Yarn guide table with movable yarn nozzle, patterned fabric, woven fabric, flyknitted fabric, and knitting process thereof

The yarn guide table with movable nozzles and independent adjustment mechanisms addresses instability and wear issues in flat knitting machines, enhancing efficiency and pattern diversity while improving fabric stability and reducing production time.

JP2025537029APending Publication Date: 2025-11-12SINCETECH FUJIAN TECH CO LTD
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Patent Information

Application Number
JP2025528850
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-09-28
Filing Date
2023-10-26
Publication Date
2025-11-12

AI Technical Summary

Technical Problem

Conventional flat knitting machines experience instability and wear in yarn guiding due to the sliding of yarn guide tables, affecting knitting efficiency and limiting the number of warp yarns in flyknit fabrics, which results in monotonous patterns and prolonged production times.

Method used

A yarn guide table with movable yarn nozzles and independent adjustment mechanisms allows for precise control over the position and direction of the nozzles, enabling more efficient and diverse knitting patterns by allowing the nozzles to move in multiple directions and eliminating the need for retraction during the knitting process.

Benefits of technology

The solution enhances knitting efficiency, enriches pattern diversity, improves structural stability, and reduces production time by allowing for rapid knitting of complex warp designs without retraction motions, thereby increasing the strength and stability of the fabric.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the knitting technology field, and more particularly to a yarn guide table having a movable yarn nozzle, a patterned structure, a woven fabric, a flyknitted fabric, and a knitting process thereof. The yarn guide table includes a yarn guide table and multiple yarn nozzles. The yarn guide table is provided with a first adjustment mechanism for controlling and driving to adjust the position and orientation of the yarn guide table. The position and orientation of the movable yarn nozzle on the yarn guide table is adjusted by a second adjustment mechanism, and the yarn guide table is provided with at least one movable yarn nozzle. The yarn guide table according to the present invention may be provided with a fixed yarn nozzle and a movable yarn nozzle that cooperate with each other. The movable yarn nozzle is controlled by a mechanical structure to move and oscillate within a movable area of ​​the yarn guide table, and multiple types of movable areas are divided according to the layout of the yarn nozzle. Furthermore, the layout configuration of the fixed yarn nozzle and the movable yarn nozzle is designed in a layered structure, making it easier for the yarn nozzle to perform more knitting operations. The movable yarn nozzle can be swung back and forth, and since the movement range for adjusting the movable yarn nozzle is smaller than the swing range, the yarn nozzle can be adjusted by swinging back and forth so that it quickly displaces to the knitting position, resulting in an excellent cooperative effect.
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Description

[Technical Field]

[0001] The present invention relates to the technical field of knitting machines, and in particular to a yarn guide table having a movable yarn nozzle, a patterned weave, a woven fabric, a flyknitted fabric and a knitting process thereof. [Background technology]

[0002] Flat knitting machines are used to knit items such as gloves and socks, and when the flat knitting machine is in operation, yarn guiding work using yarn nozzles is often required. In conventional flat knitting machines, when the yarn guide table slides on the guide rail during knitting, instability and flapping frequently occur, and the corresponding parts are prone to wear. In addition, the layout of the yarn nozzles on the yarn guide table also affects the knitting efficiency and effectiveness, which determine the economic profits of the knitting factory.

[0003] Currently, adding warp yarns to flyknit fabrics can reduce the stretchability of the flyknit fabric in the warp direction and also serve to decorate the flyknit fabric, making such flyknit fabrics popular with consumers. However, commonly used flyknit equipment often uses 16 yarn nozzles, and due to the limitations of the flyknit equipment's performance, the number of "warp yarns" involved in the knitting of flyknit fabrics is relatively small, requiring frequent retraction of the yarn nozzles, which significantly lengthens production time and results in monotonous linear patterns in the warp direction. Summary of the Invention

[0004] Additional features and advantages of the invention will be set forth in the description which follows, and in part will be obvious from the description, or may be learned by the practice of the invention. The objectives and other advantages of the invention will be realized and attained by the structure particularly pointed out in the description and drawings.

[0005] SUMMARY OF THE INVENTION The object of the present invention is to overcome the above-mentioned shortcomings and to provide a yarn guide table with a movable yarn nozzle, a patterned weave, a woven fabric, a flyknitted fabric and a knitting process thereof.

[0006] In a first aspect, the present invention provides a yarn guide base having a movable yarn nozzle, the yarn guide base including a yarn guide base and a plurality of yarn nozzles, the yarn nozzles including movable yarn nozzles, the yarn guide base is provided with a first adjustment mechanism for controlling and driving to adjust the position and direction of the yarn guide base, the position and direction of the movable yarn nozzle in the yarn guide base is adjusted by a second adjustment mechanism, the yarn guide base is provided with at least one movable yarn nozzle, and the first adjustment mechanism and the second adjustment mechanism cooperate to control the movable yarn nozzle in the yarn guide base so that it is displaced from an initial position to a knitting position. The first adjustment mechanism and the second adjustment mechanism both control displacement in at least one direction, the first adjustment mechanism controls and adjusts the entire yarn guide table (including structures in the yarn guide table such as the movable yarn nozzle and the second adjustment mechanism for controlling and adjusting the movable yarn nozzle), the control by the second adjustment mechanism and the control by the first adjustment mechanism are independent of each other and do not interfere with each other, and the second adjustment mechanism controls and adjusts the movable yarn nozzle while the first adjustment mechanism controls the displacement of the entire yarn guide table, ultimately achieving adjustment of the movable yarn nozzle from its initial position to its knitting position.

[0007] The present invention indirectly improves knitting efficiency by planning the layout configuration of yarn nozzles on the yarn guide table so that the knitting equipment can perform more knitting operations when controlling the movement of the yarn guide table.

[0008] In some embodiments, the yarn guide table is adjusted by a first adjustment mechanism so that the entire yarn guide table moves left and right, and the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves up and down and / or back and forth on the yarn guide table.

[0009] In some embodiments, the yarn guide table is adjusted by a first adjustment mechanism so that the entire yarn guide table moves left and right or front and back, and the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves up and down on the yarn guide table.

[0010] In some embodiments, the yarn guide table is adjusted by a first adjustment mechanism so that the entire yarn guide table moves left and right and up and down, and the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves back and forth on the yarn guide table.

[0011] In some embodiments, the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves left and right on the yarn guide table, and the yarn guide table is adjusted by a first adjustment mechanism so that the entire yarn guide table moves up and down and / or back and forth.

[0012] In some embodiments, the movable yarn nozzle is adjusted by a second adjustment mechanism so as to move left and right or front and back on the yarn guide table, and the yarn guide table is adjusted by a first adjustment mechanism so that the entire yarn guide table moves up and down.

[0013] In some embodiments, the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves left and right and up and down on the yarn guide table, and the yarn guide table is adjusted by a first adjustment mechanism so that the entire yarn guide table moves back and forth.

[0014] In some embodiments, the yarn guide table is adjusted by a first adjustment mechanism so that the entire yarn guide table moves up and down, and the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves back and forth on the yarn guide table.

[0015] In some embodiments, the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves up and down on the yarn guide table, and the yarn guide table is adjusted by a first adjustment mechanism so that the entire yarn guide table moves back and forth.

[0016] In a second aspect, the present invention provides a yarn guide base with a movable yarn nozzle, the yarn guide base including a yarn guide base and a plurality of yarn nozzles, the yarn nozzles including the movable yarn nozzle, the yarn guide base is provided with a first adjustment mechanism for controlling and driving to adjust the position and orientation of the yarn guide base, the yarn guide base is provided with at least one movable yarn nozzle, the yarn nozzle is adjusted from an initial position to a knitting position by adjusting the position of the entire yarn guide base by the first adjustment mechanism, and the entire yarn guide base is adjusted in at least one direction, wherein the yarn nozzle may be a fixed yarn nozzle or a movable yarn nozzle, and the yarn nozzle on the yarn guide base can be displaced from the initial position to the knitting position by controlling the displacement of the entire yarn guide base.

