Elastic comb tooth structure and styling comb
Patent Information
- Authority / Receiving Office
- DE · DE
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2025-12-22
- Publication Date
- 2026-03-26
Smart Images

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Abstract
Description
Technical field
[0001] The present utility model relates to the field of hair care devices, in particular to an elastic comb teeth and a styling comb. background
[0002] Styling combs, straightening combs, and similar devices are widely used in the hairdressing industry for styling hair. Existing styling combs typically include a heated comb tooth component and comb teeth. The heated teeth allow for permanent styling of the hair, while the teeth separate individual strands. The heated teeth, or heat-insulated plastic prongs, of existing styling combs are usually fixed structures that do not float. This can result in the heated teeth coming into direct contact with the skin, which can cause discomfort and damage the scalp. Subject of the utility model
[0003] This utility model addresses the shortcomings of existing technology by providing an elastic comb tooth structure and a styling comb with a simpler design, a more rational construction, increased safety, and superior comfort.
[0004] To solve the aforementioned technical problems, the present utility model employs the following technical solution: An elastic comb tooth structure comprises a heated comb tooth component, wherein the heated comb tooth component includes heated comb teeth, elastic comb teeth, and a heating element. The heated comb teeth are positioned between the elastic comb teeth, with the heads of the heated comb teeth being lower than the heads of the elastic comb teeth, such that the heads of the elastic comb teeth project beyond the heads of the heated comb teeth.
[0005] In addition, it also includes plastic comb teeth that surround the circumference of the heating comb teeth and the elastic comb teeth.
[0006] Furthermore, the heater is mounted via heat-insulating mica plates. A heat transfer frame, connected to temperature sensors, is provided on the heater, with the heat transfer frame contacting the base of the heating comb teeth.
[0007] Preferably, the elastic comb teeth comprise a plurality of heatable, movable heating comb teeth, each of which is attached to the heat transfer frame by a spring to achieve heating of the heatable, movable heating comb teeth. Around the heating comb teeth, each heating comb tooth has an insulating comb tip. The upper part of the insulating comb tip projects beyond the head of the respective heating comb tooth, with the head of the heating comb tooth being lower than the head of the insulating comb tip, so that the head of the insulating comb tip projects beyond the head of the heating comb tooth.
[0008] Furthermore, the heating element and the heat-insulating mica plates are mounted in a heat-insulating silicone holder, with the heat transfer frame covering the silicone holder.
[0009] Alternatively, the elastic comb teeth comprise elastic plastic comb teeth, including a variety of elastic inner ring-comb teeth and a variety of elastic outer ring-comb teeth. The elastic inner ring-comb teeth surround each heating comb tooth, while the elastic outer ring-comb teeth surround the elastic inner ring-comb teeth. The heads of the elastic inner ring-comb teeth and / or the elastic outer ring-comb teeth project beyond the heads of the heating comb teeth.
[0010] Furthermore, an elastic silicone holder with numerous insertion points is provided. The bases of the elastic inner ring ridge teeth and the elastic outer ring ridge teeth are each inserted into corresponding insertion points.
[0011] Furthermore, the elastic inner ring ridge teeth are subdivided into several groups, each comprising several elastic inner ring ridge teeth connected by a connecting arm; the elastic outer ring ridge teeth are similarly subdivided into several groups, each comprising several elastic outer ring ridge teeth connected by a connecting plate.
[0012] Preferably, the elastic inner ring-comb teeth comprise a plurality of independent tines, and the elastic outer ring-comb teeth also comprise a plurality of independent tines.
[0013] A styling comb comprising a housing, a power cord assembly, a heating comb tooth component, a switch, and a printed circuit board. The heating comb tooth component is connected to the circuit board and utilizes the aforementioned elastic comb tooth structure. The heating comb teeth and elastic comb teeth of the heating comb tooth component protrude from the housing. The switch is embedded in the housing, which also contains an indicator light connected to the circuit board.
[0014] This utility model comprises additional elastic comb teeth that surround the heating comb teeth, with the heads of the elastic comb teeth extending beyond those of the heating comb teeth. This arrangement prevents direct skin contact with the heating comb teeth, thus increasing comfort and safety. When used on the scalp, the elastic comb teeth exert gentle pressure without causing damage, while simultaneously providing a massage effect. Description of the illustrations Fig. is a three-dimensional external view of the present utility model, illustrated using the example of a styling comb; Fig. is an exploded view of the first embodiment of the present utility model, illustrated using a styling comb. Fig. is a sectional view of the comb tooth structure for the first embodiment of the present utility model, illustrated by means of the styling comb. Fig. This is an exploded view of the comb tooth structure for the second embodiment of the present utility model. Fig. is a sectional view of the comb tooth structure for the second embodiment of the present utility model. Fig. This is an exploded view of the comb tooth structure for the third embodiment of the present utility model. Fig. This is an assembly drawing of the comb tooth structure for the third embodiment of the present utility model.
