Bra cup and brassieres

US20260232050A1Pending Publication Date: 2026-08-13GRAND GAIN IND LTD
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Patent Information

Authority / Receiving Office
US · United States
Patent Type
Applications(United States)
Current Assignee / Owner
Filing Date
2026-02-09
Publication Date
2026-08-13

AI Technical Summary

Technical Problem

Various factors and combinations thereof in the design of the bra cup affect magnitude and distribution of pressure during wearing, thereby affecting comfort, fit, and aesthetic appeal of the bra cup.

Benefits of technology

[0004]In view of the above, it is necessary to provide a bra cup that can improve the breathability of the bra cup.

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Abstract

A bra cup and brassieres are provided. The bra cup includes an arc-shaped inner cup body and an arc-shaped outer cup body, the inner cup body and the outer cup body are bonded and are entirely recessed towards an exterior side of the outer cup body, the inner cup body is provided with a breathable aperture, and the outer cup body covers the breathable aperture. The brassiere includes two cups according to the above aspect, and the inner cup bodies of the two cups are connected. Another brassiere includes a wearing carrier and two cups according to the above aspect, and the two cups are arranged on the wearing carrier at an interval.
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Description

CROSS-REFERENCE TO RELATED APPLICATION

[0001] This application is based on and claims the benefit of priority from Chinese Patent Application No. 2025202316765, filed on Feb. 13, 2025, the entirety of which is incorporated by reference herein.TECHNICAL FIELD

[0002] The present application relates to the technical field of brassieres, and in particular to a bra cup and brassieres.BACKGROUND

[0003] A bra cup is the most important accessory that directly supports a breast and shapes a female breast. Therefore, the design of the bra cup is the focus of bra design. The bra cup is mostly formed by foam and other layers. Various factors and combinations thereof in the design of the bra cup affect magnitude and distribution of pressure during wearing, thereby affecting comfort, fit, and aesthetic appeal of the bra cup. To enhance the wearing comfort, many consumers today prefer a spacer bra cup that incorporates a three-dimensional, open-cell mesh fabric sandwiched between an inner cup layer and an outer cup layer. Such intermediate fabric between the inner cup layer and the outer cup layer features a lightweight, breathable, and flexible structure that provides support and shape with a relatively small volume. Currently, most spacer cups on the market use a single piece of spacer fabric as a body of the entire cup without adding any other fabric, which makes the spacer cups have sufficient breathability, but supporting performances of the spacer bra cups are still required to be improved.SUMMARY

[0004] In view of the above, it is necessary to provide a bra cup that can improve the breathability of the bra cup.

[0005] A bra cup according to a first aspect embodiment of the present application includes an arc-shaped inner cup body and an arc-shaped outer cup body, where the inner cup body and the outer cup body are bonded and are entirely recessed towards an exterior side of the outer cup body, the inner cup body is provided with a breathable aperture, and the outer cup body covers the breathable aperture.

[0006] In the bra cup provided in the present application, the arc-shaped inner cup body and the arc-shaped outer cup body are intended to directly support and shape a female breast. The bonding of the inner cup body and the outer cup body creates a certain thickness in the bra cup, which prevents nipple protrusion through the brassiere. The inner cup body and the outer cup body are entirely recessed towards the exterior side of the outer cup body to form a space to support the breast. The inner cup body is provided with a breathable aperture, and the breathable aperture is arranged to provide a good ventilation effect when wearing, thus making a wearer feel comfortable, and improving the breathability of the bra cup.

[0007] In one embodiment, the breathable aperture is crescent-shaped and the breathable aperture extends around a center of the inner cup body.

[0008] In one embodiment, the inner cup body includes an inner side close to the other bra cup of a brassiere and an outer side away from the other bra cup, and a width of the breathable aperture gradually increases in a direction of extending from the inner side to the outer side.

[0009] In one embodiment, a shape of a perimeter of the inner cup body on the side close to the breathable aperture matches with a shape of the breathable aperture.