[0017] In some embodiments, the thread guide platform is adjusted by a first adjustment mechanism so that the entire thread guide platform moves left and right, up and down, or front and back.

[0018] In some embodiments, the thread guide table is adjusted by a first adjustment mechanism so that the entire thread guide table moves left and right, and the thread guide table is adjusted by a first adjustment mechanism so that the entire thread guide table moves up and down or / and front and back.

[0019] In some embodiments, the thread guide platform is adjusted by a first adjustment mechanism so that the entire thread guide platform moves up and down or forward and backward.

[0020] In a third aspect, the present invention provides a yarn guide base with a movable yarn nozzle, the yarn guide base including a yarn guide base and a plurality of yarn nozzles, the yarn nozzles including movable yarn nozzles, the position and direction of the movable yarn nozzle on the yarn guide base being adjusted by a second adjustment mechanism, the movable yarn nozzle being controlled by the second adjustment mechanism so that the movable yarn nozzle is displaced from an initial position to a knitting position in at least one direction, and the yarn guide base is provided with at least one movable yarn nozzle.

[0021] In some embodiments, the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves left and right, up and down, or back and forth on the yarn guide table.

[0022] In some embodiments, the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves left and right on the yarn guide table, and the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves up and down and / or back and forth on the yarn guide table.

[0023] In some embodiments, the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves up and down or back and forth on the yarn guide table.

[0024] In some embodiments, the plurality of yarn nozzles are arranged and distributed in a layered structure.

[0025] In some embodiments, the movable yarn nozzle is rotatable.

[0026] In some embodiments, the movable yarn nozzle does not move and is configured as a fixed yarn nozzle.

[0027] In some embodiments, the movable yarn nozzle is adjusted by a third adjustment mechanism such that the movable yarn nozzle oscillates back and forth on the yarn guide base.

[0028] In some embodiments, the movable yarn nozzle is swung back and forth by a third adjustment mechanism in accordance with a swing base on the yarn guide base or the movable yarn nozzle.

[0029] In some embodiments, the yarn nozzle is provided with a plurality of independent yarn feeders, and the distance between adjacent yarn feeders is adjustable, the height of the independent yarn feeders is adjustable, and the size of the independent yarn feeders is adjustable. The independent yarn feeders may be provided in a fixed yarn nozzle or in a movable yarn nozzle.

[0030] In a fourth aspect, the present invention provides a patterned structure knitted by a movable yarn nozzle in a yarn guide table having the above-mentioned movable yarn nozzle, the patterned structure including a plurality of lines, and any angle can be formed between two adjacent lines.

[0031] In some embodiments, the angle includes a first angle, and the first angle has a magnitude of 90° or 180°. In the present invention, a movable yarn nozzle is used to knit a base fabric, and the movable yarn nozzle does not oscillate in directions such as front-to-back, left-to-right, or up-and-down, so that the knitted first angle has a magnitude of 90° or 180°, i.e., the knitted pattern is linear or stepped linear, which greatly improves the aesthetic effect of the base fabric, greatly reduces the extensibility of the base fabric in the warp and / or weft directions, and makes the base fabric structure more stable.

[0032] In some embodiments, the angle includes a second angle, and the magnitude of the second angle is 0°<second angle<90° or 90°<second angle<180°. In the present invention, a movable yarn nozzle is used to knit the base fabric, and the movable yarn nozzle can be swung in any direction, such as forward and backward, left and right, and up and down, so that the magnitude of the knitted second angle is 0°<second angle<90° or 90°<second angle<180°, i.e., the knitted pattern has a curved shape, which greatly improves the aesthetic effect of the base fabric, greatly reduces the extensibility of the base fabric in the warp direction and / or weft direction, and makes the structure of the base fabric more stable.

[0033] In some embodiments, the magnitudes of two adjacent second angles are the same or different. The present invention uses a movable yarn nozzle to knit on a base fabric, and the movable yarn nozzle can be swung in any direction, such as back-and-forth, left-and-right, or up-and-down, while always maintaining the magnitudes of two adjacent second angles to be the same, thereby making the patterned weave smoother. Also, the present invention uses a movable yarn nozzle to knit on a base fabric, and the movable yarn nozzle can be swung in any direction, such as back-and-forth, left-and-right, or up-and-down, while always maintaining the magnitudes of two adjacent second angles to be different, thereby making the patterned weave more diverse.

[0034] In some embodiments, the line is a segment formed by the movable yarn nozzle using loopless knitting. The present invention knits a patterned design using a loopless knitting method with a movable yarn nozzle so that the patterned design is embedded in the base fabric.

[0035] In some embodiments, the line is a longitudinal axis formed by loop knitting using the movable yarn nozzle. In the present invention, by knitting a patterned structure using a loop knitting method with a movable yarn nozzle, the patterned structure is entangled with the base fabric, and further, since the patterned structure is entangled with the base fabric, the structural stability of the base fabric is greatly improved.

[0036] In some embodiments, the colors of the two adjacent lines are mismatched. The present invention makes the color of the patterned structure more diverse by exchanging the movable yarn nozzle to make the colors of the two adjacent lines mismatched.

[0037] In some embodiments, the line is knitted with multiple threads. The present invention uses a movable thread nozzle to knit a line with multiple threads, and further adjusts the line thickness to realize a patterned weave with different raised structures.

[0038] In some embodiments, the patterned structure is knitted so as to be hidden and / or exposed to the base fabric. The patterned structure according to the present invention may be knitted so as to be hidden within the base fabric, so as to be exposed to the outside of the base fabric, or so as to be partially hidden and partially exposed, thereby achieving different visual effects and structural stability.

[0039] In a fifth aspect, the present invention provides a woven fabric comprising a base fabric and a patterned design integrally knitted with the base fabric.

[0040] In a sixth aspect, the present invention provides a flyknit fabric including a flyknit fabric body and a warp design integrally knitted with the flyknit fabric body, wherein the warp design is knitted by a movable yarn nozzle in a yarn guide table having the movable yarn nozzle described above feeding yarn in the warp direction of the flyknit fabric body, and the movable yarn nozzle does not need to perform a kicking motion to retract when feeding yarn and knitting. Because the present invention employs a movable yarn nozzle to feed yarn and knit the flyknit fabric body, and does not require a kicking motion to retract during the knitting process, a warp design having multiple warp stripes can be quickly knitted, greatly enriching the line pattern design in the warp direction of the flyknit fabric, and increasing the strength and stability in the warp direction of the flyknit fabric, while reducing elongation and deformation ability.

[0041] In some embodiments, the warp design is one or more of a straight warp design, a curved warp design, and a radial warp design.

[0042] In some embodiments, the warp yarns are knitted into the surface layer and / or the back layer of the flyknit fabric body.

[0043] In some embodiments, the warp yarns are integrally knitted with the flyknit fabric body using inlay, float, loop, tuck, or needle cross stitch techniques.

[0044] Furthermore, the warp design is knitted integrally with the flyknit fabric body using an inlay knitting method. The present invention forms a warp design with a warp inlaying effect by feeding yarns in the warp direction of the flyknit fabric body using a movable yarn nozzle and knitting the warp yarns into the front layer and / or back layer of the flyknit fabric body using an inlay knitting method.

[0045] Furthermore, the warp design is knitted integrally with the flyknit fabric body using a float knitting method. In the present invention, a warp design having a raised effect is formed by feeding yarns in the warp direction of the flyknit fabric body using a movable yarn nozzle and knitting the warp yarns into the front layer and / or back layer of the flyknit fabric body using a float knitting method.

[0046] Furthermore, the warp design is knitted integrally with the flyknit fabric body using a loop knitting method. In the present invention, by feeding yarns in the warp direction of the flyknit fabric body using a movable yarn nozzle and knitting the warp yarns into the front layer and / or back layer of the flyknit fabric body using a loop knitting method, the connection between the warp design and the flyknit fabric body becomes more stable and strong.

[0047] Furthermore, the warp design is knitted integrally with the flyknit fabric body using a needle back-and-forth knitting method. In the present invention, the warp design can be arranged in the front and back layers of the flyknit fabric body by feeding yarns in the warp direction of the flyknit fabric body using a movable yarn nozzle and knitting the warp yarns into the flyknit fabric body using a needle back-and-forth knitting method.

