Mesh warp knitted fabric and textile product
The mesh warp knitted fabric with inelastic and elastic yarns addresses edge unraveling and skin stickiness by enhancing breathability and stretchability, while suppressing transparency and stickiness through specific knitting patterns.
Patent Information
- Application Number
- JP2024000685
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-01-05
- Publication Date
- 2025-07-17
- Estimated Expiration
- 2044-01-05
AI Technical Summary
Warp knitted fabrics tend to unravel at the edges and lack features such as breathability, stretchability, transparency, and skin stickiness suppression.
A mesh warp knitted fabric is created using inelastic and elastic yarns with specific overlapping and non-thread-through positions in a mesh structure, forming a pair of repeating patterns to enhance breathability and suppress skin transparency and stickiness.
The fabric achieves high breathability, stretchability, and reduced skin stickiness without edge finishing, with one-way permeability and balanced pore distribution.
Smart Images

Figure 2025107009000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a mesh warp knitted fabric and a fiber product, and more particularly, to a mesh warp knitted fabric that is less likely to unravel (fray) without finishing the edges and a fiber product using the same.
Background Art
[0002] When no special measures are taken, the edges of warp knitted fabrics tend to unravel. Conventionally, methods for preventing such unraveling have been explored. As one such technique, the inventor of the present invention proposed a warp knitted fabric that is excellent in breathability and stretchability and does not require finishing, and clothing using the same (see Patent Document 1).
Prior Art Documents
Patent Documents
[0003]
Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0004] The warp knitted fabric described in Patent Document 1 is an extremely excellent warp knitted fabric that has never existed before. The inventor of the present invention has been continuously studying to realize further added value while making use of the advantages of this technology. As one such attempt, the inventor of the present invention set problems of suppressing transparency, preventing biting into the skin, and suppressing stickiness to the skin. That is, an object of the present invention is to provide a mesh warp knitted fabric that is excellent in breathability and stretchability, does not require finishing, is difficult to see through, is difficult to bite into the skin, and is difficult for the skin to feel sticky, and a fiber product using the same.
Means for Solving the Problems
[0005] The inventor has conducted intensive studies and found that the above problems can be solved according to the following configuration, thus completing the present invention.
[0006] That is, the mesh warp knitting fabric according to the present invention is a mesh warp knitting fabric knitted with inelastic yarns and elastic yarns and having a mesh structure in at least a part thereof. In the mesh structure, a plurality of inelastic yarns are knitted according to a pair of repeating patterns facing each other (when only the closed and open eyes are different, they are regarded as the same repeating pattern), and a plurality of elastic yarns are knitted so as to overlap the plurality of inelastic yarns according to the pair of repeating patterns. A plurality of inelastic yarns according to one of the pair of repeating patterns, the elastic yarns overlapping therewith, and a plurality of elastic yarns according to the other of the pair of repeating patterns include non-thread-through positions, and a plurality of inelastic yarns according to the other of the pair of repeating patterns do not include non-thread-through positions.
[0007] In the mesh warp knitting fabric according to the present invention, among the opposing knitting structures of the mesh warp knitting fabric in this way, a plurality of inelastic yarns according to one of the pair of repeating patterns, the elastic yarns overlapping therewith, and a plurality of elastic yarns according to the other of the pair of repeating patterns are knitted while providing non-thread-through positions, and a plurality of inelastic yarns according to the other of the pair of repeating patterns are knitted without providing non-thread-through positions. Therefore, the sinker loops of the inelastic yarns that do not overlap with the elastic yarns among the inelastic yarns knitted according to the other of the pair of repeating patterns can cross the pores of the mesh structure formed by the inelastic yarns with non-thread-through positions according to one of the pair of repeating patterns, the elastic yarns overlapping therewith, and the elastic yarns according to the other of the pair of repeating patterns with non-thread-through positions, so that the skin transparency through the pores of the mesh structure and the penetration of the pores into the skin can be suppressed. Further, by performing such knitting, one-way permeability from the front knitting structure made of inelastic yarns to the back knitting structure made of elastic yarns can be formed. Therefore, by forming a garment with the inelastic yarn side facing the skin side, the stickiness of the skin can be suppressed.
[0008] The pair of repeating patterns preferably has 3 to 12 courses as a repeating unit and is swung left and right within a range of 3 to 5 wales. By doing so, while restricting the number of pores in the mesh structure to a range where the skin does not overly show through, sufficient pores can be ensured to suppress stickiness of the skin.
