Shirt

The double-layered shirt with strategically placed air intakes effectively manages sweat evaporation and odor by promoting airflow, improving comfort during humid conditions.

JP2025132974APending Publication Date: 2025-09-10橋本 真吾
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Patent Information

Application Number
JP2024086677
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-05-08
Publication Date
2025-09-10

AI Technical Summary

Technical Problem

Existing shirts are not designed to effectively manage sweat accumulation and evaporation, leading to foul odors during humid conditions.

Method used

A shirt with a double-layer structure featuring inner and outer layers and strategically placed natural air intakes on the sides and waist to promote sweat evaporation and airflow.

Benefits of technology

The design lowers sensible temperature and prevents underarm odor by allowing natural wind to directly hit the wearer, enhancing comfort during humid weather.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a shirt equipped with a natural air intake function.SOLUTION: The shirt features inner mesh on both sides and around the waist, allowing natural air to directly touch the body, keeping a wearer cool and clean even in the hot summer.SELECTED DRAWING: Figure 7
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Description

[Technical Field]

[0001] The present invention is a shirt with a natural wind capture function. [Background technology]

[0002] Regarding this type of shirt, shirts 10 (Fig. 7), 20 (Fig. 14), and 30 (Fig. 21) that are equipped with the natural wind intake function proposed by the present applicant have not existed until now.

[0003] However, typical shirts are generally T-shaped, with long or short sleeves, and come in a variety of patterns, and are not particularly distinctive. Even if they do have distinctive features, functional elements have existed in the past, but they have not been revolutionary. Summary of the Invention [Problem to be solved by the invention]

[0004] The shirt of the present invention is humid and damp in the summer, so sweat may accumulate in the armpit natural air inlets R1, L1 (Fig. 1), chest F (Fig. 1), back B (Fig. 1), and waist natural air inlets Rair, Lair (Fig. 1), which may cause a foul odor. [Means for solving the problem]

[0005] Therefore, the garment is made up of two layers, an inner layer I (Figure 1) that absorbs sweat and an outer layer, and natural air intakes are provided on both sides R1 and L1 (Figure 1) and around the waist Rair and Lair (Figure 1) to promote evaporation of sweat. [Effects of the Invention]

[0006] In the present invention, by providing natural air intakes R1, L1 (Fig. 1), Rair, and Lair (Fig. 1), the sensible temperature can be lowered by natural wind, and the inner I (Fig. 1) makes it easier to absorb sweat, and the mesh armpits allow natural wind to directly hit the wearer, preventing underarm odor. [Brief explanation of the drawings]

[0007] [Figure 1] Front view of Example 1 [Figure 2] Rear view of Example 1 [Figure 3] Right side view of Example 1 [Figure 4] Left side view of Example 1 [Figure 5] Plan view of Example 1 [Figure 6] Bottom view of Example 1 [Figure 7] Perspective view of Example 1 [Figure 8] Front view of Example 2 [Figure 9] Rear view of Example 2 [Figure 10] Right side view of Example 2 [Figure 11] Left side view of Example 2 [Figure 12] Plan view of Example 2 [Figure 13] Bottom view of Example 2 [Figure 14] Perspective view of Example 2 [Figure 15] Front view of Example 3 [Figure 16] Rear view of Example 3 [Figure 17] Right side view of Example 3 [Figure 18] Left side view of Example 3 [Figure 19] Plan view of Example 3 [Figure 20] Bottom view of Example 3 [Figure 21] 3 is a perspective view of the third embodiment; DETAILED DESCRIPTION OF THE INVENTION

[0008] 1 to 7 to 21 show an embodiment of a shirt according to the present invention. In Fig. 1, the shirt 10 has a double structure consisting of an inner layer I and an outer layer. Natural air intakes are provided at both sides: R1, L1 (Fig. 1), R11, L11 (Fig. 8), and R12, L12 (Fig. 15). Natural air intakes are also provided at both waists: Rair, Lair (Fig. 1), Rair1, Lair1 (Fig. 8), and Rair2, Lair2 (Fig. 15).

[0009] Instead of a double structure of inner and outer garments, the natural intake ports on both sides R1, L1 (Fig. 1), R11, L11 (Fig. 8), R12, L12 (Fig. 15) and the natural intake ports on both waists Rair, Lair (Fig. 1), Rair1, Lair1 (Fig. 8), Rair2, Lair2 (Fig. 15) may be sewn in a single layer by cutting an incision in the outer garment.

[0010] The basic configurations of the first, second and third embodiments are common to each other as described above.

[0011] This will be described in detail in Example 1. The shirt 10 has a double structure consisting of an inner layer I and an outer layer. It has long sleeves RS and LS, and the inner layer I has a mesh structure at the sides R1 and L1 of the sleeves. At the waist, there are elongated triangular natural air intakes R2, R3, and R4 (Rair) on the right side of the front that flow from top to bottom, and elongated triangular natural air intakes L2, L3, and L4 (Lair) on the left side of the front that also flow from top to bottom.