[0010] In one embodiment, the breathable aperture is arc-shaped and at least one breathable aperture is provided.

[0011] In one embodiment, perimeters of the inner cup body and the outer cup body are aligned.

[0012] In one embodiment, an adhesive layer is provided between the inner cup body and the outer cup body.

[0013] In one embodiment, the inner cup body is made of elastic fabric and the outer cup body is made of cotton fabric.

[0014] A brassiere according to a second aspect embodiment of the present application includes two bra cups according to the first aspect embodiment, where the inner cup bodies of the two bra cups are connected.

[0015] A brassiere according to a third aspect embodiment of the present application includes a wearing carrier and two bra cups according to the first aspect embodiment, where the two bra cups are arranged on the wearing carrier at an interval.BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The present application will be further described in detail hereinafter with reference to the drawings and the embodiments, where:

[0017] FIG. 1 is a schematic structural diagram of bra cups provided in one embodiment of the present application;

[0018] FIG. 2 is a schematic structural diagram of the cups provided in one embodiment of the present application;

[0019] FIG. 3 is a schematic structural diagram of the cups provided in one embodiment of the present application;

[0020] FIG. 4 is a schematic structural diagram of the cups provided in one embodiment of the present application;

[0021] FIG. 5 is a schematic structural diagram of the cups provided in one embodiment of the present application;

[0022] FIG. 6 is a schematic structural diagram of the cups provided in one embodiment of the present application;

[0023] FIG. 7 is a schematic structural diagram of the cups provided in one embodiment of the present application; and

[0024] FIG. 8 is a schematic structural diagram of the cups provided in one embodiment of the present application.

[0025] Reference numerals: 10 - bra cup; 20 - inner cup body; 21 - breathable aperture; and 30 - outer cup body.DETAILED DESCRIPTION

[0026] In order to make the above objects, features and advantages of the present application be more clearly understood, the specific embodiments of the present application will be described in further detail below with reference to the drawings. Numerous specific details are set forth in the following description to sufficiently understand the present application. However, the present application can be implemented in many other ways different from those described herein, and those skilled in the art may make similar improvements without departing from the gist of the present application, so the present application is not limited by the specific embodiments disclosed below.

[0027] In the description of the present application, it should be noted that, the orientation or positional relationship indicated by the terms “center”, “longitudinal”, “ transversal”, “length”, “width”, “thickness”, “up”, “down”, “front”, “back”, “left”, “right”, “vertical”, “horizontal”, “top”, “bottom”, “inner”, “outer”, “side”, “clockwise”, “anticlockwise”, “axial direction”, “radical direction”, “circumferential direction” and the like is based on the orientation or positional relationship shown in the drawings, only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the indicated device or element must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms should not be construed as limiting the present application.

[0028] In the present application, unless expressly stipulated and defined otherwise, terms such as “adhesion”, “join”, “connection”, “affixing”, and the like, should be understood broadly, for example, the connection may be fixed connection, or detachable connection or integral connection; may be mechanical connection or direct connection, may also be indirect connection through an intermediate medium, and may also be internal communication and indirect communication of two elements or interaction relationship of two elements, unless otherwise explicitly defined. The specific meaning of the above terms in the present application may be understood in a specific case by those skilled in the art.

[0029] In the present application, unless expressly stipulated and defined otherwise, the first feature “on” or “under” the second feature may be that the first and second features are in direct contact, or the first and second features are in indirect contact through an intermediate medium. Moreover, the first feature “above”, “over” and “upper” the second feature may be that the first feature is directly above or diagonally above the second feature, or may merely mean that a level at which the first feature is located is higher than a level at which the second feature is located. The first feature “below”, “under” and “lower” the second feature may be that the first feature is directly below or diagonally below the second feature, or may merely mean that the level of the first feature is lower than that of the second feature.

