Face shaping headgear with soft support

By setting up soft support structures with different tensile stiffness and bending stiffness in a segmented or partitioned manner in the facial shaping headgear, the problem that the existing technology cannot meet the mechanical performance requirements of different positions is solved, the personalized support and shaping effect of the facial shaping headgear is achieved, and the service life is improved.

CN223323033UActive Publication Date: 2025-09-12TENGFEI TECH CO LTD
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Patent Information

Application Number
CN202423022976.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-09-12
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

The existing homogeneous soft support cannot provide different supporting effects, shaping effects, or different elastic forces at different positions of the facial shaping headgear, and cannot meet the mechanical performance requirements of different positions of the facial shaping headgear.

Method used

A face shaping headgear with soft support is designed. The soft support structure with different tensile stiffness and bending stiffness is set in a segmented or zoned manner, including a headgear body and a first soft support covering the cheeks and chin of the face. By setting different elastic performance segments or zones at different positions, it can adapt to the support and shaping needs of different positions of the face.

Benefits of technology

It provides personalized support and shaping effects at different positions of the face, and improves the adaptability and service life of the facial shaping headgear.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a face shaping headgear with a soft support, which comprises a headgear body and a first soft support covering two cheeks and a jaw of a face, and the first soft support comprises at least two subsections with different tensile rigidities, or at least two subareas with different tensile rigidities, or at least two subsections with different flexural rigidities. According to the soft support provided by the utility model, the mechanical properties are set to be different in subsection or subarea, and different supporting effects or shaping effects can be provided at different positions; compared with a traditional soft support, the soft support provided by the invention can adapt to deformation, support or shaping requirements of different positions. A designer of the face shaping headgear can add the soft support at any position of the headgear according to actual requirements, or design specific segments and subareas of the soft support according to actual conditions of facial muscle distribution and fat distribution of a user, so that the effects of shaping, supporting, deformation, wrinkle resistance, attractiveness, resilience, prolonging of service life and the like at different positions are achieved.
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Description

Technical Field

[0001] The utility model relates to a face shaping headgear with soft support, belonging to the technical field of clothing. Background Art

[0002] Soft support for clothing was first used in bras, and was later widely used in all kinds of clothing to achieve effects such as support, shaping, preventing deformation, and improving the service life and aesthetics of clothing.

[0003] Conventional soft support structures are double-layer structures consisting of an inner core and a sheath. These structures are generally homogeneous, with uniform mechanical properties in all directions and locations. However, with the increasing use of soft supports, the technical field is seeking to develop soft supports that can provide varying mechanical properties in different locations and directions. For example, in facial shaping headgear using soft supports, some locations may be easily adjustable to accommodate facial contours, while others may provide sculpting support for facial muscles and fat tissue.

[0004] The existing homogeneous elastic soft support cannot adapt to the different positions of the facial shaping headgear, and needs to provide different supporting effects, or shaping effects, or different elastic forces to meet the different support, shaping, and deformation mechanical performance requirements of different positions. Utility Model Content

[0005] The technical problem to be solved by the present invention is that the existing homogeneous soft support cannot provide different supporting effects, or shaping effects, or different elastic forces at different positions of the facial shaping headgear, and cannot meet the requirements of different supporting, shaping, and deformation mechanical properties of the facial shaping headgear at different positions.

[0006] To solve the above problems, the technical solution adopted by the present invention is to provide a face shaping headgear with soft support, including a headgear body and a first soft support covering the cheeks and chin of the face, wherein the first soft support includes at least 2 segments with different tensile stiffness, or at least 2 partitions with different tensile stiffness, or at least 2 segments with different bending stiffness.

[0007] Preferably, the first soft support includes: an elastomeric inner core, and a covering covering the elastomeric inner core; the bending stiffness of the elastomeric inner core against bending is set to be directional anisotropic, and / or the bending stiffness of the elastomeric inner core against bending is set to be segmentally anisotropic, and / or the tensile stiffness of the elastomeric inner core against stretching is set to be segmentally anisotropic.

[0008] Preferably, the first soft support is provided with j segments N1, N2, ... Nj along the length direction, j ≥ 2; the tensile stiffness of the j segments changes with the position of the segments, and / or the bending stiffness of the j segments changes with the position of the segments.

[0009] Preferably, the first soft support is configured as a 3D printed object located on the inner surface, outer surface, or interior of the headgear body.

