at the end of the first splitting arm (20). The connecting shaft head (21) is connected to the shredding connecting rod (6).

6. A filament pushing and separating component for a filament implantation machine according to claim 2, characterized in that, A blade holder (22) is provided on one side of the main upright plate (8). A seat block reinforcing rib (23) is provided on the blade holder (22). A lower blade support block (24) is provided below the blade holder (22). A fixed blade lower pad block (25) is installed on the lower blade support block (24). A lower fixed blade (26) is provided at one end of the fixed blade lower pad block (25).

7. A filament pushing and separating component for a filament implantation machine according to claim 1, characterized in that, The drive device (5) includes a spindle plate (27) disposed on the panel (4), a drive spindle (28) disposed between the spindle plates (27), a drive arm (29) disposed on the drive spindle (28), the drive arm (29) being connected to the wire cutting connecting rod (6), and the drive spindle (28) being connected to an external drive end.