Antiskid fabric
The anti-slip fabric, formed by yarn weaving to create a highly raised structure, solves the problem of adhesive anti-slip particles easily falling off, achieving a more durable anti-slip effect and yarn stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHAOXING QIAOSHI TEXTILE TECH CO LTD
- Filing Date
- 2025-06-30
- Publication Date
- 2026-05-15
AI Technical Summary
Conventional anti-slip fabrics often have anti-slip particles that are easily detached, resulting in a short-lasting anti-slip effect.
The first horizontal strip and the second horizontal strip are formed by yarn weaving. The first horizontal strip includes a first area and a second area. The first area includes a base fabric and three W-shaped protrusions. The second area includes two protrusions and one depression. The height of the second horizontal strip is higher than the first area and the protrusions of the second area. The yarn has a large degree of curvature, which increases the contact area and contact points.
The high-protrusion structure formed by yarn weaving reduces yarn slippage, enhances anti-slip effect, increases the frictional resistance and stability of the yarn on the fabric surface, and resists the tendency of the yarn to slip.
Smart Images

Figure CN224243370U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fabrics, and more specifically, to an anti-slip fabric. Background Technology
[0002] Conventional anti-slip fabrics often use glued anti-slip particles, but these particles tend to fall off over time. Utility Model Content
[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide an anti-slip fabric. A first horizontal strip and a second horizontal strip are formed by yarn weaving. The first horizontal strip includes a first region and a second region. The first region includes a base fabric and three integrally woven protrusions in a W-shape. The second region includes two parallel protrusions and a recess located between them. The second horizontal strip is a continuous long protrusion structure, and its height is greater than the height of the three protrusions in the first region and the height of the two protrusions in the second region is greater than the height of the base fabric. Therefore, the second horizontal strip forms a higher protrusion on the fabric surface, resulting in a greater degree of yarn bending, thereby reducing yarn slippage when the fabric is under stress. The W-shaped protrusions of a second height formed on the base fabric area between the two second horizontal strips increase the contact area and contact points, further effectively resisting the tendency of the yarn to slip.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: an anti-slip fabric, comprising a first horizontal strip and a second horizontal strip, the first horizontal strip and the second horizontal strip being arranged alternately and cyclically along the length of the fabric, the first horizontal strip comprising a first region and a second region, the first region and the second region being arranged alternately and cyclically along the width of the fabric, the first region comprising a first base fabric and three first protrusions, the second region comprising two second protrusions and a second base fabric located between the two second protrusions, the second horizontal strip being higher than the first protrusions, the first protrusions being at the same height as the second protrusions, the first protrusions being higher than the first base fabric, and the first base fabric being at the same height as the second base fabric.
[0005] The present invention is further configured such that, in the first region, three first protrusions are arranged along the length of the fabric, and the first protrusions are W-shaped.
[0006] The present invention is further configured such that, in the second region, the second protrusion and the second base fabric are alternately arranged along the fabric width direction.
[0007] The present invention is further configured such that the width of the first region is greater than the width of the second region.
[0008] The present invention is further configured such that the fabric is woven in a 22-way loop as one weave cycle, 18-way loops are woven to form the first horizontal strip, and 4-way loops are woven to form the second horizontal strip.
[0009] The present invention is further configured such that, in the 18-coil array that forms the first horizontal strip, 12-coil arrays are woven to form the first base fabric and the second region, and 6-coil arrays are woven to form the first protrusion and the second region.
[0010] The present invention is further configured such that the first to fourth coil rows, the seventh to tenth coil rows, and the thirteenth to sixteenth coil rows are woven together to form the first base fabric and the second region, and the fifth, sixth, eleventh, twelfth, eleventh, seventeenth, and eighteenth coil rows are woven together to form the first protrusion and the second region.
[0011] In summary, this utility model has the following beneficial effects:
[0012] The first and second horizontal stripes are formed by weaving yarn. The second horizontal strip forms the highest raised part on the fabric surface, which maximizes the bending degree of the yarn and reduces the slippage of the yarn when the fabric is under stress. The first horizontal strip includes three W-shaped raised structures, which make the fabric form more contact points and further resist the slippage tendency of the yarn when the fabric is under stress, thereby improving the anti-slip effect. Attached Figure Description
[0013] Figure 1 This is a structural schematic diagram of an anti-slip fabric in this embodiment;
[0014] Figure 2 for Figure 1 Sectional view along direction A-A in the middle;
[0015] Figure 3 for Figure 1 Enlarged view of point B in the middle;
[0016] Figure 4 This is a triangular configuration diagram of an anti-slip fabric in this embodiment;
[0017] Figure 5 This is a weaving pattern of an anti-slip fabric in this embodiment.
