Embroidered fabric
By designing grooves and square slots in the embroidered fabric, the embroidery thread can be retracted into the grooves, solving the problem of easy wear and tear on three-dimensional embroidery patterns. This improves the safety and wear resistance of the embroidery thread while maintaining the breathability and comfort of the fabric.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2026-04-03
AI Technical Summary
The embroidery thread for three-dimensional embroidery patterns is prone to wear on the base fabric. The lack of sufficient thread to distribute friction and pressure makes the patterned parts easy to wear.
Design an embroidery fabric structure including an outer layer, a middle layer, and an inner layer. The middle layer has grooves and square slots formed by hot pressing. The outer layer is embedded in the grooves and embroidery thread passes through them. The middle layer is woven from warp and weft yarns. The outer layer is woven with antibacterial and abrasion-resistant loops in a horizontal row. The inner layer is knitted from cotton yarn. When forming a three-dimensional pattern, the embroidery thread can retract into the grooves to reduce wear.
Through the design of grooves and square slots, the embroidery thread retracts into the grooves when subjected to friction, reducing the contact area with the object, reducing wear, and improving the safety and abrasion resistance of the embroidery thread, while maintaining the breathability and comfort of the fabric.
Smart Images

Figure CN224075198U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the textile field, and more specifically, to an embroidered fabric. Background Technology
[0002] Embroidered fabric refers to fabric with patterns or designs embroidered on its surface using embroidery techniques. There are also many different forms of embroidery available today.
[0003] Three-dimensional embroidery is one type of embroidery. The pattern in three-dimensional embroidery is raised on the base fabric. In order to ensure the dyeing effect of the embroidery thread, some embroidery threads are made of cotton yarn. In order to make the embroidery pattern exquisite, some embroidery threads have a relatively small diameter.
[0004] Some embroidery patterns cover a small area on the base fabric, and the distance between the embroidery patterns is relatively far. The base fabric is exposed in large areas, and the embroidery patterns protrude outside the base fabric. As a result, there is not enough thread to distribute the friction and pressure on the embroidery patterns, which makes the patterned parts easy to wear.
[0005] Therefore, a new solution is needed to address this problem. Utility Model Content
[0006] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide an embroidered fabric.
[0007] The above-mentioned technical objective of this utility model is achieved through the following technical solution: an embroidered fabric, comprising an outer layer, a middle layer and an inner layer in sequence, wherein the middle layer is hot-pressed to form a plurality of grooves on the side facing the outer layer, and the middle layer is hot-pressed to form square grooves corresponding to the grooves one by one on the side facing the inner layer, wherein the grooves are located at the center of the square grooves and the area of the square grooves is larger than the area of the grooves, the outer layer is embedded in the grooves and forms a recess, and a plurality of embroidery threads located in the recesses pass through between the outer layer and the inner layer, wherein the embroidery threads form floats in the square grooves.
[0008] The present invention is further configured such that: the intermediate layer is woven from warp and weft yarns, the intermediate layer includes a hot-pressed part and a perforated part, the distribution density of the weft yarn in the hot-pressed part is greater than the distribution density of the perforated part, a plurality of perforations are formed on the perforated part, and both the warp and weft yarns are made of twisted polyester filaments.
[0009] The present invention is further configured such that: the outer layer includes an antibacterial coil row and a wear-resistant coil row, the antibacterial coil row and the wear-resistant coil row are arranged in a 3:5 ratio, the antibacterial coil row is woven from antibacterial yarn, and the wear-resistant coil row is woven from wear-resistant yarn.
[0010] The present invention is further configured such that: the outer layer is provided with a plurality of ventilation holes formed by coil offset, the ventilation holes are located on the antibacterial coil row, the antibacterial yarn is made of bamboo fiber twisted, and the wear-resistant yarn is made of polyester fiber twisted.
[0011] The present invention is further configured such that the diameter of the abrasion-resistant yarn is greater than the diameter of the antibacterial yarn.
[0012] The present invention is further configured such that the inner layer is made of cotton yarn knitted together.
