A flatting cutter for wig hair

By designing a flat-cutting machine, the problem of unstable clamping in wig cutting equipment was solved, achieving high-precision cutting and efficient production, ensuring the consistency of wig cutting length and the quality of finished products.

CN224391289UActive Publication Date: 2026-06-23SHAOYANG PROD QUALITY SUPERVISION & INSPECTION INST
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHAOYANG PROD QUALITY SUPERVISION & INSPECTION INST
Filing Date
2025-06-30
Publication Date
2026-06-23

AI Technical Summary

Technical Problem

Existing hair cutting equipment struggles to provide uniform and stable clamping force, causing the hair strands to curl and become messy during cutting, affecting the consistency of cutting length and the quality of the finished product.

Method used

The machine employs a flattening and cutting mechanism, which includes a frame, material preparation port, drive structure, sorting structure, clamping mechanism, and cutting power motor. Through technologies such as spring compression, electromagnetic guide rail sorting, synchronous crawler clamping, and spray head wetting, it ensures stable delivery and precise cutting of the wig strands during the cutting process.

Benefits of technology

It achieves high-precision consistency in the cutting length of wig strands, improves work efficiency, prevents tangling and static interference, and ensures processing quality and operational safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of wig hair with leveling cutting machine, belong to silk thread processing equipment technical field, including equipment frame, equipment frame includes base, rectangular frame being installed on base;Material preparation port, material inlet side being installed on the upper end of rectangular frame, material preparation port includes notch, extrusion cover plate being installed in notch, spring being connected with extrusion cover plate, the other end of spring is connected with notch;Driving structure;Arrangement structure, arrangement structure includes electromagnetic slide rail being installed on rectangular frame, setting on the operation platform of electromagnetic slide rail drive end, setting on the comb tooth of operation platform, comb tooth is provided with multiple, comb tooth is connected with operation platform time by torsion spring;Clamping mechanism, clamping mechanism includes the clamping cylinder being set in the lower end of rectangular frame;Cutting power motor.The present application can solve the technical defects that cutting operation, wig hair curl, disorder, easy to cause cutting length is not consistent.
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Description

Technical Field

[0001] This utility model patent relates to the field of silk thread processing equipment technology, specifically to a hair straightening and cutting machine for wigs. Background Technology

[0002] In the wig manufacturing industry, the cutting precision of wig strands directly affects the quality of the finished product and production efficiency. The wig strand leveling and cutting motor is a key piece of equipment, and its performance is crucial to product quality and business profitability. By sorting, clamping, and cutting the wig strands, messy wig strands are processed into bundles of hair that meet specifications, and this process is widely used in the wig manufacturing industry.

[0003] Currently, traditional wig cutting equipment typically employs a simple clamping and cutting structure. Its operating principle involves using ordinary clamps to roughly fix the wig strands, followed by cutting with cutting tools. The purpose is to cut the wig strands into units of a certain length, achieving the initial shaping of the wig production process. This type of equipment, to a certain extent, meets the basic cutting needs of wigs and can complete mass production tasks.

[0004] However, existing devices have significant technical flaws. During the cutting process, because the wig strands are soft and easily curled, ordinary clamps cannot provide a uniform and stable clamping force, causing the wig strands to curl and become messy during cutting, resulting in inconsistent cutting lengths and seriously affecting the quality and aesthetics of the finished wig. Summary of the Invention

[0005] In order to solve some or all of the above-mentioned technical problems, this application provides a hair straightening and cutting machine, which has the technical advantages of high-precision cutting, high operating efficiency, anti-tangling and anti-static properties.