[0012] Shirt 10 has a slightly fuller chest F (Fig. 3, Fig. 4) and a slightly firm back B (Fig. 3, Fig. 4), making it suitable for muscular men and women.

[0013] The double-layered structure of shirt 10 can be seen from the plan view (FIG. 5), bottom view (FIG. 6), and perspective view (FIG. 7) of shirt 10. In FIGS. 5, 6, and 7, the inner layer (FIGS. 6 and 7) and the outer layer (FIGS. 5 and 7) are shown.

[0014] This will be described in detail in Example 2. The shirt 20 (Fig. 8) has a double layer structure consisting of an inner layer I (Fig. 8) and an outer layer. It has long sleeves RS and LS (Fig. 8), and the mesh structure of the inner layer I is provided at the natural air intakes R11 and L11 at the sides of the sleeves. At the waist, there are elongated triangular natural air intakes R31 and R41 on the right side of the front that flow from top to bottom, and an elongated triangular natural air intake R21 (Rair1) that flows from bottom to top, and on the left side of the front, there are elongated triangular natural air intakes L31 and L41 that also flow from top to bottom, and an elongated triangular natural air intake L21 (Lair1) that flows from bottom to top.

[0015] The natural intake ports R21 and L21 (Fig. 10 and Fig. 11) flow from bottom to top because they are not only functional but also fashionable.

[0016] Shirt 20 has a slightly puffy chest F (Fig. 10, Fig. 11) and a slightly firm back B (Fig. 10, Fig. 11), making it suitable for muscular men and women.

[0017] Furthermore, the double-layered structure of shirt 20 can be seen from the plan view (FIG. 12), bottom view (FIG. 13), and perspective view (FIG. 14) of shirt 20. In FIGS. 12, 13, and 14, the inner layer (FIGS. 13 and 14) and the outer layer (FIGS. 12 and 14) are shown.

[0018] This will be described in detail in Example 3. The shirt 30 has a double structure consisting of an inner layer I and an outer layer. It has short sleeves RS1 and LS1, and the inner layer I has a mesh structure at the sides R12 and L12 of the sleeves. At the waist, there is an elongated triangle Rair2 on the right side of the front that flows from bottom to top, and an elongated triangle Lair2 on the left side of the front that also flows from bottom to top.

[0019] The shirt 30 has a slight tension in the chest F (Figs. 17 and 18) and a slight tension in the back B (Figs. 17 and 18), and is shaped to fit muscular men and women.

[0020] The double-layered structure of shirt 30 can be seen from the plan view (Fig. 19), bottom view (Fig. 20), and perspective view (Fig. 21) of shirt 30. In Figs. 19, 20, and 21, the inner layer (Figs. 20 and 21) and the outer layer (Figs. 19 and 21) are shown.

[0021] As such, the above-described embodiments are merely examples in all respects and should not be interpreted as limiting. Furthermore, all modifications and changes within the scope of the claims are within the scope of the present invention. [Industrial Applicability]

[0022] According to the present invention, the shirt (Figs. 10, 20, 30) can be used to keep you cool and comfortable during the humid summer months and also to prevent underarm odor. [Explanation of symbols]

[0023] 10 shirts I Inner R1 Right side natural intake R2 Right side waist natural intake port R3 Right side waist natural intake port R4 Right side natural intake port L1 Left side natural intake L2 Left side waist natural intake port L3 Left side waist natural intake port L4 Left side waist natural intake port 20 shirt R11 Right side natural intake R21 Right side waist natural intake port R31 Right side waist natural intake port R41 Right side waist natural intake port L11 Left side natural intake L21 Left side waist natural intake port L31 Left side waist natural intake port L41 Left side waist natural intake port 30 shirt R12 Right side natural intake Rair2 right side waist natural intake port L12 Left side natural intake Lair2 left side natural intake port Chest F Back B

Claims

1. The inner fabric and In a shirt with a double layer of outer fabric, The shirt features natural intake ports on both sides. shirt

2. On both sides of the shirt, Equipped with a natural intake The shirt according to claim 1

3. On both outer lower parts of the shirt, Equipped with a natural intake The shirt according to claim 1

4. 10. The shirt of claim 1, Natural intake ports are installed on both sides. The shirt of claims 2 and 3

5. It's a shirt made from a single piece of fabric, Natural intake ports are installed on both sides. The shirt of claims 2 and 3

Citation Information

Patent Citations

  • Dual structured shirt integrally provided with sweat-absorbing and quick-drying inner wear

    JP2004211246A

  • clothes

    JP2008513624A

  • Inner shirt

    JP3227802U