Hair combing assembly and hair treatment equipment
By designing heat insulation tooth components and heating teeth components in the combing assembly, and using heat insulation grooves to set heating teeth and arranged in staggered arrangement, the problem that the combing assembly is not compatible with heat insulation and combing is solved, and the compatibility between heat insulation and combing is achieved, reducing the risk of scalds and improving the performance of combing.
Patent Information
- Application Number
- CN202422283386.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-09-18
AI Technical Summary
Existing combing components are not compatible with combing performance and heat insulation at the same time, resulting in the risk of scalp and damage to the user's scalp.
A hair comb assembly is designed, wherein the heat insulating tooth assembly includes a heat insulating plate and a heat insulating tooth assembly, the heat insulating groove is sleeved with heating teeth, and the exposed part is connected to the heat conducting plate, increasing the contact area between the hair and the heat conducting plate and the heat insulating tooth, and at the same time, the interlaced heat insulating teeth and grooves are provided to enhance the heat insulating effect.
The heat generation teeth are installed through the heat insulation groove sleeve, which not only insulates, reduces the risk of scalds, but also increases the contact area, improves the performance of combing and improves the user experience.
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Figure CN223275072U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of hair care, and in particular to a hair combing assembly and a hair processing device. Background Art
[0002] The combing components of hair treatment devices can be used for combing and styling hair. In some combing components, the heat shield completely encloses the heat conductor, leaving the heating teeth protruding from the shield, reducing combing performance. In other components, the heat conductor is located in the middle of the shield and is completely exposed, causing high temperatures on the sides of the combing component, increasing the risk of burns to the user's scalp and hair damage. Utility Model Content
[0003] The present application provides a hair combing assembly and a hair processing device to solve the technical problem that existing hair combing assemblies cannot achieve both combing performance and heat insulation.
[0004] In order to solve the above technical problems, the present application proposes a combing assembly, comprising: a heat insulation tooth assembly, including a heat insulation plate, which is provided with a plurality of heat insulation grooves; a heating tooth assembly, including a heat conduction plate and a plurality of heating teeth arranged on the surface of the heat conduction plate, the heat conduction plate is located below the heat insulation plate, the heat insulation groove is provided with at least two heating teeth, and the heat insulation groove exposes the connection between at least two heating teeth and the heat conduction plate.
[0005] Among them, at least a part of the heat-insulating grooves are each sleeved with at least two heating teeth, and at least another part of the heat-insulating grooves are each sleeved with at least three heating teeth.
[0006] Among them, the heating tooth assembly includes several heat-conducting bosses arranged on the surface of the heat-conducting plate, at least two heating teeth are arranged on the side of the heat-conducting boss facing away from the heat-conducting plate, and the heat insulation groove is sleeved on the heat-conducting boss, wherein the side of the heat-conducting boss facing away from the heat-conducting plate protrudes or is flush with the surface of the heat insulation plate.
[0007] The heat-insulating tooth assembly includes a plurality of heat-insulating teeth, and a heat-conducting boss is provided between two heat-insulating teeth.
[0008] The shape of the heat insulation groove matches the shape of the heat conduction boss.
[0009] The shape of the heat insulation groove and / or the heat conduction boss is at least one of a strip, a triangle, and a quadrilateral.
[0010] Among them, the thermal insulation tooth assembly includes a plurality of thermal insulation teeth, at least part of the thermal insulation teeth form at least one row of thermal insulation tooth groups, and a row of thermal insulation tooth groups is arranged along the first direction; a plurality of thermal insulation grooves form at least one row of thermal insulation groove groups, and a row of thermal insulation groove groups is arranged along the first direction, and at least one row of thermal insulation tooth groups and at least one row of thermal insulation groove groups are staggered.
[0011] Among them, at least part of the insulation teeth form two rows of insulation tooth groups, and several insulation grooves form three rows of insulation groove groups. The two rows of insulation tooth groups and the three rows of insulation grooves are arranged alternately, and the insulation grooves are at least partially located between adjacent insulation teeth.
[0012] Among them, the combing assembly includes a heat insulation cover, which is arranged on the heat insulation board and forms a accommodating cavity between the heat insulation board and the heat insulation board. The heat insulation cover is respectively connected to the heat insulation board and the heat conducting plate, and the heat conducting plate is located in the accommodating cavity.