[0006] A hair straightening and cutting machine for wigs includes: a machine frame, the machine frame including a base and a rectangular frame mounted on the base; a material preparation port, the material preparation port being installed on the feeding side of the upper end of the rectangular frame, the material preparation port including a slot, an extrusion cover plate installed in the slot, and a spring connected to the extrusion cover plate, the other end of the spring being connected to the slot; a drive structure, the drive structure including a drive track and a beam plate mounted on the rectangular frame, the drive track abutting against the discharge port of the slot, and the beam plate being fixedly connected to one side of the slot. The drive track slides against the beam plate; the sorting structure includes an electromagnetic slide rail mounted on the rectangular frame, a working platform set on the drive end of the electromagnetic slide rail, and comb teeth set on the working platform, wherein multiple comb teeth are provided, and the comb teeth are connected to the working platform by torsion springs; the clamping mechanism includes a clamping roller set at the lower end of the rectangular frame; and a cutting power motor is set on the discharge side at the lower end of the rectangular frame, wherein the working blade in the cutting power motor is set on the upper side of the clamping roller.

[0007] By adopting the above technical solution, the equipment frame serves as the overall supporting foundation, with the base firmly planted on the ground, and the rectangular frame provides an installation platform for other components. The material preparation port is installed on the feeding side of the rectangular frame, and the extrusion cover plate inside its slot is connected to the slot by a spring to pressurize and secure the wig strands. The drive track in the drive structure abuts against the discharge port of the slot, capable of receiving and conveying the wig strands from the material preparation port.

[0008] The styling structure is mounted in a rectangular frame. An electromagnetic slide rail drives the working platform to move. The comb teeth on the working platform, connected by torsion springs, can comb the hair strands. The clamping roller is located at the lower end of the rectangular frame and works with the cutting motor blades above to clamp and cut the hair strands.

[0009] The spring-loaded cover plate at the material preparation port initially compacts the wig strands. The drive track, driven by the first motor, comes into contact with the discharge port of the trough and uses friction to transport the wig strands forward. The drainage holes on the beam plate, along with the spray nozzles, moisten the wig strands, reducing static electricity and tangling.

[0010] In the process of tidying up the structure, the electromagnetic slide rail drives the work platform to move, and the comb teeth connected by torsion springs insert hair strands as they move downwards to comb through the messy hair strands.

[0011] Two sets of rollers holding the clamping roller abut against and clamp the wig strands, while the synchronous track and drive track move synchronously to ensure that the wig strands are stably transported to the cutting power motor; finally, the working blade of the cutting power motor is above the clamping roller to precisely cut the fixed wig strands.

[0012] Optionally, the equipment frame is made of metal and is connected to a grounding protection device; the extrusion cover is sequentially connected to a connecting rod and a pull handle, the connecting rod passes through one side of the slot, and the pull handle is located on the outside of the slot; the spring is sleeved on the outside of the connecting rod, and the two ends of the spring abut against the inner wall of the slot and the extrusion cover, respectively.

[0013] By adopting the above technical solution, the equipment frame is made of metal and connected with a grounding protection device, which can quickly dissipate the static electricity generated during equipment operation. This not only avoids static electricity adsorbing wigs and interfering with the processing flow, but also prevents operators from suffering static electricity damage.

[0014] Optionally, a cutter is provided on the material preparation port, one end of the cutter is axially connected to the upper end face of the slot, and a drive handle is provided on the upper end face of the cutter.

[0015] By adopting the above technical solution, the cutter can achieve the flat cutting of the hair strands on the upper surface of the material preparation port.

[0016] Optionally, the drive track is connected to a first motor, which is mounted on the rectangular frame; multiple spray heads are provided on the upper end face and the feed side end face of the rectangular frame; multiple drainage holes are provided in the beam plate; the spray heads and drainage holes are connected to a water supply pipeline; a rubber layer is provided on the outer side of the drive track, and anti-slip texture is provided on the rubber layer, which is in close contact with the beam plate; the feed port of the beam plate is chamfered.

[0017] By adopting the above technical solution, the first motor is installed on the rectangular frame and connected to the drive track, ensuring that the drive track runs continuously at a set speed.