[0030] As an essential item for modern women, a brassiere or bra for short is required to be both aesthetic and functional. A main functional manifestation of the bra is to support and gather the breast. A single, unitary piece of fabric cannot provide good support and gathering effects. Therefore, most bra cups on the market are provided with a foam padding to achieve good support and gathering effects. However, with the development of society and the improvement of people's awareness of health, people have gradually realized that the foam has poor breathability, and meanwhile, the foam has volatility and other shortcomings, and is sensitive to molding temperature. With stricter regulations concerning chemical products in the current market, a market share of foam-molded cups is declining, prompting the foam-molded cups to be replaced by other materials or solutions. During menstruation, women may experience slight swelling and enlargement of the breast. Wearing thick bras during this time may increase physical pressure on the breast, causing discomfort, tightness, and even oppression of breast tissue. Thicker foam is less breathable, which is unsuitable for hot weather, leading to sweating and potential skin irritation, thus reducing wearing comfort. In recent years, attention to female breast health has become a primary focus in the bra industry. As lifestyles and dressing habits change, demands for bras are evolving from traditional designs featuring underwire, padded inserts, and high coverage to trends emphasizing soft support, seamless tailoring, unpadded bras, and one-size-fits-all bras. Spacer bra cups differ from traditional foam bra cups by using a three-dimensional, open-cell mesh fabric sandwiched between an inner cup layer and an outer cup layer. Such intermediate fabric offers lightweight, breathable, and flexible properties that provide support and shape to achieve the desired breast support and gathering effects of bras and bra cups 10. Additionally, the spacer fabric has plasticity, which can make the bra cup 10 conform to a natural contour of a breast of a wearer, thus improving comfort and aesthetics of the wearer. With consumers looking for lightweight, breathable and supportive substitutes for traditional foam cups, spacer cups are becoming more and more popular in various bra styles, such as sports bras and daily bras. The versatility and performance advantages of the spacer bra cups make them a popular choice for brands and consumers. At present, most spacer cups on the market are made of single-layer spacer fabric, which lacks supporting performance. Although the main supporting force comes from the connection between various components like underwires and shoulder straps, if the supporting force and performances of the bra cup 10 can be directly increased, there will be more room for performances, and supporting performances of the spacer bra cups in the prior art are required to be improved urgently.

[0031] With reference to FIGS. 1 to 8, in order to alleviate the above problems, the embodiments of the present application provide a bra cup 10, including an arc-shaped inner cup body 20 and an arc-shaped outer cup body 30. The inner cup body 20 and the outer cup body 30 are bonded and are entirely recessed towards the exterior side of the outer cup body 30. The inner cup body 20 is provided with a breathable aperture 21, and the outer cup body 30 covers the breathable aperture 21.

[0032] The bra cup 10 includes the arc-shaped inner cup body 20 and the arc-shaped outer cup body 30. The arc-shaped inner cup body 20 and the arc-shaped outer cup body 30 are intended for directly supporting and shaping a female breast. The arc-shaped arrangement of the inner cup body 20 and the outer cup body 30 is beneficial to make the cup 10 comform to the female breast shape and improve the comfort of a wearer. Further, the inner cup body 20 and the outer cup body 30 are bonded, which can produce a certain degree of support for the cup 10. A main function of the cup 10 is to support the breast, which cannot be well supported only by a single piece of cloth. The inner cup body 20 and the outer cup body 30 are bonded to produce a certain degree of support to support the breast, and meanwhile, a certain thickness has an effect of avoiding nipple protrusion through the bra. Further, the inner cup body 20 and the outer cup body 30 are recessed towards the exterior side of the outer cup body 30 to form a space for supporting the breast. In order to increase a breathability and a stability of the cup 10, the inner cup body 20 of the cup 10 provided by the present application is provided with the breathable aperture 21, and a thickness of a portion of the cup body corresponding to the breathable aperture 21 is reduced to some extent relative to other portions, and the arrangement of the breathable aperture 21 can realize a good ventilation effect when wearing, thus making the wearer feel comfortable. Specifically, the breathable aperture 21 is arranged in the inner cup body 20. When the wearer wears the cup 10, the inner cup body 20 contacts the breast, and the arrangement of the breathable aperture 21 improves the breathability of the cup 10. A main supporting force of an existing cup depends on connection of various parts of a bra, such as the underwires and shoulder straps, rather than a supporting force provided by the cup 10 itself. In the cup 10 of the present application, when the wearer wears the cup 10, a structure of the breathable aperture 21 can provide a certain support for the whole cup body and a good ventilation effect, and meanwhile, the cup body itself has a certain supporting force, thereby improving the breathability and the supporting performance of the cup 10.

