STRAIGHT HAIR COMB WITH DETACHABLE AND HEAT-INSULATING COMB COVER
20260041215 ยท 2026-02-12
Inventors
Cpc classification
International classification
Abstract
A straight hair comb with a detachable and heat-insulating comb cover is provided; which includes a main body, the main body is provided with a heating comb head and an installation chamber located at an area of the heating comb head. The installation chamber is detachably connected to the heat-insulating comb cover. The heating comb head is provided with metal comb teeth, and the heat-insulating comb cover is provided with through holes corresponding to the metal comb teeth. The metal comb teeth pass through the through holes and are extended into the heat-insulating comb cover. By designing the heat-insulating comb cover as a detachable structure, a user can easily remove it for cleaning. Thus, the user can quickly remove dirt and broken hair from the straight hair comb, thereby maintaining the hygiene of the comb and increasing the favorability and satisfaction with this product.
Claims
1. A straight hair comb with a detachable and heat-insulating comb cover, comprising: a main body, wherein the main body is provided with a heating comb head and an installation chamber located at an area of the heating comb head; the installation chamber is detachably connected to the heat-insulating comb cover; the heating comb head is provided with metal comb teeth, and the heat-insulating comb cover is provided with through holes corresponding to the metal comb teeth; the metal comb teeth pass through the through holes and are extended into the heat-insulating comb cover.
2. The straight hair comb with a detachable and heat-insulating comb cover according to claim 1, wherein the installation chamber is provided with a first magnet piece, and the heat-insulating comb cover is provided with a second magnet piece corresponding to the first magnet piece so as to form a magnetic attraction connection.
3. The straight hair comb with a detachable and heat-insulating comb cover according to claim 1, wherein the installation chamber is provided with a clamping groove, and the heat-insulating comb cover is provided with a clamping protrusion corresponding to the clamping groove so as to form a clamping connection.
4. The straight hair comb with a detachable and heat-insulating comb cover according to claim 1, wherein the installation chamber is provided with a positioning column, and the heat-insulating comb cover is provided with a positioning hole corresponding to the positioning column.
5. The straight hair comb with a detachable and heat-insulating comb cover according to claim 1, wherein the heat-insulating comb cover is provided with plastic comb teeth that are staggered with the through holes, and horizontal heights of the plastic comb teeth are higher those of the metal comb teeth.
6. The straight hair comb with a detachable and heat-insulating comb cover according to claim 5, wherein an edge of the heat-insulating comb cover is provided with the plastic comb teeth configured to cover the metal comb teeth.
7. The straight hair comb with a detachable and heat-insulating comb cover according to claim 5, wherein heights of the plastic comb teeth are 2-5mm higher than those of the metal comb teeth.
8. The straight hair comb with a detachable and heat-insulating comb cover according to claim 1, wherein a sealing ring is further provided between the heat-insulating comb cover and the installation chamber.
9. The straight hair comb with a detachable and heat-insulating comb cover according to claim 1, wherein the metal comb teeth are arranged vertically on the heating comb head.
10. The straight hair comb with a detachable and heat-insulating comb cover according to claim 1, wherein the metal comb teeth and the heating comb head are integrally formed and made of aluminum material.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0018] In order to provide a clearer explanation of the technical solution in the embodiments of the present disclosure, a brief introduction will be given to the drawings required for the embodiments or prior art descriptions. It is obvious that the drawings described below are only some embodiments of the present disclosure. For those skilled in the art, other drawings can be obtained based on these drawings without requiring creative work.
[0019]
[0020]
DESCRIPTION OF EMBODIMENTS
[0021] In order to clarify the purpose, technical solution, and advantages of the present disclosure, further detailed explanations will be provided below in combination with the accompanying drawings and specific implementation modes.
[0022] The following will provide a clear and complete description of the technical solution in the embodiments of the present disclosure, based on the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present disclosure, not all of them. Based on the embodiments in the present disclosure, all other embodiments obtained by those skilled in the art without creative work are within the protection scope of the present disclosure.