[0018] Multiple spray heads are distributed on the upper end face of the rectangular frame and the feed side end face, and together with multiple water seepage holes in the beam plate, they form a three-dimensional moist structure. Water is delivered through the water supply pipeline, and the spray heads spray water evenly on the surface of the hair wig, effectively eliminating static electricity generated by friction in the hair wig, reducing the chance of hair strands getting tangled, and creating good conditions for subsequent combing and cutting.

[0019] The rubber layer on the outer side of the drive track has anti-slip texture to increase friction with the wig and prevent slippage during transport, ensuring that the wig moves smoothly at a predetermined speed. The rubber layer fits snugly against the beam plate, and with the help of the chamfered design of the beam plate's feed port, the wig can smoothly transition from the preparation port to the drive track, reducing damage or poor transport caused by jamming.

[0020] Optionally, a hydraulic rod is provided between the electromagnetic slide rail and the working platform, and the comb teeth are arranged linearly.

[0021] By adopting the above technical solution, the hydraulic rod design can be compatible with combing operations when moving downwards and separation contact when moving upwards.

[0022] Optionally, the two clamping rollers abut against each other, and a synchronization mechanism is provided at the lower end of the clamping rollers. The synchronization mechanism includes two sets of synchronous tracks, which move synchronously with the drive track. The two synchronous tracks are located directly below the drive structure.

[0023] By adopting the above technical solution, the clamping roller is composed of two sets of abutting rollers. This structure can apply a uniform and stable clamping force to the hair strands from both the top and bottom directions, preventing the hair strands from becoming loose or curled during the conveying process.

[0024] The synchronization mechanism located at the lower end of the clamping roller includes two sets of synchronous tracks, which move synchronously with the drive track and are precisely positioned directly below the drive structure.

[0025] When the drive track is driven by the first motor, the synchronous track can replicate its motion state in real time and accurately, so that the conveying speed of the clamping roller is completely consistent with that of the drive track.

[0026] The wig strands, conveyed from the preparation port via the drive track, seamlessly connect between the two sets of rollers in the clamping drum. Under the coordinated action of the synchronous and drive tracks, they are precisely delivered at a stable speed to the cutting blade of the cutting motor. Because the wig strands remain stably clamped and move at a uniform speed throughout the entire conveying process, the cutting motor can perform high-precision cutting, effectively ensuring that the cut length of each wig strand is consistent.

[0027] Optionally, the thickness of the rubber layer is not less than 2 cm.

[0028] In summary, compared with the prior art, this application includes at least one of the following beneficial technical effects of a hair straightening and cutting machine for wigs:

[0029] In terms of cutting precision, the equipment ensures that each wig strand is cut to a consistent length by precisely controlling the hair feed speed and the finishing process, thus achieving high precision requirements.

[0030] In terms of operational efficiency, the drive system and synchronization mechanism work together to achieve continuous hair conveying, and the three-dimensional humidification structure quickly eliminates static electricity and tangling, reducing manual intervention and shortening the processing cycle.

[0031] In terms of anti-tangling and anti-static performance, the equipment adopts physical combing and moisturizing technology to prevent hair strands from tangling during processing. At the same time, the metal equipment frame is equipped with a grounding protection device and combined with a moisturizing system to effectively conduct static electricity, avoid static electricity adsorption from interfering with the processing flow, and ensure the safety of operators. Attached Figure Description

[0032] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the accompanying drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn to scale.

[0033] Figure 1 This is a schematic diagram of the structure of this utility model patent;

[0034] Figure 2 This is a schematic diagram of the material preparation port portion of this utility model patent;

[0035] Figure 3 This is a schematic diagram showing the drive structure portion of this utility model patent;

[0036] Figure 4 This is a schematic diagram of the beam-plate structure of this utility model patent;

[0037] Figure 5 This is a schematic diagram of the structure of the present utility model patent.