[0033] With reference to FIGS. 1 to 8, in some embodiments, the breathable aperture 21 may be arranged in any one or more positions of an upper cup, a lower cup, a side or a middle-right and a lower part of the inner cup body 20. In some embodiments, the breathable aperture 21 is crescent-shaped, and the crescent-shaped breathable aperture 21 can improve the aesthetics of the cup 10 and make the appearance of the cup 10 lighter. Specifically, the breathable aperture 21 extends around a center of the inner cup body 20, while the crescent-shaped breathable aperture 21 extending around the center of the inner cup body 20 enables the breathable aperture 21 to be evenly distributed in the inner cup body 20. In some embodiments, the breathable aperture 21 may also be formed in other shapes to enhance the richness of the appearance of the cup 10. Specifically, the breathable aperture may be configured as any simple or complex graphic composed of straight or curved lines, for example, a rectangle, a square, a wavy shape, a cordiform shape, a diamond, or a circle. Further, the inner cup body 20 includes an inner side close to the other cup 10 and an outer side away from the other cup 10. When the wearer wears the bra, the inner side is close to a middle of two nipples, and the outer side is close to an armpit. In order to further increase the supporting performance of the cup 10, a width of the breathable aperture 21 gradually increases in a direction of extending from the inner side to the outer side. According to characteristics of a human breast, a position of the breast corresponding to the outer side of the bra cup in a state of being worn by a wearer needs more supporting force, and a position of the breast corresponding to the inner side of the bra cup in the state of being worn by the wearer needs less supporting force than the outer side. Therefore, the width of the breathable aperture 21 is set to gradually increase along the extending direction from the inner side to the outer side, so that a contact area between the inner side part of the cup 10 and the breast can be larger, which can provide greater supporting force for the breast and further improve the supporting performance of the cup 10. At the same time, the breathable aperture 21 can improve the aesthetics of the cup 10 and improve wearing experience of the wearer. In some embodiments, a perimeter of the breathable aperture 21 is set as an arc-shaped structure, which can improve the comfort of the wearer when the arc-shaped structure is laid against the skin.

