Highly breathable children's garment

CN224597608UActive Publication Date: 2026-08-07FUJIAN CHUBI BEAR CLOTHING CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FUJIAN CHUBI BEAR CLOTHING CO LTD
Filing Date
2025-08-15
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

许多童装产品在设计和生产过程中,未能充分考虑到儿童的生理特点和活动需求,导致服装的透气性能较差

Benefits of technology

[0014] This invention utilizes a breathable mesh made of warp-knitted fabric blended with polyester and spandex to enhance airflow around the waist, quickly dissipating heat and sweat. The mounting holes, combined with a breathable jacquard fabric blended with cotton and Tencel, ensure chest ventilation while preventing stuffiness. The ventilation holes on the back directly provide airflow channels, and the gaps created by the inner silicone protrusions accelerate air circulation in the back, effectively dissipating heat. The wave-shaped design of the wave strips reduces the contact area with the neck while creating ventilation gaps, improving neck comfort. The back barrier layer, in conjunction with the adhesive layer, allows for flexible control of the opening and closing of the ventilation holes, meeting diverse needs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224597608U_ABST
    Figure CN224597608U_ABST
Patent Text Reader

Abstract

This utility model relates to the field of children's clothing, and more particularly to a highly breathable children's garment, comprising a garment body, a breathable mesh, mounting holes, a breathable fabric, wavy stripes, breathable holes, a bonding layer, a blocking layer, and raised dots. This invention enhances airflow around the waist through the breathable mesh, quickly dissipating heat and sweat. The mounting holes, in conjunction with the breathable fabric, ensure breathability at the chest while preventing stuffiness. The breathable holes at the back directly provide ventilation channels, and the gaps formed by the inner silicone raised dots effectively dissipate heat from the back. The wavy strips, with their wavy structure design, reduce the contact area with the neck while creating breathable gaps. The blocking layer at the back, in conjunction with the bonding layer, allows for flexible control of the opening and closing of the breathable holes. This invention solves the problem of poor breathability in existing children's clothing, which prevents children from quickly dissipating heat and sweat, causing discomfort, affecting their normal activities, and negatively impacting their skin health.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of children's clothing, and in particular to a highly breathable children's clothing. Background Technology

[0002] Clothing is an indispensable basic item in people's daily lives. It not only provides protection for the body and resists the adverse effects of the external environment, but also reflects people's lifestyle and personal style to a large extent. Among the clothing categories, children's clothing occupies a very important position. Children's clothing is mainly aimed at children. Since children are in a critical period of growth and development, their physical functions and skin conditions are quite different from those of adults. This makes children's clothing have more special and strict requirements in terms of design, material selection and production.

[0003] The existing technology has the following problems: children's clothing has significant shortcomings in breathability. Many children's clothing products fail to fully consider the physiological characteristics and activity needs of children during the design and production process, resulting in poor breathability. This makes it difficult for children to quickly dissipate the heat and sweat generated by their bodies during wear, easily creating a hot and humid environment between the clothing and their skin. This not only makes children feel uncomfortable and affects their normal activities, but may also have adverse effects on children's skin health in the long run.

[0004] Therefore, we propose a highly breathable children's clothing to solve the above problems. Utility Model Content

[0005] This invention provides a highly efficient and breathable children's garment to solve the technical problems mentioned in the background section.

[0006] To achieve the above objectives, this utility model adopts the following technical solution: a highly efficient and breathable children's garment, comprising a garment body; a breathable mesh is sewn onto the garment body, extending from below the armhole to the hem and covering the waist area; at least one mounting hole is provided on the front chest of the garment body, and a breathable fabric is sewn to the bottom edge of the mounting hole, covering the bottom of the mounting hole and forming a breathable structure; a wavy strip is sewn onto the inner edge of the collar of the garment body, the wavy strip being set along the collar outline; several spaced-apart breathable holes are provided on the back of the garment body, an adhesive layer is provided on the back of the garment body at the upper end of the breathable holes, and a blocking layer is provided on the back of the garment body at the lower end of the breathable holes, both the adhesive layer and the blocking layer being connected to the garment body, and being parallel and spaced apart, the blocking layer cooperating with the adhesive layer to seal the breathable holes.

