Embroidered cloth
By alternately setting a single-row tuck structure of polyester yarn and cotton yarn in the embroidery cloth and guiding wet yarn through the embroidery part, the problem of poor air permeability of the embroidery cloth is solved, and the embroidery cloth effect of high strength, good air permeability and strong comfort is achieved.
Patent Information
- Application Number
- CN202422252665.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-09-13
AI Technical Summary
The polyester yarn weaving of existing embroidered fabrics results in poor air permeability, and the thickness increases at the embroidery position, affecting the overall air permeability and comfort of the fabric.
The embroidery part and the breathable part are arranged alternately. The embroidery part is woven with polyester yarn to form a single-needle single-row tuck, and the breathable part is woven with cotton yarn to form a double-needle single-row tuck. The embroidery part is passed through a wet-guiding yarn to improve the air permeability and moisture conductivity. The wet-guiding yarn is twisted with hemp fiber, and the polyester yarn is twisted with special-shaped polyester yarn.
It improves the strength and breathability of the embroidery part, enhances the overall breathability of the fabric, increases comfort and moisture conduction, reduces the possibility of bacterial growth, and maintains the dryness and moisture-dissipating ability of the embroidery part.
Smart Images

Figure CN223386323U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of textiles, and more particularly to an embroidered cloth. Background Art
[0002] Fabric is the material that constitutes clothing and is more common in our daily life. People generally require fabrics to have better aesthetics. Therefore, embroidery thread is used to embroider several patterns on the fabric to ensure the overall aesthetics of the fabric, which is what we call embroidered cloth.
[0003] Because embroidery thread needs to be threaded through the base fabric of the embroidery cloth, in order to prevent the base fabric from being deformed or damaged due to the pulling of the thread during the embroidery process, the embroidery position generally requires high strength. Therefore, some existing embroidery base fabrics are woven with high-strength polyester yarn. This can ensure the strength of the embroidery position of the fabric, but the air permeability of the polyester fiber itself is relatively weak. The stacking of embroidery thread causes the thickness of the fabric at the embroidery position to increase, thereby making the overall air permeability of the fabric weak.
[0004] Therefore, new solutions need to be proposed to solve this problem. Utility Model Content
[0005] In view of the deficiencies in the prior art, the present invention aims to provide an embroidery cloth.
[0006] The above technical objectives of the present utility model are achieved through the following technical solutions: an embroidered cloth, comprising a base layer, the base layer comprising an embroidery portion and a breathable portion alternately arranged in sequence, the embroidery portion being woven from polyester yarn, a plurality of single-needle single-row tucks being woven on the embroidery portion, any two adjacent single-needle single-row tucks in the longitudinal direction are separated by six row spacings, and any two adjacent single-needle single-row tucks in the transverse direction are separated by six stitch spacings, the breathable portion being woven from cotton yarn, a plurality of double-needle single-row tucks being woven on the breathable portion, any two adjacent double-needle single-row tucks in the longitudinal direction are separated by two row spacings, and any two adjacent double-needle single-row tucks in the transverse direction are separated by two stitch spacings.
[0007] The utility model is further configured as follows: a plurality of convex points are knitted on the breathable portion, any one of the convex points is surrounded by four double-needle single-row tuck stitches, and the distances from the convex point to the four double-needle single-row tuck stitches are equal.
[0008] The utility model is further configured as follows: a moisture-conducting yarn is passed through the embroidery part, and a plurality of moisture-conducting coils arranged on the embroidery part are formed on the moisture-conducting yarn, wherein some of the moisture-conducting coils are arranged on the two side edges of the embroidery part.
[0009] The utility model is further configured such that: the path of the moisture-conducting yarn on the embroidery portion avoids single-needle single-row tucks.
[0010] The utility model is further configured as follows: the moisture-conducting yarn is formed by twisting hemp fibers.
[0011] The utility model is further configured as follows: the polyester yarn is formed by twisting special-shaped polyester yarns, and the cross-section of the special-shaped polyester yarns is Y-shaped.
[0012] In summary, the present invention has the following beneficial effects:
[0013] The embroidery part is used for threading embroidery thread. The embroidery part is woven with polyester yarn, thus ensuring the overall strength and elasticity of the embroidery part, so that the embroidery part is not easily deformed or damaged during the embroidery process. The ventilation hole area at the single-needle single-row tuck position is small, and the spacing between two adjacent single-needle single-row tucks is large, so that the embroidery part has a certain breathability while maintaining a certain weaving density, which is convenient for embroidery. Cotton yarn has good breathability, making the breathable part itself easy to breathe. The ventilation hole area at the double-needle single-row tuck position is large, and the spacing between two adjacent double-needle single-row tucks is small, so that the arrangement density of the double-needle single-row tucks on the breathable part is high, further ensuring the breathable effect of the breathable part. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 This is a schematic diagram of the braiding structure of the present invention.
[0015] In the figure: 1. Polyester yarn; 2. Single-needle single-row tuck; 3. Cotton yarn; 4. Double-needle single-row tuck; 5. Raised dots; 6. Moisture-conducting yarn. DETAILED DESCRIPTION
[0016] The present invention will be described in detail below with reference to the accompanying drawings and embodiments.