[0010] Preferably, the first soft support is provided with at least one segment with directionally anisotropic bending stiffness.

[0011] Preferably, it also includes a second soft support, which is correspondingly arranged on the head, and the two ends of the second soft support are respectively connected or not connected to the two ends of the first soft support; the second soft support is set as an elastic lifting belt.

[0012] Preferably, the first soft support includes a left segment corresponding to the left cheek, a right segment corresponding to the right cheek, and a middle segment corresponding to the chin connecting the left segment and the right segment, the tensile stiffness of the left segment is greater than the tensile stiffness of the middle segment, and the tensile stiffness of the right segment is greater than the tensile stiffness of the middle segment.

[0013] Preferably, the first soft support includes a left segment corresponding to the left cheek, a right segment corresponding to the right cheek, and a middle segment corresponding to the chin connecting the left segment and the right segment, the bending stiffness of the left segment is greater than the bending stiffness of the middle segment, and the bending stiffness of the right segment is greater than the bending stiffness of the middle segment.

[0014] Preferably, the first soft support is provided with at least one elastic memory segment.

[0015] Preferably, the covering member includes a first covering layer and a second covering layer, and the inner core of the elastomer is arranged between the first covering layer and the second covering layer; the first covering layer is set as a film layer, and the second covering layer is set as a silicone layer; an adhesive is provided between the film layer and the silicone layer, and the adhesive is set as a silicone bridging agent; a flocking layer is also provided outside the silicone layer.

[0016] The soft support provided by this application sets the mechanical properties to be different in sections or zones, the bending stiffness against bending is set to be directional anisotropy, the bending stiffness against bending is set to be segmentally anisotropic, and the tensile stiffness against stretching is set to be segmentally anisotropic. Different support effects or shaping effects can be provided at different positions; compared with traditional soft supports, the soft support provided by this application can adapt to the deformation, support, or shaping needs of different positions. Facial shaping headgear designers can add soft supports to any position of the headgear according to actual needs, or design specific segments and zones of the soft support according to the actual facial muscle distribution and fat distribution of the user, so as to achieve shaping, support, deformation, wrinkle prevention, aesthetics, rebound, and increased service life effects at different positions. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 Schematic diagram of the face shaping headgear provided in the embodiment of this application Figure 1 ;

[0018] Figure 2 Schematic diagram of the face shaping headgear provided in the embodiment of this application Figure 2 ;

[0019] Figure 3 This is a schematic diagram of the soft support segments provided in an embodiment of the present application;

[0020] Figure 4 Schematic diagram of the face shaping headgear provided in the embodiment of this application Figure 3 ;

[0021] Figure 5 This is a schematic diagram of a soft support multi-layer structure provided in an embodiment of the present application;

[0022] Explanation of the accompanying drawings: headgear body 1, first soft support 2, left segment 21, middle segment 22, right segment 23, second soft support 3, first covering layer 41, second covering layer 42, elastic core 43. DETAILED DESCRIPTION

[0023] In order to make the application more obvious and easy to understand, various exemplary embodiments will be introduced below. These examples are non-limiting, and it should be understood that they are used to illustrate the broader application aspects of the application method. Without departing from the essence and scope of the application, these embodiments can be subjected to various changes and can be replaced by equivalents. In addition, various changes can be carried out to adapt to the purpose, content or scope of the application in order to adapt to special circumstances, materials, material components, treatment types, treatment actions or steps. All of these changes will be within the scope of protection of the application.

[0024] Any materials, dimensions, or quantities described in the overview or detailed description are intended to be examples only and are not intended to limit the subject matter of this application. Furthermore, the various implementations of the embodiments described herein are intended to complement each other, rather than to be purely interchangeable, unless otherwise indicated. In other words, implementations from one embodiment can be freely combined with implementations from other embodiments, as readily understood by those skilled in the art, unless such implementations are indicated as being merely interchangeable.

[0025] In the description of this application, it should be noted that the terms "inner" and "outer" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, or the orientations or positional relationships in which the product of this application is typically placed when in use. These terms are intended solely to facilitate the description of this application and simplify the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this application. Furthermore, the terms "first" and "second" and the like are used solely for distinction and should not be construed as indicating or implying relative importance.