[0009] Particularly preferred are those in which the pair of repeating patterns has 4 courses as a repeating unit and is swung left and right within a range of 3 wales, and those in which the pair of repeating patterns has 6 courses as a repeating unit and is swung left and right within a range of 3 or 4 wales. By doing so, it is possible to more balancedly suppress the skin showing through and the stickiness of the skin.
[0010] The mesh warp knitted fabric of the present invention includes those in which a plurality of inelastic yarns following one of the pair of repeating patterns are a plurality of half-set inelastic yarns, and those in which a plurality of inelastic yarns following the other of the pair of repeating patterns are composed of a combination of a plurality of half-set inelastic yarns and a plurality of half-set or full-set inelastic yarns that compensate for the non-through yarn positions. Here, "half-set" refers to knitting by passing knitting yarns through every other one of a plurality of guides arranged in a reed of a warp knitting machine, or the knitted structure knitted in this way.
[0011] The mesh warp knitted fabric of the present invention preferably has a one-way permeability of grade 3 or higher according to AATCC (American Association of Textile Chemists and Colorists) standard 195. By doing so, stickiness of the skin can be more effectively suppressed.
[0012] The textile product according to the present invention is made of the mesh warp knitted fabric according to the present invention described above.
Effects of the Invention
[0013] According to the present invention, it is possible to provide a mesh warp knitted fabric that has sufficient breathability and stretchability, does not require finishing at the edges, is difficult to see through, is difficult to dig into the skin, and suppresses skin stickiness due to high one-way permeability, and a textile product using the same.
Brief Description of the Drawings
[0014]
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Embodiments for Carrying Out the Invention
[0015] Hereinafter, preferred embodiments of the mesh warp knitted fabric (hereinafter, may be simply referred to as "warp knitted fabric") according to the present invention and fiber products using the same will be described in detail. However, the scope of the present invention is not limited by these descriptions, and other than the following examples, it can be appropriately modified and implemented within the scope not impairing the gist of the present invention.
[0016] 〔Knitting Yarn〕 The warp knitted fabric of the present invention is knitted with inelastic yarn and elastic yarn. As the inelastic yarn, those conventionally known can be used. For example, those made of synthetic fibers such as nylon, polyester, and acrylic, regenerated fibers such as rayon and acetate, and natural fibers such as cotton and silk can be appropriately selected and used according to the use and required performance of the warp knitted fabric. As for the type, it is not particularly limited, such as false-twisted yarn, strong-twisted yarn, taslan yarn, thick-thin yarn, mixed fiber yarn, composite yarn, etc. The thickness of the inelastic yarn is not particularly limited, but for example, it is 22 to 156 dtex.
[0017] Also, as for the elastic yarn, those conventionally known can be used. For example, those made of elastic fibers such as polyurethane fibers can be used. Coated elastic yarns in which inelastic yarns are coated on elastic yarns, composite yarns in which inelastic fibers and elastic fibers are combined, etc. can also be used. The thickness of the elastic yarn is not particularly limited, but for example, it is 22 to 470 dtex.
[0018] 〔Mesh structure〕 The mesh structure is generally formed by repeating, at regular intervals, a spaced portion in a pair of opposing knitting yarns where the two knitting yarns are spaced apart to form a through-hole. The warp knitted fabric of the present invention includes a mesh structure at least in part. The mesh structure may be formed throughout the warp knitted fabric, or may include regions other than the mesh structure (for example, jacquard pattern portions, etc.) in part.
[0019] In the mesh structure of the present invention, a plurality of inelastic yarns are knitted according to a pair of opposing repeating patterns, and a plurality of elastic yarns are knitted so as to overlap the plurality of inelastic yarns according to the same pair of repeating patterns. Regarding this repeating pattern, in the present invention, when only the closed and open eyes are different (when knitted in the same knitting direction and with the same displacement width), they are regarded as the same repeating pattern.
[0020] This pair of repeating patterns preferably has 3 to 12 courses as the repeating unit and is swung left and right within a range of 3 to 5 wefts. More preferably, it has 4 courses as the repeating unit and is swung left and right within a range of 3 wefts, or it has 6 courses as the repeating unit and is swung left and right within a range of 3 or 4 wefts.
[0021] <Exemplification of Repeating Pattern> Specific examples of a pair of repeating patterns for forming a mesh structure are shown in FIGS. 1 to 7.