[0017] Embroidered cloth, such as Figure 1As shown, it includes a base layer, which includes an embroidery part and a breathable part that are alternately arranged in sequence. The embroidery part is weft-knitted with polyester yarn 1, and a plurality of single-needle single-row tucks 2 are woven on the embroidery part. Any two adjacent single-needle single-row tucks 2 in the longitudinal direction are separated by six row spacings, and any two adjacent single-needle single-row tucks 2 in the transverse direction are separated by six stitch spacings. The breathable part is weft-knitted with cotton yarn 3, and a plurality of double-needle single-row tucks 4 are woven on the breathable part. Any two adjacent double-needle single-row tucks 4 in the longitudinal direction are separated by two row spacings, and any two adjacent double-needle single-row tucks 4 in the transverse direction are separated by two stitch spacings. The embroidery part is used for threading embroidery thread, and the embroidery part is woven with polyester yarn 1, thereby ensuring the overall strength and elasticity of the embroidery part, so that the embroidery part can be embroidered easily. The air permeability of the embroidery part is good, and the air permeability of the embroidery part is improved, so that the overall air permeability of the embroidery part is improved.
[0018] like Figure 1As shown, a number of convex points 5 are knitted on the breathable part. The convex points 5 can support the gap between the skin and the breathable part, so that the breathable part is not easy to stick to the skin, ensuring the breathable effect of the double-needle single-row tuck loops 4. Any convex point 5 is surrounded by four double-needle single-row tuck loops 4 and the distances from the convex point 5 to the four double-needle single-row tuck loops 4 are equal. This arrangement ensures that each double-needle single-row tuck loop 4 is supported by the convex point 5 in four directions, ensuring the supporting effect of the convex point 5. The convex point 5 is formed by stacking the offset coils, so that The raised dots 5 still have a certain degree of softness, ensuring the comfort of the breathable part. A moisture-conducting yarn 6 passes through the embroidery part, and a plurality of moisture-conducting loops are formed on the moisture-conducting yarn 6. Some of the moisture-conducting loops are arranged on the two side edges of the embroidery part. The moisture-conducting yarn 6 is arranged in an S shape on the embroidery part, so that the moisture on the embroidery part can be conducted along the moisture-conducting yarn 6. Because the embroidery part is woven by hydrophobic yarn and the breathable part is woven by hydrophilic yarn, there is a difference in hygroscopicity between the two. The moisture-conducting yarn 6 can conduct the moisture in the middle position of the embroidery part to both sides, thereby transferring the moisture to the breathable part with lower weaving density, ensuring the dryness of the embroidery part and reducing the possibility of bacteria breeding in the embroidery part. The air flow speed on the breathable part is faster, thereby facilitating the evaporation of moisture. The path of the moisture-conducting yarn 6 on the embroidery part avoids the single-needle single-row tuck 2. This arrangement reduces the influence of the moisture-conducting yarn 6 on the breathable structure of the embroidery part. The moisture-conducting yarn 6 is twisted with hemp fiber, which has good moisture conductivity and antibacterial properties. While ensuring the moisture-conducting performance of the moisture-conducting yarn 6, the moisture-conducting yarn 6 also has certain antibacterial properties, thereby inhibiting the growth of bacteria in the embroidery part. The moisture-conducting yarn 6 is twisted from hemp fiber, and the polyester yarn 1 is twisted from shaped polyester yarn. The cross-section of the shaped polyester yarn is Y-shaped. The fiber porosity of the Y-shaped cross-section fiber is 40%, which is more than twice the porosity of the circular cross-section. These pores provide capillary channels for the conduction of sweat and moisture, which is conducive to moisture absorption and perspiration, so that the embroidery part itself has a certain moisture-removing ability.
[0019] The above description is merely a preferred embodiment of the present invention. The scope of protection of the present invention is not limited to the above embodiment. All technical solutions based on the concept of the present invention are within the scope of protection of the present invention. It should be noted that for those skilled in the art, certain improvements and modifications that do not depart from the principles of the present invention should also be considered within the scope of protection of the present invention.
Claims
1. An embroidered cloth, characterized by: The invention comprises a base layer, wherein the base layer comprises an embroidery portion and a breathable portion which are alternately arranged in sequence, the embroidery portion is woven from polyester yarn (1), a plurality of single-needle single-row tucks (2) are woven on the embroidery portion, and any two adjacent single-needle single-row tucks (2) are spaced six rows apart in the longitudinal direction, and any two adjacent single-needle single-row tucks (2) are spaced six stitches apart in the transverse direction, the breathable portion is woven from cotton yarn (3), and a plurality of double-needle single-row tucks (4) are woven on the breathable portion, and any two adjacent double-needle single-row tucks (4) are spaced two rows apart in the longitudinal direction, and any two adjacent double-needle single-row tucks (4) are spaced two stitches apart in the transverse direction.
2. The embroidery cloth according to claim 1, characterized in that: A plurality of convex points (5) are knitted on the breathable portion, and any one of the convex points (5) is surrounded by four double-needle single-row tuck loops (4), and the distances from the convex point (5) to the four double-needle single-row tuck loops (4) are all equal.
3. The embroidery cloth according to claim 2, characterized in that: A moisture-conducting yarn (6) passes through the embroidery part, and a plurality of moisture-conducting coils arranged on the embroidery part are formed on the moisture-conducting yarn (6), wherein some of the moisture-conducting coils are arranged on both side edges of the embroidery part.
4. The embroidery cloth according to claim 3, characterized in that: The path of the moisture-conducting yarn (6) on the embroidery portion avoids the single-needle single-row tuck loops (2).
5. The embroidery cloth according to claim 4, characterized in that: The moisture-conducting yarn (6) is made by twisting hemp fibers.
6. The embroidery cloth according to claim 5, characterized in that: The polyester yarn (1) is formed by twisting shaped polyester yarns, and the cross-section of the shaped polyester yarns is Y-shaped.