[0018] Reference numerals: First horizontal bar 1, First region 11, Second region 12, First base fabric 111, First protrusion 112, Second protrusion 121, Second base fabric 122, Second horizontal bar 2. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0020] This embodiment discloses an anti-slip fabric. The fabric has a weave cycle of 22 loops. Each loop includes 2 sections of purl needles and 4 sections of knit needles. The knitting sequence of the 2 purl needles is 112…, and the knitting sequence of the 4 knit needles is 12234412114332… In one weave cycle, loops 1-18 form the first horizontal strip 1, and loops 19-22 form the second horizontal strip 2. Therefore, the fabric includes the first horizontal strip 1 and the second horizontal strip 2. The first horizontal strip 1 is formed by 18 loops, and the second horizontal strip 2 is formed by 4 loops. Because the 22 loops are woven along the length of the fabric, and because of the weave cycle, the first horizontal strip 1 and the second horizontal strip 2 are woven along the length of the fabric. The stitches are arranged in an alternating cycle, and are located in the 18-row knitting rows that form the first horizontal strip 1. Because the knitting sequence of the four knitting needles in the 1st to 18th rows is 12234412114332…, the knitting sequence 12234412 forms the first region 11 of the first horizontal strip 1, while the knitting sequence 114332 forms the second region 12. Therefore, the first horizontal strip 1 includes both the first region 11 and the second region 12. The first region 11 is formed by 8 knitting needles and 8 purl needles forming a weave cycle, while the second region 12 is formed by 6 knitting needles and 6 purl needles forming a weave cycle. Therefore, the width of the first region 11… The width is greater than that of the second region 12. Because the needles in the loop rows of the first horizontal strip 1 alternate between the first region 11 and the second region 12, the first region 11 and the second region 12 are arranged alternately along the fabric width. In the 18 loop rows of the first horizontal strip 1, the needles in loop rows 1-4, 7-10, and 13-16 are all tucked and floated, while the needles in loop rows 5, 6, 11, 12, 17, and 18 are all knitted and floated. Therefore, the first base fabric 11 is formed in the loop rows 1-4, 7-10, and 13-16 with a needle arrangement of 12234412. 1. The second region 12 is formed by knitting in the order of 114332 needles in the 1st-4th, 7th-10th, and 13th-16th coil rows. Therefore, the 1st-4th, 7th-10th, and 13th-16th coil rows form the first base fabric 111 and the second region 12. The first protrusion 12 is formed by knitting in the order of 12234412 needles in the 5th, 6th, 11th, 12th, 17th, and 18th coil rows. The second region 12 is formed by knitting in the order of 114332 needles in the 5th, 6th, 11th, 12th, 17th, and 18th coil rows. Therefore, the first protrusion 112 and the second region 12 are formed by knitting in the order of 114332 needles in the 5th, 6th, 11th, 12th, 17th, and 18th coil rows.Therefore, in the 18-coil rows that form the first horizontal strip 1, 12-coil rows are woven to form the first base fabric 111 and the second region 12, and 6-coil rows are woven to form the first protrusion 112 and the second region 12.
[0021] In the knitting of the first region 11, because the 12234412 cyclic arrangement of the lower needles in the 1st-4th, 7th-10th, and 13th-16th coil rows is tuck knitting with floats, while the 11234412 cyclic arrangement of the lower needles in the 5th, 6th, 11th, 12th, 17th, and 18th coil rows is knitting in loops with floats, the 12234412 cyclic arrangement of the lower needles in the 1st-4th, 7th-10th, and 13th-16th coil rows forms the first base fabric 111. The 11234412 repeating arrangement of the 5th, 6th, 11th, 12th, 17th, and 18th coil rows forms the first protrusion 112. Since the 5th and 6th coil rows are located between the 1st-4th and 7th-10th coil rows, the 11th and 12th coil rows are located between the 7th-10th and 13th-16th coil rows, and the 17th and 18th coil rows are located after the 13th-16th coil rows, and the 122344 repeating arrangement of the 5th, 6th, 11th, 12th, 17th, and 18th coil rows forms the first protrusion 112. The knitting positions of the 12-cycle lower needles are the same. The 12234412-cycle lower needle tuck knitting in the first to fourth loops is located between the first and third needle segments. The 12234412-cycle lower needle tuck knitting in the seventh to tenth loops is located between the second and fourth needle segments. The 12234412-cycle lower needle tuck knitting in the 13th to 16th loops is located between the first and third needle segments. Therefore, the first region 11 includes the first base fabric 111 and three first protrusions 112, and is located... In the first region 11, three first protrusions 112 are arranged along the length of the fabric, and the first protrusions 112 are W-shaped. Therefore, the W-shaped protrusions increase the contact area and contact points, thereby reducing the slippage or deformation caused by the concentration of external force at a certain point, thus improving the anti-slip effect of the fabric and increasing the surface unevenness. The W-shaped protrusions also increase the friction resistance of the fabric at different angles. Due to the unevenness of the fabric surface, the yarn becomes more curved after weaving, and the W-shape formed by the yarn weaving effectively resists the yarn slippage tendency in multiple directions.
