Moisture-absorbing breathable mesh fabric
Through the yarn and specific braided structure of tight Sairo spinning and spandex wire blended, the heat and sweat adhesion of mesh fabric during exercise is solved, and high breathability, heat dissipation and comfort are improved.
Patent Information
- Application Number
- CN202421907956.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-08
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-08-08
AI Technical Summary
Existing mesh fabrics are prone to heat and sweat adhesion during exercise, resulting in a stuffy feeling and affecting breathable heat dissipation and comfort.
The yarn is made of tightly serrated spinning and spandex wire, and a uniform and neat concave feeling is formed through a specific woven structure, combined with the bead-ground design, forming an excellent breathable and heat dissipation effect.
It realizes uniform arrangement of the fabric and strong concave and convex feeling, improves breathability and heat dissipation performance, increases moisture absorption and comfort, and has excellent wear resistance and pill resistance.
Smart Images

Figure CN223176336U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a fabric, in particular to a mesh fabric, belonging to the field of textile technology. Background Art
[0002] Weft knitted fabrics mainly have three structural units, namely loop formation, tuck stitch, and non-knitting. Loop formation means taking all needles, and the knitting needle completes the entire knitting process to form loops. Tuck stitch means taking half needles, and the knitting needle only takes yarn without looping off or forming loops, forming loop arcs on the old loops. Non-knitting means not taking needles, and the knitting needle does not take yarn, forming floats on the back of the fabric.
[0003] At present, mesh fabrics are widely used in the clothing industry. By arranging the loop formation and tuck stitch loop arcs in the loops in an alternating manner, a mesh effect is formed. When people exercise, a large amount of heat is easily generated and sweat is produced on the skin surface. The temperature of the skin surface is adjusted through the evaporation of sweat. However, existing ordinary mesh fabrics are easily adsorbed on the skin surface under the adhesion of sweat, generating a sticky feeling and affecting the evaporation of sweat, resulting in a stuffy feeling. Summary of the Invention
[0004] The technical problem to be solved by the utility model is to provide a moisture-absorbing and breathable mesh fabric with uniform and neat arrangement, strong concave-convex feeling, and good air permeability and heat dissipation.
[0005] The technical solution proposed by the utility model to solve the above technical problem is: including a fabric body, the fabric body is a weft knitted fabric, the fabric body is knitted in a cycle consisting of the first row, the second row, the third row, the fourth row, the fifth row, and the sixth row. The organizational structure of the first row is tuck stitch, loop formation, loop formation, tuck stitch, tuck stitch, loop formation in sequence. The organizational structure of the second row is loop formation, loop formation, loop formation, loop formation, loop formation, tuck stitch in sequence. The organizational structure of the third row is loop formation, loop formation, loop formation, loop formation, tuck stitch, loop formation in sequence. The organizational structure of the fourth row is tuck stitch, loop formation, float, loop formation, loop formation, tuck stitch in sequence. The organizational structure of the fifth row is loop formation, tuck stitch, loop formation, float, tuck stitch, loop formation in sequence. The organizational structure of the sixth row is loop formation, loop formation, tuck stitch, loop formation, loop formation, tuck stitch in sequence.
[0006] The fabric body includes a piqué part knitted by needle five and needle six.
[0007] The fabric body includes two holes respectively knitted by the fourth row and the fifth row.
[0008] The yarns of the first row to the sixth row are blended by compact siro-spun yarn and spandex yarn.
[0009] The thickness of the compact siro-spun yarn in the yarn is 32 counts.
[0010] The fineness of the spandex yarn described is 30D.
[0011] The utility model has positive effects:
[0012] (1) The fabric body of the moisture-absorbing and breathable mesh fabric of the utility model is woven in a cycle with the first path, the second path, the third path, the fourth path, the fifth path, and the sixth path. Among them, needle five and needle six are alternately knitted by forming loops and tucking to form a pique part, making the fabric surface arranged evenly and neatly, with a strong sense of concavity and convexity, and better air permeability and heat dissipation effects.
[0013] (2) The yarn of the moisture-absorbing and breathable mesh fabric of the utility model is blended with compact siro-spun yarn and spandex yarn, making the fabric more moisture-absorbing, breathable, comfortable and skin-friendly. It is mainly made of cotton, and is superior to ordinary single-sided jersey fabric in terms of sweat discharge and comfort. Adding spandex makes the fabric have better elasticity, soft hand feeling, stable size and is not easy to deform. Using compact siro-spun yarn with a fineness of 32 counts and spandex yarn with a fineness of 30D, the yarn process combines compact spinning, the yarn has even yarn evenness, fewer hairiness, a tight structure, good abrasion resistance, and with the blending of 30D spandex yarn, the yarn quality, strength and anti-pilling performance are better. Description of the Drawings
[0014] The moisture-absorbing and breathable mesh fabric of the utility model will be further described below with reference to the drawings.
[0015] Figure 1 It is a knitting diagram of a moisture-absorbing and breathable mesh fabric according to an embodiment of the utility model.