[0023] In the description of the present disclosure, it should be understood that terms center, longitudinal, transverse, length, width, thickness, up, down, front, back, left, right, vertical, horizontal, top, bottom, inside, outside, clockwise, counterclockwise and other directional or positional relationships indicated are based on the directional or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present disclosure and simplifying the description, and do not indicate or imply that the device or component referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it cannot be understood as a limitation on the present disclosure.
[0024] In addition, terms first and second are only used for a descriptive purpose and cannot be understood as indicating or implying relative importance or implying the number of technical features indicated. Thus, features refer to first and second may explicitly or implicitly include one or more of these features. In the description of the present disclosure, the meaning of multiplerefers to two or more, unless otherwise specified.
[0025] In the present disclosure, unless otherwise specified and limited, terms installation, connection to, connection with, fixation, etc. should be broadly understood, for example, it can be a connection, a detachable connection, or an integrated connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be a connection within two components or an interaction relationship between two components. For those skilled in the art, the specific meanings of the above terms in the present disclosure can be understood according to a specific situation.
[0026] In the present disclosure, unless otherwise specified and limited, a first feature above or below a second feature may include a direct contact between the first feature and second feature, or may include a contact between the first feature and second feature through another feature between them instead of direct contact. Besides that, the first feature being above, on, and up the second feature includes the first feature being directly above and diagonally above the second feature, or simply indicating that the first feature is horizontally higher than the second feature. The first feature being below, down, and beneath include the first feature being directly below and diagonally below the second feature, or simply indicating that the first feature has a lower horizontal height than the second feature.
[0027] In the description of this specification, reference to terms one embodiment, some embodiments, examples, specific examples, or some examples means that specific features, structures, materials, or characteristics described in combination with the embodiment or example are included in at least one embodiment or example of the present disclosure. In this specification, the schematic expressions of the above terms should not be understood as necessarily referring to the same embodiments or examples. Furthermore, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, technicians in this field can integrate and combine the different embodiments or examples described in this specification.
[0028] Referring to specific embodiments shown in
[0029] In an implementation mode, the main body 10 is provided with the installation chamber 11 located in the area of the heating comb head 20. The installation chamber 11 is detachably connected to the heat-insulating comb cover 30, the heating comb head 20 is provided with the metal comb teeth. The heat-insulating comb cover 30 is provided with the through holes corresponding to the metal comb teeth; the metal comb teeth pass through the through holes and are extended into the heat-insulating comb cover 30. By designing the heat-insulating comb cover 30 as a detachable structure, a user can easily remove it for cleaning. Thus, the user can quickly remove dirt and broken hair from the straight hair comb, maintain the hygiene of the comb, reduce a possibility of bacterial growth, and increase the favorability and satisfaction with this product. Besides that, a design of the heat-insulating comb cover 30 effectively isolates heat of the heating comb head 20, preventing the user from directly contacting high-temperature parts during use, thereby avoiding a risk of burns. Besides that, because everyone's hair thickness/length/curl is different, some straight hair combs on the market are arranged tightly, which is more suitable for people with thicker and curly hair. During the combing process, the hair is clamped tightly, rendering it easier for the hair to straighten. However, when gaps between the metal comb teeth and the plastic comb teeth are small, it will be slower to enter the hair, wasting time; some straight hair combs are arranged sparingly, rendering it very convenient and fast to comb hair, but the clamping on the hair is relatively loose, and a straightening effect is not so obvious. They are suitable for groups with slightly curly hair. This technology can switch between different specifications of heat-insulating comb cover 30 by changing the size or shape of the comb teeth on the heat-insulating comb cover 30, and adjust the gaps between the heat-insulating comb cover 30 and the heating comb head 20, thus fully meeting straightening needs of different customers. Furthmore, the heat-insulating comb cover 30 is made of plastic material and shapes of the plastic comb teeth are slender and elongated. After long-term use, it is easy to age and become brittle, or improper user operation or falling can easily cause the plastic comb teeth to break, rendering the entire product unusable. Therefore, a detachable design of the heat-insulating comb cover 30 allows the straight hair comb to be provided with a plurality of heat-insulating comb covers 30. The user can replace heat-insulating comb covers 30 of different materials or functions according to his needs to adapt to different hair types (such as fine soft hair, coarse hard hair, curly hair, etc.) or achieve specific styling effects. That is, the gaps between metal comb teeth and the plastic comb teeth can be freely combined and adjusted to adapt to different usage scenarios. After the plastic comb teeth of the heat-insulating comb cover are broken, there is no need to scrap the whole machine, just replace the heat-insulating comb cover 30 to improve the flexibility and applicability of the product. For example, the heat-insulating comb cover 30 changes the shape and arrangement of the teeth, or the heat-insulating comb cover 30 changes the size and height of the teeth.
