A kind of imitation woven single-sided knitting fabric and its manufacturing method

Through the weaving method of alternately forming a circle of the base yarn, veil and padded yarn, the problems of color leakage, easy to disconnect and poor wear resistance of existing imitation knitted knitted fabrics are solved, and the application of tight structural and functional fibers is realized, and the wear resistance and feel of the fabric is improved.

CN115874344BActive Publication Date: 2025-07-08GUANGDONG FORWARD DENIM
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Patent Information

Application Number
CN202211722518.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-30
Publication Date
2025-07-08
Estimated Expiration
2042-12-30

AI Technical Summary

Technical Problem

Existing imitation knitted fabrics are prone to color leakage when worn and stretched, the veil floating thread is easily disconnected, the structure is not wear-resistant and it is difficult to insert functional fibers.

Method used

The weaving method is adopted to alternately form rings of the base yarn, veil and padded yarn. The padded yarn is located on the back of the process to form a collecting ring or floating thread, which blocks the base yarn and protects the veil, increasing the structural tightness and wear resistance of the fabric.

Benefits of technology

Reduce color leakage, improves the wear resistance of the fabric, can insert functional fibers and maintain a good feel, imitating the twill effect of woven fabrics.

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Abstract

The present invention discloses a knitted fabric imitating a shuttle loom single-side machine and a manufacturing method thereof, belonging to the field of knitting. The bottom yarn and the face yarn are alternately arranged in rows. According to the knitting direction, the fabric is woven by a plurality of first cycles. The first cycle includes one bottom yarn, one face yarn, and at least two padding yarns. In the first cycle: the face yarn forms loops every first number of needles and forms floats at the remaining positions; the bottom yarn forms floats at the positions where the face yarn forms loops and forms loops at the remaining positions; the padding yarn only forms floats or loops. The knitted fabric manufactured by this method has a more compact structure and is not prone to color leakage. The padding yarn can protect the face yarn. When snagging occurs, the padding yarn is most likely to be snagged. The padding yarn only forms floats or loops and does not form loops. Therefore, even if it is broken by snagging, it will not unravel, and the fabric is more wear-resistant. The fabric obtained by this method has an additional layer of padding yarn, and when used in combination with some functional fibers, it can better exert the effects of the functional fibers.
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Description

Technical Field

[0001] The present invention relates to a knitted fabric imitating woven single-sided machine and a manufacturing method thereof, belonging to the field of knitting. Background Art

[0002] Using a single-sided machine, such as a circular knitting machine, it is possible to produce a knitted fabric imitating woven fabric by knitting method. In the prior art, the organization design drawing of producing a knitted fabric imitating woven fabric by a single-sided machine is as shown in Figure 1 (in the figure, "x" represents loop formation, and blank represents formation of float). Among them, one kind of yarn is all out of the needle. For the convenience of description, this kind of yarn is simply called the bottom yarn; another kind of yarn forms a loop only every several needles. For the convenience of description, this kind of yarn is simply called the face yarn. The face yarn and the bottom yarn are alternately woven in. The float of the face yarn forms twill on the process reverse side to imitate the texture of the woven fabric. If the colors of the face yarn and the bottom yarn are different, twill can be formed by relying on the color arrangement on the process front side, so that both sides of the fabric have the effect of imitating the woven fabric. For example, when imitating denim fabric, two kinds of color yarns, blue and white, are used alternately in rows. The white color yarn forms loops in every row to imitate the white cloth bottom of the denim fabric. Therefore, the white color yarn here is called the bottom yarn; the blue color yarn forms a loop only every several needles. On the same row, floats are formed at the positions between adjacent loop formations to imitate the blue warp of the denim fabric. And on any two adjacent columns, the blue color yarn does not form loops in the same row to imitate the twill of the denim fabric. Therefore, the blue color yarn here is called the face yarn. The fabric produced by this kind of weaving method is usually with the reverse side as the front side (using the process reverse side as the application front side). The twill on the process reverse side is formed by the float arrangement of the face yarn, and the twill on the process front side (application reverse side) is formed by the color arrangement. The fabric made by this method has the following three disadvantages:

[0003] First, when stretching during wearing, the bottom yarn color is extremely easy to leak out on the application front side (process reverse side), affecting the appearance.

