Comb capable of being bent and deformed

By designing a bendable and deformable comb, and utilizing a bending and shaping tube and a hair length controller, the problem of existing hairdressing molds being unable to cut complex hairstyles has been solved, achieving efficient and neat haircutting results.

CN224125428UActive Publication Date: 2026-04-17梁加政
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
梁加政
Filing Date
2024-12-16
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing hairdressing molds cannot efficiently complete the cutting of complex hairstyles, especially curved shapes, and the lack of cutting skills results in uneven hairstyles.

Method used

A bendable and deformable comb has been designed, which uses a bending and shaping tube as the skeleton and combines it with a rubber coating process to form a bendable comb body. It is equipped with a hair length controller, which controls the length of the hairstyle by adjusting the angle between the comb body and the hair length controller, so as to achieve rapid shaping of the hairstyle.

Benefits of technology

Complex hairstyles can be cut in one go, ensuring a neat and layered cut. Suitable for both novice and experienced hairdressers, it improves haircutting efficiency and results.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224125428U_ABST
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Abstract

The utility model discloses a comb capable of being bent and deformed. According to the comb, a bent shaping pipe serves as a framework, the framework penetrates through a comb body, and the comb body is divided into a hair style forming area and a handle area which can be bent and shaped in the direction perpendicular to the plane of comb teeth. The comb body is provided with a freely detachable hair length controller, and the hair style can be controlled to gradually change by adjusting the angle between the hair length controller and the comb surface. By using the mold, both a green hand and a professional barber can conveniently cut an ideal hair style.
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Description

Technical Field

[0001] This utility model relates to a manual tool, particularly a hairdressing tool, a hair cutting mold, and a bendable comb. Background Technology

[0002] Currently, hairdressing molds are basically ordinary hair combs, which can be called simple hair styling molds. However, in the public's mind, no one regards this ordinary comb as a hair cutting mold. At present, the comb body has a fixed shape: the comb teeth are arranged in a fixed linear direction or a fixed arc shape, and the surface formed by the outer edges of the comb teeth is a fixed planar shape or a fixed arc shape.

[0003] When a barber uses a hair styling mold to comb the hair once, and then uses clippers to completely trim away the hair outside the mold to obtain a hairstyle for a certain area, this entire process is defined as one step. The entire hairdressing process is then completed by countless steps.

[0004] Barbers using these rudimentary hair styling molds need to go through countless steps to create a curved shape. An untrained person using these molds, lacking cutting skills, often produces an uneven, bumpy result. Currently, using these rudimentary hair styling molds is very inconvenient. Utility Model Content

[0005] The purpose of this invention is to provide a new hair styling mold: a two-bend deformable comb, to optimize the problems currently encountered in hairdressing as mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] A bendable and deformable comb, wherein the bending and shaping tube (300) is the bending skeleton of the comb body, and the two ends of the bending and shaping tube (300) are respectively press-fitted with head cap (101) and tail cap (102); the bending and shaping tube (300) is fixed to the comb body (500) through the first coating process; through the second coating process, the coating soft rubber body (400) wraps the comb body (500) and the bending and shaping tube (300) fixed to the comb body (500) through the first coating process, and the comb body is integrated into an organic whole - the comb body; the comb body is divided into two parts: the hair shaping area (111) and the handle area (222); the comb body has a hair length controller mounting groove, and the hair length controller A (201), hair length controller B (202) and hair length controller C (203) on the comb body are installed in the hair length controller mounting groove of the comb body; the comb body can be bent freely in the vertical direction of the comb tooth plane, and is bent and shaped under the action of the bending and shaping tube (300).

[0008] The hair-cutting mold is comb-shaped, with a bent shaping tube as its framework, which runs through the comb body. The comb body is divided into a hair-forming area and a handle area. Under the action of the framework, the hair-forming area and the handle area can be bent and shaped vertically in the comb plane. The hair-forming area is the hair-cutting shaping area, and the handle area is the handle for operating the hair-cutting mold. This utility model has a freely detachable hair length controller. During use, the length of the hair left during cutting can be controlled by rotating and adjusting the angle formed between the hair length controller and the comb body. By adjusting the angle formed between the hair length controller and the comb surface, the gradual changes in hair length can be controlled. Using this utility model, both novice and experienced hairdressers can easily create good hairstyles.