[0048] In some embodiments, the warp design includes a plurality of warp stripes, each of which is parallel and / or crosses each other.

[0049] Furthermore, the warp stripes are parallel to each other, thereby forming a regular warp design.

[0050] Furthermore, the warp stripes cross each other to form a richly patterned warp weave.

[0051] Furthermore, the warp stripes are partly parallel to one another and partly cross one another, thereby forming a warp weave with regularity and a rich pattern.

[0052] In some embodiments, the color of the warp weave does not match the color of the flyknit fabric body.

[0053] In some embodiments, the flyknit fabric body is single layer, double layer, or multi-layer.

[0054] In a seventh aspect, the present invention provides a method for producing a composition comprising: pull-in knitting, which performs a yarn pulling operation to pull the warp yarn into the knitting position; A fabric knitting operation for knitting a flyknit fabric; Pull-out knitting, which performs a yarn pulling operation to pull out the warp yarn from the knitting position; The present invention provides a process for knitting a flyknit fabric, including:

[0055] In some embodiments, the method further includes a fixed knitting between the weaving knitting and the pull-in knitting, and a running knitting between the weaving knitting and the pull-out knitting, wherein the fixed knitting is a knitting that performs tuck knitting when knitting the flyknit fabric and serves to fix the warp yarns at a stationary position and prevent positional slippage when the subsequent warp yarns move, and the running knitting is a knitting that runs when knitting the warp yarns and serves to form a curve in the flyknit fabric body where the warp yarns are bent in the warp direction.

[0056] In some embodiments, when knitting the fabric, it is necessary to offset the knitting by one stitch between every two adjacent knittings of the fabric.

[0057] By adopting the above technical solution, the beneficial effects of the present invention are as follows:

[0058] (1) The movable yarn nozzle of the present invention can swing back and forth, and the configuration of the yarn guide base makes the movement width for adjusting the movable yarn nozzle smaller than the swing width, so that the yarn nozzle can be adjusted by swinging back and forth so that it quickly displaces to the knitting position, resulting in an excellent synergistic effect.

[0059] (2) The yarn guide base of the present invention is provided with a fixed yarn nozzle and a movable yarn nozzle, which are combined together and controlled by a mechanical structure so that the movable yarn nozzle moves and oscillates within the movable area of ​​the yarn guide base. Multiple types of movable areas are divided according to the layout of the yarn nozzles. Furthermore, by designing the layout configuration of the fixed yarn nozzle and the movable yarn nozzle into a layered structure, it becomes easier for the yarn nozzle to perform more knitting operations.

[0060] (3) The yarn guide table of the present invention may be provided with only a movable yarn nozzle, or multiple movable yarn nozzles may work together to knit, and the movable yarn nozzle may move in multiple directions, for example, up and down, left and right, front and back, rotate, and swing. Similarly, each movable yarn nozzle may be designed in a layered structure, and by providing multiple movable yarn nozzles on the yarn guide table, the yarn guide table can complete more knitting operations.

[0061] (4) The present invention is advantageous in that the structure of the yarn feeder is further optimized relative to the structure of the yarn nozzle, making the yarn feeder adjustable and improving the knitting effect.

[0062] (5) The movable yarn nozzle according to the present invention is configured as a fixed yarn nozzle that does not move, and the yarn nozzle on the yarn guide table is adjusted so that the yarn nozzle on the yarn guide table is displaced to a corresponding position by adjusting the position of the yarn guide table, and they work together to knit. The yarn guide table uses a fixed yarn nozzle instead of a normal fixed yarn nozzle, and when it is necessary to move the movable yarn nozzle, they can work together to knit quickly, thereby improving knitting efficiency.

[0063] (6) The present invention uses multiple movable yarn nozzles to knit a pattern integrally on a base fabric. The pattern includes multiple lines, and any angle can be formed between two adjacent lines. Furthermore, by arranging the pattern on the base fabric along the warp and / or weft directions, various pattern patterns can be formed. This not only enhances the aesthetic effect of the base fabric, but also reduces the stretchability of the base fabric in the warp and / or weft directions, significantly improving the structural stability of the base fabric. The present invention swings or does not swing the movable yarn nozzle as needed, further achieving the effect of forming a curved or linear pattern, greatly enriching the pattern patterns and significantly improving the structural stability of the base fabric. The present invention allows the colors of two adjacent lines to be different by changing the movable yarn nozzle, thereby enriching the color of the pattern. The present invention allows lines to be knitted with multiple yarns using the movable yarn nozzle, and furthermore, by adjusting the line thickness, pattern structures with different raised structures can be realized.

[0064] (7) The present invention uses movable yarn nozzles to feed yarns and knit the flyknit fabric body, and does not require a kicking motion for retraction during the knitting process. This allows for rapid knitting of warp designs with multiple warp stripes, significantly enriching the line pattern in the warp direction of the flyknit fabric, while increasing the strength and stability of the flyknit fabric in the warp direction and reducing its extensibility and deformation capacity. Since the yarn nozzles for knitting warp stripes of the present invention do not require a kicking motion for retraction when encountering other knitting yarn nozzles during the knitting process, significant time savings are possible. The more yarn nozzles used to knit warp stripes, the more time is saved compared to conventional flyknit processes. The present invention can combine movable yarn nozzles to knit warp stripes that exceed the number of yarn nozzles used in conventional flyknit equipment, significantly reducing the extensibility of the flyknit fabric in the warp direction. In the present invention, multiple warp stripes can be involved in knitting loops, tucks, needle turns, floats, etc., and simple warp lining is also possible, allowing for knitting of beautiful warp designs. The present invention breaks through the traditional process approach of flyknit products and provides a new development direction for the innovation of flyknit products.

[0065] The foregoing general description and the following detailed description are merely exemplary and explanatory and are not restrictive of the present disclosure.

[0066] These and other objects of the present invention will become more apparent from the following detailed description of the preferred embodiment which is illustrated in the various accompanying drawings.

[0067] In order to make the above and other objects, features and advantages of the present invention more comprehensible, one or more preferred embodiments of the present invention will be described in detail below in conjunction with the accompanying drawings. [Brief explanation of the drawings]

[0068] The drawings are used to provide a further understanding of the invention, constitute a part of the specification, and, together with the examples of the invention, serve to interpret the invention without limiting the invention.

[0069] In the drawings, identical elements are numbered identically, and the drawings are schematic and not necessarily drawn to scale.

[0070] In order to more clearly explain the embodiments of the present invention or the technical solutions in the prior art, the following will briefly describe the drawings necessary for describing the embodiments or the prior art. Obviously, the drawings in the following description are only one or more embodiments of the present invention, and those skilled in the art can also obtain other drawings based on these drawings without making any creative efforts.