[0022] The example in FIG. 1 is Repeating pattern: 10 / 12 / 23 / 21 / / , and Repeating pattern: 23 / 21 / 10 / 12 / / It consists of. It has 4 courses as the repeating unit and is swung left and right within a range of 3 wefts.
[0023] The example in FIG. 2 is Repeating pattern: 10 / 01 / 12 / 23 / 32 / 21 / / , and Repeating pattern: 23 / 32 / 21 / 10 / 01 / 12 / / It consists of. It has 6 courses as the repeating unit and is swung left and right within a range of 3 wefts.
[0024] The example in FIG. 3 is Repeating pattern: 10 / 01 / 12 / 23 / 34 / 43 / 32 / 21 / / , and Repeating pattern: 34 / 43 / 32 / 21 / 10 / 01 / 12 / 23 / / It consists of. It has 8 courses as the repeating unit and is swung left and right within a range of 4 wefts.
[0025] The example in FIG. 4 is Repeating pattern: 10 / 23 / 21 / / , and Repeating pattern: 23 / 10 / 12 / / It consists of. It has 3 courses as the repeating unit and is swung left and right within a range of 3 wefts.
[0026] The example in FIG. 5 consists of a repeating pattern: 01 / 12 / 32 / 21 / / , and a repeating pattern: 32 / 21 / 01 / 12 / / and is repeated in units of 4 courses and swung left and right within a range of 3 wefts.
[0027] The example in FIG. 6 consists of a repeating pattern: 10 / 21 / 23 / 12 / / , and a repeating pattern: 23 / 12 / 10 / 21 / / and is repeated in units of 4 courses and swung left and right within a range of 3 wefts.
[0028] The example in FIG. 7 consists of a repeating pattern: 01 / 12 / 23 / 43 / 32 / 21, and a repeating pattern: 43 / 32 / 21 / 01 / 12 / 23 and is repeated in units of 6 courses and swung left and right within a range of 4 wefts.
[0029] Examples of the formation of specific mesh structures using the repeating patterns illustrated in FIGS. 1 to 7 are shown in FIGS. 8 to 18. In the figures, "H" means that the thread is passed through in a half set, and "F" means that the thread is passed through in a full set.
[0030] <Weaving Example 1> The weaving diagram of Weaving Example 1 is shown in FIG. 8. Weaving Example 1 consists of a non-elastic thread weaving structure made of non-elastic thread 11 passed through in a 1-in 1-out half set on reed GB1, a non-elastic thread weaving structure made of non-elastic thread 12 passed through in a full set on reed GB2, and each elastic thread weaving structure made of elastic threads 21 and 22 passed through in a 1-in 1-out half set on reeds GB3 and GB4, respectively.
[0031] The non-elastic threads 11 and 12 are woven according to a pair of repeating patterns shown in FIG. 1. By setting the inelastic yarn 11 to a half set, a plurality of inelastic yarns following one of a pair of repeating patterns include a non-thread position 11a (see FIG. 19). Thereby, air permeability due to pores peculiar to the mesh structure is brought about.
[0032] On the other hand, by setting the inelastic yarn 12 to a full set, a plurality of inelastic yarns following the other of a pair of repeating patterns are made not to include a non-thread position. The elastic yarns 21 and 22 are also knitted so as to overlap the inelastic yarns 11 and 12 while providing non-thread positions 21a and 22a (see FIGS. 19 and 20) according to the pair of repeating patterns shown in FIG. 1.
[0033] FIG. 19 shows the knitting structure of the inelastic yarn 11 and the elastic yarn 21 overlapping it in Knitting Example 1, FIG. 20 shows the knitting structure of the elastic yarn 22, and FIG. 21 shows the knitting structure of the inelastic yarn 12 respectively. And FIG. 23 shows a knitting structure diagram showing these knitting yarns combined. In FIG. 23, the inelastic yarns 11 and 12 are shown by solid lines, and the elastic yarns 21 and 22 are shown by broken lines. In Knitting Example 1, a loop 3 formed by three knitting yarns of the inelastic yarns 11 and 12 and the elastic yarn 21, and a loop 4 knitted by two knitting yarns of the inelastic yarn 12 and the elastic yarn 22 appear alternately in the course direction (the vertical direction in FIG. 19) and the wale direction (the left-right direction in FIG. 19), and a through hole 5 (in FIG. 23, one through hole 5 is shown shaded in gray) is intermittently provided in the course direction and the wale direction between the loop 3 and the loop 4 adjacent in the wale direction. And in the knitting structure of Knitting Example 1, two sinker loops 12a are formed by the inelastic yarn 12 crossing the through hole 5. In this way, since the sinker loops 12a and 12a cross the through hole 5, anti-permeability can be imparted without excessively inhibiting air permeability, and penetration into the skin can be suppressed.
