Men's clothes and trousers structure with girdling function
By incorporating features such as an elastic waistband, anti-slip stripe array, breathable mesh area, elastic adjustment band, and silicone hip-lifting pad into men's clothing, the design solves the problems of insufficient support and breathability in traditional waistbands, achieving a comfortable and stable waist-cinching effect and adaptability to multiple scenarios.
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
- 2026-05-12
AI Technical Summary
Traditional men's clothing with a waistband design lacks support and adaptability, has poor breathability, insufficient anti-slip performance, and is difficult to effectively conform to the waist and abdomen curves, resulting in slippage or a feeling of constriction during exercise, and is difficult to adjust flexibly according to individual body shape.
The elastic waistband connects to the main body of the pants and features an internal anti-slip stripe array and soft rubber blocks. It is combined with washable elastic strips and breathable mesh areas, and is equipped with an elastic adjustment band and silicone hip-lifting pads. It uses liquid Lycra material and double-layer elastic knitted fabric, with an internal graphene composite fabric lining. The design is ergonomic.
It achieves a dynamic fit to the waist and abdomen curves, providing a comfortable waist-cinching effect, preventing slippage, improving breathability and anti-slip performance, adapting to different body types and occasions, enhancing wearing comfort and safety, and combining functionality with ease of maintenance.
Smart Images

Figure CN224219546U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of clothing technology, and in particular discloses a men's clothing structure with a waist-cinching function. Background Technology
[0002] With the fast pace of modern life and people's pursuit of a healthy lifestyle, clothing with specific functions is gradually gaining market favor. In the men's clothing sector, waist-cinching functionality has become one of the key requirements for improving wearing comfort and shaping effects. Traditional men's clothing often uses a single material or a simple structural design, making it difficult to simultaneously meet the requirements of waist-cinching effect, breathability, slip resistance, and wearing comfort. Specifically, existing waist-cinching designs often lack sufficient support and adaptability, making it difficult to effectively conform to the curves of the waist and abdomen, resulting in slippage or a feeling of constriction during exercise; at the same time, poor breathability, insufficient slip resistance, and difficulty in flexibly adjusting to individual body shapes also limit their usage scenarios and wearing experience. 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 men's clothing structure with a waist-cinching function.
[0004] To achieve the above objectives, this utility model provides a men's clothing structure with a waist-cinching function, comprising a trouser body and an elastic elastic waist-cinching part connected to the trouser body; the connection point between the elastic elastic waist-cinching part and the trouser body is the first connection point, and the end away from the trouser body is the second connection point; the elastic elastic waist-cinching part is annular, and the inner diameter of the elastic elastic waist-cinching part gradually decreases from the first connection point to the second connection point.
[0005] The elastic waistband is provided with multiple sets of washable elastic strips. The washable elastic strips extend along the length and / or width of the elastic waistband and are distributed in an arc shape on both sides of the waist and abdomen.
[0006] The men's trousers structure connects the elastic waistband to the main body of the trousers. The elastic waistband is ring-shaped, and the inner diameter of the elastic waistband gradually decreases from the first connection point to the second connection point, naturally conforming to the curves of the waist and abdomen to provide a comfortable waist-cinching effect. Multiple sets of washable elastic strips are distributed in an arc shape on both sides of the waist and abdomen, providing good support and easy cleaning and maintenance, improving the practicality and convenience of wearing. During manufacturing, the elastic waistband is connected to the main body of the trousers to ensure a gradual change in the waistband opening. Multiple sets of washable elastic strips are ergonomically designed in an arc shape on the inside of the elastic waistband and are fixed by sewing or embedding, achieving a perfect combination of waist-cinching function and comfort.
[0007] The elastic waistband is made of liquid Lycra. This elastic waistband, using liquid Lycra, incorporates a microcapsule dot-matrix coating that penetrates the fabric fibers, forming an adaptive elastic mesh structure. This achieves dynamic fit and imperceptible support, effectively avoiding the marks and constriction of traditional rubber waistbands. Its superior resilience (rebound rate ≥98%) and durability (performance degradation ≤3% after 5000 stretches) maintain its shaping effect for a long time, adapting to high-intensity exercise scenarios. It also supports machine washing (below 40℃) without deformation, combining functionality and ease of maintenance, providing consumers with a scientific shaping and all-weather comfort experience.
[0008] The inner ring of the elastic waistband is provided with an array of anti-slip stripes.
[0009] The anti-slip stripe array includes multiple soft rubber blocks disposed on the inner side of the elastic telescopic waist section, with the soft rubber blocks spaced apart.