[0071] [Figure 1] FIG. 1 is a structural schematic diagram of a yarn guide base having a movable yarn nozzle according to a thirty-second embodiment of the present invention. [Figure 2] FIG. 2 is a structural schematic diagram of a yarn guide base having a movable yarn nozzle according to a thirty-third embodiment of the present invention. [Figure 3] FIG. 3 is a structural schematic diagram of a yarn guide base having a movable yarn nozzle according to a thirty-fourth embodiment of the present invention. [Figure 4] FIG. 4 is a structural schematic diagram of a yarn guide base having a movable yarn nozzle according to a thirty-fifth embodiment of the present invention. [Figure 5] FIG. 5 is a structural schematic diagram of a yarn guide base having a movable yarn nozzle according to a thirty-sixth embodiment of the present invention. [Figure 6] FIG. 6 is a structural schematic diagram of a yarn guide base having a movable yarn nozzle according to a thirty-seventh embodiment of the present invention. [Figure 7] FIG. 7 is a structural schematic diagram of a yarn guide base having a movable yarn nozzle according to a thirty-eighth embodiment of the present invention. [Figure 8] FIG. 8 is a schematic diagram of a first type of structure for swinging back and forth a yarn guide base having a movable yarn nozzle according to a thirtieth embodiment of the present invention. [Figure 9]FIG. 9 is a schematic diagram of a second type of structure for swinging back and forth the yarn guide base having a movable yarn nozzle in the thirty-first embodiment of the present invention. [Figure 10] FIG. 10 is a schematic diagram of the orientation when the yarn guide base having the movable yarn nozzle according to the present invention moves. [Figure 11] FIG. 11 is a structural schematic diagram of a yarn feeder in a yarn guide table having a movable yarn nozzle according to the present invention. [Figure 12] FIG. 12 is a schematic diagram of the structure of the patterned texture according to the present invention. [Figure 13] FIG. 13 is a schematic diagram of the structure of a patterned design (knitted without loops) according to the present invention. [Figure 14] FIG. 14 is a schematic diagram of the structure of a patterned design (loop knit) according to the present invention. [Figure 15] FIG. 15 is a schematic diagram of the structure of the woven fabric of Example 40 according to the present invention. [Figure 16] FIG. 16 is a schematic diagram of the structure of the woven fabric in Example 41 of the present invention. [Figure 17] FIG. 17 is a schematic diagram of the structure of the woven fabric in Example 42 of the present invention. [Figure 18] FIG. 18 is a schematic diagram of the structure of the woven fabric in Example 43 of the present invention. [Figure 19] FIG. 19 is a schematic diagram of the structure of the woven fabric in Example 44 of the present invention. [Figure 20] FIG. 20 is a schematic diagram of the structure of the woven fabric in Example 45 of the present invention. [Figure 21] FIG. 21 is a schematic diagram of the structure of the woven fabric in Example 46 of the present invention. [Figure 22] FIG. 22 is a schematic diagram of the structure of the woven fabric in Example 47 of the present invention. [Figure 23] FIG. 23 is a structural schematic diagram of one type of flyknit fabric according to the present invention. [Figure 24] FIG. 24 is a schematic diagram showing the structure of a straight warp design according to the present invention. [Figure 25] FIG. 25 is a schematic diagram showing the structure of a curved warp design according to the present invention. [Figure 26]FIG. 26 is a schematic diagram showing the structure of a radial warp design according to the present invention. [Figure 27] FIG. 27 is a schematic diagram of the structure of a flyknit fabric in Example 49 of the present invention. [Figure 28] FIG. 28 is a schematic diagram of the structure of a flyknit fabric in Example 50 of the present invention. [Figure 29] FIG. 29 is a schematic diagram of the structure of a flyknit fabric in Example 51 of the present invention. [Figure 30] FIG. 30 is a knitting diagram of a flyknit fabric according to Example 52 of the present invention. [Figure 31] FIG. 31 is a knitting diagram of a flyknit fabric according to Example 53 of the present invention. [Figure 32] FIG. 32 is a first knitting diagram of a flyknit fabric according to Example 54 of the present invention. [Figure 33] FIG. 33 is a second knitting diagram of a flyknit fabric according to Example 54 of the present invention. [Figure 34] FIG. 34 is a knitting diagram of a flyknit fabric according to Example 55 of the present invention. [Figure 35] FIG. 35 is a knitting diagram of a flyknit fabric according to Example 56 of the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0072] In order to make the objectives, technical solutions and advantages of the present invention clearer, the present invention will be described in more detail below based on specific embodiments. The specific embodiments described herein are only for illustrating the present invention and are not intended to limit the present invention.

[0073] Furthermore, in the description of the present invention, the orientations or positional relationships indicated by terms such as "center," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "axial," "radial," and "circumferential" are based on the orientations or positional relationships shown in the accompanying drawings, and are intended to facilitate and simplify the description of the present invention, and do not suggest or imply that the devices or elements shown have a specific orientation or must be structured and operated in a specific orientation. Therefore, this should not be understood as limiting the present invention.

[0074] In the present invention, unless expressly specified or limited, terms such as "attached," "coupled," "connected," and "fixed" should be interpreted broadly, and may refer to, for example, a fixed connection, a detachable connection, or an integral connection. They may also refer to a direct connection, an indirect connection via an intermediate medium, internal communication between two elements, or a relationship in which two elements interact with each other. However, when a term "direct connection" is used, it means that the two connected entities form a whole solely through the connection structure, rather than a connection relationship established via an intermediate structure. Those skilled in the art can understand the specific meaning of the above terms in the present invention based on specific circumstances.

[0075] In the present invention, unless expressly specified or limited, a first feature being "above" or "below" a second feature may refer to direct contact between the first feature and the second feature, or indirect contact between the first feature and the second feature via an intermediate medium. In the description herein, terms such as "one embodiment," "several embodiments," "examples," "specific examples," or "several examples" mean that the specific features, structures, materials, or characteristics described in the embodiment or example are included in at least one embodiment or example of the present invention. In the present specification, schematic descriptions of the aforementioned terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any appropriate manner in any one or more embodiments or examples.

[0076] Referring to FIG. 10, according to some embodiments of the present invention, the present invention provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 is adjusted by a second adjustment mechanism, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, and the first adjustment mechanism and the second adjustment mechanism cooperate to control the movable yarn nozzle 40 on the yarn guide table 10 to be displaced from an initial position to a knitting position. The first adjustment mechanism and the second adjustment mechanism both control displacement in at least one direction, of which the first adjustment mechanism controls and adjusts the entire yarn guide table 10 (including structures in the yarn guide table 10, such as the movable yarn nozzle 40 and the second adjustment mechanism for controlling and adjusting the movable yarn nozzle 40), and the controls of the second adjustment mechanism and the first adjustment mechanism are independent of each other and do not interfere with each other, and the second adjustment mechanism can control and adjust the movable yarn nozzle 40 while the first adjustment mechanism controls the displacement of the entire yarn guide table 10, ultimately adjusting the movable yarn nozzle 40 from its initial position to its knitting position.

[0077] The present invention indirectly improves knitting efficiency by planning the layout configuration of the yarn nozzles on the yarn guide table 10 so that the knitting equipment can perform more knitting operations when controlling the movement of the yarn guide table 10.

[0078] According to some embodiments of the present invention, optionally, the yarn guide table 10 is adjusted by a first adjustment mechanism so that the entire yarn guide table 10 moves left and right, and the movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves up and down or / and back and forth on the yarn guide table 10.

[0079] According to some embodiments of the present invention, optionally, the yarn guide base 10 is adjusted by a first adjustment mechanism so that the entire yarn guide base 10 moves left and right or front and back, and the movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves up and down on the yarn guide base 10.

[0080] According to some embodiments of the present invention, optionally, the yarn guide table 10 is adjusted by a first adjustment mechanism so that the entire yarn guide table 10 moves left and right and up and down, and the movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves back and forth on the yarn guide table 10.

[0081] According to some embodiments of the present invention, optionally, the movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves left and right on the yarn guide table 10, and the yarn guide table 10 is adjusted by a first adjustment mechanism so that the entire yarn guide table 10 moves up and down and / or back and forth.

[0082] According to some embodiments of the present invention, optionally, the movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves left and right or front and back on the yarn guide table 10, and the yarn guide table 10 is adjusted by a first adjustment mechanism so that the entire yarn guide table 10 moves up and down.

[0083] According to some embodiments of the present invention, optionally, the movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves left and right and up and down on the yarn guide table 10, and the yarn guide table 10 is adjusted by a first adjustment mechanism so that the entire yarn guide table 10 moves back and forth.

[0084] According to some embodiments of the present invention, optionally, the yarn guide table 10 is adjusted by a first adjustment mechanism so that the entire yarn guide table 10 moves up and down, and the movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves back and forth on the yarn guide table 10.

[0085] According to some embodiments of the present invention, optionally, the movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves up and down on the yarn guide table 10, and the yarn guide table 10 is adjusted by a first adjustment mechanism so that the entire yarn guide table 10 moves back and forth.