[0038] Figure 6 This is a schematic diagram of the clamping mechanism of this utility model patent;

[0039] Figure 7 This is a schematic diagram of the synchronization mechanism of this utility model patent.

[0040] Explanation of reference numerals in the attached figures:

[0041] 2. Material preparation port; 3. Drive structure;

[0042] 11. Base; 12. Rectangular frame; 13. Spray head;

[0043] 21. Groove; 22. Extrusion cover plate; 23. Spring; 25. Pull handle;

[0044] 31. Drive track; 32. Beam plate; 33. First motor; 34. Drainage hole;

[0045] 41. Electromagnetic slide rail; 42. Hydraulic rod; 43. Working platform; 44. Torsion spring; 45. Comb teeth;

[0046] 51. Clamping roller;

[0047] 61. Cutting motor; 62. Blade;

[0048] 71. Cutting blade; 72. Drive handle;

[0049] 81. Synchronous track. Detailed Implementation

[0050] To make the objectives, technical solutions, and advantages of the embodiments of this utility model patent clearer, the technical solutions of the embodiments of this utility model patent will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this utility model patent, not all of them. All other embodiments obtained by those skilled in the art based on the described embodiments of this utility model patent are within the scope of protection of this utility model patent.

[0051] This application discloses a hair straightening and cutting machine for wigs.

[0052] Referring to the accompanying drawings, a hair straightening and cutting machine for wigs includes a frame, a material preparation port 2, a drive structure 3, a sorting structure, a clamping mechanism, and a cutting motor 61. The material preparation port 2, drive structure 3, sorting structure, clamping mechanism, and cutting motor 61 are all mounted on the frame.

[0053] Material preparation port 2 is located on the feeding side of the equipment frame. Material preparation port 2 enables the feeding, clamping, and relative constraint of the wig strands.

[0054] The drive structure 3 adopts a feeding clamping design to capture and constrain the fake hair strands in the preparation port 2.

[0055] The structure is organized by using a scraper to straighten and separate the hair strands from top to bottom.

[0056] The clamping mechanism is located directly below the drive structure 3. The clamping mechanism, through its downward rotational force, tightens and clamps the hair strands. The clamping mechanism is located on one side of the material preparation port 2.

[0057] The cutting motor 61 is positioned above the clamping mechanism to complete the cutting operation of the wig strands with uniform length. The cutting motor 61 is located on the discharge port side of the equipment frame, and the working blade 62 in the cutting motor 61 is positioned above the clamping mechanism.

[0058] The operating principle of the hair-cutting and smoothing motor 61 is as follows:

[0059] During operation, one end of the wig is first placed in the material preparation port 2 on the feeding side of the equipment frame. The material preparation port 2 uses its internal structure to initially clamp and relatively constrain the wig, fixing its initial position.

[0060] Subsequently, the drive structure 3 is activated, and using the feeding clamping design, it accurately captures the fake hair strands in the preparation port 2, further constrains and clamps them, pulls the hair strands out of the preparation port 2 and conveys them to the next process.

[0061] Once the wig strands enter the working area of ​​the styling structure, a scraper moving from top to bottom combs through the tangled strands, using mechanical force to straighten and separate them, ensuring each strand is flat and orderly. A clamping mechanism located directly below the drive structure 3 and to one side of the material preparation port 2 applies a downward rotating force to tighten and hold the wig strands, ensuring consistent length. (This addresses the issue of curled wig strands causing length variations.)

[0062] Finally, the cutting power motor 61, located above the clamping mechanism and on the side of the equipment frame outlet, starts to work. Its working blade 62, with the cooperation of the clamping mechanism, cuts the fixed hair strands. By precisely controlling the cutting action, it ensures that the length of each hair strand is consistent.

[0063] The purpose of this device is:

[0064] During operation, the wig strands are fixed at the material preparation port 2 and then conveyed to the finishing structure by the drive structure 3. They are then combed flat by the scraper, stabilized by the clamping mechanism, and finally cut with high precision by the cutting power motor 61.

