Brassiere structure with floating soft bearing

By combining a floating soft support structure with breathable mesh fabric, the bra achieves flexible and adaptive support during exercise, improving wearing comfort and support accuracy, and solving the problems of comfort and limited support in traditional bras.

CN224206205UActive Publication Date: 2026-05-08GUANGDONG SIKAIWEI TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG SIKAIWEI TECH CO LTD
Filing Date
2025-04-25
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Traditional bras use rigid materials for their support structure, which makes them uncomfortable to wear. Wearing them for a long time may lead to poor blood circulation and skin friction damage. Furthermore, they cannot adapt to changes during exercise, resulting in poor comfort and support.

Method used

It adopts a floating soft support structure, including curved silicone strips or shaping strips, which can dynamically adjust the support angle with chest movement through a layered design. Combined with breathable mesh fabric and shoulder strap linkage support system, it provides flexible and adaptive support.

Benefits of technology

It improves wearing comfort and support accuracy, reduces pressure, enhances breathability and sports adaptability, and solves the shortcomings of traditional rigid support.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224206205U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of corsage, in particular to a corsage structure with a floating soft bearing, which comprises a corsage main body, the corsage main body comprises a middle base body used for supporting the chest of a user, the middle base body comprises a first fabric layer, a bearing layer and a second fabric layer, and the first fabric layer and the second fabric layer jointly clamp the bearing layer; the supporting layer comprises a third fabric layer and an arc-shaped supporting assembly which is arranged on the third fabric layer and used for supporting the chest of the user, the two sides of the lower portion of the third fabric layer are fixed to the first fabric layer and the second fabric layer respectively, and the upper portion of the third fabric layer is arranged between the first fabric layer and the second fabric layer in a suspended mode. According to the bra structure, through the design that the first fabric layer and the second fabric layer clamp the bearing layer, the characteristic that the lower portion of the third fabric layer is fixed and the upper portion of the third fabric layer is suspended is utilized, the arc-shaped bearing assembly can dynamically adjust the supporting angle along with the movement of the chest, flexible self-adaptive bearing is achieved, and the wearing comfort and the supporting accuracy are improved.
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Description

Technical Field

[0001] This utility model relates to the field of bra technology, and in particular discloses a bra structure with floating soft support. Background Technology

[0002] Traditional bras often use rigid steel wires or fixed shaping materials for their support structure. While they can provide basic support, they have the following significant drawbacks: insufficient wearing comfort; rigid support components (such as steel wires) can easily cause pressure on the chest and ribs; prolonged wear may lead to poor blood circulation and skin friction damage; and in sports or dynamic scenarios, the fixed structure cannot adaptively adjust to the body's movement trajectory, further reducing comfort. Utility Model Content

[0003] In order to overcome the shortcomings and deficiencies of the existing technology, the purpose of this utility model is to provide a bra structure with floating soft support.

[0004] To achieve the above objectives, this utility model provides a bra structure with floating soft support, comprising a bra body, the bra body including a central base for supporting the user's chest, the central base including a first fabric layer, a support layer and a second fabric layer, the first fabric layer and the second fabric layer together sandwiching the support layer; the support layer includes a third fabric layer and an arc-shaped support component disposed on the third fabric layer for supporting the user's chest, the lower two sides of the third fabric layer are fixed to the first fabric layer and the second fabric layer respectively, and the upper part of the third fabric layer is suspended between the first fabric layer and the second fabric layer.

[0005] This bra structure utilizes a design where the first and second fabric layers sandwich the support layer. The third fabric layer, with its fixed lower portion and suspended upper portion, allows the curved support components (such as curved silicone strips or shaping strips) to dynamically adjust their support angle according to chest movement, achieving flexible, adaptive support and improving wearing comfort and support accuracy. The breathable mesh third fabric layer enhances overall breathability, preventing stuffiness. In practice, the lower part of the support layer is fixedly connected to the first and second fabric layers, while the upper part is suspended, creating a movable gap. The curved support components are fixed to the third fabric layer and distributed below the cups. Through this layered structure, stable support is provided while allowing the upper part of the support layer to float flexibly, adapting to changes in the chest curve during different movements and reducing the pressure felt by traditional rigid support.