[0022] In the knitting process forming the second region 12, because the 114332 cyclic arrangement of the lower needles in the first 4th, 7th, 10th, and 13th-16th coil rows is tuck knitting with floats, while the 114332 cyclic arrangement of the lower needles in the 5th, 6th, 11th, 12th, 17th, and 18th coil rows is loop knitting with floats, the 114332 cyclic arrangement of the lower needles in the first 4th, 7th, 10th, and 13th-16th coil rows forms the second base fabric 122, while the 5th, 6th, 11th, 12th, 17th, and 18th coil rows... The second protrusion 121 is formed by the 114332 repeating knitting needles. Because the second base fabric 122 and the first base fabric 111 have the same number of knitting paths, but the knitting needle arrangement is different, the second protrusion 121 and the first protrusion 112 also have the same number of knitting paths, but the knitting needle arrangement is different. This is because both the first base fabric 111 and the second base fabric 122 are knitted in two consecutive loops, while both the first protrusion 112 and the second protrusion 121 are knitted in four consecutive loops. Therefore, the first base fabric 111 and the second base fabric 122 are at the same height, but the first protrusion 112 is higher than the first base fabric 111. The first protrusion 112 is at the same height as the second protrusion 121. Because the second horizontal bar 2 is a continuous four-way loop weave, the loops are transferred during the tuck weave, reducing the fabric thickness. Loop weave, on the other hand, creates continuous loops in the fabric. Therefore, the second horizontal bar 2 is higher than the first protrusion 112. Since the first horizontal bar is the tallest, the yarn in the first horizontal bar 1 has the greatest degree of bending in the later stages of weaving. This allows the bent yarns to hold each other at the bends of adjacent loops, making it less likely for the yarns to slip out of the loops when the fabric is stretched laterally. This reduces the possibility of yarn slippage during lateral stretching. Simultaneously, the second horizontal bar 2... One of the protrusions 112 is W-shaped, and the first horizontal strip 1 and the second horizontal strip 2 are arranged alternately along the length of the fabric. Therefore, when the first horizontal strip 1 reduces the possibility of slippage during lateral stretching, the first horizontal strip 1 also reduces the possibility of slippage during longitudinal stretching due to the W-shape of the first protrusion 112. This also reduces the slippage tendency of the yarns inside the fabric as a whole. Furthermore, because the fabric surface forms layers of different heights, the combination of multiple protrusions and depressions creates more contact points between the fabric and the contact surface. Through these contact points, the fabric restrains and cooperates with each other in multiple directions, thereby enhancing the stability and anti-slip capability of the fabric under stress.
[0023] 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. A non-slip fabric, characterized in that, The fabric includes a first horizontal strip (1) and a second horizontal strip (2), which are arranged alternately and cyclically along the length of the fabric. The first horizontal strip (1) includes a first region (11) and a second region (12), which are arranged alternately and cyclically along the width of the fabric. The first region (11) includes a first base fabric (111) and three first protrusions (112). The second region (12) includes two second protrusions (121) and a second base fabric (122) located between the two second protrusions (121). The second horizontal strip (2) is higher than the first protrusions (112). The first protrusions (112) and the second protrusions (121) are at the same height. The first protrusions (112) are higher than the first base fabric (111). The first base fabric (111) and the second base fabric (122) are at the same height.
2. The anti-slip fabric according to claim 1, characterized in that, Located in the first region (11), three first protrusions (112) are arranged along the length of the fabric, and the first protrusions (112) are W-shaped.
3. The anti-slip fabric according to claim 1, characterized in that, Located in the second region (12), the second protrusion (121) and the second base fabric (122) are arranged alternately along the fabric width direction.
4. The anti-slip fabric according to claim 1, characterized in that, The width of the first region (11) is greater than the width of the second region (12).
5. The anti-slip fabric according to claim 1, characterized in that, The fabric is woven in a 22-way loop as one weave cycle, with 18-way loops forming the first horizontal strip (1) and 4-way loops forming the second horizontal strip (2).
6. The anti-slip fabric according to claim 5, characterized in that, Located in the 18-coil row that forms the first horizontal strip (1), 12-coil row that forms the first base fabric (111) and the second region (12) are woven together, and 6-coil row that forms the first protrusion (112) and the second region (12) are woven together.
7. The anti-slip fabric according to claim 5, characterized in that, The first to fourth coil rows, the seventh to tenth coil rows, and the thirteenth to sixteenth coil rows are woven together to form the first base fabric (111) and the second region (12). The fifth, sixth, eleventh, twelfth, eleventh, seventeenth, and eighteenth coil rows are woven together to form the first protrusion (112) and the second region (12).