[0026] It should also be noted that when the word "layer" is mentioned in the description of this application, it should be understood that the meaning of "layer" includes, but is not limited to, a single layer or two or more layers that are connected or have different characteristics (color, material, etc.). For those skilled in the art, the specific meaning of the above terms in this application can be understood according to the specific circumstances.

[0027] Example

[0028] The present application provides a face shaping headgear with soft support, see Figure 1 and Figure 2 , comprising a headgear body 1 and a first soft support 2 that covers the cheeks and chin. It is understood that for a facial shaping headgear product, the headgear body 1 should be elastically deformable to accommodate heads of varying sizes and shapes; the first soft support 2 is also elastically deformable, but needs to provide support and tightening force relative to the headgear body 1 to achieve a facial shaping effect.

[0029] For example, the first soft support 2 can be regarded as a strip or a belt according to its width. When the width is smaller, it is regarded as a strip, and when the width is larger, it is regarded as a belt. There is no essential difference.

[0030] Specifically, the first soft support 2 provides elastic support and shaping force, applying significant elastic force to the face through its own tensile and / or flexural stiffness. The first soft support 2 includes at least two segments with different tensile or flexural stiffnesses. By configuring different locations of the first soft support with segments having different elastic properties, the shaping and support requirements of different locations of the facial shaping headgear can be adapted. It will be understood that the first soft support is generally a thin layer structure, with tensile stiffness used to characterize tensile deformation and flexural stiffness used to characterize bending deformation that conforms to facial contours.

[0031] For example, see Figure 3The first soft support 2 is provided with three segments, including a left segment 21 corresponding to the left cheek, a right segment 23 corresponding to the right cheek, and a middle segment 22 corresponding to the chin connecting the left segment and the right segment. The tensile stiffness of the left segment 21, the middle segment 22 and the right segment 23 are not exactly the same. The tensile stiffness of the left segment 21 and the tensile stiffness of the right segment 23 are both greater than the tensile stiffness of the middle segment 22. Similarly, the bending stiffness of the left segment 21 and the bending stiffness of the right segment 23 are both greater than the bending stiffness of the middle segment 22, so that the left segment 21 and the right segment 23 are used to provide support and shaping, and the middle segment 22 weakens the restraint on the chin. Of course, it is understandable that other segmentation forms can also be used. For example, the first soft support is divided into N1, N2, ... Nj, a total of j segments along the length direction, j ≥ 2; the tensile stiffness of the j segments changes with the position of the segments, and / or the bending stiffness of the j segments changes with the position of the segments. By setting different tensile stiffness and / or bending stiffness in different segments, different support capacity distributions and deformation capacity distributions can be obtained to adapt to the support requirements or deformation requirements of different facial positions.

[0032] It is understandable that the first soft support in the embodiment of the present application can be a prefabricated product, which is attached to the headgear body by sewing or gluing; or it can be a 3D printed product directly added to the headgear body.

[0033] In an optional embodiment, the first soft support is a 3D printed object located on the inner surface or outer surface of the headgear body 1.

[0034] In an optional embodiment, the headgear body 1 is a single-layer fabric or a multi-layer fabric. When the headgear body 1 is a multi-layer fabric, the first soft support can be a 3D printed object set on the surface, or a 3D printed object set between the layers of the multi-layer fabric.

[0035] In an alternative embodiment, see Figure 4 The facial shaping headgear provided in the embodiment of the present application also includes a second soft support 3, which is correspondingly arranged on the head. The two ends of the second soft support 3 are respectively connected to the two ends of the first soft support 2, and the second soft support 3 is set as an elastic pulling strap, so as to facilitate the transmission of the force generated by the facial shaping to the head.

[0036] In an optional embodiment, the first soft support 2 includes an elastomeric inner core and a covering wrapping the elastomeric inner core; the elastomeric inner core is configured as a segmented structure, so as to have two or more segments with different tensile stiffness and / or different bending stiffness.

[0037] The first soft support 2 may further include: a strip-shaped elastic inner core, and a covering member covering the elastic inner core; the bending stiffness of the elastic inner core against bending is set to be directional anisotropic, the bending stiffness of the elastic inner core against bending is set to be segmentally anisotropic, and the tensile stiffness of the elastic inner core against stretching is set to be segmentally anisotropic;

[0038] The directional anisotropy of the bending stiffness mentioned above means that the inner core of the elastomer has different bending stiffness against bending in different radial directions along any cross section of the inner core of the elastomer; the directional anisotropy of the bending stiffness can be achieved by adopting an anisotropic cross section for the inner core of the elastomer.