[0034] In the warp knitting fabric of Knitting Example 1, as shown in Fig. 22, a knitted structure made of inelastic yarns 11 and 12 is formed on the front side (the lower side in Fig. 22), and a knitted structure made of elastic yarns 21 and 22 is formed on the back side. By having such a layer structure, the stitch structure on the front side becomes dense and the stitch structure on the back side becomes coarse. Therefore, it is presumed that the one-way permeability in the direction from the front side to the back side is realized by capillary action. Also, a plurality of elastic yarns are knitted so as to overlap with the inelastic yarns according to the same repeating pattern as the inelastic yarns, and the inelastic yarns and the elastic yarns are fused by so-called presetting or heat setting, thereby obtaining a warp knitted fabric excellent in stretchability and not requiring edge finishing. In the stitch structure according to Knitting Example 1, in Loop 3, since both the inelastic yarn 11 and the inelastic yarn 12 are fused by the elastic yarn 21, the cut surface is less likely to fray compared to the conventional mesh warp knitting fabric.
[0035] <Knitting Example 2> The knitting pattern diagram of Knitting Example 2 is shown in Fig. 9. Knitting Example 2 is the same as Knitting Example 1 except that the repeating pattern shown in Fig. 2 is adopted as a pair of repeating patterns. In this way, by changing the number of courses and the stitch width as a pair of repeating patterns, a warp knitted fabric suitable for the use and purpose can be manufactured.
[0036] <Knitting Example 3> The knitting pattern diagram of Knitting Example 3 is shown in Fig. 10. Knitting Example 3 is the same as Knitting Example 1 except that the repeating pattern shown in Fig. 5 is adopted as a pair of repeating patterns. Since the pair of repeating patterns shown in Fig. 1 and the pair of repeating patterns shown in Fig. 5 are knitted in the same knitting direction and the same displacement width, and only the open and closed stitches are different, in the present invention, they are regarded as the same repeating pattern.
[0037] <Knitting Examples 4 and 5> The knitting pattern diagrams of Knitting Examples 4 and 5 are shown in Figs. 11 and 12. In knitting example 4, the repeating patterns formed by the warp beams GB3 and GB4 in knitting example 1 are swapped. In knitting example 5, the repeating patterns formed by the warp beams GB1 and GB2 in knitting example 1 are swapped. Thus, in the present invention, which warp beam is used to form each repeating pattern is not particularly limited.
[0038] <Knitting Example 6> The knitting structure diagram of knitting example 6 is shown in FIG. 13. Knitting example 6 consists of non - elastic yarn knitted structures with non - elastic yarns 11 and 12 passed through 1 - in - 1 - out half - sets to warp beams GB1 and GB2 respectively, a non - elastic yarn knitted structure with non - elastic yarn 13 passed through a full - set to warp beam GB3, and elastic yarn knitted structures with elastic yarns 21 and 22 passed through 1 - in - 1 - out half - sets to warp beams GB4 and GB5 respectively.
[0039] The non - elastic yarns 11 and 12 are knitted according to a pair of repeating patterns shown in FIG. 1. The non - elastic yarn 13 is knitted in a full - set according to a repeating pattern similar to that of the non - elastic yarn 11 among the pair of repeating patterns shown in FIG. 1 so as to complement the non - threading positions of the non - elastic yarn 11.
[0040] By using the non - elastic yarn 12 as a half - set and configuring so that a plurality of non - elastic yarns following one of the pair of repeating patterns include non - threading positions, air permeability due to the pores peculiar to the mesh structure is brought about. On the other hand, by combining the non - elastic yarns 11 and 13 and configuring so that a plurality of non - elastic yarns following the other of the pair of repeating patterns do not include non - threading positions, anti - transparency can be imparted without excessively inhibiting air permeability.
[0041] Thus, in the present invention, the statement that "a plurality of inelastic yarns following the other of the pair of repeating patterns do not include non-yarn-passing positions" includes the case where a plurality of half-set inelastic yarns (inelastic yarn 11 in Knitting Example 6) and a plurality of full-set inelastic yarns (inelastic yarn 13 in Knitting Example 6) that compensate for the non-yarn-passing positions thereof are combined.