[0007] Preferably, a number of protrusions are evenly distributed on the inner back side of the garment body, away from the ventilation holes, and the protrusions are fixedly connected to the inner back side of the garment body.

[0008] Preferably, the protrusions are made of silicone and are fixedly connected to the inner back of the garment body by heat-pressing adhesive.

[0009] Preferably, the blocking layer includes a connecting strip, the top end of which is sewn to the back of the garment body and located below the ventilation hole; a blocking piece is sewn to the top of the connecting strip, and a Velcro is sewn to the bottom of the blocking piece; the blocking piece can be flipped up and down about the seam between the connecting strip and the garment body, and the ventilation hole is sealed by the Velcro and the corresponding bonding layer.

[0010] Preferably, the bonding layer is made of nylon material, which is a polyamide fiber fabric.

[0011] Preferably, the breathable mesh is made of warp-knitted mesh fabric blended with polyester fiber and spandex, with a mesh size of 0.1-0.3cm.

[0012] Preferably, the breathable fabric is made of a jacquard fabric blended with cotton and Tencel.

[0013] The beneficial effects of this utility model are:

[0014] This invention utilizes a breathable mesh made of warp-knitted fabric blended with polyester and spandex to enhance airflow around the waist, quickly dissipating heat and sweat. The mounting holes, combined with a breathable jacquard fabric blended with cotton and Tencel, ensure chest ventilation while preventing stuffiness. The ventilation holes on the back directly provide airflow channels, and the gaps created by the inner silicone protrusions accelerate air circulation in the back, effectively dissipating heat. The wave-shaped design of the wave strips reduces the contact area with the neck while creating ventilation gaps, improving neck comfort. The back barrier layer, in conjunction with the adhesive layer, allows for flexible control of the opening and closing of the ventilation holes, meeting diverse needs.

[0015] This invention solves the problem that existing children's clothing has poor breathability, making it difficult for children to dissipate heat and sweat quickly during wear. This creates a stuffy and humid environment between the clothing and the skin, causing discomfort, affecting normal activities, and negatively impacting children's skin health. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2This is a structural schematic diagram of the back of the garment body of this utility model;

[0018] Figure 3 This is a utility model Figure 1 Enlarged structural diagram at point A;

[0019] Figure 4 This is a schematic diagram of the structure of the vent holes, the bonding layer, and the barrier layer of this utility model;

[0020] Figure 5 This is a schematic diagram of the structure of the garment body with protrusions on the inner side of the back.

[0021] Figure 6 This is a utility model Figure 5 Enlarged structural diagram at point B;

[0022] Figure 7 This is a schematic diagram of the structure of the garment body with raised dots on the inner side of the back.

[0023] The components include: garment body - 1, breathable mesh - 2, mounting holes - 3, breathable fabric - 4, wavy strip - 5, breathable holes - 6, bonding layer - 7, blocking layer - 8, raised dots - 9, connecting strip - 81, blocking piece - 82, and Velcro - 83. Detailed Implementation

[0024] To further explain the technical solution of this utility model, a detailed description is provided below through specific embodiments.

[0025] like Figure 1 , 2 As shown in Figures 3 and 4, this utility model provides a highly efficient and breathable children's clothing, including a clothing body 1. The clothing body 1 serves as the basic frame of the children's clothing, bearing all functional components and providing basic coverage for children.

[0026] A breathable mesh 2 is sewn onto the garment body 1. The breathable mesh 2 extends from below the armhole of the garment body 1 to the hem and covers the waist area. The breathable mesh 2 enhances air circulation in the waist and surrounding areas, and quickly dissipates the heat and sweat generated in the waist area when the child is active.