[0030] In one embodiment, the installation chamber 11 is provided with a first magnet piece, and the heat-insulating comb cover 30 is provided with a second magnet piece corresponding to the first magnet piece so as to form a magnetic attraction connection.
[0031] In an implementation mode, an edge of the installation chamber 11 is provided with a plurality of installation holes, the first magnet piece is provided in the installation holes. A bottom of the heat-insulating comb cover 30 is provided with a protrusion corresponding to the installation holes, and the second magnet piece is provided in the protrusion. When the protrusion is connected to the installation holes, the first magnet piece and the second magnet piece are attracted to each other to form the magnetic attraction connection. Where, the magnetic attraction connection renders the installation and removal of the heat-insulating comb cover 30 very simple and fast. The user only needs to place the heat-insulating comb cover 30 close to the installation chamber 11, and an attractive force between the magnets will automatically tightly connect the two together, without the need for additional screws, buckles, or other fixing parts; similarly, when cleaning or replacing the heat-insulating comb cover 30, the user can easily remove it from the installation chamber 11, greatly improving the convenience of use. Furthermore, the magnetic suction connection is not only convenient, but also provides a stable connection effect. A strong suction force between the magnets ensures that the heat-insulating comb cover 30 will not easily be fallen off due to an external force during use, thereby ensuring the stability and safety of the straight hair comb. In addition, a design of the magnetic suction connection helps to reduce an assembly gap between the heat-insulating comb cover 30 and the installation chamber 11. Due to the precise alignment and strong suction force of the magnet, the connection between the two is tighter, avoiding looseness or abnormal noise caused by the assembly gap and improving the overall quality of the product. In addition, the magnetic connection also helps to extend the service life of the product, as there is no need to frequently use screws, buckles and other vulnerable parts for fixing, reducing the wear and replacement needs of these components.
[0032] In one embodiment, the installation chamber 11 is provided with a clamping groove, and the heat-insulating comb cover 30 is provided with a clamping protrusion corresponding to the clamping groove so as to form a clamping connection.
[0033] In an implementation mode, a fit between the clamping groove and the clamping protrusion ensures a stable connection between the heat-insulating comb cover 30 and the installation chamber 11. This mechanical connection way through precise docking and locking of the clamping groove, can effectively prevent the heat-insulating comb cover 30 from falling off or shifting due to the external force during use, ensuring the safety and stability of the straight hair comb. Besides that, a design of the clamping groove and clamping protrusion helps to achieve precise positioning between the heat-insulating comb cover 30 and the installation chamber 11. When installing the heat-insulating comb cover 30, the user only needs to align the clamping protrusion with the clamping groove and gently press it to achieve precise docking between the two, without additional adjustment or calibration. Furthermore, although the clamping connection may require slight force or specific tools to disassemble compared to the magnetic connection, once the method is mastered, convenient disassembly can still be achieved. This is very important for the user who needs to regularly clean or replace the heat-insulating comb cover 30. By disassembling the heat-insulating comb cover 30, the user can easily clean it to remove accumulated dirt and bacteria and maintain the hygiene of the product. In addition, the clamping connection usually has high durability, as it is achieved through mechanical structures and does not rely on fragile magnets or other materials. Therefore, under a normal usage condition, the clamping connection has good stability and durability.