[0006] The arc-shaped support component is an arc-shaped silicone strip or an arc-shaped molding strip.

[0007] The curved support components utilize curved silicone strips or curved shaping strips. Their curved structure closely conforms to the physiological curve of the lower circumference of the human breast, providing uniform and gentle support, avoiding the pressure of traditional rigid support. Simultaneously, the elasticity of silicone or the memory properties of the shaping strip dynamically adapts to breast movement, enhancing wearing comfort and shaping effect. In practice, the curved silicone strip can be fixed to the third fabric layer by adhesive or sewing. Its surface can be designed with honeycomb-like micro-protrusions to enhance friction and prevent displacement. The curved shaping strip can form a curved cavity with inner and outer structural layers, filled with silicone liquid and sealed through a heat-pressing process. The fluid flow characteristics further optimize the dynamic response of the support. Two sets of curved components are symmetrically positioned below the cups, spaced 3-5cm apart, with a larger curvature on the side closer to the sternum, precisely matching the inner contour of the breast for differentiated support.

[0008] The arc-shaped molding strip includes a first structural layer and a second structural layer. The first structural layer and the second structural layer together form an arc-shaped cavity, which is filled with silicone liquid.

[0009] The curved shaping strip forms an arc-shaped cavity through the first and second structural layers and is filled with liquid silicone. Utilizing the fluidity and flexible support properties of liquid silicone, it dynamically conforms to the changing curves of the chest, distributing pressure more evenly than solid support materials and reducing localized pressure. Simultaneously, the liquid filling structure gives the shaping strip adaptive deformation capabilities, improving comfort and support stability during exercise. In practice, the first structural layer can be made of elastic fiber fabric, and the second structural layer uses memory molding fabric. The edges are sealed using a heat-pressing process, and reinforcing ribs are added to prevent leakage. The arc-shaped cavity has a teardrop or hemispherical cross-section to optimize fluid distribution.

[0010] The third fabric layer has a breathable mesh structure, and the arc-shaped support component is a soft rubber strip injected onto the third fabric layer.

[0011] The third fabric layer uses a breathable mesh structure. Its porous nature can significantly improve the air circulation efficiency of the bra's central base, quickly expelling heat and moisture generated during wear. This avoids the stuffiness caused by traditional multi-layered fabrics, making it especially suitable for summer or sports occasions and effectively improving wearing comfort.

[0012] The arc-shaped support assembly is provided in two sets, and the two sets of arc-shaped support assemblies are respectively set below the two breast cups of the central base.

[0013] Two sets of arc-shaped support components are symmetrically positioned below the bra cups, providing bidirectional symmetrical support to the key support area under the breasts. This precisely supports the bottom of the breasts, distributes the weight of the breasts, and avoids displacement or sagging caused by uneven force on one side. At the same time, the synergistic effect of the two structures enhances the overall support stability.

[0014] The outer edges of the first and second structural layers are connected by a hot-pressing process to form the arc-shaped cavity, and a sealing reinforcing rib is provided at the hot-pressing connection.

[0015] The first and second structural layers are connected by a hot-pressing process to form an arc-shaped cavity and are equipped with sealing and reinforcing ribs. This ensures the sealing performance and structural strength of the arc-shaped cavity, prevents leakage of the filled silicone liquid, and improves the overall stability of the arc-shaped molding strip.

[0016] In the two sets of arc-shaped support components, the arc of the arc-shaped support component closer to the sternum is greater than the arc of the arc-shaped support component farther from the sternum, and the distance between the two sets of arc-shaped support components is 3-5cm.

[0017] The two sets of curved support components feature a differentiated design with a larger arc on the inner side and a smaller arc on the outer side, with a spacing of 3-5cm. This allows for precise adaptation to the different physiological curves of the inner and outer sides of the breast. The inner breast contour, closer to the sternum, has a steeper contour, and the curved support component with a larger arc (e.g., 120°-150°) provides stronger upward support, preventing the breasts from sagging inward or spreading outward. The outer area, further away from the sternum, has a gentler arc, and the component with a smaller arc (e.g., 100°-130°) focuses on stable shaping and avoids excessive compression. The 3-5cm spacing ensures that the two sets of components work together to form a complete lower support surface, while avoiding excessively close spacing that could lead to concentrated local pressure or excessively far spacing that could weaken the continuity of support. In practice, the curvature difference of different breast shapes can be accurately calculated through ergonomic data. Curved silicone strips or liquid-filled shaping strips are then pressed using molds to create a gradient support structure with "strong inside and stable outside" under the cups. This structure dynamically conforms to the movement trajectory of the breasts, improving the accuracy and comfort of the support.

