Wide single-edge structure knitted fabric and its knitting method
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- ZHUHAI JIAN XUAN CLOTHING LTD
- Filing Date
- 2024-09-18
- Publication Date
- 2026-05-12
AI Technical Summary
When using existing computerized flat knitting machines to knit wide, single-sided knitted fabrics, conventional methods require knitting in sections and then manually sewing them together, resulting in high labor costs and affecting fabric quality.
采用特定编织路径和翻针移圈动作,利用纬针织电脑横机的第一针床和第二针床,编织出起始、主、结尾废纱单边结构织物,通过人工拆解展开形成宽幅单边结构针织物,突破常规电脑横机编织宽度限制。
It enables the knitting of wide single-sided structured fabrics with a width three times that of the conventional fabric within the fixed needle range of a computerized flat knitting machine, simplifying operation, saving production costs, and avoiding the occurrence of seam openings.
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Figure CN118979330B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of knitting, and more particularly, the present application relates to a wide single-edge structure knitted fabric and a knitting method thereof. BACKGROUND
[0002] The single-edge (flat-knitting) structure knitted fabric is knitted by a weft-knitting computerized flat knitting machine with front and back needle beds, and is the most basic and common fabric structure in the field of knitting, which is widely used in daily knitted garments. In the actual production of knitted garments, due to the requirements of garment design and quality, the knitting of wide single-edge structure knitted fabric is often required, such as the single-edge patch required for the chest of a shirt, the lower hem of a garment, the continuous overlock patch of a collar, and the wide single-edge original piece applied to cutting.
[0003] The maximum width of the needle bed of a conventional computerized flat knitting machine in the industry is generally within 50 inches (127 cm), which means that the theoretical maximum knittable width of the knitted fabric is not more than 50 inches. When the width of the wide single-edge fabric exceeds the upper limit of 50 inches, the conventional method is to divide the fabric width into multiple segments for knitting (for example, if the required single-edge fabric width is 120 inches, it can be divided into three segments for knitting with a fabric width of 40 inches), and then the segmented fabrics are sewn together to obtain a finished product with a width of 120 inches. This method consumes labor costs and also causes the appearance of sewing joints at the segmented fabric, affecting the overall fabric quality.
[0004] Therefore, it is necessary to invent a method for directly knitting a wide single-edge structure knitted fabric. SUMMARY
[0005] Based on this, the purpose of the present application is to provide a wide single-edge structure knitted fabric and a knitting method thereof. The knitting method of the present application can be used to knit single-edge fabrics within the fixed needle knitting range of a computerized flat knitting machine, and obtain single-edge fabrics with a width of three times that of the conventional method, thereby achieving the effect of knitting wider single-edge structure knitted fabrics.
[0006] The specific technical solutions to achieve the above-mentioned purposes include the following.
[0007] In a first aspect, the present application provides a knitting method of a wide single-edge structure knitted fabric, which uses a weft-knitting computerized flat knitting machine with a first needle bed and a second needle bed, and includes the following steps:
[0008] (1) Based on the 1*1 knitting process, using waste yarn as the starting point, and using a "6" shape or Using the shape of the letter as a path, the waste yarn occupies the odd-numbered needles of the first needle bed to obtain the first loop, occupies the odd-numbered needles of the second needle bed to obtain the second loop, and occupies the even-numbered needles of the first needle bed to obtain the third loop. Then, knit one row of the first loop forward, one row of the second loop backward, and one row of the third loop forward to obtain the first row of single-sided fabric. Return to the original path in the opposite direction, knit one row of the third loop backward, one row of the second loop forward, and one row of the first loop backward to obtain the second row of single-sided fabric. Knitting two rows of single-sided fabric constitutes one cycle. After knitting X cycles, the initial waste yarn single-sided fabric is obtained.
[0009] (2) Starting with the main yarn, weave M cycles according to the weaving settings of the single-sided structure fabric of the starting waste yarn described in step (1) to obtain the single-sided structure fabric of the main yarn.
[0010] (3) Starting with waste yarn, according to the weaving settings of the starting waste yarn single-sided structure fabric described in step (1), weave N cycles to obtain the ending waste yarn single-sided structure fabric.