[0013] In summary, this utility model has the following beneficial effects:
[0014] When the pattern is touched by an object, the embroidery thread will be pushed into the groove. At this time, the side of the outer layer facing away from the middle layer will touch the object, preventing the object from entering the groove and reducing further wear between the object and the embroidery thread. The square groove provides space for further deformation of the middle layer, further buffering the embroidery thread. Through the above settings, the three-dimensional pattern formed by the embroidery thread can retract into the groove when it is rubbed, reducing the contact area between it and the object being rubbed, thereby ensuring the safety of the embroidery thread. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of this utility model;
[0016] Figure 2 This is a cross-sectional view of the present invention;
[0017] Figure 3 This is a schematic diagram of the braided structure of the middle layer in this utility model;
[0018] Figure 4 This is a schematic diagram of the braided structure of the outer layer in this utility model.
[0019] In the diagram: 1. Outer layer; 2. Middle layer; 3. Inner layer; 4. Groove; 5. Square groove; 6. Recess; 7. Warp yarn; 8. Weft yarn; 9. Perforation; 10. Antibacterial yarn; 11. Abrasion-resistant yarn; 12. Breathable hole. Detailed Implementation
[0020] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0021] A type of embroidered fabric, such as Figure 1 and Figure 2As shown, the structure includes an outer layer 1, a middle layer 2, and an inner layer 3. Several grooves 4 are formed by hot pressing on the side of the middle layer 2 facing the outer layer 1. Square grooves 5, corresponding to the grooves 4, are formed by hot pressing on the side of the middle layer 2 facing the inner layer 3. The grooves 4 are located at the center of the square grooves 5, and the area of the square grooves 5 is larger than the area of the grooves 4. The grooves 4 are also square, with a side length smaller than the side length of the square grooves 5. The outer layer 1 is embedded in the grooves 4, forming recesses 6. Several embroidery threads located in the recesses 6 pass between the outer layer 1 and the inner layer 3. The embroidery threads form floating threads within the square grooves 5. During the hot pressing process of the inner layer 3 and the middle layer 2, several grooves 4 are first formed on one side of the middle layer 2, and then square grooves 5 are formed on the other side of the middle layer 2. Because the side length of the square grooves 5 is relatively large, the fabric surrounding the grooves 4 can provide support during the hot pressing process, thus minimizing the impact on the grooves 4 during the formation of the square grooves 5. The embroidery thread is threaded through the outer layer 1 and the middle layer 2 to create a three-dimensional pattern within the groove 4. Hot melt adhesive is used to fix the floating thread within the square groove 5, preventing the three-dimensional pattern from being pulled out. Then, the inner layer 3 is laminated to the middle layer 2 on the side where the square groove 5 is located. The softer inner layer 3 ensures comfort on the inside of the fabric. The three-dimensional embroidery pattern is exposed outside the groove 4. When the pattern is touched by an object, the embroidery thread is pushed into the groove 4. At this time, the side of the outer layer 1 facing away from the middle layer 2 will touch the object, preventing it from entering the groove 4 and reducing further wear between the object and the embroidery thread. The square groove 5 provides space for further deformation of the middle layer 2, further cushioning the embroidery thread. Through these arrangements, the three-dimensional pattern formed by the embroidery thread can retract into the groove 4 when subjected to friction, reducing the contact area with the object being rubbed and thus ensuring the safety of the embroidery thread.
[0022] like Figure 3 As shown, the middle layer 2 is woven from warp yarns 7 and weft yarns 8. The middle layer 2 includes a hot-pressed section and a perforated section. The distribution density of the weft yarns 8 in the hot-pressed section is greater than that in the perforated section. Several perforations 9 are formed on the perforated section. Both the warp yarns 7 and the weft yarns 8 are made of twisted polyester yarn. Several perforations 9 are formed on the perforated section. The outer layer 1 and the inner layer 3 are both knitted layers, which makes the fabric have good breathability in the areas that do not cover the embroidery. The middle layer 2 has a higher weaving density in the hot-pressed section, which makes the hot-pressed section have better pressure resistance, thus facilitating the hot-pressing of the grooves 4 and the square grooves 5. The polyester yarn has the characteristic of high strength, which ensures the overall strength of the middle layer 2.