[0018] The main body of the bra has elastic shoulder straps on both sides. The shoulder straps are embedded with wave-shaped support strips that match the curvature of the arc-shaped support component. The ends of the support strips are connected to the ends of the arc-shaped support component through flexible connecting pieces.

[0019] The elastic shoulder straps on both sides of the main body of the bra have embedded wave-shaped support strips that match the curvature of the arc-shaped support component. The ends of these strips are connected to the arc-shaped support component via flexible connecting pieces, which can create a linkage support system of "shoulder strap-arc-shaped support component". The wave-shaped support strips deform elastically with shoulder movement and transmit traction force to the arc-shaped support component synchronously through the flexible connecting pieces, forming a dynamic lifting path from the shoulder to the underbust, dispersing the pressure of the chest's weight on the shoulder, while enhancing the stability of the arc-shaped support component and avoiding the problem of traditional shoulder straps and underbust support becoming disconnected.

[0020] The surface of the arc-shaped silicone strip is provided with honeycomb-shaped micro-protrusions, with a spacing of 0.8-1.2mm between adjacent micro-protrusions and a height difference of 0.1-0.3mm, forming a multi-directional friction-enhancing structure.

[0021] The honeycomb-shaped micro-protrusions on the surface of the curved silicone strip, with a spacing of 0.8-1.2mm and a height difference of 0.1-0.3mm, form a multi-directional friction-enhancing structure, which can significantly improve the contact friction between the silicone strip and the skin or fabric, preventing the curved support component from shifting or sliding during wear, and maintaining stable support, especially in sports scenarios.

[0022] The third fabric layer has elastic protrusions at the part that contacts the arc-shaped support component. The height of the elastic protrusions is 2-5mm, and the elastic protrusions are made of the same breathable mesh structure material as the third fabric layer. Flexible gel is filled inside the elastic protrusions.

[0023] The third fabric layer has elastic protrusions of 2-5mm height at the contact point with the curved support component. These protrusions are made of breathable mesh material and filled with flexible gel. The protrusions enhance local support, while the gel's flexibility further cushions the direct pressure of the curved support component on the chest, improving wearing comfort. Simultaneously, the breathable mesh material ensures airflow in the protruding area, preventing localized stuffiness. In practice, the elastic protrusions are integrally molded with the third fabric layer using a heat-pressing process, and the gel is made of medical-grade silicone or hydrogel.

[0024] The beneficial effects of this utility model are as follows: This utility model, through a layered floating structure design, utilizes the characteristics of a fixed lower part and a suspended upper part of the support layer, allowing the arc-shaped silicone strip or shaping strip to dynamically adjust the support angle with chest movement. Combined with the fluidity of liquid silicone, the air circulation of breathable mesh fabric, and the shoulder strap linkage support system, a flexible adaptive support system is formed. This achieves synergistic optimization of precise support and comfortable wear. Compared with traditional rigid support, it significantly improves support flexibility, wearing comfort, and sports adaptability, solving the technical problems of strong pressure, poor breathability, and single support. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0026] Figure 2 This is an exploded view of the central substrate of this utility model;

[0027] Figure 3 This is a schematic diagram of the supporting layer of this utility model;

[0028] Figure 4 This is a cross-sectional view of the arc-shaped support component of this utility model.

[0029] The reference numerals in the figures include:

[0030] 1. Central substrate; 3. First fabric layer; 4. Support layer; 5. Second fabric layer; 6. Third fabric layer; 7. Arc-shaped support component; 8. First structural layer; 9. Second structural layer; 11. Silicone liquid; 12. Elastic shoulder strap; 13. Support strip; 14. Elastic protrusion; 15. Upper part; 16. Lower part. Detailed Implementation

[0031] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to embodiments and accompanying drawings. The content mentioned in the embodiments is not intended to limit the present invention.