[0011] (4) The semi-finished products obtained by weaving in steps (1) to (3) are manually disassembled and unfolded to obtain the final product.
[0012] In a second aspect, the present invention provides a wide-width, single-sided knitted fabric obtained by the above-described knitting method.
[0013] In this invention, specific knitting settings are applied to the front and rear needle beds of a weft-knitting computer flat knitting machine, using a "6" or... The method uses a zigzag-shaped path for weaving, and during the weaving process, corresponding needle flipping and loop shifting actions are performed according to the situation of each weaving layer to keep each weaving layer independent. This allows for the one-piece weaving of a wide single-sided structure knitted fabric. This method breaks through the width limitation of conventional computer flat knitting machines for single-sided fabrics. It can weave wide single-sided structure fabrics to the maximum extent within the limited fixed needle range of the computer flat knitting machine. After the semi-finished product is manually disassembled and unfolded, a wide single-sided structure knitted fabric with a width three times that of conventional weaving is obtained, avoiding the predicament of being forced to weave wide single-sided fabrics in multiple segments in conventional weaving.
[0014] The weaving method of the present invention simplifies the operation and saves production costs while ensuring the quality of the corresponding wide single-sided fabric. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the knitting process of the wide-width single-sided knitted fabric in Embodiment 1 of the present invention.
[0016] Figure 2The image shows the effect of a semi-finished fabric woven by the weaving method of Embodiment 1 of the present invention; wherein, 1 is a single-sided structure fabric of the starting waste yarn, 2 is a single-sided structure fabric of the main yarn, and 3 is a single-sided structure fabric of the ending waste yarn.
[0017] Figure 3 To be Figure 2 The finished fabric is shown in the image after the semi-finished fabric has been manually disassembled and unfolded.
[0018] Figure 4 The image shows the effect of a semi-finished fabric woven using the comparative weaving method of this invention.
[0019] Figure 5 To be Figure 4 The finished fabric is shown in the image after the semi-finished fabric is sewn together. Detailed Implementation
[0020] To facilitate understanding of the present invention, a more complete description will be provided below. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a thorough and complete understanding of the disclosure of the present invention.
[0021] Unless otherwise defined, all technical and scientific terms used in this invention have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the invention. The term "and / or" as used in this invention includes any and all combinations of one or more of the associated listed items.
[0022] In some embodiments of the present invention, a method for knitting a wide-width single-sided knitted fabric is disclosed, using a weft-knitting computerized flat knitting machine having a first needle bed and a second needle bed, specifically including the following steps:
[0023] (1) Start with waste yarn, using something like "6 or Using the shape of a character as a path, first weave a single-sided structure of waste yarn fabric, so that the waste yarn loops occupy the odd-numbered needles of the first needle bed (first knitting layer), the odd-numbered needles of the second needle bed (second knitting layer), and the even-numbered needles of the first needle bed (third knitting layer). Turn the even-numbered needle loops of the first needle bed and move them to the even-numbered needles of the second needle bed (avoiding the first loop). Then, in the waste yarn loop weaving process, weave the first row of loops in the first needle bed in a forward direction on the odd-numbered needles, then turn the even-numbered needle loops of the second needle bed and move them to the even-numbered needles of the first needle bed (avoiding the second loop), weave the second row of loops in the second needle bed in a reverse direction on the odd-numbered needles, and finally weave the third row of loops in the first needle bed in a forward direction on the even-numbered needles to complete the first row of the single-sided structure fabric. Then, reverse the direction and knit the third loop on the even-numbered needles of the first needle bed in reverse order, then knit the second loop on the odd-numbered needles of the second needle bed in forward order. Move the third loop from the even-numbered needles of the first needle bed to the even-numbered needles of the second needle bed (avoiding the first loop of the next row). Then, knit the first loop on the odd-numbered needles of the first needle bed in reverse order to complete the second row of the single-sided fabric. This two-row knitting pattern constitutes one cycle. Knit X cycles (the number of rows of the required waste yarn single-sided fabric) to obtain the initial waste yarn single-sided fabric.