[0013] In order to solve the above technical problems, the present application proposes a hair processing device, comprising: a housing; and the above-mentioned combing component, which is arranged on the housing.
[0014] The present application provides a hair combing assembly, which, unlike the prior art, includes a heat-insulating tooth assembly and a heating tooth assembly. The heat-insulating tooth assembly includes a heat-insulating plate. The heat-insulating plate defines a plurality of heat-insulating grooves. The heating tooth assembly includes a heat-conducting plate and a plurality of heating teeth disposed on a surface of the heat-conducting plate. The heat-conducting plate is positioned below the heat-insulating plate. The heat-insulating grooves encase at least two heating teeth. The heat-insulating grooves expose the connection between at least two heating teeth and the heat-conducting plate.
[0015] By enclosing at least two heating teeth in a heat-insulating groove, and exposing at least two heating teeth at the junction of the heat-conducting plate, the heat-insulating groove not only provides heat insulation, reducing the risk of burns to the user's scalp and hair damage, but also increases the contact area between the hair, the heat-conducting plate, and the heating teeth, improving the combing performance of the combing assembly. Through this approach, the combing assembly achieves both heat insulation and combing performance, thereby enhancing the user experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present application. Those skilled in the art can also derive other drawings based on these drawings without inventive work, among which:
[0017] Figure 1 This is a structural diagram of an embodiment of a hair combing assembly of the present application;
[0018] Figure 2 This is an exploded schematic diagram of an embodiment of a hair combing assembly of the present application;
[0019] Figure 3 This is a first structural diagram of the heat-insulating tooth assembly in the hair combing assembly of the present application;
[0020] Figure 4 is a top view of an embodiment of a hair combing assembly of the present application;
[0021] Figure 5 This is a second structural diagram of an embodiment of a hair combing assembly of the present application;
[0022] Figure 6 This is a first structural diagram of the heating tooth assembly in the hair combing assembly of the present application;
[0023] Figure 7 This is a second partial schematic diagram of the heating tooth assembly in the hair combing assembly of the present application;
[0024] Figure 8 This is a second partial schematic diagram of the heat-insulating tooth assembly in the hair combing assembly of the present application;
[0025] Figure 9 is a cross-sectional schematic diagram of an embodiment of a hair combing assembly of the present application;
[0026] Figure 10 It is a partial cross-sectional schematic diagram of an embodiment of the hair treatment device of the present application.
[0027] Reference numerals: 10, combing assembly; 11, heat-insulating tooth assembly; 111, heat-insulating plate; 1111, heat-insulating groove; 1112, heat-insulating groove group; 112, heat-insulating tooth; 1121, first heat-insulating tooth; 1122, second heat-insulating tooth; 1123, third heat-insulating tooth; 113, heat-insulating tooth group; 12, heating tooth assembly; 121, heat-conducting plate; 121a, first end; 122a, second end; 1211, heat-conducting boss; 122, heating tooth; 1221, first heating tooth; 1222, second heating tooth; 1223, third heating tooth;
[0028] 13. Heat shield; 14. Accommodating chamber; 20. Housing; 30. Heating plate; 100. Hair treatment device. DETAILED DESCRIPTION
[0029] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.
[0030] References herein to "embodiments" mean that a particular feature, structure, or characteristic described in connection with the embodiments may be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it constitute an independent or alternative embodiment that is mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described herein may be combined with other embodiments.
[0031] The hair combing assembly and hair processing device provided by the present invention are described in detail below with reference to the embodiments.
[0032] See also Figure 1 、 Figure 2 、 Figure 3 as well as Figure 4 , Figure 1 This is a structural diagram of an embodiment of a hair combing assembly of the present application; Figure 2 This is an exploded schematic diagram of an embodiment of a hair combing assembly of the present application; Figure 3 This is a first structural diagram of the heat-insulating tooth assembly in the hair combing assembly of the present application; Figure 4 This is a top view of an embodiment of a hair combing assembly of the present application. This application provides a hair combing assembly. The hair combing assembly 10 is used for combing or styling hair. The hair combing assembly 10 is intended to be mounted on a hair treatment device. The hair treatment device may include, but is not limited to, a straightening comb, a straightening iron, and a curling iron.