[0065] This process automates and streamlines the processing of wig strands from feeding and sorting to cutting, achieving the expected technical goals of high-precision cutting and efficient operation. At the same time, it effectively prevents wig strands from tangling, ensuring processing quality and efficiency.

[0066] In some embodiments, the device rack includes a base 11 and a rectangular frame 12 mounted on the base 11.

[0067] The equipment frame serves as the overall support foundation, with its base 11 firmly planted on the ground. The rectangular frame 12 provides an installation platform for the material preparation port 2, drive structure 3, sorting structure, clamping mechanism, and cutting power motor 61.

[0068] In some embodiments, the equipment rack is made of metal and is connected to a grounding protection device.

[0069] The combination of metal materials and grounding protection devices can quickly dissipate static electricity generated during equipment operation, preventing static electricity from interfering with the wig processing and ensuring the safety of operators.

[0070] Among them, combined Figure 2 .

[0071] In some embodiments, the material preparation port 2 is installed on the feeding side at the upper end of the rectangular frame 12. The material preparation port 2 includes a slot 21, an extrusion cover plate 22 installed in the slot 21, and a spring 23 connected to the extrusion cover plate 22. The other end of the spring 23 is connected to the slot 21.

[0072] One end of the spring 23 is connected to the slot 21, and the other end is connected to the extrusion cover plate 22. The spring 23 exerts pressure on the hair wig inside the slot 21 through the extrusion cover plate 22, thereby achieving initial clamping and constraint of the hair wig and stabilizing its initial position.

[0073] During operation, the hair strands are placed in the slot 21 of the material preparation port 2, and the spring 23 pushes the extrusion cover 22 to initially compact and fix them.

[0074] In a further preferred embodiment, the extrusion cover plate 22 is sequentially connected to a connecting rod and a pull handle 25. The connecting rod passes through one side of the slot 21, and the pull handle 25 is located on the outside of the slot 21. The spring 23 is sleeved on the outside of the connecting rod, and the two ends of the spring 23 are respectively used to abut against the inner wall of the slot 21 and the extrusion cover plate 22.

[0075] Operators can adjust the position of the compression cover plate 22 by pulling the pull handle 25 to overcome the elasticity of the spring 23, thereby achieving flexible clamping and constraint of hair strands of different thicknesses and quantities, and stabilizing their initial position.

[0076] Further optimization involves the use of multiple connecting rods.

[0077] Multiple connecting rods evenly penetrate the side of the slot 21, and springs 23 are respectively sleeved on the outside of each connecting rod, with their ends corresponding to the inner sidewall of the slot 21 and the extrusion cover plate 22. This multi-link design enables the extrusion cover plate 22 to be subjected to more even force.

[0078] In a further preferred embodiment, a cutter 71 is provided on the material preparation port 2, one end of the cutter 71 is axially connected to the upper end face of the slot 21, and a drive handle 72 is provided on the upper end face of the cutter 71.

[0079] By holding the drive handle 72 and rotating the cutter 71, the operator can quickly cut the top surface of the stacked wigs in the preparation port 2 flat, ensuring that the starting end of the wigs is neat, which facilitates the precise clamping and conveying of the subsequent drive structure 3.

[0080] Among them, combined Figure 3 .

[0081] In some embodiments, the drive structure 3 includes a drive track 31 and a beam plate 32 mounted on a rectangular frame 12. The drive track 31 abuts against the discharge port of the slot 21, the beam plate 32 is fixedly connected to one side of the slot 21, and the drive track 31 slides against the beam plate 32.

[0082] The drive structure 3 includes a drive track 31 and a beam plate 32 mounted on a rectangular frame 12. The drive track 31 abuts against the discharge port of the slot 21 and can receive and grab the pre-cut wig hair strands in the preparation port 2. The beam plate 32 is fixedly connected to one side of the slot 21 and provides a sliding support surface for the drive track 31, so that the drive track 31 maintains a stable running trajectory when pulling the wig hair strands.

