Man underpants with breathable waistband

By incorporating alternating breathable channels and woven longitudinal and transverse ribs in the waistband of men's underwear, the problem of sweat buildup in the waistband area is solved, achieving better breathability and comfort, and reducing discomfort and the risk of skin allergies.

CN224155155UActive Publication Date: 2026-04-24GUANGDONG QIYUE FUTURE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG QIYUE FUTURE TECH CO LTD
Filing Date
2025-05-28
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Sweat tends to accumulate in the waistband area of ​​men's underwear, causing discomfort and a sticky feeling. Existing breathable materials or perforation designs have failed to effectively solve this problem.

Method used

Alternating first and second ventilation groove groups are set at the waist head area, and longitudinal and transverse ribs are woven in the grooves to improve structural strength. The groove groups are staggered along the length and width of the waist head to enhance breathability and comfort.

Benefits of technology

It improves airflow and breathability in the waist area, reduces discomfort caused by sweat buildup, maintains wearing comfort and structural stability, and reduces the risk of skin allergies.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of underpants, in particular to men's underpants with a breathable waistband, which comprise a front piece, a rear piece, a crotch, a bottom wave and the waistband, the two sides of the front piece are connected with the two sides of the rear piece, the peripheral edge of the crotch is connected with the front piece, and the bottom of the crotch and the inner side of the bottom of the front piece are both connected with the front end of the bottom wave. The bottom of the rear piece is connected with the rear end of the bottom wave, the top of the front piece, the top of the rear piece and the top of the crotch are all connected with the bottom of the waistband, and a plurality of first ventilation groove sets and a plurality of second ventilation groove sets are formed in the outer surface of the waistband and are alternately arranged at intervals in the length direction of the waistband. The first ventilation groove set and the second ventilation groove set are alternately formed in the waistband, the airflow circulation cavity groove position is provided for the waistband part, the air circulation performance of the waistband area is improved, meanwhile, the area provided with the ventilation groove sets and the waistband are thin, the breathability and the comfort degree of the whole waistband are improved, and practicability is high.
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Description

Technical Field

[0001] This application relates to the field of underwear, and more particularly to a type of men's underwear with a breathable waistband. Background Technology

[0002] Men's underwear is a type of close-fitting clothing worn by men daily to cover and protect their male genitals.

[0003] Because men have a higher metabolic rate and sweat more frequently, especially in summer or during strenuous exercise, wearing underwear can easily cause stuffiness and discomfort. Therefore, to improve the breathability and comfort of men's underwear, existing technologies mainly include using breathable materials and increasing ventilation holes. Specifically, commonly used breathable materials such as cotton and polyester achieve a certain degree of breathability through their own physical properties; or ventilation holes are added to key areas of the underwear (such as the crotch and gusset) to improve air circulation efficiency and reduce stuffiness on the male reproductive organs.

[0004] Although using breathable materials such as cotton and polyester, or adding ventilation holes in the crotch and hem, can improve the breathability of underwear, the elastic waistband is still an area where sweat easily accumulates and creates a sticky feeling when wearing it. When the activity frequency is high and sweating is heavy, the sweat accumulated in the waistband reduces the comfort of wearing underwear. Utility Model Content

[0005] To address the issue of sweat buildup in the waistband area reducing wearing comfort, this application provides a men's underwear with a breathable waistband.

[0006] The technical solution for the breathable waistband men's underwear provided in this application is as follows:

[0007] A type of men's underwear with a breathable waistband includes a front panel, a back panel, a crotch, a gusset, and a waistband. The two sides of the front panel are connected to the two sides of the back panel. The four edges of the crotch are connected to the front panel. The bottom of the crotch and the inner bottom of the front panel are both connected to the front end of the gusset. The bottom of the back panel is connected to the rear end of the gusset. The top of the front panel, the top of the back panel, and the top of the crotch are all connected to the bottom of the waistband. The outer surface of the waistband is provided with a plurality of first breathable groove groups and a plurality of second breathable groove groups. The plurality of first breathable groove groups and the plurality of second breathable groove groups are alternately spaced along the length of the waistband.