[0009] Compared with existing technologies, the beneficial effects of this utility model are as follows: During haircutting, the hair-shaping area of ​​this utility model is first bent into the same arc shape as the desired hairstyle, according to the required curvature of the head. Then, the bent utility model is used as a hair-cutting mold for haircutting. In one step, a hairstyle with the same curvature as the mold can be cut. Hairdressers using this utility model as a hair-cutting mold can cut hair according to the mold shape, allowing for the shaping of specific sections of the hairstyle in one step and ensuring seamless transitions between different areas of the head. The hair length controller allows for easy adjustment of the layers in the gradient area. The bending and shaping of the handle area in this utility model makes it more comfortable to use. Attached Figure Description

[0010] Figure 1 This is a schematic diagram of the initial state structure of the comb body of this utility model;

[0011] Figure 2 for Figure 1 Enlarged sectional view at point A-A;

[0012] Figure 3 for Figure 1 Enlarged sectional view at point B-B;

[0013] Figure 4 This is an exploded view of the present invention;

[0014] Figure 5 This is a perspective view of the initial state of this utility model;

[0015] Figure 6 A perspective view of the present invention in a "C"-shaped bent state;

[0016] Figure 7 This is a perspective view of the present invention in an "S" shaped bent state.

[0017] Reference numerals: 111, Hair styling area; 222, Handle area; 101, Head cap; 201, Hair length controller A; 300, Bending and shaping tube; 400, Soft rubber body; 500, Comb body; 202, Hair length controller B; 203, Hair length controller C; 102, Tail cap Detailed Implementation

[0018] The technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of this utility model.

[0019] The directions of up, down, left, right, inside, and outside mentioned in the embodiments of this utility model are based on the positions shown in the figures in the accompanying drawings.

[0020] In this embodiment, the following plastic materials are used: polyethylene (PE), polypropylene (PP), polyvinyl chloride (PVC), silicone, acrylonitrile-styrene-butadiene copolymer (ABS), polyoxymethylene (POM), and thermoplastic polyurethane elastomer rubber (TPU).

[0021] Please see Figure 1 - Figure 3 This is a schematic diagram of the initial state structure of this utility model.

[0022] This utility model includes: a head cap (101); a hair length controller A (201); a bending and shaping tube (300); a rubber-coated soft rubber body (400); a comb body (500); a hair length controller B (202); a hair length controller C (203); and a tail cap (102).

[0023] The comb body is divided into a hair shaping area (111) and a handle area (222).

[0024] In its initial state, the comb body is straight. The comb body is mainly composed of three parts: the comb body (500), the rubber-coated soft rubber body (400), and the bending and shaping tube (300).

[0025] (like Figure 1 As shown, the middle area of ​​the comb body is a cuboid with a series of rectangular through holes arranged in a line along the length of the cuboid. A triangular prism is set on the left side of the cuboid, comb teeth are set on the left side of the triangular prism, and a closed ring is set on the right side.

[0026] The comb teeth in the middle section of the comb body are the same size and shape, and large comb teeth are set at both ends of the comb body. The comb teeth in the middle section are conical, with rounded corners at the top of the cone. All comb teeth are connected by a triangular prism on the right side, and the triangular prism has rounded corners on one side of the comb teeth.

[0027] Four closed rings of the same size are set on the right side of the comb body, and the four rings are coaxial; the closed rings are first coated with glue to fix the bending shaping tube (300) inside the closed rings; the three rings in the hair shaping area (111) are the same size and structure, and the outer circular surfaces of the two ends of the rings are provided with protrusions to form grooves, which are the mounting slots for the hair length controller; (e.g. Figure 2 As shown, the groove is provided with two raised trapezoidal teeth, which are located on both sides of the comb body and are symmetrical to the center of the comb body; the two raised trapezoidal teeth of the mounting groove mesh with the recessed trapezoidal teeth on the inner ring of the hair length controller.

