ACF cushioning underwear

By using the surface, middle and inner layers of the ACF cushioning bra, combined with the design of breathable holes and connecting ribs, the problem of insufficient breathability and shock absorption in existing sports bras is solved, achieving efficient cushioning and comfortable support, and improving the wearing comfort during exercise.

CN224069813UActive Publication Date: 2026-04-03FOSHAN LUOKEXIXI CLOTHING TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing sports bras struggle to provide support and shock absorption while maintaining breathability, thus reducing user comfort during exercise.

Method used

It adopts a surface layer, middle layer and inner layer structure. The middle layer uses ACF artificial cartilage biomimetic energy-absorbing material, combined with the design of ventilation holes and connecting ribs, and is fixed and connected by elastic film to form a chest support, chest lift and chest binding, which enhances the connection firmness and cushioning effect.

Benefits of technology

It achieves the goal of maintaining breathability while reducing vibration amplitude, minimizing impact, improving comfort, protecting the chest, enhancing connection strength, and reducing the feeling of restriction, making it suitable for daily sports use.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224069813U_ABST
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Abstract

The ACF cushioning underwear comprises a surface layer, a middle layer and an inner layer, and the middle layer is arranged between the surface layer and the inner layer. The middle layer comprises a breast pad connected with the surface layer, air holes A are formed in cup pads of the breast pad, air holes B are formed in beltloop parts of the breast pad, air holes C are formed in the heart-shaped part of the breast pad, and a breast supporting part is arranged in an inner cavity of the air holes A; the connecting firmness among the surface layer, the middle layer and the inner layer is improved through the bearing layer, the anti-tearing effect is achieved, the overall thickness of the ACF cushioning underwear can be reduced through the middle layer, meanwhile, excellent energy absorption performance is achieved, the vibration amplitude is reduced, and the service life of the ACF cushioning underwear is prolonged. When the ACF cushioning underwear is impacted by external force, the interior of the middle layer disperses or absorbs energy generated in the impact process through hysteretic deformation, the purpose of reducing impact force as much as possible is achieved, the breasts of a user are well buffered, certain buffering can be guaranteed, the constraint feeling is reduced, the comfort level is improved, and the comfort level of the user is improved. And daily sports use is facilitated.
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Description

Technical Field

[0001] This utility model relates to the field of sports underwear technology, and in particular to an ACF cushioning underwear. Background Technology

[0002] Sports bras are a type of underwear primarily designed for athletic wear, designed to make the wearer appear energetic and vibrant.

[0003] Patent document CN222194180U discloses a sports bra comprising an inner layer, an outer layer, and a liner layer. The liner layer is located between the inner and outer layers and has ventilation holes. At least one air-guiding channel is provided on the side of the liner layer facing the inner layer, and the inner wall of the air-guiding channel is in close contact with the inner layer. The ventilation holes and air-guiding channels facilitate the rapid dissipation of heat and sweat from the bra. The air-guiding channels create microchannels between the bra and the skin, effectively improving the local microclimate environment of the breast area and achieving a comfortable wearing experience.

[0004] Although the aforementioned sports bras can solve the corresponding technical problems, their layered structure is relatively simple and their function is relatively limited. They rely solely on ventilation holes and air channels to achieve a breathable effect, making it difficult to achieve both support and shock absorption while maintaining breathability, thus reducing the user's wearing comfort during exercise.

[0005] Therefore, an ACF cushioning underwear is proposed. Utility Model Content

[0006] The purpose of this invention is to provide an ACF cushioning underwear to solve the problems mentioned in the background art.

[0007] To achieve the above objectives, the main technical solutions adopted by this utility model include:

[0008] An ACF cushioning bra includes:

[0009] A top layer, a middle layer, and an inner layer, wherein the middle layer is disposed between the top layer and the inner layer;

[0010] The middle layer includes a breast pad connected to the top layer. The breast pad has a ventilation hole A at the cup, a ventilation hole B at the ear, and a ventilation hole C at the center. The inner cavity of the ventilation hole A is designed to support the breast, the inner cavity of the ventilation hole B is designed to provide a connecting rib B, and the inner cavity of the ventilation hole C is designed to lift the breast.

[0011] As a preferred technical solution, the breast pad is fixedly connected to the surface layer and the middle layer and the inner layer by an elastic adhesive film, respectively, with a supporting layer.

[0012] As a preferred technical solution, the vent A is connected to the adjacent vent B, and the vent A is connected to the vent C.

[0013] As a preferred technical solution, the breast support includes an anti-protrusion piece located at the nipple of the ventilation hole A. The inner cavity of the breast support has several rings with progressively increasing diameters arranged from the center outwards. The anti-protrusion piece is located in the inner cavity of the innermost ring. The anti-protrusion piece and the several rings are fixedly connected by a connecting rib A, and the connecting rib A is distributed in a ring at equal intervals.