[0034] In one embodiment, the installation chamber 11 is provided with a positioning column 12, and the heat-insulating comb cover 30 is provided with a positioning hole 31 corresponding to the positioning column 12.
[0035] In an implementation mode, a design of the positioning column 12 and the positioning hole 31 allows the heat-insulating comb cover 30 to be accurately aligned to a designated position of the installation chamber 11 during installation. This precise docking not only helps to maintain an overall appearance of the straight hair comb, but also ensures that the heat-insulating comb cover 30 can function stably during use. In addition, by connecting the physical structure, errors and uncertainties during manual installation are reduced, ensuring that the same effect and accuracy can be achieved every time installation is carried out. Besides that, a cooperation between the positioning column 12 and the positioning hole 31 provides additional support points for the heat-insulating comb cover 30, thereby enhancing its connection stability with the installation chamber 11. This stability helps preventing the heat-insulating comb cover 30 from shifting or falling off due to the external force during use, and the stable connection reduces wear and damage caused by frequent movement or vibration, which helps to extend the service life of the straight hair comb. Furthermore, this design reflects the manufacturer's attention to product details and processing capabilities, which helps to enhance the overall quality and market competitiveness of the product.
[0036] In one embodiment, the heat-insulating comb cover 30 is provided with plastic comb teeth that are staggered with the through holes, and horizontal heights of the plastic comb teeth are higher than those of the metal comb teeth.
[0037] In an implementation mode, horizontal heights of the plastic comb teeth are higher than those of the metal comb teeth, thereby providing an additional safety protection. As the horizontal heights of the plastic comb teeth are higher than those of the metal comb teeth, they will first come into contact with the user's fingers or hair, effectively avoiding direct contact with the high-temperature metal comb teeth and reducing the risk of burns. This is crucial for protecting user safety, especially for children or users unfamiliar with product operation. In addition, the plastic comb teeth usually have better touch and comfort. They can comb hair more gently, reducing damage to the scalp and hair strands. At the same time, due to the thermal insulation property of the plastic materials, even if some heat is generated during use, the plastic comb teeth can maintain a relatively low temperature, thereby improving the user's experience. In addition, the design of the plastic comb teeth can be customized according to different needs and styles, such as color, shape, and texture, thereby enhancing the beauty and personalization of the product. This design not only meets the aesthetic needs of the user, but also enhances the market competitiveness of the product.
[0038] In one embodiment, an edge of the heat-insulating comb cover 30 is provided with the plastic comb teeth configured to cover the metal comb teeth.
[0039] In an implementation mode, the plastic comb teeth are provided at the edge of the heat-insulating comb cover 30, thereby forming an effective shielding layer that completely wraps the metal comb teeth inside. This way, even if the user accidentally touches the edge of the straight hair comb, he will first comes into contact with the plastic comb teeth instead of the high-temperature metal comb teeth, greatly reducing the risk of burns. This design provides additional safety protection for the user. Furthermore, the plastic comb teeth, as a part of the heat-insulating comb cover 30, can to some extent protect the internal metal comb teeth from external environmental erosion.
[0040] In one embodiment, the plastic comb teeth are 2-5mm higher than those of the metal comb teeth.