[0083] When the drive track 31 is running, it smoothly pulls the wig hair out from the preparation port 2 and conveys it to the subsequent process by sliding contact with the beam plate 32. After the drive structure 3 is started, the drive track 31 captures the wig hair that has been cut flat inside the preparation port 2 with the feeding clamping design, further constrains and clamps it and completes the conveying.

[0084] In a further optimized configuration, the drive track 31 is connected to the first motor 33, which is mounted on the rectangular frame 12. The first motor 33 provides stable and continuous power to the drive track 31, ensuring the wig is conveyed at a set speed. The drive track 31 has a rubber layer with a thickness of at least 2 cm on its outer side, featuring anti-slip texture to increase friction with the wig and prevent slippage during transport, ensuring stable wig conveying. The rubber layer abuts against the beam plate 32, and the feed port of the beam plate 32 is chamfered to effectively guide the wig smoothly from the preparation port 2 to the drive track 31, reducing damage or obstructed transport caused by jamming. When the drive track 31 is running, it smoothly pulls the wig from the preparation port 2 and conveys it to subsequent processes through sliding contact with the beam plate 32. After the drive structure 3 is activated, the drive track 31 uses a feeding clamping design to capture the wig cut flat inside the preparation port 2, further constraining and clamping it to complete the conveying process.

[0085] Among them, reference Figure 4 A schematic diagram showing the installation of drainage holes 34 in the beam 32.

[0086] In a further preferred embodiment, spray heads 13 are provided on the upper end face and the feed side end face of the rectangular frame 12, and multiple spray heads 13 are provided; multiple seepage holes 34 are provided in the beam plate 32; the spray heads 13 and seepage holes 34 are connected to the water supply pipeline.

[0087] Multiple spray heads 13 are installed on the upper end face and the feed side end face of the rectangular frame 12, and multiple seepage holes 34 are installed in the beam plate 32. The spray heads 13 and the seepage holes 34 are all connected to water supply pipes. The multiple spray heads 13 form a three-dimensional spraying structure, which can evenly spray water onto the surface of the hair wig.

[0088] The drainage holes 34 inside the beam plate 32 allow for the application of water to moisten the contact surfaces between the beam plate 32 and the drive track 31, reducing the relative resistance of the drive track 31 during operation.

[0089] Water flow can effectively eliminate static electricity generated by friction in wigs, reducing the chance of tangling between hair strands. At the same time, the flexibility of the wet wig strands is enhanced, making it easier to arrange the structure and cut the wig with precision cutting by the 61 power motor.

[0090] Among them, combined Figure 5 .

[0091] In some embodiments, the sorting structure includes an electromagnetic slide rail 41 mounted on a rectangular frame 12, a working platform 43 disposed on the drive end of the electromagnetic slide rail 41, and comb teeth 45 disposed on the working platform 43. Multiple comb teeth 45 are provided, and the comb teeth 45 are connected to the working platform 43 via torsion springs 44. A protective shell is fitted over the torsion springs 44.

[0092] A hydraulic rod 42 is installed between the electromagnetic slide rail 41 and the working platform 43, and the comb teeth 45 are arranged linearly.

[0093] The upper and lower ends of the electromagnetic slide rail 41 are respectively installed on the upper and lower end faces of the rectangular frame 12.

[0094] The distance between the working platform 43 and the material preparation port 2 is greater than 3 cm.

[0095] Operating principle:

[0096] When the work platform 43 moves downward to perform the hair combing operation, the hydraulic rod 42 extends and passes through the horizontal projection of the drive track 31 and the beam plate 32 by more than 3 centimeters.

[0097] The electromagnetic guide rail 41 slides downwards on the working platform 43 to straighten the wig strands.