[0024] (2) After the waste yarn single-sided structure fabric is woven, the main yarn is set according to the above waste yarn loop weaving, starting from the first weaving layer, in a pattern similar to "6 or The shape of the character represents the path (which must be consistent with the path used to start the waste yarn). Weave the first row of loops forward, then the second row of loops backward, and then the third row of loops forward to complete the first row of the single-sided structure fabric. Return to the original path and weave the third row backward, then the second row forward, and then the first row backward to complete the second row of the single-sided structure fabric. Using the above two rows as a loop, weave M loops (the required number of rows for the single-sided structure fabric of the main yarn) to obtain the single-sided structure fabric of the main yarn.
[0025] (3) After the main yarn single-sided structure fabric is woven, continue to use waste yarn to weave N cycles (the number of rows of the required end waste yarn single-sided structure fabric) according to the above waste yarn loop weaving settings to obtain the end waste yarn single-sided structure fabric.
[0026] (4) The semi-finished product of the single-sided knitted fabric with waste yarn on the upper and lower layers and main yarn in the middle layer is manually disassembled and unfolded to obtain a wide single-sided knitted fabric with three knitting layers. Its width is three times that of the conventional knitting method.
[0027] The above knitting process involves corresponding needle flipping and loop shifting actions based on the condition of each knitting layer, so as to always keep each knitting layer independent and separate.
[0028] In some embodiments, the paths described in the above steps are all in the shape of a "6" or are all... The shape of the character.
[0029] In some embodiments, X in step (1) is an integer greater than or equal to 2.
[0030] In some embodiments, M≥X in step (2).
[0031] In some embodiments, N in step (3) is an integer greater than or equal to 2.
[0032] In other embodiments of the present invention, wide-width single-sided knitted fabrics woven by the above-described knitting method are disclosed.
[0033] In some embodiments, the width of the wide-width single-sided knitted fabric is 90cm to 150cm.
[0034] In the following embodiments of this invention, the "1*1 knitting process" (hereinafter referred to as the 1*1 process) refers to a common process in computerized flat knitting machines where the front (first) and rear (second) needle beds are set to use only odd or even numbers of needles for knitting work. Theoretically, the effective needle utilization rate is only 50%, with the other 50% being idle needles. This is typically used to increase the spacing between effective needles, achieving the goal of knitting coarser needle fabrics with finer needles on a computerized flat knitting machine. In this invention, waste yarn refers to auxiliary materials used in the knitting process, such as assisting in knitting, separating the main yarn fabric, and assisting in subsequent sewing. After fulfilling its corresponding purpose, it is removed and does not remain in the finished product. Waste yarn is not limited to any specific composition.
[0035] The plate-making system mentioned in the following embodiments of the present invention is the German Stoll M13.15 version of the computerized flat knitting machine software system. Figure 1 The process diagrams were created and shown using the German Stoll M13.15 version of the computerized flat knitting machine software system. Those skilled in the art can easily understand the relevant technical points of the present invention through the process diagrams.
[0036] The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments.
[0037] Example 1: Knitting Method for Wide-Width Single-Sided Structure Knitted Fabric
[0038] In this embodiment, the total width of the target single-sided fabric is 90 cm and the height is 3 cm. Please refer to [reference needed]. Figure 1 The diagram illustrates the weaving process, which includes the following steps:
[0039] 1. In this embodiment, STOLL version CMS 5307.2 is used as the knitting machine model (maximum knitting needle count 699). Knitting data is created in the computer flat pattern making system: Based on the target width of the fabric, the number of knitting needles is preset based on the 1*1 knitting process, that is, 90CM / 3 knitting layers, resulting in a width of 30CM for each knitting layer (the width of each knitting layer can also be specified as different widths), corresponding to approximately 120 effective knitting needles for each knitting layer (if calculated including idle knitting needles, the number of needles is 240).