[0032] Please see Figures 1 to 4 As shown, the present invention discloses a bra structure with floating soft support, comprising a bra body, the bra body including a central base 1 for supporting the user's chest, the central base 1 including a first fabric layer 3, a support layer 4 and a second fabric layer 5, the first fabric layer 3 and the second fabric layer 5 together holding the support layer 4; the support layer 4 including a third fabric layer 6 and an arc-shaped support component 7 disposed on the third fabric layer 6 for supporting the user's chest, the two sides of the lower part 16 of the third fabric layer 6 being fixed to the first fabric layer 3 and the second fabric layer 5 respectively, and the upper part 15 of the third fabric layer 6 being suspended between the first fabric layer 3 and the second fabric layer 5.

[0033] This bra structure utilizes a design where the first and second fabric layers sandwich the support layer 4. By taking advantage of the fixed lower part 16 and suspended upper part 15 of the third fabric layer 6, the curved support components 7 (such as curved silicone strips or shaping strips) can dynamically adjust their support angle according to chest movement, achieving flexible adaptive support and improving wearing comfort and support accuracy. The breathable mesh third fabric layer 6 enhances overall breathability, preventing stuffiness. In practice, the lower part 16 of the support layer 4 is fixedly connected to the first and second fabric layers, while the upper part 15 is suspended, creating a movable gap. The curved support components 7 are fixed to the third fabric layer 6 and distributed below the cups. Through this layered structure, stable support is provided while allowing the upper part 15 of the support layer 4 to float flexibly, adapting to changes in the chest curve under different movement conditions and reducing the pressure of traditional rigid support.

[0034] The arc-shaped support component 7 is an arc-shaped silicone strip or an arc-shaped molding strip.

[0035] The curved support component 7 uses curved silicone strips or curved shaping strips. Its curved structure closely conforms to the physiological curve of the lower part of the human breast, providing uniform and gentle support and avoiding the pressure of traditional rigid support. At the same time, it utilizes the elasticity of silicone or the memory properties of the shaping strip to dynamically adapt to breast movements, improving wearing comfort and shaping effect. In practice, the curved silicone strip can be fixed to the third fabric layer 6 by adhesive or sewing. Its surface can be designed with honeycomb-shaped micro-protrusions to enhance friction and prevent displacement. The curved shaping strip can form a curved cavity by inner and outer structural layers. The curved cavity is filled with silicone liquid 11 and sealed by hot pressing. The fluid flow characteristics are used to further optimize the dynamic response of the support. The two sets of curved components are symmetrically set below the cup, with a spacing of 3-5cm. The curvature is larger on the side closer to the sternum, accurately matching the inner contour of the breast and achieving differentiated support.

[0036] The arc-shaped molding strip includes a first structural layer 8 and a second structural layer 9. The first structural layer 8 and the second structural layer 9 together form an arc-shaped cavity, which is filled with silicone liquid 11.

[0037] The arc-shaped shaping strip forms an arc-shaped cavity through the first structural layer 8 and the second structural layer 9, which is filled with liquid silicone 11. Utilizing the fluidity and flexible support properties of liquid silicone, it can dynamically conform to the changes in the curve of the chest. Compared with solid support materials, it distributes pressure more evenly, reducing localized pressure. At the same time, the liquid filling structure gives the shaping strip the ability to adapt to deformation, improving comfort and support stability during exercise. In specific implementation, the first structural layer 8 can be made of elastic fiber fabric, and the second structural layer 9 can be made of memory shaping fabric. The edges are sealed by a hot-pressing process, and sealing reinforcement ribs are set to prevent leakage. The cross-section of the arc-shaped cavity is teardrop-shaped or hemispherical to optimize fluid distribution.

[0038] The third fabric layer 6 has a breathable mesh structure, and the arc-shaped support component 7 is a soft rubber strip injected onto the third fabric layer 6.