[0027] The garment body 1 has at least one mounting hole 3 on the front chest. In this embodiment, there are three mounting holes 3. The three mounting holes 3 can form more ventilation channels on the front chest. With the breathable fabric 4 covering the bottom, the air circulation efficiency in the chest area can be further improved, and the heat accumulated on the child's chest can be quickly removed. The bottom edge of the mounting hole 3 is fixed with the breathable fabric 4 by sewing. The breathable fabric 4 covers the bottom of the mounting hole 3 and forms a breathable structure. The breathable fabric 4, while ensuring the breathability of the chest, uses a high-density and breathable fabric to ensure breathability while better protecting the child's chest privacy and preventing the body from being directly seen from the outside.

[0028] The inner edge of the collar of the garment body 1 is sewn with a wavy strip 5. The wavy strip 5 is set along the outline of the collar. In this embodiment, the wavy strip 5 is made of soft spandex fabric, with a width of 1.5-2cm and a wave height of 0.5-1cm. It is sewn along the inner edge of the collar and tightly bonded to the collar fabric. Its wavy structure can reduce the contact area between the collar and the child's neck, reduce friction, and at the same time, the wavy pleats can form tiny breathable gaps, enhance the breathability of the neck, and improve wearing comfort.

[0029] The back of the garment body 1 has several spaced ventilation holes 6. The ventilation holes 6 provide a direct ventilation channel on the back of the garment body 1, which facilitates the entry of external air into the garment and dissipates the heat and sweat generated on the back. In this embodiment, three ventilation holes 6 are provided. Setting three holes can ensure that there are enough ventilation channels on the back to meet the heat dissipation needs of children's back when they are active, and will not reduce the strength of the fabric on the back of the garment body due to too many holes. Moreover, compared with a single large-diameter ventilation hole, three small-diameter ventilation holes can disperse the heat dissipation area and avoid local over- or under-ventilation.

[0030] An adhesive layer 7 is provided on the back of the garment body 1, above the ventilation hole 6. The adhesive layer 7 is used to seal the ventilation hole 6, which can effectively prevent dust from entering when ventilation is not required. A blocking layer 8 is provided on the back of the garment body 1, below the ventilation hole 6. The blocking layer 8 can be flipped up and down to cooperate with the adhesive layer 7 to seal the ventilation hole 6. The opening and closing of the ventilation hole can be flexibly adjusted according to the actual situation. Both the adhesive layer 7 and the blocking layer 8 are connected to the garment body 1, and the two are parallel and spaced apart. The blocking layer 8 can cooperate with the adhesive layer 7 to seal the ventilation hole 6.

[0031] The breathable mesh 2 is made of warp-knitted mesh fabric blended with polyester fiber and spandex, with a mesh size of 0.1-0.3cm. In this embodiment, the breathable mesh 2 is made of warp-knitted mesh fabric blended with polyester fiber and spandex in a 9:1 ratio, and is sewn to the garment body 1 by a flat-seam process. The polyester fiber, with its excellent abrasion resistance and wrinkle resistance, ensures that the breathable mesh 2 is not easily deformed after long-term use and multiple washes; the spandex allows the breathable mesh 2 to have an elastic elongation rate of 15%-20%, allowing it to stretch freely with the child's body movements and avoid a feeling of tightness.

[0032] The mesh size of the breathable mesh 2 is 0.2cm. This mesh size ensures high-efficiency breathability while effectively blocking external dust and insects, and the body cannot be seen from the outside, thus balancing breathability and privacy protection.

[0033] In this embodiment, the bonding layer 7 is made of nylon material, which is a polyamide fiber fabric. The bonding layer 7 serves as a cooperating structure with the barrier layer 8. By attaching the hook surface of its surface to the barrier layer 8, the air vent 6 is sealed. When it is necessary to reduce the amount of air permeability, the barrier layer 8 is flipped over to the bonding layer 7 and attached, which can effectively prevent air from entering through the air vent 6.