[0040] (1) Knitting the starting waste yarn single-sided structure fabric: Starting with waste yarn, use a path similar to the number "6" so that the waste yarn loops occupy the odd-numbered needles of the first needle bed (first knitting layer), the odd-numbered needles of the second needle bed (second knitting layer), and the even-numbered needles of the first needle bed (third knitting layer). Turn the even-numbered needle loops of the first needle bed and move them to the even-numbered needles of the second needle bed (avoiding the first loop). Then, knit the waste yarn loops in the following order: knit the first row of loops in the first needle bed in a forward direction on the odd-numbered needles, then turn the even-numbered needle loops of the second needle bed and move them to the even-numbered needles of the first needle bed (avoiding the second loop), knit the second row of loops in the second needle bed in a reverse direction on the odd-numbered needles, and then knit the third row of loops in the first needle bed in a forward direction on the even-numbered needles to complete the first row of the single-sided structure fabric. Then, reverse the direction and knit the third loop on the even-numbered needles of the first needle bed in reverse order, then knit the second loop on the odd-numbered needles of the second needle bed in forward order. Move the third loop from the even-numbered needles of the first needle bed to the even-numbered needles of the second needle bed (avoiding the first loop of the next row). Then, knit the first loop on the odd-numbered needles of the first needle bed in reverse order to complete the second row of the single-sided fabric. Using these two rows as a cycle, knit 5 cycles for a total of 10 rows of the single-sided fabric to obtain the initial waste yarn single-sided fabric.
[0041] (2) Weaving the main yarn single-sided structure fabric: The main yarn weaving setting is the same as the initial waste yarn single-sided structure fabric setting method. Using a path similar to the figure "6", weave 8 cycles for a total of 16 rows of single-sided structure fabric to obtain the main yarn single-sided structure fabric.
[0042] (3) Weaving the end waste yarn single-sided structure fabric: The weaving settings for the end waste yarn single-sided structure fabric are the same as those for the beginning waste yarn single-sided structure fabric. Using a path similar to the figure "6", weave 5 cycles for a total of 10 rows of single-sided structure fabric to obtain the end waste yarn single-sided structure fabric.
[0043] 2. Use 1 / 7 100% cotton as the main yarn to weave the fabric.
[0044] Using the knitting method of this embodiment, a semi-finished single-sided knitted fabric is obtained, with the top and bottom sections being a starting waste yarn single-sided structure fabric and the bottom section being a ending waste yarn single-sided structure fabric, and the middle section being a main yarn single-sided structure fabric. Figure 2The semi-finished product is manually disassembled and unfolded to obtain a single-sided knitted fabric with 360 effective knitting needles (720 including idle needles, target width 90CM). The finished product image after manual disassembly and unfolding of the semi-finished fabric is shown below. Figure 3 As shown, from Figure 3 It can be observed that the width of this fabric is three times that of fabrics woven using conventional methods.
[0045] Example 2: Knitting method for wide-width single-sided knitted fabric
[0046] In this embodiment, the target single-sided structure fabric has a total width of 150 cm and a height of 3 cm, and its weaving method includes the following steps:
[0047] 1. In this embodiment, STOLL version CMS 5307.2 is used as the knitting machine model (maximum number of knitting needles 699). Knitting data is created in the computer horizontal pattern making system: Based on the target width of the fabric, the number of knitting needles is preset based on the 1*1 knitting process, that is, 150CM / 3 knitting layers, resulting in a width of 50CM for each knitting layer (the width of each knitting layer can also be specified as different widths), corresponding to approximately 200 effective knitting needles for each knitting layer (if calculated including idle knitting needles, the number of needles is 400).
[0048] (1) Weaving a single-sided structure fabric from waste yarn: using waste yarn as the starting point, with a similar The shape of the letter forms a path, causing the waste yarn loops to occupy the odd-numbered needles of the first needle bed (first knitting layer), the odd-numbered needles of the second needle bed (second knitting layer), and the even-numbered needles of the first needle bed (third knitting layer). The even-numbered needle loops of the first needle bed are flipped and moved to the even-numbered needles of the second needle bed (avoiding the first loop). The waste yarn loop knitting process then proceeds sequentially: knitting the first row of loops on the odd-numbered needles of the first needle bed in a forward direction; then flipping and moving the even-numbered needle loops of the second needle bed to the even-numbered needles of the first needle bed (avoiding the second loop); knitting the second row of loops on the odd-numbered needles of the second needle bed in a reverse direction; and finally knitting the third row of loops on the even-numbered needles of the first needle bed in a forward direction to complete the first row of single-sided fabric. Then, reverse the direction and knit the third loop on the even-numbered needles of the first needle bed in reverse order, then knit the second loop on the odd-numbered needles of the second needle bed in forward order. Move the third loop from the even-numbered needles of the first needle bed to the even-numbered needles of the second needle bed (avoiding the first loop of the next row). Then, knit the first loop on the odd-numbered needles of the first needle bed in reverse order to complete the second row of the single-sided fabric. Using these two rows as a cycle, knit 5 cycles for a total of 10 rows of the single-sided fabric to obtain the initial waste yarn single-sided fabric.