[0039] The third fabric layer 6 adopts a breathable mesh structure. Its porous characteristics can significantly improve the air circulation efficiency of the base 1 in the middle of the bra, quickly expel the heat and moisture generated during wear, and avoid the stuffiness caused by traditional multi-layer fabric stacking. It is especially suitable for summer or sports scenarios and effectively improves wearing comfort.

[0040] The arc-shaped support component 7 is provided in two sets, and the two sets of arc-shaped support components 7 are respectively located below the two bra cups of the central base 1.

[0041] Two sets of arc-shaped support components 7 are symmetrically arranged below the bra cups, which can provide bidirectional symmetrical support for the key support area under the breasts, accurately support the bottom of the breasts, distribute the weight of the breasts, and avoid displacement or sagging caused by uneven force on one side. At the same time, the synergistic effect of the two sets of structures enhances the overall support stability.

[0042] The outer edges of the first structural layer 8 and the second structural layer 9 are connected by a hot pressing process to form the arc-shaped cavity, and a sealing reinforcing rib is provided at the hot pressing connection.

[0043] The first structural layer 8 and the second structural layer 9 are connected by a hot pressing process to form an arc-shaped cavity and are equipped with sealing reinforcing ribs. This ensures the sealing performance and structural strength of the arc-shaped cavity, prevents the filling silicone liquid 11 from leaking out, and improves the overall stability of the arc-shaped molding strip.

[0044] In the two sets of arc-shaped support components 7, the arc of the arc-shaped support component 7 closer to the sternum is greater than the arc of the arc-shaped support component 7 farther from the sternum, and the distance between the two sets of arc-shaped support components 7 is 3-5cm.

[0045] The two sets of curved support components 7 employ a differentiated design with a larger inner arc and a smaller outer arc, with a spacing of 3-5cm. This allows for precise adaptation to the different physiological curves of the inner and outer sides of the breast. The inner breast contour, closer to the sternum, has a steeper contour, so the curved support component 7 with a larger arc (e.g., 120°-150°) provides stronger upward support, preventing the breasts from sagging inward or spreading outward. The outer region, further away from the sternum, has a gentler arc, so the component with a smaller arc (e.g., 100°-130°) focuses on stable shaping and avoids excessive compression. The 3-5cm spacing ensures that the two sets of components work together to form a complete lower support surface, while avoiding excessively close spacing that could lead to concentrated local pressure or excessively far spacing that could weaken the continuity of support. In practice, the curvature difference of different breast shapes can be accurately calculated through ergonomic data. Curved silicone strips or liquid-filled shaping strips are then pressed using molds to create a gradient support structure with "strong inside and stable outside" under the cups. This structure dynamically conforms to the movement trajectory of the breasts, improving the accuracy and comfort of the support.

[0046] The main body of the bra has elastic shoulder straps 12 on both sides. The shoulder straps are embedded with wave-shaped support strips 13 that match the curvature of the arc-shaped support component 7. The ends of the support strips 13 are connected to the ends of the arc-shaped support component 7 through flexible connecting pieces.

[0047] The elastic shoulder straps 12 on both sides of the main body of the bra have embedded wave-shaped support strips 13 that match the curvature of the arc-shaped support component 7. The ends of the support strips are connected to the arc-shaped support component 7 through flexible connecting pieces, which can form a linkage support system of "shoulder straps-arc-shaped support component 7". The wave-shaped support strips 13 deform elastically with the movement of the shoulder and transmit the traction force to the arc-shaped support component 7 through the flexible connecting pieces, forming a dynamic lifting path from the shoulder to the underbust, dispersing the pressure of the chest weight on the shoulder, and enhancing the stability of the arc-shaped support component 7, avoiding the problem of the traditional shoulder straps and underbust support detaching.

[0048] The surface of the arc-shaped silicone strip is provided with honeycomb-shaped micro-protrusions, with a spacing of 0.8-1.2mm between adjacent micro-protrusions and a height difference of 0.1-0.3mm, forming a multi-directional friction-enhancing structure.

[0049] The honeycomb-shaped micro-protrusions on the surface of the curved silicone strip are designed with a spacing of 0.8-1.2mm and a height difference of 0.1-0.3mm to form a multi-directional friction enhancement structure, which can significantly improve the contact friction between the silicone strip and the skin or fabric, prevent the curved support component 7 from shifting or sliding during wear, and maintain stable support, especially in sports scenarios.