[0010] The elastic waistband features a ring-shaped array of anti-slip stripes on its inner side, with spaced soft rubber blocks. This design significantly enhances the friction between the elastic waistband and the wearer's skin. During various activities, it effectively prevents the waistband from slipping or shifting due to body movements, ensuring the waistband function remains stable and providing reliable support and shaping. This improves comfort and safety, while the spaced soft rubber blocks allow the elastic waistband to expand during wear.
[0011] The elastic waistband is provided with an elastic adjustment belt and a positioning buckle that works in conjunction with the elastic adjustment belt at the second connection. One end of the elastic adjustment belt is fixedly connected to the elastic waistband, and the other end is provided with an adjustment buckle. The tightness of the elastic adjustment belt is adjusted by fastening the positioning buckle with the adjustment buckle.
[0012] An elastic adjustment strap and positioning buckle are installed at the second connection point of the elastic waistband, allowing users to freely adjust the tightness of the waistband. This design significantly improves the adaptability of the garment, meeting the needs of different body types (such as differences in waist circumference) or wearing scenarios (such as sports and daily life), while avoiding the decrease in comfort caused by excessive restraint or looseness, achieving personalized customization and dynamic fit.
[0013] The main body of the pants has a breathable mesh area on the thigh, which consists of multiple breathable holes that are evenly distributed on the thigh.
[0014] The design incorporates a breathable mesh area with evenly distributed ventilation holes in the thigh section of the pants, significantly improving wearing comfort during exercise or in high-temperature environments. The ventilation holes accelerate airflow, quickly expelling moisture and heat from the skin, reducing stuffiness and sweat buildup, while maintaining the pants' shape and avoiding the bulky appearance or structural flimsy issues often associated with traditional breathable designs. Lightweight and breathable mesh fabric (such as polyamide fiber) is used.
[0015] The elastic waistband is made of double-layer elastic knitted fabric. The inner layer is a moisture-wicking and quick-drying fiber layer, and the outer layer is a memory shaping fiber layer. The two layers are fixed together by a dot matrix ultrasonic pressing process to form a waistband support structure with a greater horizontal elastic modulus than the vertical elastic modulus.
[0016] The elastic waistband features a double-layer stretch knit fabric design. The inner moisture-wicking and quick-drying fiber layer (such as a polyester blend) rapidly absorbs and evaporates sweat, keeping the skin dry. The outer memory shaping fiber layer (such as a blend of nylon 66 and elastomer) provides durable shaping support with strong resilience. Through a dot-matrix ultrasonic bonding process, the two layers of fabric form a waistband support structure in specific areas with a greater lateral elastic modulus than longitudinal elastic modulus. This effectively tightens the waist and abdomen laterally while avoiding excessive longitudinal constriction, enhancing both comfort and functionality.
[0017] The inner side of the pants body has a silicone buttock-lifting pad, the bottom of which is bonded and fixed to the pants body, and the silicone buttock-lifting pad is arc-shaped.
[0018] The pants feature a rounded silicone buttock-lifting pad on the inner side of the hip area, secured with an adhesive bonding process for a stable fit. The flexibility and shape memory of the silicone material allow it to naturally conform to the curves of the buttocks, providing a gentle lifting and shaping effect, avoiding the stiffness or shifting issues associated with traditional buttock-lifting designs. The rounded design is ergonomic, distributing pressure points and enhancing wearing comfort, while also increasing the visual fullness of the buttocks, satisfying both aesthetic and functional needs.
[0019] The pants have a removable antibacterial lining in the crotch area. The lining is made of graphene composite fabric and is fixed to the pants by magnetic snaps.
[0020] Graphene composite fabrics (such as graphene fiber blends) release far-infrared rays and disrupt bacterial cell membranes, inhibiting the growth of pathogenic bacteria such as Staphylococcus aureus and Escherichia coli, thus reducing the risk of infection in intimate areas. The removable design allows users to change the lining according to the season or activity level (e.g., a breathable version for summer and a fleece-lined version for winter), and it also supports separate washing, extending the lifespan of the pants.
[0021] The surface of the soft rubber block has a micro-protrusion structure with a height of 0.1-0.3mm and an irregular distribution of micro-protrusions to increase the friction with human skin and prevent the elastic waistband from slipping down.
[0022] The surface of the soft rubber block features micro-protrusions with a height of 0.1-0.3mm, and their irregular distribution significantly enhances the contact friction with human skin. This design, through a microscopic physical anti-slip mechanism, effectively reduces displacement of the elastic waistband due to movement or body activity, while maintaining a soft touch against the skin. It avoids the marks or discomfort caused by traditional anti-slip designs, achieving a balance between functionality and comfort.