[0034] Referring to FIGS. 1 to 2, a shape of a perimeter of a side of the inner cup body 20 of the cup 10 close to the breathable aperture 21 matches with a shape of the breathable aperture 21, thus increasing the aesthetics and comfort of the cup 10 while improving the supporting performance of the cup 10. On the contrary, if perimeters of the inner cup body 20 and the outer cup body 30 are not aligned, the aesthetics and the wearing comfort of the cup 10 may be affected. Meanwhile, the misalignment of the outer contours of the inner cup body 20 and the outer cup body 30 of the cup 10 facilitates storage of the bra, which is beneficial to reducing a manufacturing cost of the bra cup 10 and reducing unnecessary material waste. In some embodiments, the breathable aperture 21 is arc-shaped and at least two breathable apertures 21 are provided. The breathable apertures 21 are arranged around a center of the inner cup body 20 at an interval. Setting at least two breathable apertures 21 can increase a diversity of the cup 10, so that the appearance of the cup 10 with strong ventilation and good supporting performance is not limited to several types, and increasing the appearance diversity of the cup 10 can provide the wearer with sufficient choices of wearing. In one embodiment, five breathable apertures 21 may be arranged sequently at intervals around the center of the inner cup body 20, extending from the inner side of the inner cup body 20 to the outer side of the cup body 20. At the same time, the breathable apertures 21 may be in the shape of flowers, which are arranged in the inner cup body 20, and the shapes of the five small flowers may be set to different sizes. The breathable apertures 21 in the shapes of small flowers can not only improve the supporting performance and the breathability of the cup 10, but also improve the beauty aesthetics and uniqueness of the cup 10. The breathable apertures 21 with different shapes may meet different needs for different customers or brands. In one embodiment, two breathable apertures 21 may be arranged at an interval around the center of the inner cup body 20, extending from the inner side of the inner cup body 20 to the outer side of the inner cup body 20. The two breathable apertures 21 are both configured to be crescent-shaped, and the two crescent-shaped breathable apertures 21 can increase the breathability of the cup 10. In some embodiments, the shape of the breathable aperture 21 may be customized according to the needs of the wearer due to the different needs of the wearer for the internal supporting performance of the cup 10 and the different aesthetic preferences of the cup 10, so as to improve humanized demands of the cup 10.

[0035] With reference to FIGS. 3, 4 and 5, the outer cup body 30 may be made of a spacer fabric panel, while the inner cup body 20 may be made of textile fabric. In some embodiments, the textile fabric may include single-sided fabric, double-sided fabric, elastic fabric, or the like. When setting the breathable aperture 21, a window in the shape of the breathable aperture 21 is cut out from the aforementioned textile fabric. Then the textile fabric with the cut-out shape of the breathable aperture 21 is bonded and molded with the outer cup body 30. The shape of the breathable aperture 21 may be crescent-shaped, but is not limited to be crescent-shaped, and the breathable aperture 21 may be any shape. An adhesive layer is provided between the inner cup body 20 and the outer cup body 30. An adhesive of the adhesive layer may be PA (polyamide), PE (polyethylene), EVA (ethylene-vinyl acetate copolymer), PU (polyurethane), TPU (thermoplastic polyurethane elastomer) or PUR (polyurethane). The adhesive of the adhesive layer may be moisture-curing reactive polyurethane hot melt adhesive, and has excellent adhesive strength, temperature resistance, chemical corrosion resistance and aging resistance. The adhesive layer is not limited to the above-mentioned adhesive. Specifically, the adhesive is sprayed on the inner cup body 20, and apertures in the shape of the breathable aperture 21 are cut at intervals after the adhesive is sprayed. Meanwhile, the adhesive may also be directly sprayed on the inner cup body 20, and finally, the spacer fabric panel is bonded with the inner cup body 20 through high temperature by molding. Fabric layers of a bottom layer and a surface layer of the spacer fabric are woven and connected by monofilaments or multifilaments in a middle layer, so the three-layered three-dimensional fabric is more supportive than ordinary fabric. A comfortable dry feeling is achieved by air circulation, and meanwhile, characteristics of softness and good elasticity are achieved, meeting needs of the wearer for comfort and breathability. In some embodiments, upright cotton may be used. As a molded-cup bra with the largest market share, most main filling materials thereof are molded with polyurethane (PU) foam, and non-woven high-elastic three-dimensional material upright cotton is used to replace the PU foam in traditional bras. This material is a pure fiber product, but has a foam -like mechanism structure, is elastic, and has superior performances that other foams do not have, such as being more breathable, lighter, and less prone to yellowing than the foam. Antibacterial materials may also be added to fully embody the characteristics of safety, environmental protection, and health. The application of the chemical-adhesive-free high-elastic non-woven three-dimensional cotton (upright cotton) cup 10 as a substitute for the foamed polyurethane material (PU foam) cup 10 in bras has the advantages of softness, lightness, high ventilation, moisture absorption and perspiration, and more comfortable wearing. In addition, the three-dimensional cotton is non-toxic, never turns yellow, and makes the clean and dry easier. The production process is more energy-saving and environment-friendly, which will not cause environmental pollution, and different product material formula changes may be made according to the needs of the product, so that the upright cotton cup has strong scalable and expandable performances. The upright cotton makes the cup 10 light and breathable, and at the same time, make the cup have a supporting force, which improves a plasticity of a spacer molded cup. Combining the spacer molded cup with the upright cotton can improve the breathability and the supporting performance of the cup 10. In some embodiments, the inner cup body 20 is made of elastic fabric, and the outer cup body 30 is made of cotton cloth. Specifically, the outer cup body 30 may be made of elastic nylon fabric, or fabric with functional properties, such as cool feeling, quick drying and perspiration, antibacterial and environmental protection. The material of the outer cup body 30 is not limited to the above materials.