[0033] The combing assembly 10 includes a heat-insulating tooth assembly 11 and a heating tooth assembly 12. The heat-insulating tooth assembly 11 includes a heat-insulating plate 111. The heat-insulating plate 111 can play a certain role in heat insulation. The heat-insulating plate 111 is provided with a plurality of heat-insulating grooves 1111. The number of heat-insulating grooves 1111 can be one, two, three or more than four. The heating tooth assembly 12 includes a heat-conducting plate 121 and a plurality of heating teeth 122. The plurality of heating teeth 122 are arranged on the surface of the heat-conducting plate 121. The heating teeth 122 are fixedly or detachably connected to the surface of the heat-conducting plate 121. As in the present embodiment, the heating teeth 122 are integrally formed with the heat-conducting plate 121. The plurality of heating teeth 122 can be, but are not limited to, arranged in rows, or arranged in columns, or arranged in rows and columns. The distribution of the heating teeth 122 and the number of the heating teeth 122 are not limited.
[0034] The heat conducting plate 121 is located below the heat insulating plate 111. The heat insulating plate 111 can isolate the heat on the heat conducting plate 121 and play a heat insulating role, thereby reducing the risk of the combing assembly 10 scalding the user's scalp and damaging the hair. The heat insulating groove 1111 is equipped with at least two heating teeth 122, that is, at least two heating teeth 122 extend from the same heat insulating groove 1111 of the heat insulating plate 111. The same heat insulating groove 1111 can be, but is not limited to, equipped with two, three, or more than four heating teeth 122. The number of heating teeth 122 equipped in the same heat insulating groove 1111 can be determined according to actual needs. When the heat insulating groove 1111 is equipped with at least two heating teeth 122, the heat insulating groove 1111 exposes the connection between at least two heating teeth 122 and the heat conducting plate 121, that is, the heating plate 30 is partially exposed, which can increase the contact area between the hair and the heat conducting plate 121 and the heating teeth 122, thereby improving the combing performance of the hair combing assembly 10.
[0035] At least two heating teeth 122 are mounted within the heat-insulating groove 1111, and the heat-insulating groove 1111 exposes at least two heating teeth 122 at their connection points with the heat-conducting plate 121. This not only provides heat insulation, reducing the risk of burns to the user's scalp and hair damage from the combing assembly 10, but also increases the contact area between the hair, the heat-conducting plate 121, and the heating teeth 122, thereby improving the combing performance of the combing assembly 10. In this manner, the combing assembly 10 achieves both heat insulation and combing performance, thereby enhancing the user experience.
[0036] See also Figure 5 , Figure 5 This is a second structural diagram of an embodiment of the hair combing assembly of the present application. Figures 1 to 4 There are multiple ways to set up the above-mentioned heat insulation grooves 1111 and the heating teeth 122, which will be explained in detail below. As in the first embodiment, a plurality of heat insulation grooves 1111 can be provided with the same number of heating teeth 122. For example, when there are ten heat insulation grooves 1111, each of the ten heat insulation grooves 1111 is provided with two heating teeth 122; or, each of the ten heat insulation grooves 1111 is provided with three heating teeth 122; or, each of the ten heat insulation grooves 1111 is provided with four heating teeth 122, etc., which are not limited here.
[0037] As in the second embodiment, a plurality of heat-insulating grooves 1111 can each be provided with a different number of heating teeth 122. For example, when there are ten heat-insulating grooves 1111, the first heat-insulating groove 1111 can be provided with two heating teeth 122, the second heat-insulating groove 1111 can be provided with three heating teeth 122, the third heat-insulating groove 1111 can be provided with four heating teeth 122, the fourth heat-insulating groove 1111 can be provided with five heating teeth 122, and so on. As long as each heat-insulating groove 1111 is provided with a different number of heating teeth 122, no further details will be given.
[0038] As in the third embodiment, at least a portion of the heat-insulating grooves 1111 are each provided with at least two heating teeth 122. And at least another portion of the heat-insulating grooves 1111 are each provided with at least three heating teeth 122. For example, when the number of the heat-insulating grooves 1111 is ten, five of the heat-insulating grooves 1111 are each provided with two heating teeth 122; another five of the heat-insulating grooves 1111 are each provided with three heating teeth 122; or, four of the heat-insulating grooves 1111 are each provided with three heating teeth 122; six of the heat-insulating grooves 1111 are each provided with four heating teeth 122, and so on. Of course, there can be other settings between the above-mentioned heat-insulating grooves 1111 and the heating teeth 122, and settings and selections can be made according to different needs, which are not limited here.