[0015] In the illustrations: 1 denotes the upper housing; 2 denotes the lower housing; 3 denotes the power cord assembly; 4 denotes the switch; 5 denotes the heating comb tooth component; 51 denotes the heating comb teeth; 52 denotes the movable heating comb teeth; 53 denotes the insulating comb tips; 54 denotes the spring; 55 denotes the heat transfer frame; 56 denotes the heater; 57 denotes the heat-insulating mica plates; 58 denotes the heat-insulating silicone holders; 59 denotes the fixed holder; 510 denotes the plastic comb prongs; 511 denotes the temperature sensors; 512 denotes the elastic inner ring comb teeth; 513 denotes the elastic outer ring comb teeth; 514 denotes the elastic silicone holders; 515 denotes the connecting arm; 516 denotes the connecting plate; 517 denotes the plug-in section; 6 denotes the indicator light; and 7 denotes the circuit board. Specific embodiment
[0016] The present utility model will now be described in detail using a styling comb as an example. It should be noted that the elastic comb tooth structure of the present utility model can be applied not only to styling combs, but also to other hair care devices that require comb tooth structures, such as straightening combs.
[0017] Example 1: Referring to the Fig. 1-3 The styling comb comprises a housing, a power cord assembly 3, a heating comb tooth component 5, a switch 4, and a printed circuit board 7. The heating comb tooth component 5 uses a resilient comb tooth structure comprising heating comb teeth 51 and a heater 56. The heater 56 is connected to the printed circuit board 7. The heating comb teeth 51 are arranged between the resilient comb teeth, with the heads of the heating comb teeth 51 being lower than the heads of the resilient comb teeth, so that the heads of the resilient comb teeth project beyond the heads of the heating comb teeth 51.
[0018] The housing comprises an upper housing 1 and a lower housing 2, which together form the complete housing. The heating comb teeth 51 and the elastic comb teeth project from the upper housing 1. The upper housing 1 further comprises plastic comb teeth 510, which surround the circumference of the heating comb teeth 51 and the elastic comb teeth.
[0019] The heater 56 is mounted in the lower housing 2 via heat-insulating mica plates 57. A heat transfer frame 55 is provided on the heater 56 and connected to temperature sensors 511. The heat transfer frame 55 contacts the base of the heating comb teeth 51 to heat the heating comb teeth 51.
[0020] The elastic comb teeth comprise several heated movable comb teeth 52. Each heated movable comb tooth 52 is attached to the heat transfer frame 55 by a spring 54 to heat the heated movable comb teeth 52. The heated movable comb teeth 52 surround the heated heating comb teeth 51, each heated movable comb tooth 52 having an insulated comb tip 53. The upper part of the insulating comb tip 53 extends beyond the head of the respective heating comb tooth 52, with the head of the heating comb tooth 52 being positioned lower than the head of the insulating comb tip 53. This arrangement causes the head of the insulating comb tip 53 to extend beyond the head of the heating comb tooth 51, thus preventing direct contact between the heating comb tooth 51 and the scalp.
[0021] The heater 56 and the heat-insulating mica plates 57 are mounted in a heat-insulating silicone holder 58, with the heat transfer frame 55 covering the heat-insulating silicone holder 58; the heat-insulating silicone holder 58 is installed in the lower housing 2 via a fixed bracket 59.
[0022] Example 2, referring to the Fig. 4 and Fig. 5, uses elastic plastic elastic comb teeth, comprising a variety of elastic inner ring comb teeth 512 and a variety of elastic outer ring comb teeth 513. The elastic inner ring comb teeth 512 surround each heating comb tooth 51, and the elastic outer ring comb teeth 513 surround the elastic inner ring comb teeth 512. The heads of the elastic inner ring comb teeth 512 extend beyond the heads of the heating comb teeth 51, thus preventing direct contact between the heating comb teeth 51 and the scalp during use.
[0023] It further comprises an elastic silicone holder 514 with several insertion sections 517. The bases of the elastic inner ring ridge teeth 512 and the elastic outer ring ridge teeth 513 are each inserted into corresponding insertion sections 517. This elastic silicone holder 514 is attached to the lower housing 2 via a fixed mount 59.