[0049] (2) Weaving the main yarn single-sided structure fabric: The main yarn weaving settings are the same as the initial waste yarn single-sided structure fabric settings, in a similar manner. Using the shape of the letter as the path, weave 8 cycles of single-sided structure fabric, totaling 16 rows, to obtain the main yarn single-sided structure fabric.
[0050] (3) Weaving the end waste yarn single-sided structure fabric: The weaving settings for the end waste yarn single-sided structure fabric are the same as those for the beginning waste yarn single-sided structure fabric, in a similar manner. Using the shape of the character as the path, weave 5 cycles of a single-sided structure fabric, totaling 10 rows, to obtain the final waste yarn single-sided structure fabric.
[0051] 2. Use 1 / 7 100% cotton as the main yarn to weave the fabric.
[0052] Using the knitting method of this embodiment, a semi-finished single-sided knitted fabric is obtained, with the top and bottom sections being a starting waste yarn single-sided structure fabric and the bottom section being a ending waste yarn single-sided structure fabric, and the middle section being a main yarn single-sided structure fabric. Figure 2 The semi-finished product is manually disassembled and unfolded to obtain a single-sided knitted fabric with 600 effective knitting needles (1200 including idle knitting needles, with a target width of 150CM). From the finished product effect picture after the semi-finished fabric is manually disassembled and unfolded, it can be seen that the width of the fabric is 3 times that of the fabric using conventional knitting methods.
[0053] Knitting methods for proportionally wide single-sided knitted fabrics
[0054] In this comparative example, the target single-sided structure fabric has a total width of 150 cm and a height of 3 cm. Its weaving method is a conventional method, including the following steps:
[0055] 1. Using STOLL version CMS 5307.2 as an example, a knitting machine model (maximum knitting needle count 699) is selected, and knitting data is created in the computer flat pattern making system.
[0056] 2. Based on the target fabric width, due to the knitting limitations of the computerized flat knitting machine, it needs to be divided into 3 independent knitting pieces, 150CM / 3 pieces, resulting in each knitting piece being 50CM. The number of knitting needles is approximately 200 (calculated based on the effective knitting needles under the 1*1 process; if calculated including idle knitting needles, the number of needles is 400).
[0057] 3. The initial setting is to weave 10 rows of single-sided structure fabric with waste yarn, and the waste yarn start is completed.
[0058] 4. Set the main yarn to weave 16 rows of single-sided structure fabric, and the main yarn fabric weaving is completed.
[0059] 5. Using the same method as above, weave 10 rows of the required single-sided structure fabric from the waste yarn, and the waste yarn is finished.
[0060] 6. Using 1 / 7 100% cotton as the main yarn, after weaving the fabric, a semi-finished single-sided knitted fabric with waste yarn on the top and bottom layers and the main yarn in the middle layer is obtained. The width is 50CM, and a total of 3 pieces are knitted (e.g., Figure 4 ).
[0061] 7. Send the three semi-finished fabric pieces to the sewing tray for manual sewing and splicing to obtain a target single-sided structure fabric with a width of 150CM (e.g., Figure 5 ).
[0062] Existing conventional weaving methods are labor-intensive and can also cause seams at the fabric segments, affecting the overall fabric quality.
[0063] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0064] The embodiments described above are merely illustrative of several implementations of the present invention, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the invention patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these all fall within the protection scope of the present invention. Therefore, the protection scope of this invention patent should be determined by the appended claims.