[0004] Second, the knitted structure is different from the woven structure. The woven weft yarn is straightened and relatively tough, while the float of the face yarn in the knitted imitation of woven fabric will bend slightly and is easy to be hooked off during use. Coupled with the easy unraveling property of the knitted fabric, the knitted fabric imitating woven fabric is generally not wear-resistant. Especially in the method of using the reverse side as the front side, the float of the face yarn is exposed on the application front side and is more likely to be hooked off by sharp objects during wearing.

[0005] Third, the structure is relatively simple, the formed twill texture is relatively monotonous, and it is difficult to insert some functional fibers. Summary of the Invention

[0006] In order to overcome the deficiencies of the prior art, the present invention provides a knitted fabric imitating woven single-sided machine and a manufacturing method thereof, so that the obtained fabric is not easy to leak color, has a strong structure, and is easy to introduce functional fibers.

[0007] The technical solution adopted by the present invention to solve its technical problem is:

[0008] In a first aspect, the present application provides a method for manufacturing a single-sided knitted fabric imitating woven fabric, wherein the fabric is woven by alternating rows of ground yarns and face yarns in a weaving direction, wherein the fabric is woven by a plurality of first loops, wherein the first loop comprises one ground yarn, one face yarn, and at least two inlay yarns, and in the first loop:

[0009] The veil is looped once every first number of stitches, and floating threads are formed at the remaining positions;

[0010] The bottom yarn forms a floating line at the looped position of the top yarn and forms loops at other positions;

[0011] The inlay yarn is tucked once every second number of stitches.

[0012] The manufacturing method of the imitation shuttle-woven single-sided machine knitted fabric of the present application makes the position where the bottom yarn forms a loop and the position where the face yarn forms a loop always complement each other in each first cycle, while the padding yarn does not form a loop throughout the whole process. The weaving result forms a row in the actual fabric for each first cycle, and the structure is more compact and not easy to leak color. Secondly, the padding yarn only forms a collection loop or a floating line, which is located on the reverse side of the process, that is, the front side of the application, and is used to form a twill, which has a shielding effect on the bottom yarn, further reduces color leakage, and also protects the floating line of the face veil. When the wire is snagged, the padding yarn is the most likely to be hooked, and the padding yarn only forms a collection loop or a floating line, not a loop, so even if it is hooked and broken, it will not fall apart, and the fabric is more wear-resistant. In addition, the fabric prepared by this method has an extra layer of padding yarn, which can better play the effect of functional fibers when used with some functional fibers.

[0013] Furthermore, in the first cycle, according to the weaving order, the lining yarn is located above and below the face yarn, which is beneficial for the lining yarn to have a better shielding effect on the bottom yarn.

[0014] Furthermore, each of the first cycles has one of the base yarns, one of the face yarns, one of the backing yarns located above the face yarns, and one of the backing yarns located below the face yarns.

[0015] If only one padding yarn is used, the shielding effect on the bottom yarn is not good; if more padding yarns are used, although the shielding ability of the veil is stronger, in order to prevent the padding yarn from being loose, the number of tucking will be greatly increased. Too much padding yarn and tucking will occupy a large capacity of the knitting needle, so that only thinner yarns can be used for the veil and the bottom yarn, and the fabric has a poor effect of imitating shuttle woven fabrics. In each first cycle, only one padding yarn is used above and below the veil, which has a good shielding effect on the bottom yarn, and the knitting needle can take in at most two yarns each time, which has lower requirements on the thickness of the veil and the bottom yarn, and more types of veils and bottom yarns can be selected.

[0016] Furthermore, the position where the face yarn forms loops is not in the same column as the position where the padding yarn forms floats in the same first cycle, nor is it in the same column as the position of the nearest padding yarn float in the adjacent first cycle.