[0008] By adopting the above technical solution, the setting of the first and second ventilation groove groups provides airflow channels for the waist area, improving the airflow in the waist area. At the same time, the waist area with ventilation groove groups is thinner, which improves the overall breathability and comfort of the waist area, reduces discomfort caused by sweat accumulation in the waist area, and also reduces the risk of skin allergies, making it highly practical.

[0009] Optionally, a first ventilation slot group has a plurality of first ventilation slots, which are spaced apart along the width direction of the waist; a second ventilation slot group has a plurality of second ventilation slots, which are spaced apart along the width direction of the waist.

[0010] By adopting the above technical solution, the first and second ventilation grooves are respectively arranged at intervals along the width direction of the waistband, which can uniformly and effectively improve the breathability of the waistband area within a unit area and improve wearing comfort; and can also maintain good breathability in the waistband under the stretching state, making it highly practical.

[0011] Optionally, the number of first air vents in a first air vent group is greater than the number of second air vents in a second air vent group, and the gap between adjacent first air vents in a second air vent group is set for the second air vents.

[0012] By adopting the above technical solution, the air flow of the first breathable groove group is better than that of the second breathable groove group, which can improve the overall breathability of the waistband. At the same time, the gap between the second breathable groove and the adjacent first breathable groove of the first breathable groove group can improve the air flow efficiency while ensuring the elastic stability of the waistband, so that the wearer can keep the waistband comfortable and dry during exercise or high temperature environment.

[0013] Optionally, a first longitudinal rib and a first transverse rib are provided in one of the first ventilation grooves, with the first longitudinal rib and the first transverse rib being arranged perpendicularly.

[0014] By adopting the above technical solution, the setting of the first longitudinal rib and the first transverse rib can improve the structural strength of the first ventilation groove and the structural strength of the waist head, prevent the ventilation groove from being deformed or damaged due to repeated stretching during long-term use, and maintain good ventilation performance.

[0015] Optionally, a second longitudinal rib and a second transverse rib are provided in one of the second ventilation grooves, with the second longitudinal rib and the second transverse rib being arranged perpendicularly.

[0016] By adopting the above technical solution, the structural strength of the second ventilation groove can be increased, preventing the ventilation groove from deforming due to pulling or squeezing during wear, and ensuring the stability and durability of the breathability performance.

[0017] Optionally, the maximum width of both the first and second ventilation slots in the longest stretched state of the waistband is 2.5 mm.

[0018] By adopting the above technical solution, the first and second ventilation channels can still maintain a certain opening width when the waistband is stretched, ensuring good breathability; at the same time, it can prevent the first and second ventilation channels from deforming or closing due to excessive stretching, further improving the comfort and durability of the waistband.

[0019] Optionally, the inner surface of the crotch area is provided with a skin-friendly layer, and the skin-friendly layer has a number of breathable holes.

[0020] By adopting the above technical solution, the skin-friendly layer on the inner surface of the crotch can improve wearing comfort and reduce friction. At the same time, the several ventilation holes on the skin-friendly layer further enhance the breathability of the crotch, improve the overall breathability and moisture-wicking effect of the underwear, and keep the user dry and comfortable even when wearing it for a long time.

[0021] Optionally, the front and rear ends of the waistband are inclined to form a V-shaped connecting segment, and the V-shaped connecting segment is provided at the top of the crotch.

[0022] By adopting the above technical solution, the V-shaped connecting section can better adapt to the curves of the human body, providing some support for the slightly protruding belly of men, reducing the pressure of the waistband on the abdomen, and improving wearing comfort; at the same time, the V-shaped connecting section can also provide some space for the abdomen, reducing the stuffiness of the waistband on the abdomen when wearing, allowing for smooth air circulation, reducing sweat accumulation, and keeping the wearer dry.

[0023] Optionally, the top of the crotch, the top of the front piece, and the top of the back piece are all attached to the inner surface of the waistband, and the bottom of the front piece, the bottom of the back piece, and both sides of the bottom wave are folded inward and attached to form the trouser legs.