[0039] The elastomeric inner core is provided with j segments, N1, N2, ... Nj, along the core axis, where j ≥ 2. The bending stiffness of each of the j segments in direction one varies with the location of the segment, and direction one is used to characterize the direction in which the elastomeric inner core bends and deforms to conform to the facial contour. Furthermore, the bending stiffness of each of the j segments in direction two varies with the location of the segment, thereby providing different mechanical support / shaping effects at the location of the segment. Directions one and two are different radial directions of the elastomeric inner core along any cross section of the axial direction of the elastomeric inner core.

[0040] The first direction is used to characterize the direction in which the inner core of the elastic body bends and deforms to fit the contour of the face, so that: in the direction of fitting the contour of the face, the inner core of the elastic body is easier to bend to fit the contour of the face, and in the second direction, the inner core of the elastic body is not easy to bend to provide support / shaping effect for facial muscles and fat tissues.

[0041] The above-mentioned segmented anisotropy of bending stiffness means that the inner core of the elastomer has different bending stiffnesses against bending in different segments along the axial direction of the inner core of the elastomer; or the inner core of the elastomer has different bending stiffnesses against bending at different positions along the axial direction of the inner core of the elastomer; the segmented anisotropy of bending stiffness can be achieved by adopting different anisotropic cross-sections in the inner core of the elastomer in different segments.

[0042] The above-mentioned segmented anisotropy of tensile stiffness means that the inner core of the elastomer has different tensile stiffnesses against stretching in different segments along the axial direction of the inner core of the elastomer; or the inner core of the elastomer has different tensile stiffnesses against stretching at different points along the axial direction of the inner core of the elastomer; the segmented anisotropy of tensile stiffness can be achieved by adopting different axial diameters for the inner core of the elastomer.

[0043] See also Figure 5The covering member includes a first covering layer 41 and a second covering layer 42, with the inner elastomeric core 43 disposed between the first and second covering layers 41, 42. The first covering layer 41 is configured as a film layer bonded to the headgear body, while the second covering layer is configured as a silicone layer. An adhesive is disposed between the film layer and the silicone layer, bonding and securing the film layer and the silicone layer to each other and encapsulating the inner elastomeric core 43. For the silicone layer, the adhesive is preferably a silicone bridging agent, providing stable bonding and a longer lifespan. To enhance wearing comfort, a flocking layer may also be provided outside the silicone layer.

[0044] For example, when the first soft support is a multi-layer structure, one of the layers can be set to be discontinuous, so that the overall mechanical properties of the first soft support can achieve a segmented effect. It is understandable that the soft support can achieve segmentation of mechanical properties by relying on physical defects, or by relying on different materials at different positions, or by relying on different widths at different positions, or by relying on different thicknesses at different positions, or by relying on different cross-sections at different positions. Furthermore, mechanical properties are not limited to tensile stiffness to resist tensile deformation, but can also include bending stiffness to resist bending deformation, and memory capacity to measure deformation recovery.

[0045] In an optional embodiment, at least one elastic segment within the inner core of the elastomer is configured as an elastic memory segment. This elastic memory segment possesses a memory property based on its elasticity. The segment that carries the support or shaping function is configured as an elastic memory segment, allowing it to return to its original shape after multiple deformations, thereby extending the product's service life. For example, the middle segment 22 is configured as an elastic memory segment to withstand deformation, maintaining the shape of the facial shaping headgear after repeated use, thereby extending its service life.

[0046] In an optional embodiment, the first soft support provided in the embodiment of the present application is further provided with at least one segment with directionally anisotropic bending stiffness. In this segment, the bending stiffness of the first soft support in direction one is set to be less than the bending stiffness of the inner core of the elastomer in direction two. Direction one is used to characterize the direction in which the first soft support bends and deforms to fit the contour of the wearer's face, so that: in the direction of fitting the contour of the wearer's face, the first soft support is easier to bend to fit the contour of the wearer's face, and in direction two, the first soft support is less likely to bend to provide support and shaping. According to the distribution of facial muscles and fat tissue of the user, direction two can be any direction except direction one. Exemplarily, the shape of the cross section of the first soft support can adopt an anisotropic cross section, such as an anisotropic cross section with long and short sides, such as a dumbbell, rectangle, or I-shaped cross section.