[0017] The fabric obtained in this application can be regarded as having a three-layer structure. From the process front to the process back, they are the ground yarn, the face yarn, and the padding yarn in sequence. The process back forms twill with the padding yarn. When the colors of the ground yarn and the face yarn are different, the process front forms twill with the color arrangement. In addition to the function of blocking the ground yarn on the process back to reduce the color leakage of the ground yarn, when the face yarn selects yarns with poor hand feeling, making the position where the padding yarn forms floats not in the same column as the position where the face yarn forms loops in the same first cycle can ensure that the two padding yarns in the same first cycle can block the loop stems at the loop-forming position of the face yarn. When touching the process back, it is the padding yarn that contacts the skin more. The skin is lifted by the padding yarn and it is difficult to contact the face yarn. And when the position where the face yarn forms loops in each first cycle is not in the same column as the position of the nearest padding yarn float in the adjacent first cycle, the nearest padding yarn in the next first cycle can block the loop stems of the face yarn in this first cycle, making the fabric feel better.

[0018] Furthermore, the second stitch number is 3 stitches, and the padding yarn forms a float every 3 stitches. The two padding yarns in the same cycle taking turns to form a float can make the fabric relatively tight. If the interval of the padding yarn forming a float is too large, the padding yarn is relatively loose; if the interval of the padding yarn forming a float is too small, the fabric feels too hard and not comfortable enough, and the covering effect on the face yarn is not good. The padding yarn forming a float every 3 stitches is beneficial to meet the requirement that the padding yarn forming a float avoids the loop-forming of the face yarn, has a good covering effect, and the fabric is relatively soft.

[0019] Further, the first stitch number is 3 stitches, which is beneficial to imitate the twill effect of 3 up and 1 down of the shuttle-woven denim fabric.

[0020] Further, the face yarn is metallic yarn, and the padding yarn is cotton yarn. The metallic yarn has a good visual effect, but the material is relatively hard. After using the metallic yarn in the traditional anti-shuttle-woven knitted fabric, the hand feeling is poor. However, in this application, the padding yarn is located on the process back, that is, closer to the application front than the metallic yarn used as the face yarn. Even if the metallic yarn is used in the fabric, the fabric can still have a good hand feeling.

[0021] Further, the face yarn is cotton yarn, and the padding yarn is functional fiber. The functional fiber is, for example, moisture-conducting fiber, heat-generating fiber, etc. In the traditional process, when inserting functional fibers, it is usually inserted in the form of additional yarn, and the scope of action is limited, and it is easy to visually disrupt the original shuttle-woven-like texture. In this application, functional fibers can be used as the padding yarn, with a large area of action and without disrupting the shuttle-woven-like texture.

[0022] Furthermore, the fabric is napped and raised on the reverse side of the process. For traditional imitation shuttle-woven knitted fabrics, the shedding of the fabric will occur after the surface yarn float line is cut, so it is difficult to make an imitation shuttle-woven knitted fabric with napping on one side. In this application, the laid-in yarn is located on the surface of the face yarn. Napping can be achieved by cutting the laid-in yarn. The laid-in yarn that does not form loops throughout the process will not shed after being cut. Napping does not affect the face yarn and the ground yarn, so napping will not cause the face yarn and the ground yarn to shed.

[0023] In a second aspect, the present application provides an imitation shuttle-woven single-sided machine knitted fabric made by the method described in the first aspect. This fabric has less color leakage and is more wear-resistant than general imitation shuttle-woven knitted fabrics.

[0024] The method for making the imitation shuttle-woven single-sided machine knitted fabric of the present invention has the following advantages:

[0025] (1). In each first cycle, the position where the ground yarn forms loops and the position where the face yarn forms loops are always complementary, while the laid-in yarn does not form loops at all. The knitting result is that each first cycle forms a row in the actual fabric, and the structure is more compact and not prone to color leakage.

[0026] (2). The laid-in yarn only forms floats or tucks, and is all located on the reverse side of the process, playing a role in shielding the ground yarn on the reverse side of the process and further reducing color leakage.

[0027] (3). The laid-in yarn is closer to the reverse side of the process than the face yarn and has the function of protecting the face yarn. When encountering sharp objects, the float line formed by the laid-in yarn will be cut first. Since the laid-in yarn has no loop structure, its disconnection will not cause the knitted fabric to shed.