[0014] As a preferred technical solution, multiple connecting ribs B are fixedly connected to the inner cavity of the vent hole B, wherein some of the connecting ribs A extend from the end away from the anti-protrusion piece into the inner cavity of the vent hole B and are fixedly connected to the connecting ribs B.

[0015] As a preferred technical solution, the chest lift includes a connecting rib C fixedly connected to the inner cavity of the ventilation hole C and a connecting rib D with a V-shaped structure. The end of the connecting rib C is fixedly connected to the outermost ring, and the bottom of the connecting rib D is fixedly connected to the connecting rib C. Both ends of the surface of the connecting rib C are fixedly connected to the connecting rib E. Some of the connecting ribs A extend into the inner cavity of the ventilation hole C away from the anti-protrusion piece and are fixedly connected to each other in an interlaced manner. The connecting ribs C, D, and E are respectively fixedly connected to the corresponding connecting ribs A.

[0016] As a preferred technical solution, the underside and side panels of the breast pad are integrally formed with reinforcing ribs.

[0017] As a preferred technical solution, the outer layer is made of sandwich fabric, the middle layer is made of ACF artificial cartilage biomimetic energy-absorbing material in one piece, the inner layer is made of antibacterial fabric, and the supporting layer is made of mesh.

[0018] This utility model has at least the following beneficial effects:

[0019] This application enhances the connection between the outer, middle, and inner layers through a support layer, thus preventing tearing. The middle layer reduces the overall thickness of the ACF cushioning underwear while achieving excellent energy absorption and reducing vibration amplitude. When the ACF cushioning underwear is subjected to external impact, the middle layer disperses or absorbs the energy generated during the impact process through hysteretic deformation (such as friction, bending or torsion, elasticity and plasticity), thereby minimizing the impact force and providing excellent cushioning for the user's chest. It also ensures a certain level of cushioning, reducing the feeling of constriction, improving comfort, and facilitating daily sports use. At the same time, the middle layer conforms to ergonomic design, distributes force evenly, and provides comfortable support, which helps protect the user's chest during exercise. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the structure of Embodiment 1 of the present utility model;

[0021] Figure 2 This is a schematic diagram of the middle layer structure in Embodiment 1 of this utility model;

[0022] Figure 3 This is a partial structural cross-sectional view of Embodiment 1 of the present invention;

[0023] Figure 4 This is a schematic diagram of the structure of Embodiment 2 of the present invention;

[0024] Figure 5 This is a schematic diagram of the middle layer structure in Embodiment 2 of this utility model.

[0025] In the diagram: 100, Top layer; 200, Middle layer; 210, Breast pad; 211, Reinforcing rib; 220, Ventilation hole A; 230, Ventilation hole B; 240, Ventilation hole C; 250, Breast support; 251, Anti-protrusion plate; 252, Circular ring; 253, Connecting rib A; 260, Connecting rib B; 270, Breast lift; 271, Connecting rib C; 272, Connecting rib D; 273, Connecting rib E; 280, Ventilation hole D; 290, Breast binding; 291, Connecting rib F; 292, Connecting rib G; 300, Inner layer; 400, Supporting layer. Detailed Implementation

[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0027] Example 1

[0028] Please see Figures 1-3 This utility model provides an ACF cushioning underwear, comprising: an outer layer 100, a middle layer 200, and an inner layer 300. The middle layer 200 is disposed between the outer layer 100 and the inner layer 300. The underband of the outer layer 100 extends in a W-shape and the middle part of the underband protrudes in an arc shape corresponding to the center gore. The whole is a bra-style underwear. The middle layer 200 includes a breast pad 210 connected to the outer layer 100. The cup pad of the breast pad 210 has a ventilation hole A220, the ear pad of the breast pad 210 has a ventilation hole B230, and the center gore of the breast pad 210 has a ventilation hole C240. The inner cavity of the ventilation hole A220 has a breast support 250, the inner cavity of the ventilation hole B230 has a connecting rib B260, and the inner cavity of the ventilation hole C240 ​​has a breast lift 270.

[0029] Among them, the breast pad 210 and the surface layer 100, and the middle layer 200 and the inner layer 300 are respectively fixedly connected by an elastic adhesive film with a support layer 400. The support layer 400 can support the breast pad 210 and the surface layer 100, and the middle layer 200 and the inner layer 300, effectively improving the firmness of the connection between the surface layer 100, the middle layer 200 and the inner layer 300, and has the advantage of tear resistance.

[0030] Among them, vent A220 is connected to the adjacent vent B230, and vent A220 is connected to vent C240 ​​respectively.