[0086] According to some embodiments, the present invention provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving, and adjusting the position and orientation of the yarn guide table 10, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, the yarn nozzle is adjusted from an initial position to a knitting position by adjusting the position of the entire yarn guide table 10 by the first adjustment mechanism, and the entire yarn guide table 10 is adjusted in at least one direction, wherein the yarn nozzle may be a fixed yarn nozzle 30 or a movable yarn nozzle 40, and the yarn nozzle on the yarn guide table 10 can be displaced from the initial position to the knitting position by controlling the displacement of the entire yarn guide table 10.

[0087] According to some embodiments of the present invention, the thread guide table 10 is selectively adjusted by a first adjustment mechanism so that the entire thread guide table 10 moves left and right, up and down, or front and back.

[0088] According to some embodiments of the present invention, optionally, the thread guide table 10 is adjusted by the first adjustment mechanism so that the entire thread guide table 10 moves left and right, and the thread guide table 10 is adjusted by the first adjustment mechanism so that the entire thread guide table 10 moves up and down or / and back and forth.

[0089] According to some embodiments of the present invention, the thread guide platform 10 is optionally adjusted by a first adjustment mechanism such that the entire thread guide platform 10 moves up and down or forward and backward.

[0090] According to some embodiments of the present invention, there is provided a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 being adjusted by a second adjustment mechanism, the movable yarn nozzle 40 being controlled by the second adjustment mechanism so that the movable yarn nozzle 40 is displaced from an initial position to a knitting position in at least one direction, and the yarn guide table 10 is provided with at least one movable yarn nozzle 40.

[0091] According to some embodiments of the present invention, the movable yarn nozzle 40 is optionally adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves left and right, up and down, or back and forth on the yarn guide base 10.

[0092] According to some embodiments of the present invention, optionally, the movable yarn nozzle 40 is adjusted by the second adjustment mechanism so that the movable yarn nozzle 40 moves left and right on the yarn guide table 10, and the movable yarn nozzle 40 is adjusted by the second adjustment mechanism so that the movable yarn nozzle 40 moves up and down or / and back and forth on the yarn guide table 10.

[0093] According to some embodiments of the present invention, the movable yarn nozzle 40 is optionally adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves up and down or back and forth on the yarn guide base 10 .

[0094] According to some embodiments of the present invention, optionally, the plurality of yarn nozzles are arranged and distributed in a layered structure.

[0095] Optionally, according to some embodiments of the present invention, the movable yarn nozzle 40 is rotatable.

[0096] According to some embodiments of the present invention, optionally, the movable yarn nozzle 40 does not move and is configured as a fixed yarn nozzle 30 .

[0097] According to some embodiments of the present invention, the movable yarn nozzle 40 is optionally adjusted by a third adjustment mechanism such that the movable yarn nozzle 40 swings back and forth on the yarn guide base 10 .

[0098] According to some embodiments of the present invention, the movable yarn nozzle 40 is selectively swung back and forth by a third adjustment mechanism to match the swing base 50, and the swing base 50 is located at the yarn guide base 10 or the movable yarn nozzle 40.

[0099] According to some embodiments of the present invention, the yarn nozzle is optionally provided with a plurality of independent yarn feeders 60, and the spacing between adjacent yarn feeders 60 is adjustable, the height of the independent yarn feeders 60 is adjustable, and the size of the independent yarn feeders 60 is adjustable. The independent yarn feeders 60 may be provided on a fixed yarn nozzle or a movable yarn nozzle.

[0100] According to some embodiments of the present invention, optionally, the present invention provides a yarn guide table having a movable yarn nozzle, in which the yarn guide table 10 is provided with a movable area 20 for controlling the movement of the movable yarn nozzle 40, and the yarn guide table 10 is provided with a movable yarn nozzle 40 and a fixed yarn nozzle 30, the fixed yarn nozzle 30 is defined as a yarn nozzle that always remains in a stationary state, of which one movable yarn nozzle 40 is provided and is located inside the two fixed yarn nozzles 30, and the movable yarn nozzle 40 has two knitting modes: a fixed knitting mode and a movable knitting mode in which it moves in accordance with the entire yarn guide table 10.

[0101] According to some embodiments of the present invention, optionally, three fixed yarn nozzles 30 and one movable yarn nozzle 40 are provided, the fixed yarn nozzles 30 and the movable yarn nozzle 40 are attached to the yarn guide table 10 so as to be arranged in different layers, and the movable area 20 for controlling the movement of the movable yarn nozzle 40 is the entire yarn guide table 10.

[0102] According to some embodiments of the present invention, optionally, three movable yarn nozzles 40 and one fixed yarn nozzle 30 are provided, the fixed yarn nozzle 30 and the movable yarn nozzle 40 are attached to the yarn guide table 10 so as to be arranged in different layers, and the movable area 20 for controlling the movement of the movable yarn nozzle 40 is an independent movable area 20 in which the yarn nozzle is located.

[0103] According to some embodiments of the present invention, optionally, two movable yarn nozzles 40 are provided, two fixed yarn nozzles 30 are provided, the yarn guide table 10 is divided into two movable regions 20, and the fixed yarn nozzles 30 and the movable yarn nozzles 40 are attached to the yarn guide table 10 so as to be arranged in different layers.

[0104] According to some embodiments of the present invention, optionally, at least one fixed yarn nozzle 30 is provided and is the main yarn nozzle, the movable yarn nozzle 40 is displaceable and / or rotatable in multiple directions, the movable area 20 for controlling the movement of the movable yarn nozzle 40 is the entire yarn guide table 10, and the fixed yarn nozzle 30 and the movable yarn nozzle 40 are mounted so as to be provided in different layers.

[0105] According to some embodiments of the present invention, the present invention optionally provides a yarn guide base having movable yarn nozzles, all of which are movable yarn nozzles 40, and the yarn guide base 10 is provided with movable regions 20 for controlling the movement of the movable yarn nozzles 40. Three movable yarn nozzles 40 are provided, and each movable yarn nozzle 40 is located in a corresponding movable region 20.

[0106] According to some embodiments of the present invention, optionally, four movable yarn nozzles 40 are provided, and the movable yarn nozzles 40 are attached in at least two layers, and any one of the movable yarn nozzles 40 is independently attached to any one of the layer structures of the yarn guide table 10, and the movable area 20 for controlling its movement is the entire yarn guide table 10, and the movable area 20 for controlling the movement of the remaining movable yarn nozzles 40 is the independent movable area 20 in which the yarn nozzle is located.

[0107] According to some embodiments of the present invention, optionally each yarn nozzle is numbered differently.

[0108] Example 1 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 is adjusted by a second adjustment mechanism, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, and the first adjustment mechanism and the second adjustment mechanism cooperate to control the movable yarn nozzle 40 on the yarn guide table 10 to be displaced from its initial position to its knitting position.

[0109] The yarn guide table 10 is adjusted by a first adjustment mechanism so that the entire yarn guide table 10 moves left and right, and the movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves up and down on the yarn guide table 10.

[0110] Example 2 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 is adjusted by a second adjustment mechanism, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, and the first adjustment mechanism and the second adjustment mechanism cooperate to control the movable yarn nozzle 40 on the yarn guide table 10 to be displaced from its initial position to its knitting position.

[0111] The yarn guide table 10 is adjusted by a first adjustment mechanism so that the entire yarn guide table 10 moves left and right, and the movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves back and forth on the yarn guide table 10.

[0112] Example 3 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 is adjusted by a second adjustment mechanism, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, and the first adjustment mechanism and the second adjustment mechanism cooperate to control the movable yarn nozzle 40 on the yarn guide table 10 to be displaced from its initial position to its knitting position.

[0113] The yarn guide base 10 is adjusted by a first adjustment mechanism so that the entire yarn guide base 10 moves left and right, and the movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves up and down on the yarn guide base 10. The movable yarn nozzle 40 is adjusted by the second adjustment mechanism so that the movable yarn nozzle 40 moves back and forth on the yarn guide base 10.

[0114] Example 4 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 is adjusted by a second adjustment mechanism, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, and the first adjustment mechanism and the second adjustment mechanism cooperate to control the movable yarn nozzle 40 on the yarn guide table 10 to be displaced from its initial position to its knitting position.