[0028] (4). In case the face yarn or the ground yarn is accidentally cut, the existence of the laid-in yarn will prevent the fabric from shedding in the knitting direction.

[0029] (5). The fabric obtained by this method has an additional layer of laid-in yarn, and more process techniques can be applied. For example, it can be combined with fancy yarns to weave fabrics with diverse styles, and the napping process can be performed on the laid-in yarn while retaining the diagonal lines on the front side of the process.

[0030] Other features and advantages of the present application will be described in the subsequent specification, and some of them will become obvious from the specification or can be understood by implementing the present application. The objectives and other advantages of the present application can be achieved and obtained through the structures specifically pointed out in the written specification and the drawings. Description of the Drawings

[0031] The present invention will be further described below in conjunction with the drawings and embodiments.

[0032] Figure 1 It is the organization design drawing of imitating shuttle-woven fabric with a single-sided circular weft knitting machine in the prior art.

[0033] Figure 2It is the tissue design drawing of the imitation shuttle-woven fabric using a single-sided circular knitting machine in the embodiment of the present application.

[0034] Figure 3 It is related to Figure 2 the coil drawing corresponding to the tissue design drawing in

[0035] Figure 4 It is Figure 3 the partial simplified drawing in

[0036] Figure 5 It is the coil drawing of one of the embodiments of the present application.

[0037] Figure 6 It is the physical drawing of a kind of imitation shuttle-woven single-sided machine knitted fabric provided by the embodiment of the present application.

[0038] Figure 7 It is the physical drawing of a kind of imitation shuttle-woven single-sided machine knitted fabric after single-sided napping and raising fluff provided by the embodiment of the present application. Specific Embodiments

[0039] The following details the embodiments of the present invention. The examples of the embodiments are shown in the drawings, where the same or similar reference numerals denote the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present invention and should not be construed as a limitation to the present invention.

[0040] The following disclosure provides many different embodiments or examples for implementing different structures of the present invention. To simplify the disclosure of the present invention, the components and settings of specific examples are described below. Of course, they are only examples and are not intended to limit the present invention. In addition, the present invention may repeat reference numerals and / or reference letters in different examples. Such repetition is for the purpose of simplification and clarity, and in itself does not indicate the relationship between the various embodiments and / or settings discussed.

[0041] In the prior art, the structure of the imitation shuttle-woven knitted fabric is not tight enough, and it is easy to leak color when stretched. The surface yarn floating lines imitating the weft yarn of the shuttle-woven fabric are easy to be hooked and broken, resulting in the dispersion of the fabric. In addition, due to its relatively simple structure, the formed diagonal lines are relatively monotonous, and the effects of some special yarns (such as metallic yarns) cannot be exerted, and it is not convenient for some post-treatment processes (such as napping and raising fluff).

[0042] The embodiment of the present application provides a manufacturing method of an imitation shuttle-woven single-sided machine knitted fabric. By alternately arranging the ground yarn and the surface yarn in rows, the fabric is woven from a plurality of first cycles in the knitting direction. The first cycle includes one ground yarn, one surface yarn, and at least two padding yarns. In the first cycle:

[0043] The surface yarn forms loops every first number of needles and forms floating lines at the remaining positions;

[0044] The ground yarn forms floats at the loop-forming positions of the face yarn and forms loops at other positions.

[0045] The padding yarn forms loops every second stitch number.

[0046] As Figure 1 shown, in the knitting method of the prior art, each ground yarn becomes a row in the actual product, while the face yarn intermittently appears between the ground yarns, and there will be a loop of the ground yarn between adjacent face yarns, resulting in a relatively large distance between adjacent face yarns and a relatively loose fabric texture. If an elastic yarn is selected for the ground yarn, the loops of the ground yarn become smaller. Although the fabric becomes tighter, the fabric shrinks too strongly and cannot imitate the characteristics of woven denim. In the embodiment of the present application, the ground yarn actually skips one stitch after every first stitch number, and the position where the face yarn comes out just fills the position skipped by the ground yarn. The ground yarn and the face yarn in the same first cycle are woven and located in the same row of the actual product. There is no loop of the ground yarn separating adjacent face yarns. Therefore, a strong elastic yarn is not required to make the fabric tighter and reduce color leakage. The padding yarn only forms floats or loops, all located on the reverse side of the process, further blocking the color leakage of the ground yarn, protecting the face yarn, and at the same time inhibiting the unraveling of the accidentally broken face yarn or ground yarn along the knitting direction.