[0023] The outer side of the knee area of the trousers features an abrasion-resistant layer. This reduces fabric wear, pilling, or holes caused by friction with the knee, making it especially suitable for outdoor sports, cycling, or prolonged kneeling. The abrasion-resistant layer is bonded to the main body of the trousers using a heat press to ensure no gaps between the layers.
[0024] The beneficial effects of this utility model are as follows: This utility model uses a gradient waist-cinching structure to naturally conform to the waist and abdomen curves. Liquid Lycra material combined with double-layer elastic knitted fabric forms a dynamic shaping system with strong horizontal support and low vertical constraint. An arc-shaped, washable elastic strip enhances waist stability. A micro-protruding array of soft rubber blocks prevents shifting through a physical anti-slip mechanism, while an elastic adjustment band allows for dynamic waist adaptation. Breathable mesh areas on the thighs and silicone hip-lifting pads enhance wearing comfort and shaping effect. A removable graphene antibacterial lining in the crotch ensures hygiene and health, and a wear-resistant layer on the knees enhances durability. The overall design achieves a breakthrough from multiple dimensions of structural mechanics, material performance, and ergonomics, organically unifying scientific waist-cinching, imperceptible support, breathability, antibacterial properties, and scene adaptability. It solves the pain points of traditional waist-cinching clothing, such as strong constraint, limited functionality, and inconvenient maintenance, providing male consumers with a new clothing solution that combines functionality and comfort. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0026] Figure 2 This is a cross-sectional view of the elastic telescopic waist section of this utility model;
[0027] Figure 3 This is a schematic diagram of the elastic telescopic waist section of this utility model;
[0028] Figure 4 This is a structural schematic diagram of the entire utility model from another perspective.
[0029] The reference numerals in the figures include:
[0030] 1. Main body of pants; 2. Elastic waistband; 3. First connection point; 4. Second connection point; 5. Washable elastic strip; 6. Soft rubber block; 7. Elastic adjustment belt; 8. Positioning buckle; 9. Adjustment buckle; 11. Breathable mesh area; 12. Silicone hip-lifting pad; 13. Antibacterial lining. 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 provides a men's clothing structure with a waist-cinching function, including a trouser body 1 and an elastic elastic waist-cinching part 2 connected to the trouser body 1; the connection point between the elastic elastic waist-cinching part 2 and the trouser body 1 is the first connection point 3, and the end away from the trouser body 1 is the second connection point 4. The elastic elastic waist-cinching part 2 is annular, and the inner diameter of the elastic elastic waist-cinching part 2 gradually decreases from the first connection point 3 to the second connection point 4.
[0033] The elastic waistband 2 is provided with multiple sets of washable elastic strips 5. The washable elastic strips 5 extend along the length and / or width of the elastic waistband 2 and are distributed in an arc shape on both sides of the waist and abdomen.
[0034] The men's trousers structure connects the elastic waistband 2 to the main body of the trousers 1. The elastic waistband 2 is ring-shaped, and the inner diameter of the elastic waistband 2 gradually decreases from the first connection point 3 to the second connection point 4, naturally conforming to the curve of the human waist and abdomen, providing a comfortable waist-cinching effect. Multiple sets of washable elastic strips 5 are distributed in an arc shape on both sides of the human waist and abdomen, providing good support and facilitating cleaning and maintenance, thus improving the practicality and convenience of wearing. During manufacturing, the elastic waistband 2 is connected to the main body of the trousers 1 to ensure a gradual design at the waist opening. Multiple sets of washable elastic strips 5 are ergonomically designed in an arc shape on the inside of the elastic waistband 2 and are fixed by sewing or embedding, achieving a perfect combination of waist-cinching function and comfort.
[0035] The elastic waistband 2 is made of liquid Lycra. Using liquid Lycra, the elastic waistband 2 penetrates the fabric fibers through a microcapsule dot-matrix coating, forming an adaptive elastic mesh structure. This achieves dynamic fit and imperceptible support, effectively avoiding the marks and constriction of traditional rubber waistbands. Its superior resilience (rebound rate ≥98%) and durability (performance degradation ≤3% after 5000 stretches) maintain its shaping effect for a long time, adapting to high-intensity sports scenarios. It also supports machine washing (below 40℃) without deformation, combining functionality and ease of maintenance, providing consumers with a scientific shaping and all-weather comfort experience.