[0031] The breast support 250 includes an anti-protrusion piece 251 located at the nipple of the ventilation hole A220. The inner cavity of the breast support 250 has several rings 252 with progressively increasing diameters from the center to the outside. The anti-protrusion piece 251 is located in the inner cavity of the innermost ring 252. The anti-protrusion piece 251 and the several rings 252 are fixedly connected by a connecting rib A253. Several connecting ribs A253 are distributed in a ring at equal intervals. The breast support 250 can maximize the ventilation effect of the breast and prevent nipple protrusion.

[0032] Among them, there are multiple connecting ribs B260 in the inner cavity of the vent hole B230 and fixedly connected along the upper edge line. Some of the connecting ribs A253 extend from the end away from the anti-protrusion piece 251 into the inner cavity of the vent hole B230 and are fixedly connected to the connecting ribs B260. The connecting ribs B260 can ensure the ventilation effect at the ear and enhance the connection effect at the ear.

[0033] The chest lift 270 includes a connecting rib C271 fixedly connected to the inner cavity of the ventilation hole C240 ​​and a V-shaped connecting rib D272. The end of the connecting rib C271 is fixedly connected to the outermost ring 252, and the bottom of the connecting rib D272 is fixedly connected to the connecting rib C271. Both ends of the surface of the connecting rib C271 are fixedly connected to the connecting rib E273. Some of the connecting ribs A253 extend from the anti-protrusion piece 251 into the inner cavity of the ventilation hole C240 ​​and are fixedly connected to each other. The connecting ribs C271, D272 and E273 are fixedly connected to the corresponding connecting ribs A253. By lifting the chest 270, the ventilation effect at the center of the chest is ensured, and the two chest support ribs 250 are connected into one unit. When supporting the chest, the force-bearing area is increased, so that the force is evenly distributed at the center of the chest, reducing the pressure at the center of the chest.

[0034] Among them, the underside and side panels of the breast pad 210 are integrally formed with reinforcing ribs 211. The reinforcing ribs 211 have a W-shaped structure. The reinforcing ribs 211 can support the user's breasts upwards, so that the breast pad 210 does not need to be thickened as a whole. This allows the breast pad 210 to maintain its thinness while also having a gathering and lifting effect.

[0035] The outer layer 100 is made of sandwich fabric, which has good breathability, abrasion resistance, and mildew and antibacterial properties, improving the breathability of the ACF cushioning underwear. It also has a unique elastic function to prevent the ACF cushioning underwear from loosening and deforming after prolonged wear, thus helping to extend the service life of the ACF cushioning underwear. The middle layer 200 is made of ACF artificial cartilage biomimetic energy-absorbing material in one piece. ACF polymer cushioning material has efficient shock absorption, biomimetic energy absorption, and comfortable support functions, which helps to improve the shock absorption effect of the ACF cushioning underwear. The inner layer 300 is made of antibacterial fabric, which has good antibacterial properties, can eliminate odors caused by bacteria, keep the ACF cushioning underwear clean, and prevent the growth of bacteria, thus reducing the risk of secondary transmission. The supporting layer 400 is made of mesh.

[0036] Example 2

[0037] Please see Figures 4-5 This utility model provides an ACF cushioning bra, which differs from Embodiment 1 in that it includes an outer layer 100, a middle layer 200, and an inner layer 300. The middle layer 200 is located between the outer layer 100 and the inner layer 300. The underband of the outer layer 100 extends in a straight line, and the middle of the underband corresponds to the center gore. The overall design is a vest-style bra. The middle layer 200 includes a breast pad 210 connected to the outer layer 100, and the cups of the breast pad 210 have openings. It has a ventilation hole A220, a ventilation hole B230 at the ear of the breast pad 210, a ventilation hole C240 ​​at the center of the breast pad 210, a breast support 250 in the inner cavity of the ventilation hole A220, a connecting rib B260 in the inner cavity of the ventilation hole B230, a breast lift 270 in the inner cavity of the ventilation hole C240, a ventilation hole D280 at the side of the breast pad 210, and a breast binding 290 in the inner cavity of the ventilation hole D280.

[0038] Among them, the breast pad 210 is fixedly connected to the surface layer 100 and the middle layer 200 and the inner layer 300 by a support layer 400 through an elastic adhesive film.

[0039] Among them, the vent A220 is connected to the adjacent vent B230.

[0040] The breast support 250 includes an anti-protrusion piece 251 located at the nipple of the ventilation hole A220. The inner cavity of the breast support 250 is provided with several rings 252 with progressively increasing diameters from the center to the outside. The anti-protrusion piece 251 is located in the inner cavity of the innermost ring 252. The anti-protrusion piece 251 and the several rings 252 are fixedly connected by a connecting rib A253. Several connecting ribs A253 are distributed in a ring at equal intervals.