[0115] The thread guide table 10 is adjusted by a first adjustment mechanism so that the entire thread guide table 10 moves left and right, the movable thread nozzle 40 is adjusted by a second adjustment mechanism so that the movable thread nozzle 40 moves up and down on the thread guide table 10, and the thread guide table 10 is adjusted by the first adjustment mechanism so that the entire thread guide table 10 moves back and forth.

[0116] Example 5 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 is adjusted by a second adjustment mechanism, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, and the first adjustment mechanism and the second adjustment mechanism cooperate to control the movable yarn nozzle 40 on the yarn guide table 10 to be displaced from its initial position to its knitting position.

[0117] The thread guide table 10 is adjusted by a first adjustment mechanism so that the entire thread guide table 10 moves left and right, the thread guide table 10 is adjusted by a first adjustment mechanism so that the entire thread guide table 10 moves up and down, and the movable thread nozzle 40 is adjusted by a second adjustment mechanism so that the movable thread nozzle 40 moves back and forth on the thread guide table 10.

[0118] Example 6 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 is adjusted by a second adjustment mechanism, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, and the first adjustment mechanism and the second adjustment mechanism cooperate to control the movable yarn nozzle 40 on the yarn guide table 10 to be displaced from its initial position to its knitting position.

[0119] The movable yarn nozzle 40 is adjusted by the second adjustment mechanism so that the movable yarn nozzle 40 moves left and right on the yarn guide base 10. The yarn guide base 10 is adjusted by the first adjustment mechanism so that the entire yarn guide base 10 moves up and down.

[0120] Example 7 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 is adjusted by a second adjustment mechanism, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, and the first adjustment mechanism and the second adjustment mechanism cooperate to control the movable yarn nozzle 40 on the yarn guide table 10 to be displaced from its initial position to its knitting position.

[0121] The movable yarn nozzle 40 is adjusted by the second adjustment mechanism so that the movable yarn nozzle 40 moves left and right on the yarn guide base 10. The yarn guide base 10 is adjusted by the first adjustment mechanism so that the entire yarn guide base 10 moves back and forth.

[0122] Example 8 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 is adjusted by a second adjustment mechanism, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, and the first adjustment mechanism and the second adjustment mechanism cooperate to control the movable yarn nozzle 40 on the yarn guide table 10 to be displaced from its initial position to its knitting position.

[0123] The movable yarn nozzle 40 is adjusted by the second adjustment mechanism so that the movable yarn nozzle 40 moves left and right on the yarn guide base 10. The yarn guide base 10 is adjusted by the first adjustment mechanism so that the entire yarn guide base 10 moves up and down. The yarn guide base 10 is adjusted by the first adjustment mechanism so that the entire yarn guide base 10 moves back and forth.

[0124] Example 9 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 is adjusted by a second adjustment mechanism, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, and the first adjustment mechanism and the second adjustment mechanism cooperate to control the movable yarn nozzle 40 on the yarn guide table 10 to be displaced from its initial position to its knitting position.

[0125] The movable yarn nozzle 40 is adjusted by the second adjustment mechanism so that the movable yarn nozzle 40 moves left and right on the yarn guide base 10. The yarn guide base 10 is adjusted by the first adjustment mechanism so that the entire yarn guide base 10 moves up and down. The movable yarn nozzle 40 is adjusted by the second adjustment mechanism so that the movable yarn nozzle 40 moves back and forth on the yarn guide base 10.

[0126] Example 10 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 is adjusted by a second adjustment mechanism, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, and the first adjustment mechanism and the second adjustment mechanism cooperate to control the movable yarn nozzle 40 on the yarn guide table 10 to be displaced from its initial position to its knitting position.

[0127] The movable yarn nozzle 40 is adjusted by the second adjustment mechanism so that the movable yarn nozzle 40 moves left and right on the yarn guide base 10. The movable yarn nozzle 40 is adjusted by the second adjustment mechanism so that the movable yarn nozzle 40 moves up and down on the yarn guide base 10, and the yarn guide base 10 is adjusted by the first adjustment mechanism so that the entire yarn guide base 10 moves back and forth.

[0128] Example 11 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 is adjusted by a second adjustment mechanism, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, and the first adjustment mechanism and the second adjustment mechanism cooperate to control the movable yarn nozzle 40 on the yarn guide table 10 to be displaced from its initial position to its knitting position.

[0129] The yarn guide base 10 is adjusted by a first adjustment mechanism so that the entire yarn guide base 10 moves up and down. The movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves back and forth on the yarn guide base 10.

[0130] Example 12 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 is adjusted by a second adjustment mechanism, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, and the first adjustment mechanism and the second adjustment mechanism cooperate to control the movable yarn nozzle 40 on the yarn guide table 10 to be displaced from its initial position to its knitting position.

[0131] The movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves up and down on the yarn guide table 10, and the yarn guide table 10 is adjusted by a first adjustment mechanism so that the entire yarn guide table 10 moves back and forth.

[0132] Example 13 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, the yarn nozzle is adjusted from an initial position to a knitting position by adjusting the position of the entire yarn guide table 10 by the first adjustment mechanism, and the entire yarn guide table 10 is adjusted in at least one direction.

[0133] The thread guide base 10 is adjusted by a first adjustment mechanism so that the entire thread guide base 10 moves left and right.

[0134] Example 14 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, the yarn nozzle is adjusted from an initial position to a knitting position by adjusting the position of the entire yarn guide table 10 by the first adjustment mechanism, and the entire yarn guide table 10 is adjusted in at least one direction.

[0135] The thread guide table 10 is adjusted by a first adjustment mechanism so that the entire thread guide table 10 moves left and right, and the thread guide table 10 is adjusted by a first adjustment mechanism so that the entire thread guide table 10 moves up and down.

[0136] Example 15 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, the yarn nozzle is adjusted from an initial position to a knitting position by adjusting the position of the entire yarn guide table 10 by the first adjustment mechanism, and the entire yarn guide table 10 is adjusted in at least one direction.

[0137] The thread guide table 10 is adjusted by a first adjustment mechanism so that the entire thread guide table 10 moves left and right, and the thread guide table 10 is adjusted by a first adjustment mechanism so that the entire thread guide table 10 moves back and forth.

[0138] Example 16 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, the yarn nozzle is adjusted from an initial position to a knitting position by adjusting the position of the entire yarn guide table 10 by the first adjustment mechanism, and the entire yarn guide table 10 is adjusted in at least one direction.

[0139] The thread guide table 10 is adjusted by a first adjustment mechanism so that the entire thread guide table 10 moves left and right, the thread guide table 10 is adjusted by a first adjustment mechanism so that the entire thread guide table 10 moves up and down, and the thread guide table 10 is adjusted by a first adjustment mechanism so that the entire thread guide table 10 moves back and forth.

[0140] Example 17 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, the yarn nozzle is adjusted from an initial position to a knitting position by adjusting the position of the entire yarn guide table 10 by the first adjustment mechanism, and the entire yarn guide table 10 is adjusted in at least one direction.

[0141] The thread guide base 10 is adjusted by a first adjustment mechanism so that the entire thread guide base 10 moves up and down.

[0142] Example 18 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, the yarn nozzle is adjusted from an initial position to a knitting position by adjusting the position of the entire yarn guide table 10 by the first adjustment mechanism, and the entire yarn guide table 10 is adjusted in at least one direction.

[0143] The thread guide table 10 is adjusted by a first adjustment mechanism so that the entire thread guide table 10 moves up and down, and the thread guide table 10 is adjusted by a first adjustment mechanism so that the entire thread guide table 10 moves back and forth.

[0144] Example 19 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the yarn guide table 10 is provided with a first adjustment mechanism for controlling, driving and adjusting the position and direction of the yarn guide table 10, the yarn guide table 10 is provided with at least one movable yarn nozzle 40, the yarn nozzle is adjusted from an initial position to a knitting position by adjusting the position of the entire yarn guide table 10 by the first adjustment mechanism, and the entire yarn guide table 10 is adjusted in at least one direction.

[0145] The thread guide base 10 is adjusted by a first adjustment mechanism so that the entire thread guide base 10 moves back and forth.