[0098] One issue is that some of the hair strands are made of plastic, and the friction during the combing process (between the comb teeth 45 and the hair strands) generates static electricity, causing the hair strands to become fluffy and reducing work efficiency. Therefore, the water spray design solves this technical defect.

[0099] When the movement reaches the bottom, the hydraulic rod 42 retracts, and after the comb teeth 45 disengage from the hair strands, the electromagnetic slide rail 41 acts on the reset movement of the work platform 43.

[0100] Repeat the above steps to straighten the hair strands in the wig.

[0101] Multiple linearly arranged comb teeth 45 are connected to the working platform 43 via torsion springs 44. During the combing process, the angle can be automatically adjusted according to the resistance of the hair strands, which can effectively separate tangled hair strands and avoid hair breakage due to rigid contact.

[0102] Among them, combined Figure 6 .

[0103] In some embodiments, the clamping mechanism includes two clamping rollers 51 disposed at the lower end of the rectangular frame 12. The two clamping rollers 51 abut against each other, and the abutting surfaces rotate downwards, which can generate a tightening clamping force on the hair strands conveyed from the drive structure 3, ensuring the consistency of hair strand length during the conveying process.

[0104] The feed ends of the two clamping rollers 51 are chamfered, and the longest distance between the two chamfered end faces is greater than the radius of the clamping rollers 51. This design can effectively guide the hair strands smoothly into the space between the two rollers, avoiding hair strand jamming or damage due to the narrow feed port, while enhancing the adaptability of the clamping mechanism to hair strands of different thicknesses.

[0105] Two clamping rollers 51 are connected to a power motor. The clamping rollers 51 are mounted on a rectangular frame 12.

[0106] Among them, combined Figure 7 .

[0107] In a further preferred embodiment, a synchronization mechanism is provided at the lower end of the clamping roller 51. The synchronization mechanism includes two sets of synchronization tracks 81, which move synchronously with the drive track 31. The two synchronization tracks 81 are positioned directly below the drive structure 3. The synchronization mechanism ensures that the conveying speed of the clamping roller 51 is completely consistent with that of the drive track 31, keeping the upper and lower ends of the wig hair in a uniform and stable state, and preventing the hair from becoming loose, piling up, or being pulled and deformed due to speed differences.

[0108] Two sets of synchronous tracks 81 are connected to waterproof motors. The synchronous tracks 81 are set vertically.

[0109] When the drive track 31 operates under the drive of the first motor 33, the synchronous track 81 replicates its motion state in real time, precisely controls the rotation speed of the lower end face of the wig, ensures that the wig is subjected to uniform force throughout the entire conveying process, provides a stable processing object for the cutting power motor 61, and further improves the cutting accuracy and consistency of the wig.

[0110] The lower end of the wig strands is lower than the lower end of the synchronization mechanism.

[0111] The synchronous track 81 is mounted on the base 11.

[0112] The two synchronous tracks 81, based on a structural design similar to the clamping mechanism, enable the capture and constraint of wig strands.

[0113] In some embodiments, the cutting power motor 61 is disposed on the discharge side at the lower end of the rectangular frame 12, and the working blade 62 in the cutting power motor 61 is disposed on the upper side of the clamping roller 51.

[0114] When the clamping roller 51 stably holds the wig hair and conveys it at a uniform speed to the working area of ​​the cutting motor 61, the working blade 62 located on the upper side forms a precise fit with the clamping roller 51. The continuous and stable clamping force of the clamping roller 51 provides the working blade 62 with a fixed and flat cutting object, realizing the cutting operation.

[0115] In some embodiments, the rods at both ends of the rectangular frame 12 on the feeding side and the discharge side are electromagnetic lifting rods.

[0116] The cutting length can be controlled by adjusting the relative height of the electromagnetic lifting rod.

[0117] The length of the drive structure 3 is greater than the length of the sorting structure and the clamping mechanism. The cutting power motor 61 is located on one side of the sorting structure.