[0047] The present application also provides a face-shaping headgear with partitioned soft supports, comprising a headgear body 1 and a first soft support 2 correspondingly arranged at the lower edge of the buttocks. The first soft support 2 includes at least two partitions with different tensile stiffnesses; by setting different positions of the first soft support as partitions with different elastic properties, the deformation and support requirements of different positions of the face-shaping headgear can be adapted. For example, the first soft support 2 can be provided with a front cheek partition and a back cheek partition, or an upper cheek partition and a lower cheek partition for the cheek position. By setting different tensile stiffnesses or bending stiffnesses in different partitions, the shaping and support requirements of different positions of the face-shaping headgear can be adapted.

[0048] The above description is only a preferred embodiment of the present invention and does not limit the present invention in any form or substance. It should be pointed out that ordinary technicians in this technical field can make several improvements and supplements without departing from the present invention, and these improvements and supplements should also be regarded as the scope of protection of the present invention. Any technician familiar with this profession can also use the technical contents disclosed in the various implementation methods of the above embodiments to combine them in a non-conflicting manner to obtain new embodiments without departing from the spirit and scope of the present invention. The equivalent changes, modifications and evolutions made thereby are all equivalent embodiments of the present invention; at the same time, any equivalent changes, modifications and evolutions made to the above embodiments based on the essential technology of the present invention are still within the scope of the technical solution of the present invention.

Claims

1. A face shaping headgear with soft support, characterized in that: The headgear comprises a headgear body and a first soft support covering the cheeks and chin of the face, wherein the first soft support comprises at least two segments with different tensile stiffness, or at least two partitions with different tensile stiffness, or at least two segments with different bending stiffness.

2. A face shaping headgear with soft support according to claim 1, characterized in that: The first soft support includes: an elastomeric inner core, and a covering covering the elastomeric inner core; the bending stiffness of the elastomeric inner core against bending is set to be directional anisotropic, and / or the bending stiffness of the elastomeric inner core against bending is set to be segmentally anisotropic, and / or the tensile stiffness of the elastomeric inner core against stretching is set to be segmentally anisotropic.

3. The face shaping headgear with soft support according to claim 1, characterized in that: The first soft support is provided with j segments N1, N2, ... Nj along the length direction, j ≥ 2; the tensile stiffness of the j segments changes with the position of the segments, and / or the bending stiffness of the j segments changes with the position of the segments.

4. The face shaping headgear with soft support according to claim 1, characterized in that: The first soft support is provided on the inner surface, or the outer surface, or the internal 3D printed object of the headgear body.

5. The face shaping headgear with soft support according to claim 1, characterized in that: The first soft support is provided with at least one segment with directionally anisotropic bending stiffness.

6. The face shaping headgear with soft support according to claim 1, characterized in that: It also includes a second soft support, which is correspondingly arranged on the head, and two ends of the second soft support are respectively connected or not connected to two ends of the first soft support.

7. The face shaping headgear with soft support according to claim 1, characterized in that: The first soft support includes a left segment corresponding to the left cheek, a right segment corresponding to the right cheek, and a middle segment corresponding to the chin connecting the left segment and the right segment. The tensile stiffness of the left segment is greater than the tensile stiffness of the middle segment, and the tensile stiffness of the right segment is greater than the tensile stiffness of the middle segment.

8. The face shaping headgear with soft support according to claim 1, characterized in that: The first soft support includes a left segment corresponding to the left cheek, a right segment corresponding to the right cheek, and a middle segment corresponding to the chin connecting the left segment and the right segment. The bending stiffness of the left segment is greater than the bending stiffness of the middle segment, and the bending stiffness of the right segment is greater than the bending stiffness of the middle segment.

9. The face shaping headgear with soft support according to claim 1, characterized in that: The first soft support is provided with at least one elastic memory segment.

10. The face shaping headgear with soft support according to claim 2, characterized in that: The covering part includes a first covering layer and a second covering layer, and the inner core of the elastomer is arranged between the first covering layer and the second covering layer; the first covering layer is set as a film layer, and the second covering layer is set as a silicone layer; an adhesive is provided between the film layer and the silicone layer, and the adhesive is set as a silicone bridging agent; a flocking layer is also provided outside the silicone layer.