[0047] After the fabric is made by the method of the embodiment of the present application, if it is cut straight (cut parallel to the knitting direction), the floating parts of the face yarn and the padding yarn imitate the weft yarns of the woven fabric and can imitate the weft-faced fabric; if it is cut horizontally (cut perpendicular to the knitting direction), the floating parts of the face yarn and the padding yarn imitate the warp yarns of the woven fabric and can imitate the warp-faced fabric. And generally, twill denim is a warp-faced fabric, and horizontal cutting is used when imitating denim.

[0048] Referring to Figure 2 (in the figure, "x" represents loop formation, blank represents float formation, and dotted horizontal line represents tuck stitch), in the first cycle, in the weaving order, the padding yarn is located above and below the face yarn, which is beneficial to making the shielding effect of the padding yarn on the face yarn better.

[0049] In Figure 2 the example shown, each first cycle has one ground yarn, one face yarn, one padding yarn located above the face yarn and one padding yarn located below the face yarn. There is one padding yarn above and below the face yarn in each first cycle, and the shielding effect on the face yarn is good. As Figure 2 shown, there is no situation where two padding yarns tuck stitch simultaneously within the same first cycle, that is, the knitting needle eats at most two yarns each time, with lower requirements for the thickness of the face yarn and the ground yarn, and more types of the face yarn and the ground yarn can be selected. Figure 2In the illustrated embodiment, every 4 rows form a small cycle. After knitting, in the same row of the actual product, every 16 rows form a complete cycle, which becomes the repeating unit of the continuous pattern in the actual product. Among them, the 1st, 5th, 9th, and 13th rows are the ground yarns; the 2nd, 4th, 6th, 8th, 10th, 12th, 14th, and 16th rows are the padding yarns; the 3rd, 7th, 11th, and 15th rows are the face yarns.

[0050] Figure 2 In it, the position where the face yarn forms a loop is not in the same column as the position where the padding yarn forms a tuck in the same first cycle, and is also not in the same column as the position of the nearest padding yarn that forms a tuck in the adjacent first cycle.

[0051] When a relatively stiff yarn is used for the face yarn, such as high-twist yarn, metallic yarn, etc., the padding yarn does not form a tuck at the position where the face yarn forms a loop in the same first cycle, which is beneficial to covering the loop stem at the place where the face yarn forms a loop and is beneficial to covering the face yarn. When touching the reverse side of the process, it is the padding yarn that contacts the skin more. The skin is lifted by the padding yarn and it is difficult to contact the face yarn. Reducing color leakage actually relies on the padding yarn to cover the loop column and the sinker loop at the place where the ground yarn forms a loop. When the position where the padding yarn forms a tuck is not in the same column as the position where the face yarn forms a loop in the same first cycle, the effect of covering the face yarn is the best. That is, on the reverse side of the process, the padding yarn visually covers the ground yarn and tactually covers the face yarn.