[0146] Example 20 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 being adjusted by a second adjustment mechanism, the movable yarn nozzle 40 being controlled by the second adjustment mechanism so that the movable yarn nozzle 40 is displaced from an initial position to a knitting position in at least one direction, and the yarn guide table 10 is provided with at least one movable yarn nozzle.

[0147] The movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves left and right on the yarn guide base 10.

[0148] Example 21 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 being adjusted by a second adjustment mechanism, the movable yarn nozzle 40 being controlled by the second adjustment mechanism so that the movable yarn nozzle 40 is displaced from an initial position to a knitting position in at least one direction, and the yarn guide table 10 is provided with at least one movable yarn nozzle 40.

[0149] The movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves left and right on the yarn guide base 10, and the movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves up and down on the yarn guide base 10.

[0150] Example 22 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 being adjusted by a second adjustment mechanism, the movable yarn nozzle 40 being controlled by the second adjustment mechanism so that the movable yarn nozzle 40 is displaced from an initial position to a knitting position in at least one direction, and the yarn guide table 10 is provided with at least one movable yarn nozzle 40.

[0151] The movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves left and right on the yarn guide base 10, and the movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves back and forth on the yarn guide base 10.

[0152] Example 23 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 being adjusted by a second adjustment mechanism, the movable yarn nozzle 40 being controlled by the second adjustment mechanism so that the movable yarn nozzle 40 is displaced from an initial position to a knitting position in at least one direction, and the yarn guide table 10 is provided with at least one movable yarn nozzle 40.

[0153] The movable yarn nozzle 40 is adjusted by the second adjustment mechanism so that the movable yarn nozzle 40 moves left and right on the yarn guide table 10, the movable yarn nozzle 40 is adjusted by the second adjustment mechanism so that the movable yarn nozzle 40 moves up and down on the yarn guide table 10, and the movable yarn nozzle 40 is adjusted by the second adjustment mechanism so that the movable yarn nozzle 40 moves back and forth on the yarn guide table 10.

[0154] Example 24 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 being adjusted by a second adjustment mechanism, the movable yarn nozzle 40 being controlled by the second adjustment mechanism so that the movable yarn nozzle 40 is displaced from an initial position to a knitting position in at least one direction, and the yarn guide table 10 is provided with at least one movable yarn nozzle 40.

[0155] The movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves up and down on the yarn guide base 10.

[0156] Example 25 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 being adjusted by a second adjustment mechanism, the movable yarn nozzle 40 being controlled by the second adjustment mechanism so that the movable yarn nozzle 40 is displaced from an initial position to a knitting position in at least one direction, and the yarn guide table 10 is provided with at least one movable yarn nozzle 40.

[0157] The movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves up and down on the yarn guide table 10, and the movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves back and forth on the yarn guide table 10.

[0158] Example 26 This embodiment provides a yarn guide table having a movable yarn nozzle, the yarn guide table including a yarn guide table 10 and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle 40, the position and direction of the movable yarn nozzle 40 on the yarn guide table 10 being adjusted by a second adjustment mechanism, the movable yarn nozzle 40 being controlled by the second adjustment mechanism so that the movable yarn nozzle 40 is displaced from an initial position to a knitting position in at least one direction, and the yarn guide table 10 is provided with at least one movable yarn nozzle 40.

[0159] The movable yarn nozzle 40 is adjusted by a second adjustment mechanism so that the movable yarn nozzle 40 moves back and forth on the yarn guide base 10.

[0160] Example 27 This embodiment provides a yarn guide base having a movable yarn nozzle. This embodiment is based on the structure of the yarn guide base 10 having the movable yarn nozzle 40 of any one of Embodiments 1 to 26. Furthermore, the yarn nozzles are arranged and distributed in a layered structure, i.e., the yarn nozzles are provided in multiple layers. Examples of yarn nozzles arranged in two layers include the following two cases. In the first case, of the yarn nozzles provided in multiple layers, all of the yarn nozzles in the first layer are fixed yarn nozzles 30, and all of the yarn nozzles in the second layer are movable yarn nozzles 40, with at least one yarn nozzle in each of the first and second layers. In the second case, all of the yarn nozzles in the first and second layers are movable yarn nozzles 40, with at least one yarn nozzle in each layer. By providing the movable yarn nozzles 40 in multiple layers, the range of movement of the movable yarn nozzles 40 can be up to the entire yarn guide table 10, or if the yarn guide table 10 is divided into at least two areas, the movable yarn nozzles 40 in each area can be displaced in the corresponding area.

[0161] Example 28 This embodiment provides a yarn guide base having a movable yarn nozzle, which is based on the structure of the yarn guide base 10 having the movable yarn nozzle 40 of any one of embodiments 1 to 27, and further, the movable yarn nozzle 40 is arranged as a rotatable yarn nozzle.

[0162] Preferably, in addition to the yarn nozzle structure provided in multiple layers, a rotatable yarn nozzle is provided, so that switching of the yarn nozzle position between different layers is achieved by rotating the yarn nozzle.

[0163] Example 29 This embodiment provides a yarn guide table having a movable yarn nozzle. This embodiment is based on the structure of the yarn guide table 10 having the movable yarn nozzle 40 of any one of embodiments 1 to 28. Furthermore, the yarn nozzle in the yarn guide table 10 includes not only the movable yarn nozzle 40 but also a fixed yarn nozzle 30. The fixed yarn nozzle 30 is formed by a non-moving movable yarn nozzle 40, or a commonly used fixed yarn nozzle 30 is used as is and combined with the movable yarn nozzle 40.

[0164] Example 30 Please refer to FIG. 8, which is a schematic diagram of a first type of structure for swinging back and forth of a yarn guide base having a movable yarn nozzle in the 30th embodiment of the present invention.

[0165] This embodiment provides a yarn guide base with a movable yarn nozzle, which is based on the structure of the yarn guide base with a movable yarn nozzle of any one of Embodiments 1 to 29. In addition, the movable yarn nozzle 40 is swingable. Specifically, the movable yarn nozzle 40 is swingable back and forth in accordance with a swing base 50 by a third adjustment mechanism. The swing base 50 is located on the yarn guide base 10, i.e., the swing base 50 is located at the connection point between the movable yarn nozzle 40 and the yarn guide base 10.

[0166] As shown in FIG. 8, the entire movable yarn nozzle swings, and the swing base is the connection area attached to the yarn guide base at the tip of the movable yarn nozzle.

[0167] In Figure 8, multiple movable yarn nozzles are arranged at the bottom end of the yarn guide base. Of these, the ones shown in black on the right side of the three-dimensional structural diagram in Figure 8 are movable yarn nozzles, and the right half of Figure 8 is a schematic diagram of the movable yarn nozzles as they swing.

[0168] Example 31 Please refer to FIG. 9, which is a schematic diagram of a second type of structure for swinging back and forth of the yarn guide base having the movable yarn nozzle in the thirty-first embodiment of the present invention.

[0169] This embodiment provides a yarn guide base with a movable yarn nozzle. This embodiment is based on the structure of the yarn guide base with a movable yarn nozzle of any one of embodiments 1 to 29, and further, the movable yarn nozzle 40 is swingable. Specifically, the movable yarn nozzle 40 swings back and forth in accordance with a swing base 50 by a third adjustment mechanism, and the swing base 50 is located at the movable yarn nozzle 40.

[0170] That is, the movable yarn nozzle 40 is attached to the yarn guide base 10, and the oscillation of the movable yarn nozzle 40 in this embodiment is achieved by a control structure provided in the movable yarn nozzle 40 itself, rather than by the structure of the connection area between the tip of the movable yarn nozzle 40 and the yarn guide base 10.

[0171] In Fig. 9, a plurality of movable yarn nozzles 40 are arranged at the bottom end of the yarn guide base 10, and among them, the movable yarn nozzles 40 are shown in black on the right side of the three-dimensional structural diagram in Fig. 9. The right half of Fig. 9 is a schematic diagram of the movable yarn nozzle 40 when it swings.