[0024] By adopting the above technical solutions, the fit between the waistband and the front, back, and crotch panels can be improved, reducing the friction of seams on the male abdomen, making the underwear fit the body better, and improving comfort and appearance. At the same time, the bottom of the front panel, the bottom of the back panel, and both sides of the hem are folded inward and fitted together to form the cuffs, improving the overall structural stability of the pants, presenting a seamless edge appearance, and avoiding the friction of traditional seams on the skin, thus improving wearing comfort.

[0025] In summary, this application includes at least one of the following beneficial technical effects:

[0026] 1. The first and second ventilation slots of this application provide airflow channels for the waist area, improving airflow in the waist area, thereby improving the overall breathability and comfort of the waist area, reducing discomfort caused by sweat accumulation in the waist area, and also reducing the risk of skin allergies, making it highly practical.

[0027] 2. The staggered layout of the first and second breathable groove groups, the staggered spacing of the first and second breathable grooves, and the different numbers of breathable grooves improve air circulation in the waistband area, further enhance breathability, reduce the stickiness caused by sweat accumulation, and ensure the elastic stability of the waistband. Repeated stretching and rebound during long-term wear are less likely to cause waistband deformation.

[0028] 3. The first longitudinal rib, the first transverse rib, the second longitudinal rib, and the second transverse rib provided in this application can improve the structural strength of the first ventilation groove, the structural strength of the second ventilation groove, and the overall structural strength of the waist head, prevent the ventilation groove from being deformed or damaged due to repeated stretching during long-term use, and maintain good ventilation performance. Attached Figure Description

[0029] Figure 1 This is a front view of the outer surface of a men's underwear with a breathable waistband according to this application;

[0030] Figure 2 This is a schematic diagram of the back surface of the outer surface of a breathable waistband men's underwear according to this application;

[0031] Figure 3 This is a front view of the inner surface of a men's underwear with a breathable waistband according to this application;

[0032] Figure 4 yes Figure 1 Enlarged view of section A;

[0033] Figure 5 This is a partial structural diagram of the waist head described in this application in an elongated state.

[0034] Explanation of reference numerals in the attached drawings: 1. Front panel; 2. Back panel; 3. Crotch; 31. Skin-friendly layer; 311. Ventilation hole; 4. Bottom wave; 5. Waistband; 51. First ventilation groove group; 511. First ventilation groove; 512. First longitudinal rib; 513. First transverse rib; 52. Second ventilation groove group; 521. Second ventilation groove; 522. Second longitudinal rib; 523. Second transverse rib; 53. V-shaped connecting section; 6. Leg opening. Detailed Implementation

[0035] The following is in conjunction with the appendix Figure 1-5 This application will be described in further detail.

[0036] This application discloses a breathable waistband for men's underwear. (See also...) Figure 1 and Figure 2 The breathable waistband men's underwear includes a front piece 1, a back piece 2, a crotch area 3, a gusset 4, and a waistband 5. The two sides of the front piece 1 are connected to the two sides of the back piece 2, which can be by sewing, bonding, or integral molding. In this embodiment, the two sides of the front piece 1 and the two sides of the back piece 2 are preferably integrally molded; wherein, as... Figure 3 As shown, the four edges of the crotch 3 are connected to the front piece 1, and the inner surface of the crotch 3 is provided with a skin-friendly layer 31. The skin-friendly layer 31 has several ventilation holes 311 to improve the breathability of the crotch 3 area. The bottom of the crotch 3 and the inner bottom of the front piece 1 are connected to the front end of the bottom wave 4, and the bottom of the back piece 2 is connected to the rear end of the bottom wave 4. The top of the front piece 1, the top of the back piece 2, and the top of the crotch 3 are all attached to the inner surface of the waistband 5. The bottom of the front piece 1, the bottom of the back piece 2, and the two sides of the bottom wave 4 are folded inward and attached to form the leg opening 6, thus forming the basic shape of men's underwear. Preferably, in this embodiment, the first and last ends of the waistband 5 are inclined to form a V-shaped connecting section 53, and the V-shaped connecting section 53 is set corresponding to the top of the crotch 3 to provide a certain support for the male abdomen; wherein, the V-angle α of the V-shaped connecting section 53 is 130-170°. In this embodiment, the crotch portion 3 and the skin-friendly layer 31 have the same shape and size. A three-dimensional accommodating cavity can be formed by molding the crotch portion 3 and the skin-friendly layer 31, or a three-dimensional accommodating cavity can be formed by connecting cut pieces, or a three-dimensional accommodating cavity can be formed by sewing expansion lines. All of these are within the protection scope of this application.