[0039] See also Figure 6 and Figure 7 , Figure 6 This is a first structural diagram of the heating tooth assembly in the hair combing assembly of the present application; Figure 7This is the second partial schematic diagram of the heating tooth assembly in the hair combing assembly of the present application. Figures 1 to 5 In some embodiments, the heating tooth assembly 12 includes a plurality of heat-conducting bosses 1211. A plurality of heat-conducting bosses 1211 are provided on the surface of the heat-conducting plate 121. Among them, a plurality of heat-conducting bosses 1211 are fixedly or detachably connected to the surface of the heat-conducting plate 121. As in the present embodiment, the heat-conducting bosses 1211 are integrally formed on the surface of the heat-conducting plate 121. The number of heat-conducting bosses 1211 may correspond to the number of heat-insulating grooves 1111. When the number of heat-insulating grooves 1111 is ten, the number of heat-conducting bosses 1211 may also be ten. At least two heating teeth 122 are provided on a side of the heat-conducting boss 1211 facing away from the heat-conducting plate 121. The number of heating teeth 122 on the heat-conducting boss 1211 may be, but is not limited to, two, three, four or more, etc. Among them, the heating teeth 122 are fixedly or detachably connected to the heat-conducting plate 121. In this embodiment, at least two heating teeth 122 located in the same heat-insulating groove 1111 are integrally formed on the same heat-conducting boss 1211 . The heat of the heat-conducting plate 121 is transferred to the heating teeth 122 through the heat-conducting boss 1211 .
[0040] When the heat conducting plate 121 is positioned below the heat insulating plate 111, the heat insulating groove 1111 is positioned over the heat conducting boss 1211, i.e., the heat conducting boss 1211 is positioned within the heat insulating groove 1111. The side of the heat conducting boss 1211 facing away from the heat conducting plate 121 is protruding or flush with the surface of the heat insulating plate 111, thereby increasing the contact area between the hair, the heat conducting boss 1211, and the heating teeth 122, thereby improving the combing performance of the hair combing assembly 10.
[0041] In some embodiments, the heat-insulating tooth assembly 11 includes a plurality of heat-insulating teeth 112. The heat-conducting boss 1211 is disposed between two heat-insulating teeth 112. This arrangement maximizes the hair path and ensures contact with the heat-conducting boss 1211, thereby improving the combing performance of the combing assembly 10.
[0042] In some embodiments, when the thermal insulation groove 1111 is sleeved on the thermally conductive boss 1211, the shape and size of the thermal insulation groove 1111 may be larger than the shape and size of the thermally conductive boss 1211. In this case, the shape of the thermal insulation groove 1111 does not match the shape of the thermally conductive boss 1211. A certain gap may exist between at least a portion of the inner wall of the thermal insulation groove 1111 and at least a portion of the outer wall of the thermally conductive boss 1211.
[0043] In other embodiments, the shape and dimensions of the thermal insulation groove 1111 may be equal to those of the thermally conductive boss 1211. In this case, the shape of the thermal insulation groove 1111 matches the shape of the thermally conductive boss 1211, and the inner sidewall of the thermal insulation groove 1111 and the outer sidewall of the thermally conductive boss 1211 are arranged in close proximity, almost fitting together. This approach can reduce the ingress of impurities into the gap between the thermal insulation groove 1111 and the thermally conductive boss 1211.
[0044] The shape of the above-mentioned heat insulation groove 1111 may be regular or irregular. Regular shapes may be, but are not limited to, at least one of a strip, a triangle, and a quadrilateral. Irregular shapes may be, but are not limited to, a combination of polygonal lines and arcs. When there are multiple heat insulation grooves 1111, the shapes of the multiple heat insulation grooves 1111 may all be the same, such as a strip, a triangle, or a quadrilateral. Alternatively, the shapes of one part of the heat insulation grooves 1111 and another part of the heat insulation grooves 1111 are different, such as one part of the heat insulation grooves 1111 is a strip and another part of the heat insulation grooves 1111 is a triangle; or, such as one part of the heat insulation grooves 1111 is a strip and another part of the heat insulation grooves 1111 is a quadrilateral. Alternatively, the shapes of the multiple heat insulation grooves 1111 may all be different. The above-mentioned regular shape may also be a circle, an ellipse, etc.