[0118] The cutting power motor 61 is positioned within the horizontal projection of the synchronization mechanism.

[0119] In a further preferred embodiment, the spray head 13 faces the interior of the rectangular frame 12.

[0120] In a further preferred embodiment, the force exerted by the spring 23 on the pressing cover plate 22 is greater than the elastic deformation force of the outer rubber layer on the drive track 31.

[0121] In the description of this application, it should be understood that the terms "vertical," "horizontal," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.

[0122] Unless otherwise specified, all structural components mentioned in this application use the common names of existing, mature products. Differences in specific models or categories do not affect the device's ability to fulfill its designed functions.

[0123] Furthermore, the terms "A," "B," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly defined.

[0124] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.

[0125] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. These modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention, and they should all be covered within the scope of the claims and specification of the present invention. In particular, as long as there is no structural conflict, the various technical features mentioned in the embodiments can be combined in any way. The present invention is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

Claims

1. A hair straightening and cutting machine for wigs, characterized in that, include: An equipment rack, the equipment rack including a base and a rectangular frame mounted on the base; The material preparation port is installed on the feeding side of the upper end of the rectangular frame. The material preparation port includes a slot, an extrusion cover plate installed in the slot, and a spring connected to the extrusion cover plate. The other end of the spring is connected to the slot. The drive structure includes a drive track and a beam plate mounted on the rectangular frame. The drive track abuts against the discharge port of the slot. The beam plate is fixedly connected to one side of the slot. The drive track slides against the beam plate. The sorting structure includes an electromagnetic slide rail mounted on the rectangular frame, a working platform set on the drive end of the electromagnetic slide rail, and comb teeth set on the working platform. Multiple comb teeth are provided, and the comb teeth are connected to the working platform by torsion springs. A clamping mechanism, comprising two clamping rollers disposed at the lower end of the rectangular frame; A cutting power motor is provided, which is located on the discharge side at the lower end of the rectangular frame, and the working blade in the cutting power motor is located on the upper side of the clamping roller.

2. The hair straightening and cutting machine for wigs according to claim 1, characterized in that: The equipment frame is made of metal and is connected to a grounding protection device. The extrusion cover is connected in sequence to a connecting rod and a pull handle. The connecting rod passes through one side of the slot and the pull handle is located on the outside of the slot. The spring is sleeved on the outside of the connecting rod and its two ends abut against the inner wall of the slot and the extrusion cover, respectively.

3. The hair straightening and cutting machine for wigs according to claim 1, characterized in that: A cutter is provided on the material preparation port, one end of which is axially connected to the upper end face of the slot, and a drive handle is provided on the upper end face of the cutter.

4. The hair straightening and cutting machine for wigs according to claim 1, characterized in that: The drive track is connected to a first motor, which is mounted on the rectangular frame. Spray heads are provided on the upper end face and the feed side end face of the rectangular frame, and multiple spray heads are provided; multiple seepage holes are provided in the beam plate; The spray head and the seepage hole are connected to the water supply pipeline; A rubber layer is provided on the outer side of the drive track, and anti-slip texture is provided on the rubber layer. The rubber layer is in close contact with the beam plate, and the feed port of the beam plate is chamfered.

5. A hair straightening and cutting machine for wigs according to claim 1, characterized in that: A hydraulic rod is installed between the electromagnetic slide rail and the working platform, and the comb teeth are arranged linearly.

6. The hair straightening and cutting machine for wigs according to claim 1, characterized in that: The two clamping rollers abut against each other, and a synchronization mechanism is provided at the lower end of the clamping rollers. The synchronization mechanism includes two sets of synchronous tracks, which move synchronously with the drive track. The two synchronous tracks are located directly below the drive structure.

7. A hair straightening and cutting machine for wigs according to claim 4, characterized in that: The thickness of the rubber layer is not less than 2 cm.