[0042] <Knitting Example 7> The knitting structure diagram of Knitting Example 7 is shown in FIG. 14. Knitting Example 7 is the same as Knitting Example 6, except that the inelastic yarn knitting structure by reed GB3 is knitted with the inelastic yarn 13 passed through in a half-set. This inelastic yarn 13 is incorporated into the mesh structure so as to compensate for the non-yarn-passing positions of the inelastic yarn 11.
[0043] Thus, in the present invention, the statement that "a plurality of inelastic yarns following the other of the pair of repeating patterns do not include non-yarn-passing positions" includes the case where a plurality of half-set inelastic yarns (inelastic yarn 11 in Knitting Example 7) and a plurality of half-set inelastic yarns (inelastic yarn 13 in Knitting Example 7) that compensate for the non-yarn-passing positions thereof are combined.
[0044] <Knitting Example 8> The knitting structure diagram of Knitting Example 8 is shown in FIG. 15. Knitting Example 8 is a knitting example that further applies Knitting Example 6 and includes a jacquard knitting structure composed of two half-set knittings. It consists of a jacquard knitting structure by the inelastic yarns 11 passed through in a half-set of 1 in 1 out on reed Jb1 and the inelastic yarns 12 passed through in a half-set of 1 in 1 out on jacquard reed Jb2, an inelastic yarn knitting structure by the inelastic yarn 13 passed through in a full-set on reed GB2, each elastic yarn knitting structure by the elastic yarns 21, 22 passed through in a half-set of 1 in 1 out on reeds GB3 and GB4 respectively, and an elastic yarn knitting structure by the elastic yarn 23 passed through in a full-set on reed GB5.
[0045] The inelastic yarns 11 and 12 are knitted according to the pair of repeating patterns shown in FIG. 1. The inelastic yarn 13 is fully knitted according to the same repeating pattern as the inelastic yarn 11 among the pair of repeating patterns shown in FIG. 1 so as to complement the non-thread positions of the inelastic yarn 11.
[0046] By setting the inelastic yarn 12 as a half set and configuring a plurality of inelastic yarns according to one of the pair of repeating patterns to include non-thread positions, air permeability due to the pores peculiar to the mesh structure is brought about. On the other hand, by combining the inelastic yarns 11 and 13 and configuring a plurality of inelastic yarns according to the other of the pair of repeating patterns not to include non-thread positions, it is possible to impart anti-transparency without excessively inhibiting air permeability.
[0047] As described above, since the warp knitted fabric of the present invention is knitted with the inelastic yarns 11 and 12 by the Jacquard reeds Jb1 and Jb2, it can be provided with a Jacquard knitting structure, and thus a variety of pattern expressions can be added. In Knitting Example 11, the elasticity is improved by inserting the elastic yarn 23 by the reed GB5. As the elastic yarn for this insertion, it is preferable to use a thick elastic yarn (for example, 44 to 310 dtex). Thus, in the warp knitted fabric of the present invention, an arbitrary knitting structure may be added by adding a reed according to the use and purpose.
[0048] <Knitting Examples 9 and 10> The knitting diagrams of Knitting Examples 9 and 10 are shown in FIGS. 16 and 17. These knitting examples are different from Knitting Example 8 (FIG. 15) only in the open and closed stitches for some of the knitting yarns. In the present invention, when only the open and closed stitches are different, they are regarded as the same repeating pattern, and thus these knitting examples are also included in the present invention.
[0049] 〔Knitting of Warp Knitted Fabric〕 When knitting the warp knitted fabric according to the present invention, ordinary knitting apparatuses and knitting methods can be applied. The warp knitting machine is not particularly limited, and for example, a tricot knitting machine, a raschel knitting machine, etc. can be used. When knitting a jacquard knitting structure, a jacquard knitting machine equipped with a jacquard mechanism can be used. After knitting, treatments such as setting, scouring, and dyeing, which are usually performed on ordinary warp knitted fabrics, can be applied.
[0050] 〔Uses of warp knitted fabric〕 The warp knitted fabric according to the present invention can be used for various textile products, and its uses are not particularly limited. For example, it can be suitably used for clothing such as foundation garments, innerwear, sportswear, and outerwear, bedding such as pillow covers and bed covers, and curtains.
Examples
[0051] Hereinafter, examples of the warp knitted fabric according to the present invention will be shown, but the present invention is not limited to these examples.