[0028] The bending and shaping tubes (300) wrapped in the four rings of the comb body (500) by a rubber coating process are the skeleton of the deformation and shaping of this utility model, that is, they constitute the bending skeleton of the comb body. The bending and shaping tubes (300) are initially cylindrical and can be bent in any radial direction under the action of external force, with a minimum bending radius R>30mm. After bending, the bending shape of the bending and shaping tubes (300) remains unchanged and maintains a stable bending state as long as the load does not exceed the deformation force. The circular ring shape of the radial section of the bending and shaping tubes (300) in the bending state remains unchanged. In this embodiment, the bending and shaping tubes (300) are universal metal shaping hoses from Jili Spring Factory in Shiwan Town, Boluo County, Guangdong Province.

[0029] like Figure 1 As shown, the two ends of the bending and shaping tube (300) are tightly fitted with a head cap (101) and a tail cap (102), respectively. The head cap (101) and the tail cap (102) have the same structure, shape and size. It consists of a cylinder tightly fitted into the inner hole of the bending and shaping tube (300) and a hemisphere protruding from the outside of the bending and shaping tube (300).

[0030] This utility model uses a second coating process to combine the comb body (500) and the bending and shaping tube (300) into an organic whole: the comb body.

[0031] In addition to the hair styling area (111) of the comb teeth, the comb body also has a handle area (222). The handle area (222) has strip-shaped de-adhesive on both sides, parallel to the direction of the comb teeth. The strip-shaped de-adhesive is arranged in a linear array in the handle area (222) along the length of the comb body.

[0032] In its initial state, the comb has a straight shape (such as...). Figure 5 As shown), it can be bent freely in the vertical direction of the comb teeth plane, and is bent and shaped under the action of the bending and shaping tube (300). The comb body can be bent and shaped not only in the hair shaping area (111), but also in the handle area (222). When the bending directions of the hair shaping area (111) and the handle area (222) are the same, the overall bend of the comb body is "C" shaped (as shown). Figure 6 As shown), when the bending directions of the hair shaping area (111) and the handle area (222) are opposite, the overall bend of the comb body is "S" shaped (as shown). Figure 7 (As shown).

[0033] When cutting hair, the comb controls the shape of the hair's curves, and with the addition of a hair length controller, the layers of the hairstyle are better showcased.

[0034] Hair length controllers A (201), B (202), and C (203) are installed in the comb-body hair length controller mounting slot. All three have the same shape, structure, and size. The hair length controllers are "ρ"-shaped, with an open ring. The inner circumference of the open ring is decorated with recessed trapezoidal teeth arranged in a circular array around the ring's axis. The trapezoidal teeth of the hair length controllers mesh with the trapezoidal teeth in the comb-body hair length controller mounting slot (e.g., ...). Figure 2 (As shown).

[0035] The hair length controller can be freely installed and removed from the hair length controller mounting slot on the comb body. It can rotate axially around the mounting slot ring and is positioned by the meshing of the trapezoidal teeth of the hair length controller with the trapezoidal teeth on the mounting slot.

[0036] Use of this utility model:

[0037] The first method: First, according to the designed hairstyle, bend the utility model into the curved shape of the hairstyle, and then use the hairstyle mold to cut the hair, so that the hairstyle in the shape of the mold can be cut.

[0038] The second method: First, adjust the hair length controller and comb surface to form the required angle, bend the utility model into the curved shape of the hairstyle, and then use this mold to comb from the top of the head down. When the hair length controller is close to the head contour, the mold stops moving. At this time, the outer side of the mold makes the hair form a curved shape with the hair longer at the top and shorter at the bottom. Then use hairdressing scissors to cut the hair on the outside of the mold, and you can get a gradient hairstyle with the hair shorter at the bottom and longer at the top around the head.