[0050] The third fabric layer 6 has an elastic protrusion 14 at the part that contacts the arc-shaped support component 7. The height of the elastic protrusion 14 is 2-5mm, and the elastic protrusion 14 adopts the same breathable mesh structure material as the third fabric layer 6. The elastic protrusion 14 is filled with flexible gel.

[0051] The third fabric layer 6 has a 2-5mm high elastic protrusion 14 at the contact point with the curved support component 7. This protrusion is made of breathable mesh material and filled with flexible gel. The protrusion structure enhances local support, and the gel's flexibility further cushions the direct pressure of the curved support component 7 on the chest, improving wearing comfort. Simultaneously, the breathable mesh material ensures airflow in the protruding area, preventing localized stuffiness. In practice, the elastic protrusion 14 is integrally molded with the third fabric layer 6 using a hot-pressing process, and the gel is made of medical-grade silicone or hydrogel.

[0052] The rest of this embodiment is the same as that in Embodiment 1. Features not explained in this embodiment are explained using the methods in Embodiment 1, and will not be repeated here. The above content is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation and application scope based on the idea of ​​this utility model. The content of this specification should not be construed as a limitation of this utility model.

Claims

1. A bra structure with floating soft support, characterized in that: The bra body includes a central base (1) for supporting the user's chest. The central base (1) includes a first fabric layer (3), a support layer (4), and a second fabric layer (5). The first fabric layer (3) and the second fabric layer (5) together hold the support layer (4). The support layer (4) includes a third fabric layer (6) and an arc-shaped support component (7) disposed on the third fabric layer (6) for supporting the user's chest. The lower part (16) of the third fabric layer (6) is fixed to the first fabric layer (3) and the second fabric layer (5) on both sides respectively. The upper part (15) of the third fabric layer (6) is suspended between the first fabric layer (3) and the second fabric layer (5).

2. The bra structure with floating soft support according to claim 1, characterized in that: The arc-shaped support component (7) is an arc-shaped silicone strip or an arc-shaped molding strip.

3. The bra structure with floating soft support according to claim 1, characterized in that: The arc-shaped support component (7) includes a first structural layer (8) and a second structural layer (9). The first structural layer (8) and the second structural layer (9) together form an arc-shaped cavity, which is filled with silicone liquid (11).

4. The bra structure with floating soft support according to claim 1, characterized in that: The third fabric layer (6) is a breathable mesh structure, and the arc-shaped support component (7) is a soft rubber strip injected onto the third fabric layer (6).

5. A bra structure with floating soft support according to claim 1, characterized in that: The arc-shaped support component (7) is provided in two sets, and the two sets of arc-shaped support components (7) are respectively located below the two breast cups of the central base (1).

6. A bra structure with floating soft support according to claim 3, characterized in that: The outer edges of the first structural layer (8) and the second structural layer (9) are connected by a hot pressing process to form the arc-shaped cavity, and a sealing reinforcing rib is provided at the hot pressing connection.

7. A bra structure with floating soft support according to claim 1, characterized in that: In the two sets of arc-shaped support components (7), the arc of the arc-shaped support component (7) closer to the sternum is greater than the arc of the arc-shaped support component (7) further away from the sternum, and the distance between the two sets of arc-shaped support components (7) is 3-5cm.

8. A bra structure with floating soft support according to claim 1, characterized in that: The main body of the bra is provided with elastic shoulder straps (12) on both sides. The shoulder straps are embedded with support strips (13) that match the curvature of the arc support component (7). The end of the support strip (13) is connected to the end of the arc support component (7) through a flexible connecting piece.

9. A bra structure with floating soft support according to claim 2, characterized in that: The surface of the arc-shaped silicone strip is provided with honeycomb-shaped micro-protrusions.

10. A bra structure with floating soft support according to claim 1, characterized in that: The third fabric layer (6) has an elastic protrusion (14) at the part that contacts the arc-shaped support component (7), and the elastic protrusion (14) is made of the same breathable mesh structure material as the third fabric layer (6), and is filled with flexible gel.