[0034] Among them, the breathable fabric 4 is made of jacquard fabric blended with cotton and Tencel. In this embodiment, the breathable fabric 4 is made of jacquard fabric blended with cotton and Tencel in a ratio of 7:3. The cotton fiber ensures the softness and skin-friendly properties and moisture absorption of the fabric, while the Tencel fiber ensures breathability.

[0035] The breathable fabric 4, combined with the mounting holes 3, enables effective ventilation in the chest area, allowing heat and moisture generated by the child's chest to dissipate in a timely manner. The tight weave of the jacquard fabric prevents the chest from being directly visible from the outside, ensuring both breathability and privacy.

[0036] like Figure 5 , 6 As shown, a number of raised dots 9 are evenly distributed on the inner back side of the garment body 1, avoiding the ventilation holes 6. In this embodiment, the raised dots 9 are arranged radially and evenly with the center of the back as the origin. The distance between two adjacent raised dots 9 is 1-2.5cm, and they avoid the ventilation holes 6 to ensure that they do not block the ventilation holes 6 and affect breathability. The raised dots 9 are fixedly connected to the inner back side of the garment body 1. The raised dots 9 can effectively reduce the contact area between the back of the garment body 1 and the back of the child's body, reduce the stuffiness caused by the close contact between the skin and the clothing, and allow the skin to have more space to contact the air. In addition, the raised dots 9 can create a certain gap between the back of the garment body 1 and the back of the body. This gap provides a channel for air circulation. When the outside air enters through the ventilation holes 6, it can flow freely in the gap, thereby quickly removing the heat and moisture generated by the body and further improving the breathability of the back.

[0037] The raised dots 9 are made of silicone, specifically medical-grade liquid silicone, which is non-toxic and odorless. They are fixed to the inside back of the garment body 1 via hot-press bonding. During installation, the corresponding areas on the inside back of the garment body 1 are first cleaned and impurities are removed. Then, the pre-made silicone raised dots 9 are positioned radially at specified intervals on the inside back of the garment body 1, avoiding the area of ​​the ventilation holes 6. Next, a hot-pressing device is used, with the hot-pressing temperature set to 130℃, the hot-pressing pressure to 0.4MPa, and the hot-pressing time to 8-10 seconds, so that the bottom of the silicone raised dots 9 is melted and bonded to the fabric fibers of the garment body 1. After cooling for 30 seconds, the fixation is complete.

[0038] like Figure 7 As shown, the barrier layer 8 of this utility model includes a connecting strip 81. The top end of the connecting strip 81 is sewn to the back of the garment body 1 and located at the lower end of the ventilation hole 6. The connecting strip 81 is fixed to the lower end of the ventilation hole 6 by a flat stitch process. The connecting strip 81 is used to connect the barrier piece 82 to the garment body 1, providing a stable fulcrum for the barrier piece 82 to flip. The top of the connecting strip 81 is sewn with the barrier piece 82, which is used to control the opening and closing of the ventilation hole 6. When the ventilation hole 6 is closed, it can prevent external dust and moisture from entering. Through cooperation with the connecting strip 81, it can be flipped up and down to achieve the opening and closing of the ventilation hole 6. The bottom of the blocking piece 82 is sewn with Velcro 83, which serves to quickly fix and separate the blocking piece 82. When the blocking piece 82 is flipped upward to cover the ventilation hole 6, the Velcro 83 is tightly attached to the hook side on the bonding layer 7, thus sealing the ventilation hole 6. When it is necessary to open the ventilation hole 6, a certain amount of pulling force is applied to separate the Velcro 83 from the bonding layer 7, and the ventilation hole 6 will be reopened to ensure the breathability. The blocking piece 82 can be flipped up and down around the seam between the connecting strip 81 and the garment body 1. The Velcro 83 cooperates with the bonding layer 7 at the corresponding position to complete the sealing of the ventilation hole 6.