[0024] The elastic inner ring-ridge teeth 512 are divided into several groups, each comprising several elastic inner ring-ridge teeth 512. The elastic inner ring-ridge teeth 512 of each group are connected to each other via a connecting arm 515, the total number of elastic inner ring-ridge teeth 512 being multiple. The elastic outer ring-ridge teeth 513 are divided into several groups, each comprising several elastic outer ring-ridge teeth 513. Each group of elastic outer ring-ridge teeth 513 is connected to each other via a connecting plate 516, and the total number of elastic outer ring-ridge teeth 513 can be multiple.
[0025] Example 3 includes, with reference to the Fig. 6 and Fig. 7 a plurality of independent elastic inner ring ridge teeth 512 and a plurality of independent elastic outer ring ridge teeth 513, the remaining structure being identical to Example 2.
[0026] Additionally, switch 4 can be designed as a push-button switch embedded in the upper housing 1. The upper housing 1 also includes an indicator light 6, which is connected to the circuit board 7 and serves to indicate the power supply status.
[0027] The foregoing constitutes a detailed description of the present utility model. The above description represents only one preferred embodiment of the utility model. The scope of the utility model is not thereby limited; all equivalent variations and modifications made within the scope of this application remain within the scope of the present utility model.
Claims
[1] Elastic comb tooth structure comprising a heating comb tooth component, characterized by , that: the heating comb tooth component comprises heating comb teeth, elastic comb teeth and a heating element, wherein the heating comb teeth are positioned between the elastic comb teeth, the heads of the heating comb teeth being lower than the heads of the elastic comb teeth, so that the heads of the elastic comb teeth extend beyond the heads of the heating comb teeth. [2] Elastic comb tooth structure according to claim 1, characterized by , that it further includes plastic comb teeth that surround the perimeter of the heating comb teeth and the elastic comb teeth. [3] Elastic comb tooth structure according to claim 1 or 2, characterized by that: the heating element is mounted over heat-insulating mica plates; a heat transfer frame is provided on the heating element and connected to temperature sensors; the heat transfer frame touches the underside of the heated comb teeth. [4] Elastic comb tooth structure according to claim 3, characterized by that: the elastic comb teeth comprise a plurality of heatable movable comb teeth, each heatable movable comb tooth being attached to the heat transfer frame by a spring to achieve heating of the heatable movable comb teeth; the heating comb teeth are arranged around the heating comb teeth, each heating comb tooth having an insulating comb tip. The upper part of the insulating comb tip extends beyond the head of the respective heating comb tooth, and the head of the heating comb tooth is positioned lower than the head of the insulating comb tip, such that the head of the insulating comb tip extends beyond the head of the heating comb tooth. [5] Elastic comb tooth structure according to claim 4, characterized by , that: the heater and the heat-insulating mica plates are mounted in a heat-insulating silicone holder, with the heat transfer frame covering the heat-insulating silicone holder. [6] The elastic comb tooth structure according to claim 3, characterized by The elastic comb teeth comprise elastic plastic comb teeth, including a variety of elastic inner ring-comb teeth and a variety of elastic outer ring-comb teeth. The elastic inner ring-comb teeth surround each heating comb tooth, while the elastic outer ring-comb teeth surround the elastic inner ring-comb teeth. The heads of the elastic inner ring-comb teeth and / or the elastic outer ring-comb teeth project beyond the heads of the heating comb teeth. [7] Elastic comb tooth structure according to claim 6, characterized by , that it further comprises an elastic silicone holder, wherein a plurality of insertion sections are provided on the elastic silicone holder and the lower ends of the elastic inner ring ridge teeth and the elastic outer ring ridge teeth are each inserted into corresponding insertion sections. [8] Elastic comb tooth structure according to claim 7, characterized by , that: the elastic inner ring-ridge teeth are divided into several groups, each group comprising several elastic inner ring-ridge teeth, and each elastic inner ring-ridge tooth within a group is connected to others via a connecting arm; the elastic outer ring-ridge teeth are divided into several groups, wherein each group comprises several elastic outer ring ridge teeth and each elastic outer ring ridge tooth within a group is connected to others via a connecting plate. [9] Elastic comb tooth structure according to claim 7, characterized by , that: the elastic inner ring ridge teeth comprise a multitude of independent teeth and the elastic outer ring ridge teeth also comprise a multitude of independent teeth. [10] Styling comb comprising a housing, a power cord assembly, a heating comb tooth component, a switch and a printed circuit board, wherein the heating comb tooth component is connected to the printed circuit board, characterized by , that: the heating comb tooth component uses the elastic comb tooth structure according to one of claims 1 to 9 and the heating comb teeth and elastic comb teeth of the heating comb tooth component extend from the housing. [11] Styling comb according to claim 10, characterized by that the switch is embedded in the housing and that an indicator light is also provided in the housing, which is connected to the circuit board.