[0045] Similarly, the shape of the heat-conducting boss 1211 can be regular or irregular. Regular shapes can be, but are not limited to, at least one of a strip, a triangle, and a quadrilateral. Irregular shapes can be, but are not limited to, a combination of polygonal lines and arcs. When there are multiple heat-conducting bosses 1211, the shapes of the multiple heat-conducting bosses 1211 can be the same, such as a strip, a triangle, or a quadrilateral. Alternatively, the shapes of one part of the heat-conducting bosses 1211 and another part of the heat-conducting bosses 1211 are different, such as one part of the heat-conducting bosses 1211 is a strip and another part of the heat-conducting bosses 1211 is a triangle; or, such as one part of the heat-conducting bosses 1211 is a strip and another part of the heat-conducting bosses 1211 is a quadrilateral, etc. Alternatively, the shapes of the multiple heat-conducting bosses 1211 can be different. The above-mentioned regular shapes can also be circular, elliptical, etc.
[0046] When the shape of the thermal insulation groove 1111 does not match the shape of the thermal conductive boss 1211, the thermal insulation groove 1111 and the thermal conductive boss 1211 can be of different sizes and shapes, as long as the thermal insulation groove 1111 can fit the thermal conductive boss 1211. When the shape of the thermal insulation groove 1111 matches the shape of the thermal conductive boss 1211, the shape of the thermal insulation groove 1111 and the shape of the thermal conductive boss 1211 are the same, and the shape can be selected according to needs. For example, in this embodiment, the shape of a portion of the thermal insulation groove 1111 matches the shape of a portion of the thermal conductive boss 1211, both being elongated; at the same time, the shape of another portion of the thermal insulation groove 1111 matches the shape of another portion of the thermal conductive boss 1211, both being triangular.
[0047] See also Figure 8 , Figure 8 This is the second partial schematic diagram of the heat-insulating tooth assembly in the hair combing assembly of the present application. Figures 1 to 7In some embodiments, the thermal insulation tooth assembly 11 includes a plurality of thermal insulation teeth 112. At least some of the thermal insulation teeth 112 form at least one row of thermal insulation tooth groups 113. Among them, at least some of the thermal insulation teeth 112 can form one row, two rows, and more than three rows of thermal insulation tooth groups 113. A row of thermal insulation tooth groups 113 is arranged along the first direction X. The first direction X can be, but is not limited to, the length extension direction of the thermal insulation board 111. A plurality of thermal insulation grooves 1111 form at least one row of thermal insulation groove groups 1112. Among them, a plurality of thermal insulation grooves 1111 can form one row, two rows, and more than three rows of thermal insulation groove groups 1112. A row of thermal insulation groove groups 1112 is arranged along the first direction X.
[0048] At least one row of thermal insulation tooth groups 113 and at least one row of thermal insulation slot groups 1112 are arranged in a staggered arrangement. When the thermal insulation tooth assembly 11 includes one row of thermal insulation tooth groups 113 and one row of thermal insulation slot groups 1112, the row of thermal insulation slot groups 1112 is disposed on at least one side of the row of thermal insulation tooth groups 113. When the thermal insulation tooth assembly 11 includes two rows of thermal insulation tooth groups 113 and one row of thermal insulation slot groups 1112, the row of thermal insulation slot groups 1112 is located between the two rows of thermal insulation tooth groups 113. When the thermal insulation tooth assembly 11 includes two rows of thermal insulation tooth groups 113 and two groups of thermal insulation slot groups 1112, the row of thermal insulation tooth groups 113, the row of thermal insulation slot groups 1112, the row of thermal insulation tooth groups 113, and the row of thermal insulation slot groups 1112 extend sequentially along the first direction X and are arranged in an array perpendicular to the first direction X. By cooperating with the at least one row of heat-insulating tooth groups 113 and the at least one row of heat-insulating groove groups 1112, the contact area between the hair and the heat-conducting plate 121 or the heat-conducting boss 1211 and the heating teeth 122 can be increased, thereby improving the combing performance of the combing assembly 10.