[0041] In an implementation mode, due to the heights of the plastic comb teeth are higher than those of the metal comb teeth, when the user uses the straight comb, he first comes into contact with the plastic comb teeth rather than high-temperature metal comb teeth. This effectively avoids direct contact between the user and high-temperature metal comb teeth, greatly reducing the risk of burns. In addition, the plastic comb teeth serve as a physical barrier to prevent user's fingers or other objects from directly contacting the metal comb teeth, further enhancing the effectiveness of safety protection. In addition, the plastic comb teeth usually have better touch and softness, which can gently contact the scalp and hair, reducing discomfort during the combing process. In addition, higher plastic comb teeth can better wrap and comb hair, reduce friction and tangling between hair strands, and protect hair strands from damage. In addition, as the plastic comb teeth bear most of the contact and friction with the user, they can reduce the wear and damage of the metal comb teeth, thereby extending the service life of the entire straight hair comb. In addition, the height difference between the plastic comb teeth and the metal comb teeth adds a sense of hierarchy to the product, rendering the overall design more three-dimensional and richer. The plastic comb teeth can choose different colors and materials according to design requirements, thereby forming a sharp contrast or harmonious combination with the metal comb teeth, enhancing the beauty of the product.
[0042] In one embodiment, a sealing ring is further provided between the heat-insulating comb cover 30 and the installation chamber 11.
[0043] In an implementation mode, as a cushioning component, the sealing ring can alleviate an impact and a vibration between the heat-insulating comb cover 30 and the installation chamber 11 to a certain extent, protecting internal components of the straight hair from damage. In addition, the sealing ring usually has excellent wear resistance and can maintain a low wear rate under long-term use and high-intensity pressure, thereby extending the service life of the straight hair comb. In addition, some sealing rings can automatically compensate to a certain extent after wear, continuing to maintain good sealing effect and reducing sealing failure caused by wear.
[0044] In one embodiment, the metal comb teeth are arranged vertically on the heating comb head 20.
[0045] In an implementation mode, the vertically arranged metal comb teeth can more effectively contact the heating element, ensuring that heat can be quickly and evenly transferred to the comb teeth. This design helps shorten a preheating time and improve user efficiency. In addition, the vertical arrangement allows each comb tooth to be independently and uniformly heated, avoiding a problem of uneven heating that may exist in traditional designs. In this way, when combing hair, each strand of hair can receive the same degree of heating treatment, thereby improving the styling effect. Furthermore, the vertically arranged metal comb teeth can smoothly slide through the hair when combing, reducing a pulling sensation caused by improper comb tooth arrangement. This is particularly important for the user with long or curly hair, as it can significantly improve the comfort of combing. In addition, compared to other arrangements, the vertically arranged comb teeth can cover more hair strands in a single combing process, thereby increasing the contact area between comb teeth and hair, which helps to straighten or curl the hair faster and improve styling efficiency.
[0046] In one embodiment, the metal comb teeth and the heating comb head 20 are integrally formed and made of aluminum material.
[0047] In an implementation mode, the metal comb teeth and the heating comb head 20 are integrated into a molded structure, reducing intermediate links in the heat conduction process, allowing heat to be transferred more directly and quickly to the comb teeth. This design improves the heat conduction efficiency, enabling the straight comb to reach a desired temperature faster during preheating and use. In addition, the aluminum material has excellent thermal conductivity and is one of the commonly used materials for making heating elements. The metal comb teeth made of aluminum material can more effectively absorb and transfer heat, ensuring that the comb teeth maintain a stable temperature during use, thereby improving the straightening effect. In addition, by designing the metal comb teeth and the heating comb head 20 as an integrated structure, a structural strength of the entire straight hair comb is enhanced. This structure is less prone to loosening or deformation during use, improving the durability and stability of the product. The aluminum material not only has good thermal conductivity, but also has high strength and toughness. The metal comb teeth made of aluminum material can withstand certain tensile and compressive forces, and are not easily broken or deformed, ensuring the safety and reliability of the straight hair comb during use.
[0048] Specifically, the structure of the main body 10 adopts existing publicly available technology and will not be elaborated further here.
[0049] The above embodiments are preferred implementation modes of the present disclosure. In addition, the present disclosure can also be implemented in other ways, and any obvious replacement is within the protection scope of the present disclosure without departing from the concept of the technical solution.