[0052] Figure 2 The loop diagram corresponding to the embodiment is as Figure 3 shown, Figure 4 which is Figure 3 a simplified display of the bottom two first cycles (one padding yarn is less drawn in the upper first cycle), Figure 4 where the label of the yarn corresponds to Figure 2 the row label in the fabric design diagram. And in the Figure 5 illustrated embodiment, the position where the face yarn forms a loop is not in the same column as the position where the padding yarn forms a tuck in the same first cycle, but is in the same column (the second column from right to left) as the position of the nearest padding yarn that forms a tuck in the adjacent first cycle. In Figure 4 it can be found that in the first (the knitting direction of the knitting machine is from bottom to top) first cycle, in the second column from right to left, the face yarn forms a loop here, and its loop column is covered by three padding yarns labeled 2, 4, and 6. Figure 5 In the first first cycle, the face yarn also forms a loop in the second column from right to left. However, since in the upper first cycle, the nearest padding yarn forms a tuck in the same column, this padding yarn does not cover the place where the face yarn forms a loop in the lower first cycle. Only two padding yarns in the same first cycle cover the place where the face yarn forms a loop. Therefore, the anti-color leakage effect is not as good as that in Figure 4The example shown. It should be noted that in the figure, in order to facilitate the distinction of various yarns, the distance between the yarns is drawn relatively sparse, the ground yarn is drawn as a thin black line, the backing yarn is drawn as a thick black line, and the face yarn is drawn as a hollow line. The thickness of the lines in the figure does not conform to the actual thickness of the yarns. After the grey fabric is taken off the loom, it will automatically shrink and tighten. The two loops of the actual fabric loops are in close contact. At the same time, the wale density of the knitted fabric is larger than the course density. In the actual product, the loop shape is generally flat. When the fineness of various yarns is comparable, the sum of the outer diameters of the two backing yarns will be greater than the loop height, that is, the whole row of loops can be covered. Therefore, in fact, the covering effect of the backing yarn on the ground yarn is stronger than that shown in the figure, thereby reducing color leakage. In addition, analysis Figures 3 to 5 All can find that in case the ground yarn or the face yarn accidentally breaks, the backing yarn can prevent the broken ground yarn or face yarn from slipping off in the knitting direction. Therefore, the fabric prepared by the present invention is more wear-resistant.

[0053] The alternate tucking of the two backing yarns in the same cycle can make the fabric relatively tight. If the interval of the backing yarn tucking is too large, the backing yarn is relatively loose; if the interval of the backing yarn tucking is too small, the fabric feels too hard, not comfortable, and the covering effect on the face yarn is poor. Preferably, the backing yarn tucks every 3 needles, which is beneficial to meet the requirement that the backing yarn tucking avoids the face yarn forming loops (that is, "the position where the face yarn forms loops is not in the same column as the position where the backing yarn tucks in the same first cycle, and is not in the same column as the position where the backing yarn tucks in the nearest first cycle in the adjacent first cycle"), the covering effect is good, and the fabric is relatively soft.

[0054] Specifically, the first number of needles is 3, which is beneficial to imitate the twill effect of 3 up and 1 down of the woven denim fabric.

[0055] Please combine with Figure 3 Observe Figure 2, for every 1 stitch of the face yarn, 3 stitches are skipped, and for every 3 stitches of the ground yarn, 1 stitch is skipped. In the same first cycle, in the columns where the face yarn makes stitches (forms loops), the ground yarn has skipped stitches (forms floats), and in the columns where the ground yarn makes stitches, the face yarn has skipped stitches, which are exactly complementary. The laid-in yarn makes a tuck stitch every 3 stitches, such that the two laid-in yarns in the same first cycle do not make tuck stitches in the same column. The position where the face yarn forms a loop is not in the same column as the position where the laid-in yarn makes a tuck stitch in the same first cycle, nor is it in the same column as the position where the nearest laid-in yarn makes a tuck stitch in the adjacent first cycle. Rows 1, 2, 3, and 4 constitute the first cycle. Row 1 is the ground yarn, which forms loops in the first, third, and fourth columns from right to left and forms a float in the second column; Row 3 is the face yarn, which forms a loop in the second column from right to left and forms floats in the first, third, and fourth columns; In the weaving order, the laid-in yarn in Row 2 is before the face yarn in Row 3, and the laid-in yarn in Row 4 is after the face yarn in Row 3. Both laid-in yarns make tuck stitches at the loop-forming positions of the ground yarn in the same first cycle. For example, the laid-in yarn in Row 2 makes a tuck stitch at the loop-forming position of the ground yarn in Row 1 in the first column from right to left, and the laid-in yarn in Row 4 makes a tuck stitch at the loop-forming position of the ground yarn in Row 1 in the third column from right to left. The fabric woven by this method is as shown in Figure 6 shown, Figure 6 The upper part is the process front side, and the lower part is the process back side. It can be seen that the fabric made by this method has obvious twill, good imitation of woven fabric effect, less color bleeding, especially on the process back side, which is almost solid color.