[0036] A brassiere includes two cups 10 above, and the inner cup bodies 20 of the two cups 10 are connected. A bra includes a wearing carrier and two cups 10 above, and the two cups 10 are arranged on the wearing carrier at an interval. The two bras above include the cup 10, and the inner cup body 20 and the outer cup body 30 of the cup are bonded to make the cup 10 have a certain thickness, which has a function of avoiding nipple protrusion through the bra. The inner cup body 20 and the outer cup body 30 are entirely recessed towards the exterior side of the outer cup body 30 to form a space to support a breast. The inner cup body 20 is provided with the breathable aperture 21, which provides a good ventilation effect when wearing, thus making a wearer feel comfortable. The breathable aperture 21 is defined in the inner cup body 20, and provides support for the entire cup body when wearing, and enables the cup body to have a certain supporting force. The breathable aperture 21 is arranged in the cup body of the cup 10 provided by the present application, so that the cup 10 has a good ventilation effect, and meanwhile, the cup body has a certain supporting force, thereby improving a breathability and a supporting performance of the cup 10.

[0037] In the production process of the cup 10 of the present application, the cup 10 includes the arc-shaped inner cup body 20 and the arc-shaped outer cup body 30, and the inner cup body 20 of the cup 10 is provided with the breathable aperture 21. A thickness of a portion of the cup body corresponding to the breathable aperture 21 is reduced to a certain extent relative to other portions, and the arrangement of the breathable aperture 21 can make the cup body have a good ventilation effect when wearing, thus making the wearer feel comfortable. Specifically, the breathable aperture 21 is arranged in the inner cup body 20. When the wearer wears the bra cup 10, the inner cup body 20 contacts a breast, and the inner cup body 20 contacts a lower side part of the breast. The breathable aperture 21 is arranged to improve the breathability of the bra cup 10 and skillfully support the breast at the same time. The inner cup body 20 may be made of textile fabric. The textile fabric may include single-sided fabric, double-sided fabric, elastic fabric, or the like. The outer cup body 30 may be made of a spacer fabric panel. The spacer fabric panel is generally of a structure that a layer of silk screen is sandwiched between two layers of fabrics against a skin, and arrangement directions of the silk screen are staggered. The spacer fabric panel has a special three-dimensional mesh tissue, and comfortable and dry feeling is achieved through ventilation. Meanwhile, the spacer fabric panel has the characteristics of softness and good elasticity. The silk screen structure in the spacer fabric panel may adopt upright cotton, and the chemical-adhesive-free high-elastic non-woven three-dimensional cotton cup may be used as a substitute for the foamed polyurethane material cup 10, which has the advantages of softness, light weight, high air permeability, moisture absorption and perspiration, and more comfortable wearing. When the breathable apertures 21 are made, windows in the shape of the breathable apertures 21 are cut out from the aforementioned textile fabric. Then the textile fabric with the cut-out shape of the breathable apertures 21 is bonded and molded with the outer cup body 30. The shape of the breathable apertures 21 may be crescent-shaped, but is not limited to be crescent-shaped, and the breathable apertures 21 may be any shape. An adhesive layer is arranged between the inner cup body 20 and the outer cup body 30. The adhesive is sprayed on the inner cup body 20. After the adhesive is sprayed, the apertures in the shape of the breathable aperture 21 are cut at intervals with release papers, and finally, molding is performed. Specifically, after all the fabric panels are prepared, the molding is started. A die head is required to be preheated to about 180° C, and the temperature adjustment depends on the size, depth, and placement of the die head. However, the general temperature is between 140° C and 220° C, and the time is within 200 seconds. Furthermore, the fabric panels are placed one by one according to the positioning on the die head. First, the outer cup body 30 is placed, and then the inner cup body 20 with the adhesive sprayed and cut breathable aperture 21 is placed above the outer cup body 30. Then, the molding is performed. After the appropriate temperature, time, and space of the die head, the molding is performed to achieve production of the cup 10. The cup 10 produced by the method has a good ventilation effect, and at the same time, the cup body itself has a certain supporting force, which can improve the breathability and the supporting performance of the cup 10.