Claims
1. A method for knitting a wide-width, single-sided knitted fabric, characterized in that, Using a computerized flat knitting machine with a first needle bed and a second needle bed, the following steps are included: (1) Based on the 1*1 weaving process, starting with waste yarn, and forming a "6" shape or Using the shape of the letter as a path, the waste yarn occupies the odd-numbered needles of the first needle bed to obtain the first loop, occupies the odd-numbered needles of the second needle bed to obtain the second loop, and occupies the even-numbered needles of the first needle bed to obtain the third loop. Then, knit one row of the first loop forward, one row of the second loop backward, and one row of the third loop forward to obtain the first row of single-sided fabric. Return to the original path in the opposite direction, knit one row of the third loop backward, one row of the second loop forward, and one row of the first loop backward to obtain the second row of single-sided fabric. Knitting two rows of single-sided fabric constitutes one cycle. After knitting X cycles, the initial waste yarn single-sided fabric is obtained. (2) Starting with the main yarn, weave M cycles according to the weaving settings of the single-sided structure fabric of the starting waste yarn described in step (1) to obtain the single-sided structure fabric of the main yarn. (3) Starting with waste yarn, according to the weaving settings of the starting waste yarn single-sided structure fabric described in step (1), weave N cycles to obtain the ending waste yarn single-sided structure fabric. (4) The semi-finished products obtained by weaving in steps (1) to (3) are manually disassembled and unfolded to obtain the final product.
2. The knitting method for wide-width single-sided knitted fabric according to claim 1, characterized in that, In step (1), before knitting the first loop in the forward direction, the even-numbered needle loops of the first needle bed are flipped and moved to the even-numbered needle position of the second needle bed.
3. The knitting method for wide-width single-sided knitted fabric according to claim 1, characterized in that, In step (1), after knitting the first loop in the forward direction, the even-numbered stitches of the second needle bed are flipped and moved to the even-numbered stitches of the first needle bed.
4. The knitting method for wide-width single-sided knitted fabric according to claim 1, characterized in that, In step (1), before knitting the first loop in reverse, the even-numbered needle loop of the first needle bed is flipped and moved to the even-numbered needle position of the second needle bed.
5. The knitting method for a wide-width, single-sided knitted fabric according to claim 1, characterized in that, Includes the following steps: (1) Based on the 1*1 weaving process, starting with waste yarn, and forming a "6" shape or Using the shape of the letter as a path, the waste yarn occupies the odd-numbered needles of the first needle bed to obtain the first loop, occupies the odd-numbered needles of the second needle bed to obtain the second loop, and occupies the even-numbered needles of the first needle bed to obtain the third loop. The even-numbered needle loops of the first needle bed are flipped and moved to the even-numbered needles of the second needle bed, and the first loop is knitted clockwise for one row. The even-numbered needle loops of the second needle bed are flipped and moved to the even-numbered needles of the first needle bed, and the second loop is knitted counter-clockwise for one row. The third loop is then knitted clockwise for one row, resulting in the first row of single-sided fabric. The process is repeated in the opposite direction, knitting the third loop counter-clockwise for one row, and the second loop is knitted clockwise for one row. The even-numbered needle loops of the first needle bed are flipped and moved to the even-numbered needles of the second needle bed, and the first loop is knitted counter-clockwise for one row, resulting in the second row of single-sided fabric. Knitting two rows of single-sided fabric constitutes one cycle. After knitting X cycles, the initial waste yarn single-sided fabric is obtained. (2) Starting with the main yarn, weave M cycles according to the weaving settings of the single-sided structure fabric of the starting waste yarn described in step (1) to obtain the single-sided structure fabric of the main yarn. (3) Starting with waste yarn, according to the weaving settings of the starting waste yarn single-sided structure fabric described in step (1), weave N cycles to obtain the ending waste yarn single-sided structure fabric. (4) The semi-finished products obtained by weaving in steps (1) to (3) are manually disassembled and unfolded to obtain the final product.
6. The knitting method for a wide-width single-sided knitted fabric according to any one of claims 1 to 5, characterized in that, The paths described in steps (1) to (3) are all in the shape of a "6" or are all... The shape of the character.
7. The knitting method for a wide-width single-sided knitted fabric according to any one of claims 1 to 5, characterized in that, In step (1), X is an integer greater than or equal to 2.
8. The knitting method for a wide-width single-sided knitted fabric according to any one of claims 1 to 5, characterized in that, In step (2), M ≥ X.
9. The knitting method for a wide-width single-sided knitted fabric according to any one of claims 1 to 5, characterized in that, In step (3), N is an integer greater than or equal to 2.
10. A wide-width, single-sided knitted fabric obtained by the knitting method according to any one of claims 1 to 9.