[0037] See Figure 4 and Figure 5In this embodiment, the waistband 5 is specifically formed by weaving to create an elastic waistband 5 structure. Specifically, along the length direction of the waistband 5, several alternating first ventilation groove groups 51 and several second ventilation groove groups 52 are woven on the outer surface. Each first ventilation groove group 51 has several first ventilation grooves 511, and the several first ventilation grooves 511 in the first ventilation groove group 51 are spaced apart along the width direction of the waistband 5. Similarly, each second ventilation groove group 52 has several second ventilation grooves 521, and the several second ventilation grooves 521 in the second ventilation groove group 52 are spaced apart along the width direction of the waistband 5. That is, the arrangement direction of the several first ventilation grooves 511 in the first ventilation groove group 51 is parallel to the arrangement direction of the several second ventilation grooves 521 in the second ventilation groove group 52, and both are arranged perpendicular to the length direction of the waistband 5 and parallel to the width direction of the waistband 5. Preferably, the number of first air vents 511 in a first air vent group 51 is greater than the number of second air vents 521 in a second air vent group 52, and the number of first air vents 511 in a first air vent group 51 can be odd or even, and the number of second air vents 521 in a second air vent group 52 can also be odd or even, as shown in the attached figure. Figure 3 As shown, there are seven first air vents 511 in a first air vent group 51 and four second air vents 521 in a second air vent group 52. The second air vents 521 are set to correspond to the gap between adjacent first air vents 511 in a first air vent group 51. That is, in an adjacent first air vent group 51 and a second air vent group 52, the first air vents 511 and the second air vents 521 are staggered. For example, the first air vents 511 are set to correspond to the longitudinal gap between two second air vents 521, and the second air vents 521 are set to correspond to the longitudinal interval between two first air vents 511.

[0038] Preferably, in this embodiment, the waistband 5 is woven with a first longitudinal rib 512 and a first transverse rib 513 within a first ventilation groove 511, with the first longitudinal rib 512 and the first transverse rib 513 arranged perpendicularly. Similarly, a second longitudinal rib 522 and a second transverse rib 523 are woven within a second ventilation groove 521, with the second longitudinal rib 522 and the second transverse rib 523 arranged perpendicularly. This improves the structural strength of the first and second ventilation grooves 511 and 521, making them less prone to deformation under repeated stretching during long-term wear, thus ensuring the elasticity of the waistband 5 in the length direction. When the waistband 5 is in its longest stretched state, the maximum width of the first and second ventilation grooves 511 and 521 is 2.5mm, ensuring the breathability of the waistband 5 while preventing deformation even after long-term wear.

[0039] The implementation principle of a breathable waistband men's underwear according to an embodiment of this application is as follows: a waistband 5 with several first breathable groove groups 51 and several second breathable groove groups 52 arranged alternately on the outer surface is woven by knitting. At the same time, a front piece 1, a back piece 2, a crotch 3, a skin-friendly layer 31, and a bottom wave 4 are cut according to the size. The front piece 1 and the back piece 2 can be integrally formed fabrics cut from a single piece of material. Then, the two side edges of the crotch 3 and the two side edges of the skin-friendly layer 31 are connected to the front piece 1. The bottom of the crotch 3, the bottom of the skin-friendly layer 31, and the inner bottom of the front piece 1 are all connected to the front end of the bottom wave 4. The bottom of the back piece 2 is connected to the rear end of the bottom wave 4 to form the pant body structure.