[0056] After applying the present invention, in addition to reducing color bleeding and wear resistance, it can also exert the effects of certain special yarns and can perform certain post-treatment processes.

[0057] For example, the metallized yarn has a good visual effect, but the material is relatively hard. When used in traditional anti-woven knitted fabrics, the hand feel is poor. In the embodiment of the present application, the metallized yarn is used for the face yarn, and the laid-in yarn is selected as cotton yarn. The laid-in yarn is located on the process back side, that is, closer to the application front side than the metallized yarn used as the face yarn. Even when the metallized yarn is used in the fabric, the fabric can still have a good hand feel.

[0058] Another example is that in the traditional process, when inserting functional fibers, it is usually inserted in the form of plating yarn, with a limited scope of action and easy to visually disrupt the original woven-like pattern. In the embodiment of the present application, functional fibers can be used as the laid-in yarn, with a large area of action and without disrupting the woven-like pattern.

[0059] Another example is that napping and raising is a common post-treatment process for woven fabrics. However, for traditional woven-like knitted fabrics, after the face yarn float is cut, the fabric will unravel, so it is difficult to make a woven-like knitted fabric with napping on one side. In the embodiment of the present application, the laid-in yarn is located on the surface of the face yarn. Cutting the laid-in yarn can raise the nap. As shown in Figure 7 shown, the laid-in yarn that does not form loops throughout the process will not unravel after being cut. Napping does not affect the face yarn and the ground yarn, so raising the nap will not cause the face yarn and the ground yarn to unravel. Figure 7The upper part is the side of the fabric without fleece, and the lower part is the side of the fabric where the backing yarn is cut and fluffed. As can be seen from Figure 7 the lower part, the product of the embodiment of the present application has a good fluffed effect, quite similar to the fluffed effect of shuttle-woven fabric. As can be seen from Figure 7 the upper part, after brushing, the basic structure of the fabric remains tight and does not unravel.

[0060] In the description of this specification, the description with reference to terms such as "one embodiment", "certain embodiments", "schematic embodiments", "examples", "specific examples", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the said embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0061] The above are the preferred embodiments of the present invention. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the principle of the present invention, several improvements and modifications can still be made, and these improvements and modifications are also regarded as the protection scope of the present invention.

Claims

1. A method for manufacturing a knitted fabric imitating woven single-sided machine, characterized in that, In the knitting direction, the fabric is formed by a plurality of first cycles. In the order of knitting, each of the first cycles sequentially includes a ground yarn, a padding yarn before the face yarn, the face yarn, and a padding yarn behind the face yarn. In the first cycle: The face yarn forms loops every first number of stitches and forms floats at other positions; The ground yarn forms floats at the positions where the face yarn forms loops and forms loops at other positions; The padding yarn forms wales every second number of stitches; The positions where the face yarn forms loops are not in the same column as the positions where the padding yarn forms wales in the same first cycle, nor are they in the same column as the positions where the nearest padding yarn forms wales in adjacent first cycles.

2. The manufacturing method of the imitation woven single-sided machine knitted fabric according to claim 1, characterized in that, The second number of stitches is 3 stitches.

3. The manufacturing method of the imitation woven single-sided machine knitted fabric according to claim 1, characterized in that, The first number of stitches is 3 stitches.

4. The method for manufacturing the imitation woven single-sided knitting fabric according to claim 1, characterized in that, The face yarn is a metallic yarn and the padding yarn is a cotton yarn.

5. The manufacturing method of the imitation woven single-sided machine knitted fabric according to claim 1, characterized in that, The face yarn is a cotton yarn and the padding yarn is a functional fiber.

6. The manufacturing method of the imitation woven single-sided machine knitted fabric according to claim 1, characterized in that, Fleece and raise fuzz on the reverse side of the process.

7. A knitted fabric imitating woven single-sided machine, characterized in that, Made by the method according to any one of claims 1 to 6.

Citation Information

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