[0036] The inner ring of the elastic telescopic waist section 2 is provided with an array of anti-slip stripes.
[0037] The anti-slip stripe array includes multiple soft rubber blocks 6 disposed on the inner side of the elastic telescopic waist section 2, with the soft rubber blocks 6 spaced apart.
[0038] An annular anti-slip stripe array is set on the inner side of the elastic waistband 2, and the soft rubber blocks 6 are spaced apart. This design greatly enhances the friction between the elastic waistband 2 and the human skin. When the wearer performs various activities, it can effectively prevent the elastic waistband 2 from slipping or shifting due to body movements, ensuring that the waist-cinching function always works stably, providing reliable support and shaping effect for the wearer, and improving wearing comfort and safety. The spaced soft rubber blocks 6 make it easy for the elastic waistband 2 to open up when worn.
[0039] The elastic waistband 2 is provided with an elastic adjustment belt 7 and a positioning buckle 8 for use with the elastic adjustment belt 7 at the second connection 4. One end of the elastic adjustment belt 7 is fixedly connected to the elastic waistband 2, and the other end is provided with an adjustment buckle 9. The tightness of the elastic adjustment belt 7 is adjusted by fastening the positioning buckle 8 with the adjustment buckle 9.
[0040] An elastic adjustment strap 7 and a positioning buckle 8 are provided at the second connection point 4 of the elastic waistband 2. Users can freely adjust the tightness of the waistband through the adjustment buckle 9. This design significantly improves the adaptability of the garment, meeting the needs of different body types (such as differences in waist size) or wearing scenarios (such as sports and daily life), while avoiding the decrease in comfort caused by excessive binding or looseness, achieving personalized customization and dynamic fit.
[0041] The main body of the pants 1 has a breathable mesh area 11 on the thigh. The breathable mesh area 11 is composed of multiple breathable holes, which are evenly distributed on the thigh.
[0042] A breathable mesh area 11 composed of evenly distributed ventilation holes is designed in the thigh section of the main body of the pants, which significantly improves wearing comfort during sports or in high-temperature environments. The ventilation hole design accelerates air circulation, quickly expelling moisture and heat from the skin, reducing stuffiness and sweat buildup, while maintaining the pants' shape and avoiding the bulky appearance or structural flimsy issues caused by traditional breathable designs. A lightweight and breathable mesh fabric (such as polyamide fiber) is selected.
[0043] The elastic waistband 2 is made of double-layer elastic knitted fabric. The inner layer is a moisture-wicking and quick-drying fiber layer, and the outer layer is a memory shaping fiber layer. The two layers are fixed together by a dot matrix ultrasonic pressing process to form a waistband support structure with a transverse elastic modulus greater than that in the longitudinal direction.
[0044] The elastic waistband 2 features a double-layer elastic knitted fabric design. The inner moisture-wicking and quick-drying fiber layer (such as a polyester blend) rapidly absorbs and evaporates sweat, keeping the skin dry. The outer memory shaping fiber layer (such as a blend of nylon 66 and elastomer) provides durable shaping support with strong resilience. Through a dot-matrix ultrasonic bonding process, the two layers of fabric form a waistband support structure in specific areas with a greater lateral elastic modulus than longitudinal elastic modulus. This not only tightens the waist and abdomen laterally but also avoids excessive longitudinal constriction, improving wearing comfort and functionality.
[0045] The inner buttock area of the pants body 1 is provided with a silicone buttock-lifting pad 12. The bottom surface of the silicone buttock-lifting pad 12 is bonded and fixed to the pants body 1. The silicone buttock-lifting pad 12 is arc-shaped.
[0046] The inner side of the pants body 1 features a rounded silicone buttock-lifting pad 12, which is securely attached using an adhesive process. The flexibility and shape memory of the silicone material allow it to naturally conform to the curves of the buttocks, providing a slight lifting and shaping effect, avoiding the stiffness or shifting issues associated with traditional buttock-lifting designs. The rounded design is ergonomic, distributing pressure points and improving wearing comfort, while also enhancing the visual fullness of the buttocks, satisfying both aesthetic and functional needs.
[0047] The pants body 1 has a removable antibacterial lining 13 at the crotch. The lining is made of graphene composite fabric and is fixed to the pants body 1 by magnetic snaps.