[0038] All the technical features of the above embodiments may be combined at will. In order to make the description concise, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction between the combinations of these technical features, they should be considered within the scope recorded in this specification.

[0039] The above embodiments merely represent several embodiments of present application, and the descriptions thereof are more specific and detailed, but cannot be understood as a limitation to the scope of the present application. It should be noted that those of ordinary skills in the art may make several modification and improvements without departing from the gist of the present application, and these modification and improvements shall all fall within the protection scope of the present application. Therefore, the protection scope of the patent according to the present application shall be subjected to the claims appended.

Examples

Embodiment Construction

[0026]In order to make the above objects, features and advantages of the present application be more clearly understood, the specific embodiments of the present application will be described in further detail below with reference to the drawings. Numerous specific details are set forth in the following description to sufficiently understand the present application. However, the present application can be implemented in many other ways different from those described herein, and those skilled in the art may make similar improvements without departing from the gist of the present application, so the present application is not limited by the specific embodiments disclosed below.

[0027]In the description of the present application, it should be noted that, the orientation or positional relationship indicated by the terms “center”, “longitudinal”, “ transversal”, “length”, “width”, “thickness”, “up”, “down”, “front”, “back”, “left”, “right”, “vertical”, “horizontal”, “top”, “bottom”, “inne...

Claims

1. A bra cup, comprising an arc-shaped inner cup body and an arc-shaped outer cup body, wherein the inner cup body and the outer cup body are bonded and are entirely recessed towards an exterior side of the outer cup body, the inner cup body is provided with a breathable aperture, and the outer cup body covers the breathable aperture.

2. The bra cup according to claim 1, wherein the breathable aperture is crescent-shaped and the breathable aperture extends around a center of the inner cup body.

3. The bra cup according to claim 2, wherein the inner cup body comprises an inner side facing the other bra cup of a brassiere and an outer side opposite to the other bra cup, and a width of the breathable aperture gradually increases in a direction of extending from the inner side to the outer side.

4. The bra cup according to claim 2, wherein a shape of a perimeter of the inner cup body on a side where the breathable aperture is provided matches with a shape of the breathable aperture.

5. The bra cup according to claim 1, wherein the breathable aperture is arc-shaped and at least one breathable aperture is provided.

6. The bra cup according to claim 1, wherein the perimeter of the inner cup body and a perimeter of the outer cup body are aligned.

7. The bra cup according to claim 1, wherein an adhesive layer is provided between the inner cup body and the outer cup body.

8. The bra cup according to claim 1, wherein the inner cup body is made of elastic fabric and the outer cup body is made of cotton fabric.

9. A brassiere, comprising two bra cups according to claim 1, wherein the inner cup bodies of the two cups are connected.

10. A brassiere, comprising a wearing carrier and two cups according to claim 1, wherein the two cups are arranged on the wearing carrier at an interval.