[0049] In one specific embodiment, the thermal insulation tooth assembly 11 includes two rows of thermal insulation tooth groups 113 and three rows of thermal insulation grooves 1111. At least some of the thermal insulation teeth 112 form the two rows of thermal insulation tooth groups 113, and a plurality of thermal insulation grooves 1111 form the three rows of thermal insulation groove groups 1112. The two rows of thermal insulation tooth groups 113 and the three rows of thermal insulation grooves 1111 are arranged in a staggered arrangement. For example, a row of thermal insulation groove groups 1112, a row of thermal insulation tooth groups 113, a row of thermal insulation groove groups 1112, a row of thermal insulation tooth groups 113, and a row of thermal insulation groove groups 1112 extend in sequence along a first direction X and are arranged in an array perpendicular to the first direction X.
[0050] When the thermal insulation tooth assembly 11 includes at least one row of thermal insulation tooth groups 113 and at least one row of thermal insulation groove groups 1112, the row of thermal insulation tooth groups 113 and the row of thermal insulation groove groups 1112 can be spaced apart or at least partially overlap. As in this embodiment, a thermal insulation groove 1111 in a row of thermal insulation grooves 1111 is at least partially located between two adjacent thermal insulation teeth 112, enabling the thermal insulation grooves 1111 and the thermal insulation teeth 112 to be arranged in an intersecting manner, thereby improving the combing performance of the combing assembly 10 and enhancing the structural compactness.
[0051] Continue reading Figures 1 to 8 In some embodiments, the plurality of heat-insulating teeth 112 include a plurality of first heat-insulating teeth 1121, a plurality of second heat-insulating teeth 1122, and a plurality of third heat-insulating teeth 1123. The number of the first heat-insulating teeth 1121, the second heat-insulating teeth 1122, and the third heat-insulating teeth 1123 can be determined based on demand and is not limited herein. The plurality of first heat-insulating teeth 1121 are located around the plurality of second heat-insulating teeth 1122; at the same time, the plurality of first heat-insulating teeth 1121 and the plurality of second heat-insulating teeth 1122 are both arranged in a ring shape around the periphery of the heat-insulating plate 111. When the plurality of first heat-insulating teeth 1121 and the plurality of second heat-insulating teeth 1122 are arranged in the above manner, the first heat-insulating teeth 1121 and the adjacent second heat-insulating teeth 1122 are staggered, which can provide a certain degree of separation and thereby enhance the user experience of the hair combing assembly 10. The plurality of third heat-insulating teeth 1123 are arranged in a row along the first direction X in the central area of the heat-insulating plate 111. The third heat-insulating teeth 1123 form at least one row of heat-insulating tooth groups 113. That is, the central area of the heat-insulating board 111 may be provided with, but not limited to, one row, two rows, or more than three rows of heat-insulating tooth groups 113.
[0052] The height of the second heat-insulating teeth 1122 is greater than the height of the third heat-insulating teeth 1123, and the height of the third heat-insulating teeth 1123 is greater than the height of the first heat-insulating teeth 1121. By limiting the heights of the second heat-insulating teeth 1122, the third heat-insulating teeth 1123, and the first heat-insulating teeth 1121, the combing performance and combing experience of the combing assembly 10 can be improved.
[0053] In some embodiments, the plurality of heating teeth 122 include a plurality of first heating teeth 1221, a plurality of second heating teeth 1222, and a plurality of third heating teeth 1223. The number of the above-mentioned first heating teeth 1221, second heating teeth 1222, and third heating teeth 1223 can be determined according to demand and is not limited here. The heat conducting plate 121 includes a first end 121a and a second end 122a arranged opposite to each other. The plurality of first heating teeth 1221 are connected to the first end 121a and the second end 122a, that is, at least some of the first heating teeth 1221 are connected to the first end 121a, and at least some of the first heating teeth 1221 are connected to the second end 122a. The plurality of third heating teeth 1223 are arranged in a row along the first direction X in the middle area of the heat conducting plate 121. The plurality of second heating teeth 1222 are arranged in a row along the first direction X and are located on the side of the third heating teeth 1223.
[0054] The height of the second heating tooth 1222 is greater than the height of the third heating tooth 1223, and the height of the third heating tooth 1223 is greater than the height of the first heating tooth 1221. By limiting the heights of the second heating tooth 1222, the third heating tooth 1223, and the first heating tooth 1221, the combing performance and combing experience of the combing assembly 10 can be improved.