[0048] Graphene composite fabrics (such as graphene fiber blends) release far-infrared rays and disrupt bacterial cell membranes, inhibiting the growth of pathogenic bacteria such as Staphylococcus aureus and Escherichia coli, thus reducing the risk of infection in intimate areas. The removable design allows users to change the lining according to the season or activity level (e.g., a breathable version for summer and a fleece-lined version for winter), and it also supports separate washing, extending the lifespan of the pants.
[0049] The surface of the soft rubber block 6 is provided with a micro-protrusion structure. The height of the micro-protrusion is 0.1-0.3mm and the micro-protrusion is irregularly distributed to increase the friction with human skin and prevent the elastic waistband 2 from slipping down.
[0050] The surface of the soft rubber block 6 features micro-protrusions with a height of 0.1-0.3mm, and their irregular distribution significantly enhances the contact friction with human skin. This design, through a microscopic physical anti-slip mechanism, effectively reduces the displacement of the elastic waistband 2 caused by movement or body activity, while maintaining a soft touch against the skin. It avoids the marks or discomfort caused by traditional anti-slip designs, achieving a balance between functionality and comfort.
[0051] The outer side of the knee area of the trousers features an abrasion-resistant layer. This reduces fabric wear, pilling, or holes caused by friction with the knee, making it especially suitable for outdoor sports, cycling, or prolonged kneeling. The abrasion-resistant layer is bonded to the main body of the trousers using a hot press to ensure no gaps between the layers.
[0052] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method 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 men's clothing structure with a waist-cinching function, characterized in that: It includes a trouser body (1) and an elastic stretch waistband (2) connected to the trouser body (1); the connection point between the elastic stretch waistband (2) and the trouser body (1) is the first connection point (3), and the end away from the trouser body (1) is the second connection point (4). The elastic stretch waistband (2) is annular, and the inner diameter of the elastic stretch waistband (2) gradually decreases from the first connection point (3) to the second connection point (4).
2. The men's clothing structure with a waist-cinching function according to claim 1, characterized in that: The elastic waistband (2) is provided with multiple sets of washable elastic strips (5). The washable elastic strips (5) extend along the length direction and / or width direction of the elastic waistband (2). The washable elastic strips (5) are distributed in an arc shape on both sides of the waist and abdomen of the human body.
3. The men's clothing structure with a waist-cinching function according to claim 1, characterized in that: The inner ring of the elastic stretch waist part (2) is provided with an array of anti-slip stripes.
4. The men's clothing structure with a waist-cinching function according to claim 3, characterized in that: The anti-slip stripe array includes multiple soft rubber blocks (6) disposed inside the elastic telescopic waist section (2), with the soft rubber blocks (6) spaced apart.
5. The men's clothing structure with a waist-cinching function according to claim 1, characterized in that: The elastic waistband (2) is provided with an elastic adjustment belt (7) and a positioning buckle (8) that works in conjunction with the elastic adjustment belt (7) at the second connection (4). One end of the elastic adjustment belt (7) is fixedly connected to the elastic waistband (2), and the other end is provided with an adjustment buckle (9). The tightness of the elastic adjustment belt (7) is adjusted by fastening the positioning buckle (8) with the adjustment buckle (9).
6. The men's clothing structure with a waist-cinching function according to claim 1, characterized in that: The main body of the pants (1) has a breathable mesh area (11) on the thigh. The breathable mesh area (11) is composed of multiple breathable holes, which are evenly distributed on the thigh.
7. The men's clothing structure with a waist-cinching function according to claim 1, characterized in that: The elastic stretch waist part (2) is made of double-layer elastic knitted fabric. The inner layer is a moisture-wicking and quick-drying fiber layer, and the outer layer is a memory shaping fiber layer. The two layers are fixed by a dot matrix ultrasonic pressing process to form a waist support structure with a transverse elastic modulus greater than that in the longitudinal direction.
8. The men's clothing structure with a waist-cinching function according to claim 1, characterized in that: The inner buttock area of the pants body (1) is provided with a silicone buttock-lifting pad (12), and the bottom surface of the silicone buttock-lifting pad (12) is bonded and fixed to the pants body (1).
9. The men's clothing structure with a waist-cinching function according to claim 1, characterized in that: The main body of the pants (1) has a removable antibacterial lining (13) at the crotch. The lining is made of graphene composite fabric and is fixed to the main body of the pants (1) by magnetic snap.
10. A men's clothing structure with a waist-cinching function according to claim 4, characterized in that: The surface of the soft rubber block (6) is provided with a micro-protrusion structure. The height of the micro-protrusion is 0.1-0.3mm and the micro-protrusion is irregularly distributed to increase the friction with human skin and prevent the elastic stretch waist part (2) from slipping down.