[0016] The above-mentioned reference numerals are as follows:
[0017] The first path 1, the second path 2, the third path 3, the fourth path 4, the fifth path 5, the sixth path 6, needle one a, needle two b, needle three c, needle four d, needle five e, needle six f. Detailed Embodiment Embodiment
[0018] See Figure 1, the moisture-absorbing and breathable mesh fabric of this embodiment includes a fabric body. The fabric body is a weft knitted fabric. The radial direction of the fabric body is knitted in a cycle with the first course 1, the second course 2, the third course 3, the fourth course 4, the fifth course 5, and the sixth course 6. The weft direction of the fabric body is knitted in a cycle with needle one a, needle two b, needle three c, needle four d, needle five e, and needle six f. The tissue structure of the first course 1 is in sequence tuck stitch, stitch formation, stitch formation, tuck stitch, tuck stitch, stitch formation. The tissue structure of the second course 2 is in sequence stitch formation, stitch formation, stitch formation, stitch formation, stitch formation, tuck stitch. The tissue structure of the third course 3 is in sequence stitch formation, stitch formation, stitch formation, stitch formation, tuck stitch, stitch formation. The tissue structure of the fourth course 4 is in sequence tuck stitch, stitch formation, float stitch, stitch formation, stitch formation, tuck stitch. The tissue structure of the fifth course 5 is in sequence stitch formation, tuck stitch, stitch formation, float stitch, tuck stitch, stitch formation. The tissue structure of the sixth course 6 is in sequence stitch formation, stitch formation, tuck stitch, stitch formation, stitch formation, tuck stitch.
[0019] Needle five e and needle six f are knitted alternately with stitch formation and tuck stitch to form a piqué part. Needle three c of the fourth course 4 and needle four d of the fifth course do not knit to form holes, making the surface of the fabric arranged evenly and neatly, with a strong sense of concavity and convexity, and better air permeability and heat dissipation effects.
[0020] The yarns of the first course 1 to the sixth course 6 are blended with compact siro-spun yarn and spandex yarn. The fineness of the compact siro-spun yarn in the yarn is 32s. The fineness of the spandex yarn is 30D. The yarn process combines compact spinning, with the yarn having even yarn evenness, less hairiness, a tight structure, and good abrasion resistance. Coupled with the blending of 30D spandex yarn, the yarn quality, strength, and anti-pilling performance are better.
[0021] The fabric body composition of the moisture-absorbing and breathable mesh fabric can be 75% cotton, 20% polyester fiber, and 5% spandex, which is more skin-friendly and healthy. The high cotton content makes the fabric more moisture-absorbing, breathable, and comfortable to the skin. The addition of polyester fiber makes the fabric have good strength and is easy to care for. The addition of spandex makes the fabric have better elasticity, soft hand feeling, stable size, and is not easy to deform. The moisture-absorbing and breathable mesh fabric can be dyed with imported high-fastness DyStar dyes and production processes, with bright colors and good color fastness.
[0022] The moisture-absorbing and breathable mesh fabric can use Rudolf moisture-absorbing and sweat-discharging additives, with stronger moisture absorption. After being washed 5 times, the moisture absorption performance can still meet the standard. The water absorption rate (before and after washing) can reach 258, far exceeding the detection standard of 200 water absorption rate. The water droplet diffusion speed test sample is 1 second. The wicking height test sample reaches 165mm and reaches 185mm after being washed 5 times.
[0023] Obviously, the above embodiments are merely examples given to clearly illustrate the present utility model, rather than limitations on the implementation manners of the present utility model. For those of ordinary skill in the art, other different forms of changes or modifications can be made based on the above description. It is not necessary and impossible to list all the implementation manners here. And these obvious changes or modifications derived from the spirit of the present utility model still fall within the protection scope of the present utility model.
Claims
1. A moisture-absorbing and breathable mesh fabric, characterized in that: It includes a fabric body which is a weft knitted fabric. The fabric body is knitted in a cycle consisting of the first course (1), the second course (2), the third course (3), the fourth course (4), the fifth course (5), and the sixth course (6). The stitch structure of the first course (1) is successively tuck stitch, loop stitch, loop stitch, tuck stitch, tuck stitch, loop stitch. The stitch structure of the second course (2) is successively loop stitch, loop stitch, loop stitch, loop stitch, loop stitch, tuck stitch. The stitch structure of the third course (3) is successively loop stitch, loop stitch, loop stitch, loop stitch, tuck stitch, loop stitch. The stitch structure of the fourth course (4) is successively tuck stitch, loop stitch, float stitch, loop stitch, loop stitch, tuck stitch. The stitch structure of the fifth course (5) is successively loop stitch, tuck stitch, loop stitch, float stitch, tuck stitch, loop stitch. The stitch structure of the sixth course (6) is successively loop stitch, loop stitch, tuck stitch, loop stitch, loop stitch, tuck stitch.
2. The moisture-absorbing and breathable mesh fabric according to claim 1, characterized in that: The fabric body includes a piqué part knitted by needle five (e) and needle six (f).
3. The moisture-absorbing and breathable mesh fabric according to claim 1, characterized in that: The fabric body includes two holes respectively knitted by the fourth course (4) and the fifth course (5).
4. The moisture-absorbing and breathable mesh fabric according to any one of claims 1 to 3, characterized in that: The yarns of the first course (1) to the sixth course (6) are blended by compact siro spinning and spandex yarn.
5. The moisture-absorbing and breathable mesh fabric according to claim 4, wherein: The fineness of the compact siro spinning in the yarn is 32s.
6. The moisture-absorbing and breathable mesh fabric according to claim 4, characterized in that: The fineness of the spandex yarn in the yarn is 30D.