[0039] Working principle: The garment body 1 is the basic frame, which supports all functional components and provides basic coverage for children. The waist breathable mesh 2 uses a warp-knitted mesh fabric made of polyester fiber and spandex blend, which can enhance the air circulation in the waist area while effectively blocking external dust and mosquitoes. The body cannot be seen from the outside, thus balancing breathability and privacy protection.

[0040] The three mounting holes 3 on the front chest are combined with a breathable jacquard fabric 4 made of cotton and Tencel blend to ensure breathability of the chest while protecting privacy.

[0041] The wavy stripe on the inside of the collar reduces neck friction and creates breathable gaps, enhancing the breathability of the neck and improving wearing comfort.

[0042] The three ventilation holes 6 on the back provide ventilation channels, and together with the gaps formed by the silicone protrusions 9 on the inside, they accelerate the air circulation and heat dissipation on the back.

[0043] The back barrier layer 8 is connected to the barrier piece 82 by the connecting strip 81 and flips up and down. With the help of Velcro 83 and the bonding layer 7, the opening and closing of the ventilation holes 6 can be flexibly controlled, so as to adjust the amount of air permeability according to actual needs, and achieve a comprehensive effect of high-efficiency breathability, comfortable wear and privacy protection.

[0044] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A highly breathable children's garment, characterized in that: Including the clothing itself (1); A breathable mesh (2) is sewn onto the garment body (1). The breathable mesh (2) extends from below the armhole of the garment body (1) to the hem and covers the waist area. The garment body (1) has at least one mounting hole (3) on the front chest. The bottom edge of the mounting hole (3) is fixed with a breathable fabric (4) by sewing. The breathable fabric (4) covers the bottom of the mounting hole (3) and forms a breathable structure. The inner edge of the collar of the garment body (1) is sewn with a wavy strip (5), which is set along the outline of the collar; The back of the garment body (1) has several spaced ventilation holes (6). An adhesive layer (7) is provided on the back of the garment body (1) at the upper end of the ventilation holes (6). A blocking layer (8) is provided on the back of the garment body (1) at the lower end of the ventilation holes (6). Both the adhesive layer (7) and the blocking layer (8) are connected to the garment body (1) and are parallel and spaced apart. The blocking layer (8) can cooperate with the adhesive layer (7) to seal the ventilation holes (6).

2. The highly breathable children's clothing according to claim 1, characterized in that: The inner back of the garment body (1) is evenly distributed with several protrusions (9) in a position away from the ventilation holes (6), and the protrusions (9) are fixedly connected to the inner back of the garment body (1).

3. The highly breathable children's clothing according to claim 2, characterized in that: The protrusions (9) are made of silicone and are fixedly connected to the inside back of the garment body (1) by hot pressing.

4. The highly breathable children's clothing according to claim 1, characterized in that: The blocking layer (8) includes a connecting strip (81), the top end of which is sewn to the back of the garment body (1) and located at the lower end of the ventilation hole (6); a blocking piece (82) is sewn to the top of the connecting strip (81), and a Velcro (83) is sewn to the bottom of the blocking piece (82); the blocking piece (82) can be flipped up and down around the seam between the connecting strip (81) and the garment body (1), and the Velcro (83) cooperates with the corresponding bonding layer (7) to complete the sealing of the ventilation hole (6).

5. The highly breathable children's clothing according to claim 1, characterized in that: The breathable mesh (2) is made of warp-knitted mesh fabric blended with polyester fiber and spandex, with a mesh size of 0.1-0.3cm.

6. The highly breathable children's clothing according to claim 4, characterized in that: The bonding layer (7) is made of nylon material, which is a polyamide fiber fabric.

7. The highly breathable children's clothing according to claim 1, characterized in that: The breathable fabric (4) is made of jacquard fabric blended with cotton and Tencel.