[0055] In some embodiments, the height dimension of the heat-insulating teeth 112 needs to be greater than the height dimension of the heating teeth 122 to reduce the risk of the heating teeth 122 contacting and scalding the scalp during use of the combing assembly 10. Specifically, the plurality of heat-insulating teeth 112 simultaneously include a plurality of first heat-insulating teeth 1121, a plurality of second heat-insulating teeth 1122, and a plurality of third heat-insulating teeth 1123; at the same time, the plurality of heating teeth 122 include a plurality of first heating teeth 1221, a plurality of second heating teeth 1222, and a plurality of third heating teeth 1223, wherein the height dimension of the first heat-insulating teeth 1121 needs to be greater than the height dimension of the first heating teeth 1221. In addition, the ends of the first heat-insulating teeth 1121, the second heat-insulating teeth 1122, the third heat-insulating teeth 1123, the first heating teeth 1221, the second heating teeth 1222, and the third heating teeth 1223 are all rounded to reduce the damage caused to the hair and scalp by the above-mentioned heat-insulating teeth 112 and the heating teeth 122.
[0056] In some embodiments, the material of the heat insulation plate 111 and the heat insulation teeth 112 can be the same or different. The heat insulation plate 111 can be made of a heat insulation material, such as, but not limited to, plastic. The heat insulation teeth 112 can be made of a heat insulation material, such as, but not limited to, plastic.
[0057] The heat conducting plate 121 and the heating teeth 122 can be made of the same or different materials. The heat conducting plate 121 can be made of a heat-insulating material, such as, but not limited to, metal. The heating teeth 122 can be made of a heat-insulating material, such as, but not limited to, metal.
[0058] See also Figure 9 , Figure 9 This is a cross-sectional diagram of an embodiment of the hair combing assembly of the present application. Figures 1 to 8 In some embodiments, the combing assembly 10 includes a heat insulation cover 13. The heat insulation cover 13 is covered on the heat insulation plate 111; at the same time, a accommodating cavity 14 is formed between the heat insulation cover 13 and the heat insulation plate 111. The heat conducting plate 121 is located in the accommodating cavity 14. The heat insulation cover 13 is respectively connected to the heat insulation plate 111 and the heat conducting plate 121. The heat insulation cover 13 is detachable or fixedly connected to the heat insulation plate 111; at the same time, the heat insulation cover 13 is detachable or fixedly connected to the heat conducting plate 121. As in this embodiment, the heat insulation cover 13 is detachably connected to the heat insulation plate 111 and the heat conducting plate 121, respectively.
[0059] The aforementioned accommodating cavity 14, formed between the heat-insulating plate 111 and the heat-insulating cover 13, can enclose and insulate the heating plate 30. When the combing assembly 10 is mounted on the housing 20, this reduces heat transfer to the housing 20, thereby lowering the temperature of the housing 20. When the temperature of the housing 20 is low, the high-temperature-resistant material can be replaced with a lower-temperature material, thereby reducing costs.
[0060] Specifically, the heat shield 13 can be made of a heat-insulating material. For example, the heat shield 111 can be made of, but not limited to, plastic. The material of the heat shield 111 can be the same as or different from the material of the heat shield 111 and the heat-insulating teeth 112, and is not limited thereto.
[0061] See also Figure 10 , Figure 10 This is a partial cross-sectional diagram of an embodiment of the hair treatment device of the present application. Figures 1 to 9 , the present application provides a hair processing device. The hair processing device 100 includes a housing 20 and a combing component 10. The combing component 10 is arranged on the housing 20. It should be noted that the combing component 10 in this embodiment is the combing component 10 described in the above embodiment, and its specific structure is not limited. The hair processing device 100 can not only play a heat insulation role through the above combing component 10, reducing the risk of the combing component 10 scalding the user's scalp and damaging the hair; but also increase the contact area between the hair and the heat conducting plate 121 and the heating teeth 122, thereby improving the combing performance of the combing component 10. In the above manner, the combing component 10 can be compatible with the heat insulation role and the combing performance, thereby improving the user experience.