[0039] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A bendable deformable comb, characterized by: The bending and shaping tube (300) is the bending skeleton of the comb body. The two ends of the bending and shaping tube (300) are respectively press-fitted with the head cap (101) and the tail cap (102). The bending and shaping tube (300) is fixed to the comb body (500) through the first coating process. Through the second coating process, the coating soft rubber body (400) wraps the comb body (500) and the bending and shaping tube (300) fixed to the comb body (500) through the first coating process, and they are combined into an organic whole - the comb body. The comb body is divided into two parts: the hair shaping area (111) and the handle area (222). The comb body has a hair length controller mounting slot. The hair length controller A (201), hair length controller B (202) and hair length controller C (203) on the comb body are installed in the hair length controller mounting slot of the comb body. The comb body can be bent freely in the vertical direction of the comb tooth plane and is bent and shaped under the action of the bending and shaping tube (300).

2. The bendable deformable comb of claim 1, wherein: The bending and shaping tube (300) is the bending skeleton of the comb body.

3. The bendable deformable comb of claim 1, wherein: The comb body is initially straight and can be bent freely in the direction perpendicular to the comb tooth plane. It is bent and shaped under the action of the bending and shaping tube (300). The comb body can be bent and shaped not only in the hair shaping area (111) but also in the handle area (222). When the bending directions of the hair shaping area (111) and the handle area (222) are the same, the comb body is bent into a "C" shape. When the bending directions of the hair shaping area (111) and the handle area (222) are opposite, the comb body is bent into an "S" shape.

4. The bendable deformable comb of claim 1, wherein: The head cap (101) and tail cap (102) of the bending and shaping tube (300) are interference-fitted at both ends and have the same shape, structure and size. They are composed of a cylinder in the inner hole of the bending and shaping tube (300) and a hemisphere exposed outside the bending and shaping tube (300).

5. The bendable deformable comb of claim 1, wherein: The middle area of ​​the comb body (500) is a cuboid with a series of rectangular through holes. One side of the cuboid is provided with comb teeth and a hard rubber handle, and the other side is provided with a closed ring.

6. The bendable deformable comb of claim 5, wherein: The comb body is provided with comb teeth, the comb teeth in the middle part of the comb body have the same size and shape, and large comb teeth are provided at both ends of the comb body.

7. The bendable comb according to claim 5, characterized in that: The comb body has four closed rings of the same size, and the four rings are coaxial. The inner hole of the closed ring is fixed by the first coating and bending shaping tube (300). The three closed rings in the hair shaping area (111) have the same size and structure. The outer circular surface of the two ends of the ring is provided with protrusions, so that the ring forms a groove. The groove is the mounting groove of the hair length controller. The mounting groove is provided with two raised trapezoidal teeth. The two raised trapezoidal teeth are located on both sides of the comb body and are symmetrical with the center plane of the comb body. The two raised trapezoidal teeth of the mounting groove mesh with the concave trapezoidal teeth on the inner ring of the hair length controller.

8. The bendable deformable comb of claim 1, wherein: There are three hair length controllers, namely hair length controller A (201), hair length controller B (202) and hair length controller C (203). The three hair length controllers have the same shape, structure and size. The hair length controller is "ρ" shaped, and the ring is not closed. The inner circle of the unclosed ring is provided with recessed trapezoidal teeth. The trapezoidal teeth are arranged in a circular array on the inner ring with the ring axis as the axis. The trapezoidal teeth of the hair length controller mesh with the trapezoidal teeth of the comb body hair length controller mounting groove.

9. The bendable deformable comb of claim 8, wherein: The hair length controller can be freely installed and removed from the hair length controller mounting slot on the comb body. It can rotate around the axial direction of the mounting slot ring and is positioned by the engagement of the trapezoidal teeth of the hair length controller and the trapezoidal teeth on the mounting slot.

10. The bendable deformable comb of claim 1, wherein: The handle area (222) has strip-shaped adhesive reduction on both sides, parallel to the comb teeth direction. The strip-shaped adhesive reduction is arranged in a linear array in the handle area (222) along the length of the comb body.