[0052] 〔Example 1〕 Using an RSE5EL (28 gauge) manufactured by Karl Mayer, a warp knitted fabric was produced according to the knitting example 1 in FIG. 8. The knitting conditions are shown in Table 1 below.
[0053]
Table 1
[0054] 〔Example 2〕 Using an RSE5EL (28 gauge) manufactured by Karl Mayer, a warp knitted fabric was produced according to the knitting example 2 in FIG. 9. The knitting conditions are shown in Table 2 below.
[0055]
Table 2
[0056] 〔Example 3〕 Using RSE5EL (28 gauge) manufactured by Karl Mayer, a warp knitted fabric was produced according to the knitting pattern example 4 in FIG. 11. The knitting conditions are shown in Table 3 below.
[0057]
Table 3
[0058] 〔Reference Example 1〕 Using RSE5EL (28 gauge) manufactured by Karl Mayer, a warp knitted fabric was produced according to the knitting pattern in FIG. 18. The knitting conditions are shown in Table 4 below.
[0059]
Table 4
[0060] 〔Performance Evaluation〕 For Examples 1 to 3 and Reference Example 1, using an MMT (Moisture Management Tester) test device, the wetting time on the permeation surface (surface), the water supply rate on the permeation surface, the one-way permeation index, and the results of the dry test were carried out based on the AATCC195 standard and are shown in Table 5. This test was commissioned from the Kaken Test Center, a general incorporated foundation. As shown in Table 5, all of the mesh warp knitted fabrics of Examples 1 to 3 have sufficient wettability, water absorbency, and quick-drying properties. In addition, the one-way permeation index from the front side knitted with non-elastic yarns to the back side knitted with elastic yarns is all grade 4, and it was found that when worn as underwear, the stickiness of the skin can be effectively suppressed. Note that the mesh warp knitted fabric of Reference Example 1 could not be measured because the test liquid penetrated the knitted fabric.
[0061]
Table 5
Explanation of Symbols
[0062] 11, 12, 13 Non-elastic yarn 11a, 21a, 22a Non-through yarn position 12a Sinker loop 21, 22, 23 Elastic yarn 3, 4 Loop 5 Perforation GB1, GB2, GB3, GB4, GB5 Normal reed Jb1, Jb2 Jacquard reed
Claims
1. A mesh warp knitted fabric woven from inelastic yarns and elastic yarns and having a mesh structure in at least a part thereof, in the mesh structure, a plurality of inelastic yarns are woven according to a pair of repeating patterns (when only the closed and open eyes are different, they are regarded as the same repeating pattern), and a plurality of elastic yarns are woven so as to overlap the plurality of inelastic yarns according to the pair of repeating patterns, a plurality of inelastic yarns according to one of the pair of repeating patterns, the elastic yarns overlapping therewith, and a plurality of elastic yarns according to the other of the pair of repeating patterns include non-passing yarn positions, and a plurality of inelastic yarns according to the other of the pair of repeating patterns do not include non-passing yarn positions. A mesh warp knitted fabric characterized by this.
2. The mesh warp knitted fabric according to claim 1, wherein the pair of repeating patterns repeats 3 to 12 courses as a repeating unit and is swung left and right in the range of 3 to 5 wales.
3. The mesh warp knitted fabric according to claim 1, wherein the pair of repeating patterns repeats 4 courses as a repeating unit and is swung left and right in the range of 3 wales.
4. The mesh warp knitted fabric according to claim 1, wherein the pair of repeating patterns repeats 6 courses as a repeating unit and is swung left and right in the range of 3 or 4 wales.
5. The mesh warp knitted fabric according to claim 1, wherein a plurality of inelastic yarns according to one of the pair of repeating patterns are a plurality of half-set inelastic yarns.
6. The mesh warp knitted fabric according to claim 1, wherein a plurality of inelastic yarns according to the other of the pair of repeating patterns are composed of a combination of a plurality of half-set inelastic yarns and a plurality of half-set or full-set inelastic yarns that supplement the non-passing yarn positions thereof.
7. A mesh warp knitted fabric according to claim 6, comprising a jacquard knitting structure composed of two half-set knits, wherein one half-set knit constituting the jacquard knitting structure follows one of the pair of repeating patterns, and the other half-set knit follows the other of the pair of repeating patterns.
8. The mesh warp knitted fabric according to claim 1, having a one-way permeability of grade 3 or higher according to AATCC (American Association of Textile Chemists and Colorists) standard 195.
9. A textile product comprising the mesh warp knitted fabric according to any one of claims 1 to 8.
Citation Information
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