[0023] like Figure 4As shown, the outer layer 1 includes rows of antibacterial coils and rows of abrasion-resistant coils, arranged in a 3:5 ratio. The antibacterial coil rows are woven from antibacterial yarn 10, and the abrasion-resistant coil rows are woven from abrasion-resistant yarn 11. Because the outer layer 1 forms a three-dimensional pattern woven from embroidery thread, the weaving density is increased in some areas due to the embroidery thread. The embroidery thread is made of twisted cotton fibers, which have relatively weak moisture dissipation capabilities, making it difficult for moisture to escape. The antibacterial yarn 10 has antibacterial properties, thus inhibiting bacterial growth on the outer layer 1 and making it less prone to bacterial growth in the embroidered areas. The abrasion-resistant yarn 11 has strong abrasion resistance and covers a large area on the outer layer 1, ensuring the overall abrasion resistance of the outer layer 1. The outer layer 1 has several ventilation holes 12 formed by coil offset. 12 is located on the antibacterial coil row. The antibacterial yarn 10 is made of twisted bamboo fiber, and the abrasion-resistant yarn 11 is made of twisted polyester fiber. Bamboo fiber has natural antibacterial properties, which can ensure the durability of the antibacterial properties of the antibacterial yarn 10. Polyester fiber has good abrasion resistance, which can ensure the abrasion resistance of the abrasion-resistant yarn 11. The vent 12 formed at the position of the antibacterial coil row can improve the overall breathability of the outer layer 1. Especially at the position of the antibacterial coil row, because the antibacterial yarn 10 is a hydrophilic fiber, the ability to lose moisture in this part can be increased by setting breathability. The diameter of the abrasion-resistant yarn 11 is larger than that of the antibacterial yarn 10, making the abrasion-resistant coil row more prominent than the antibacterial coil row, thereby reducing the contact area between the antibacterial coil row and external objects. It can be mainly supported by the abrasion-resistant coil row. Polyester fiber is hydrophobic, and its abrasion resistance is not easily affected by moisture.
[0024] like Figure 1 As shown, the inner layer 3 is made of cotton yarn knitted together. Cotton yarn has good softness and skin-friendliness, which can ensure the overall softness of the inner layer 3 of the fabric.
[0025] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.
Claims
1. Embroidered cloth, characterized in that: The outer layer (1), the middle layer (2) and the inner layer (3) are sequentially arranged, a plurality of grooves (4) are formed on one side of the middle layer (2) facing the outer layer (1) by hot pressing, a plurality of square grooves (5) corresponding to the grooves (4) are formed on the other side of the middle layer (2) facing the inner layer (3) by hot pressing, the grooves (4) are located at the center positions of the square grooves (5) and the areas of the square grooves (5) are greater than those of the grooves (4), the outer layer (1) is embedded in the grooves (4) and forms recesses (6), a plurality of embroidery threads are arranged between the outer layer (1) and the inner layer (3) and located at the positions of the recesses (6), and the embroidery threads form floating threads in the square grooves (5).
2. The embroidered cloth according to claim 1, wherein: The middle layer (2) is formed by warp yarns (7) and weft yarns (8) by warp-weft weaving, the middle layer (2) comprises a hot-pressed part and a through-hole part, the distribution density of the weft yarns (8) on the hot-pressed part is greater than that on the through-hole part, a plurality of through holes (9) are formed on the through-hole part, and the warp yarns (7) and the weft yarns (8) are both twisted by polyester filaments.
3. The embroidered cloth according to claim 1, wherein: The outer layer (1) comprises antibacterial coil rows and wear-resistant coil rows, the antibacterial coil rows and the wear-resistant coil rows are arranged in a 3:5 mode, the antibacterial coil rows are formed by weaving antibacterial yarns (10), and the wear-resistant coil rows are formed by weaving wear-resistant yarns (11).
4. The embroidered cloth according to claim 3, wherein: A plurality of air holes (12) formed by coil deviation are arranged on the outer layer (1), the air holes (12) are located on the antibacterial coil rows, the antibacterial yarns (10) are twisted by bamboo fibers, and the wear-resistant yarns (11) are twisted by polyester fibers.
5. The embroidered fabric according to claim 3, wherein: The diameter of the wear-resistant yarns (11) is greater than that of the antibacterial yarns (10).
6. The embroidered cloth according to claim 1, wherein: The inner layer (3) is formed by knitting cotton yarns.