[0041] Among them, multiple connecting ribs B260 are fixedly connected in the inner cavity of the vent hole B230 and along the upper edge line. Among them, one end of some connecting ribs A253 away from the anti-protrusion piece 251 extends into the inner cavity of the vent hole B230 and is fixedly connected to the connecting ribs B260.

[0042] The chest lift 270 includes multiple connecting ribs C271 that are cross-fixed to the inner cavity of the vent C240. A connecting rib D272 is fixedly connected to the bottom of the inner cavity of the vent C240, and the connecting rib D272 is fixedly connected to the corresponding connecting rib C271.

[0043] The chest binder 290 includes a connecting rib F291 fixedly connected to the vent D280 and arranged along the binding line. Several connecting ribs G292 are fixedly connected to the connecting rib F291, and the ends of the connecting ribs G292 are fixedly connected to the inner wall of the vent D280.

[0044] Among them, the air vents A220, C240 ​​and D280 together form a reinforcing rib 211, which has a W-shaped structure.

[0045] The outer layer 100 is made of sandwich fabric, the middle layer 200 is made of ACF artificial cartilage bionic energy-absorbing material in one piece, the inner layer 300 is made of antibacterial fabric, and the supporting layer 400 is made of mesh.

[0046] All parts not described in this utility model are the same as or can be implemented using existing technology. Although embodiments of this utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of this utility model, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An ACF cushioning underwear, characterized in that, include: The outer layer (100), the middle layer (200) and the inner layer (300) are provided between the outer layer (100) and the inner layer (300); The middle layer (200) includes a breast pad (210) connected to the top layer (100). The breast pad (210) has a ventilation hole A (220) at the cup, a ventilation hole B (230) at the ear, and a ventilation hole C (240) at the center of the breast pad (210). The inner cavity of the ventilation hole A (220) is provided with a breast support (250), the inner cavity of the ventilation hole B (230) is provided with a connecting rib B (260), and the inner cavity of the ventilation hole C (240) is provided with a breast lift (270).

2. The ACF cushioning underwear according to claim 1, characterized in that: The breast pad (210) is fixedly connected to the surface layer (100) and the middle layer (200) and the inner layer (300) by a support layer (400) through an elastic adhesive film.

3. The ACF cushioning underwear according to claim 2, characterized in that: The vent A (220) is connected to the adjacent vent B (230), and the vent A (220) is connected to the vent C (240).

4. The ACF cushioning underwear according to claim 3, characterized in that: The breast support (250) includes an anti-protrusion piece (251) located at the nipple of the ventilation hole A (220). The inner cavity of the breast support (250) is provided with a number of rings (252) with progressively increasing diameters from the center to the outside. The anti-protrusion piece (251) is located in the inner cavity of the innermost ring (252). The anti-protrusion piece (251) and the number of rings (252) are fixedly connected by a connecting rib A (253). The connecting rib A (253) is distributed in a ring at equal intervals.

5. The ACF cushioning underwear according to claim 4, characterized in that: Multiple connecting ribs B (260) are fixedly connected in the inner cavity of the vent hole B (230) and along the upper edge line. Among them, some of the connecting ribs A (253) extend from the end away from the anti-protrusion piece (251) into the inner cavity of the vent hole B (230) and are fixedly connected to the connecting ribs B (260).

6. The ACF cushioning underwear according to claim 5, characterized in that: The chest lift (270) includes a connecting rib C (271) and a V-shaped connecting rib D (272) fixedly connected to the inner cavity of the ventilation hole C (240). The end of the connecting rib C (271) is fixedly connected to the outermost ring (252). The bottom of the connecting rib D (272) is fixedly connected to the connecting rib C (271). Both ends of the surface of the connecting rib C (271) are fixedly connected to the connecting rib E (273). Some of the connecting ribs A (253) extend from the anti-protrusion piece (251) into the inner cavity of the ventilation hole C (240) and are fixedly connected to each other. The connecting ribs C (271), D (272) and E (273) are fixedly connected to the corresponding connecting ribs A (253).

7. The ACF cushioning underwear according to claim 6, characterized in that: The underside and side panels of the breast pad (210) are integrally formed with reinforcing ribs (211).

8. The ACF cushioning underwear according to claim 7, characterized in that: The outer layer (100) is made of sandwich fabric, the middle layer (200) is made of ACF artificial cartilage biomimetic energy-absorbing material in one piece, the inner layer (300) is made of antibacterial fabric, and the supporting layer (400) is made of mesh.

Citation Information

Patent Citations

  • Sports bra

    CN222194180U