[0062] In some embodiments, the hair treatment device 100 further includes a heating plate 30. The heating plate 30 is disposed on a side of the heat conducting plate 121 facing away from the heat insulating plate 111. The heating plate 30 is detachably connected to the heat conducting plate 121, for example, by snapping or plugging the heating plate 121. The heating plate 30 is located in the accommodating cavity 14, and heat generated by the heating plate 30 is transferred through the heat conducting plate 121 to the heat conducting bosses 1211 and the heating teeth 122, enabling the combing assembly 10 to be used for combing or styling hair.
[0063] The terms "first", "second" and "third" in this application are only used for descriptive purposes and should not be understood as indicating the number of the indicated technical features. Thus, the features defined as "first", "second" and "third" can explicitly or implicitly include at least one of these features. In the embodiments of the present application, all directional indications (such as up, down, left, right, front, back ...) are only used to explain the relative positional relationship, movement, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication also changes accordingly. In addition, the terms "including" and "having" and any of their variations are intended to cover non-exclusive inclusions. For example, a process, method, system, product or device that includes a series of steps or units is not limited to the listed steps or units, but optionally also includes steps or units that are not listed, or optionally also includes other steps or units inherent to these processes, methods, products or devices.
[0064] The above description is merely an embodiment of the present application and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the present application specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. A hair combing assembly, characterized in that: include: The heat-insulating tooth assembly includes a heat-insulating plate, wherein the heat-insulating plate is provided with a plurality of heat-insulating grooves; The heating tooth assembly includes a heat conducting plate and a plurality of heating teeth arranged on the surface of the heat conducting plate. The heat conducting plate is located below the heat insulating plate. The heat insulating groove is provided with at least two of the heating teeth, and the heat insulating groove exposes the connection between at least two of the heating teeth and the heat conducting plate.
2. The hair combing assembly according to claim 1, characterized in that At least one portion of the heat-insulating grooves is sleeved with at least two of the heating teeth, and at least another portion of the heat-insulating grooves is sleeved with at least three of the heating teeth.
3. The hair combing assembly according to claim 1, wherein: The heating tooth assembly includes a plurality of heat-conducting bosses arranged on the surface of the heat-conducting plate, and at least two heating teeth are arranged on a side of the heat-conducting boss facing away from the heat-conducting plate. The heat-insulating groove is sleeved on the heat-conducting boss, wherein the heat-conducting boss protrudes from or is flush with the surface of the heat-insulating plate on a side facing away from the heat-conducting plate.
4. The hair combing assembly according to claim 3, characterized in that The heat-insulating tooth assembly includes a plurality of heat-insulating teeth, and the heat-conducting boss is arranged between two of the heat-insulating teeth.
5. The hair combing assembly according to claim 3, characterized in that: The shape of the heat insulation groove matches the shape of the heat conduction boss.
6. The hair combing assembly according to claim 5, characterized in that The shape of the heat insulation groove and / or the shape of the heat conduction boss is at least one of a strip, a triangle, and a quadrilateral.
7. The hair combing assembly according to claim 1, characterized in that The heat-insulating tooth assembly includes a plurality of heat-insulating teeth, at least some of which form at least one row of heat-insulating tooth groups, and the heat-insulating tooth groups in one row are arranged along a first direction; A plurality of the heat-insulating grooves form at least one row of heat-insulating groove groups, one row of the heat-insulating groove groups is arranged along the first direction, and at least one row of the heat-insulating tooth groups and at least one row of the heat-insulating groove groups are arranged in a staggered manner.
8. The hair combing assembly according to claim 7, characterized in that At least part of the thermal insulation teeth form two rows of thermal insulation tooth groups, and a number of the thermal insulation grooves form three rows of thermal insulation groove groups. The two rows of thermal insulation tooth groups and the three rows of thermal insulation grooves are arranged alternately, wherein the thermal insulation grooves are at least partially located between adjacent thermal insulation teeth.
9. The hair combing assembly according to any one of claims 1 to 8, characterized in that The combing assembly includes a heat insulation cover, which is arranged on the heat insulation plate and forms a receiving cavity between the heat insulation plate and the heat insulation plate. The heat insulation cover is respectively connected to the heat insulation plate and the heat conducting plate, and the heat conducting plate is located in the receiving cavity.
10. A hair treatment device, characterized in that: include: shell; The hair combing assembly according to any one of claims 1 to 9, wherein the hair combing assembly is arranged on the housing.