[0040] Next, the top of the front piece 1, the top of the crotch 3, and the top of the back piece 2 are all attached to the inner surface of the waistband 5. At the same time, the connection points of the first and last ends of the waistband 5 are aligned with the outer surface of the crotch 3, and the first and last ends of the waistband 5 are both set at an angle to form a V-shaped connection section 53. The bottom of the front piece 1, the sides of the bottom wave 4, and the bottom of the back piece 2 are surrounded to form pant legs. The edges of the pant legs 6 are folded inward and attached to form pant legs 6 with attached edges, thus producing men's underwear with a breathable waistband.

[0041] When wearing these breathable waistband men's underwear, the legs pass through the pants and the V-shaped connecting section 53 of the waistband 5 is adjusted to correspond to the front abdomen of the body to provide a certain degree of support. At the same time, the positions of the skin-friendly layer 31, crotch 3, and pant legs 6 are adjusted to make wearing comfortable.

[0042] The above are all preferred embodiments of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A breathable waistband men's underwear, comprising a front piece (1), a back piece (2), a crotch (3), a gusset (4), and a waistband (5), wherein the two sides of the front piece (1) are connected to the two sides of the back piece (2), the four edges of the crotch (3) are connected to the front piece (1), the bottom of the crotch (3) and the inner bottom of the front piece (1) are both connected to the front end of the gusset (4), the bottom of the back piece (2) is connected to the rear end of the gusset (4), and the top of the front piece (1), the top of the back piece (2), and the top of the crotch (3) are all connected to the bottom of the waistband (5), characterized in that: The outer surface of the waist head (5) is provided with a plurality of first ventilation groove groups (51) and a plurality of second ventilation groove groups (52), and the plurality of first ventilation groove groups (51) and the plurality of second ventilation groove groups (52) are alternately spaced along the length direction of the waist head (5).

2. The men's underwear with a breathable waistband according to claim 1, characterized in that: A first ventilation groove group (51) has a plurality of first ventilation grooves (511), and the plurality of first ventilation grooves (511) are spaced apart along the width direction of the waist head (5); a second ventilation groove group (52) has a plurality of second ventilation grooves (521), and the plurality of second ventilation grooves (521) are spaced apart along the width direction of the waist head (5).

3. The men's underwear with a breathable waistband according to claim 2, characterized in that: The number of first air vents (511) in a first air vent group (51) is greater than the number of second air vents (521) in a second air vent group (52), and the second air vents (521) are set to correspond to the gap between adjacent first air vents (511) in a first air vent group (51).

4. A breathable waistband men's underwear according to any one of claims 1-3, characterized in that: The first ventilation groove (511) is provided with a first longitudinal rib (512) and a first transverse rib (513), with the first longitudinal rib (512) and the first transverse rib (513) being arranged perpendicularly to each other.

5. A men's underwear with a breathable waistband (5) according to any one of claims 1-3, characterized in that: A second venting groove (521) is provided with a second longitudinal rib (522) and a second transverse rib (523), wherein the second longitudinal rib (522) and the second transverse rib (523) are arranged perpendicularly to each other.

6. A breathable waistband men's underwear according to any one of claims 1-3, characterized in that: The maximum width of the first ventilation groove (511) and the second ventilation groove (521) in the longest stretched state of the waist head (5) is 2.5 mm.

7. The men's underwear with a breathable waistband according to claim 1, characterized in that: The inner surface of the crotch (3) is provided with a skin-friendly layer (31), and the skin-friendly layer (31) has a plurality of air vents (311).

8. The men's underwear with a breathable waistband (5) according to claim 1, characterized in that: The waist head (5) is inclined at the front and rear ends to form a V-shaped connecting section (53), and the V-shaped connecting section (53) is provided at the top of the crotch (3).

9. The men's underwear with a breathable waistband according to claim 1, characterized in that: The top of the crotch (3), the top of the front piece (1) and the top of the back piece (2) are all attached to the inner surface of the waistband (5), and the bottom of the front piece (1), the bottom of the back piece (2) and the two sides of the bottom wave (4) are all folded inward and attached to form the trouser leg (6).