[0172] Example 32 1, this embodiment provides a yarn guide base having a movable yarn nozzle, the yarn guide base including a fixed yarn nozzle 30 and a movable yarn nozzle 40, and the yarn guide base 10 is provided with a movable area 20 for controlling the movement of the movable yarn nozzle 40, i.e., the black area in the center of the yarn guide base 10 in FIG. 1. The black area is an area within which the yarn nozzle can be controlled to move freely when it is in operation, i.e., the movable area 20 shown in FIG. 1.

[0173] One movable yarn nozzle 40 is provided and is located inside the two fixed yarn nozzles 30, and the movable yarn nozzle 40 has two knitting modes: a fixed knitting mode and a movable knitting mode in which it displaces following the entire yarn guide table 10.

[0174] In FIG. 1, the numbers 1, 2, and 3 indicate yarn nozzles with different numbers, with numbers 1 and 3 being fixed yarn nozzles 30 and number 2 being a movable yarn nozzle 40 (which can move in various directions, such as left and right, front and back, and up and down).

[0175] When the entire yarn guide table 10 is performing knitting work, the first and third yarn nozzles perform fixed knitting, and the second yarn nozzle moves in any direction (including movement in each direction such as left and right, front and back, and up and down) following the movement of the entire yarn guide table 10, or knits without moving while keeping its relative position fixed.

[0176] Example 33 Referring to FIG. 2, this embodiment provides a yarn guide base having a movable yarn nozzle, the yarn guide base including a fixed yarn nozzle 30 and a movable yarn nozzle 40, and the yarn guide base 10 is provided with a movable area 20 for controlling the movement of the movable yarn nozzle 40.

[0177] Three fixed yarn nozzles 30 and one movable yarn nozzle 40 are provided, and the fixed yarn nozzles 30 and the movable yarn nozzle 40 are attached to the yarn guide table 10 so that they are provided on different layers, and the movable area 20 for controlling the movement of the movable yarn nozzle 40 is the entire yarn guide table 10.

[0178] The numbers 1, 2, 3, and 4 shown in FIG. 2 each indicate a differently numbered yarn nozzle, with numbers 1, 2, and 3 being fixed yarn nozzles 30 and number 4 being a movable yarn nozzle 40 (which can move in all directions, including left and right, front and back, and up and down). In FIG. 2, the black area is an area that is controlled so that yarn nozzle number 4 can move freely when it is operating.

[0179] The yarn guide table 10 may be divided into two layers (or multiple layers), i.e., a front layer and a rear layer, and yarn nozzles 1, 2, and 3 are located in the rear layer as shown in FIG. 2 (in practice, the layer in which the yarn nozzles are located is not limited, but they may be located in either the front layer or the rear layer), and yarn nozzle 4 is located in the front layer as shown in the figure (in practice, the layer in which they are located is not limited).

[0180] When the entire yarn guide table 10 is performing knitting work, the first, second, and third yarn nozzles perform fixed knitting, and the fourth yarn nozzle moves in any direction within the black area (or remains fixed) following the movement of the entire yarn guide table 10 and performs knitting.

[0181] Example 34 Referring to Figure 3, this embodiment provides a yarn guide base having a movable yarn nozzle, which includes a fixed yarn nozzle 30 and a movable yarn nozzle 40, and the yarn guide base 10 is provided with a movable area 20 for controlling the movement of the movable yarn nozzle 40.

[0182] There are three movable yarn nozzles 40 and one fixed yarn nozzle 30, and the fixed yarn nozzle 30 and the movable yarn nozzle 40 are attached to the yarn guide table 10 so that they are arranged in different layers, and the movable area 20 for controlling the movement of the movable yarn nozzle 40 is an independent movable area 20 in which the yarn nozzle is located.

[0183] The numbers 1, 2, 3, and 4 shown in FIG. 3 each indicate a differently numbered yarn nozzle, with numbers 1, 2, and 3 being movable yarn nozzles 40 (including movement in each direction, such as left and right, front and back, and up and down), and number 4 being a fixed yarn nozzle 30. In FIG. 3, the black areas are areas that are controlled so that they can move freely when the corresponding yarn nozzles, numbers 1, 2, and 3, are in operation.

[0184] The yarn guide table 10 may be divided into two layers (or multiple layers), i.e., a front layer and a rear layer, with yarn nozzles 1, 2, and 3 located in the front layer as shown in FIG. 3 (in practice, the layer in which the yarn nozzles are located is not limited, but they may be located in either the front layer or the rear layer), and yarn nozzle 4 located in the rear layer as shown in FIG. 3 (in practice, the layer in which they are located is not limited).

[0185] When the entire yarn guide table 10 is performing knitting work, the fourth yarn nozzle performs fixed knitting, and the first, second, and third yarn nozzles knit by moving in any direction (or remaining fixed) within the black area following the movement of the entire yarn guide table 10.

[0186] Example 35 Referring to Figure 4, this embodiment provides a yarn guide base having a movable yarn nozzle, which includes a fixed yarn nozzle 30 and a movable yarn nozzle 40, and the yarn guide base 10 is provided with a movable area 20 for controlling the movement of the movable yarn nozzle 40.

[0187] Two movable yarn nozzles 40 and two fixed yarn nozzles 30 are provided, the yarn guide base 10 is divided into two movable areas 20, and the fixed yarn nozzles 30 and the movable yarn nozzles 40 are attached to the yarn guide base 10 so as to be provided in different layers.

[0188] The numbers 1, 2, 3, and 4 shown in FIG. 4 each indicate a differently numbered yarn nozzle, with numbers 2 and 3 being main yarn nozzles (fixed), and numbers 1 and 4 being auxiliary yarn nozzles, which are movable yarn nozzles 40 (including movement in various directions such as left and right, front and back, and up and down). In FIG. 4, the black areas are areas that are controlled so that they can move freely when the corresponding numbered 1 or 4 yarn nozzle is operating.

[0189] The yarn guide table 10 may be divided into two layers (or multiple layers), i.e., a front layer and a rear layer, with yarn nozzles No. 1 and No. 4 located in the rear layer as shown in FIG. 4 (in practice, the layer in which the yarn nozzles are located is not limited and they may be located in either the front layer or the rear layer), and yarn nozzles No. 2 and No. 3 located in the front layer as shown in FIG. 4 (in practice, the layer in which they are located is not limited).

[0190] When the entire yarn guide table 10 is performing knitting work, the main yarn nozzles No. 2 and No. 3 perform fixed knitting, and No. 1 and No. 4 knit by moving in any direction (or remaining fixed) within the black movable area in which they are located, following the movement of the entire yarn guide table 10.

[0191] Example 36 Referring to FIG. 5, this embodiment provides a yarn guide base having a movable yarn nozzle, the yarn guide base including a fixed yarn nozzle 30 and a movable yarn nozzle 40, and the yarn guide base 10 is provided with a movable area 20 for controlling the movement of the movable yarn nozzle 40.

[0192] At least one fixed yarn nozzle 30 is provided and serves as the main yarn nozzle, and the movable yarn nozzle 40 is movable in multiple directions and / or rotatable. The movable area 20 for controlling the movement of the movable yarn nozzle 40 is the entire yarn guide table 10, and the fixed yarn nozzle 30 and the movable yarn nozzle 40 are mounted so as to be provided on different layers.

[0193] The numbers 1 and 2 in Figure 5 indicate yarn nozzles with different numbers, with number 2 being the main yarn nozzle (fixed) and number 1 being the auxiliary yarn nozzle (controlled so that it can move and rotate freely). In Figure 5, the black areas are areas that are controlled so that they can move and rotate freely when the corresponding number 1 yarn nozzle is operating.

[0194] The yarn guide table 10 may be divided into two layers (or multiple layers), i.e., a front layer and a rear layer, and the location of yarn nozzle No. 1 is fixed in one of the layers, while the location of yarn nozzle No. 2 can be switched between each layer.

[0195] When the entire yarn guide table 10 is performing knitting work, the second main yarn nozzle performs knitting at a fixed position, and the first auxiliary yarn nozzle performs rotational knitting around the second main yarn nozzle in any direction and angle while following the movement of the entire yarn guide table 10.

[0196] Example 37 Referring to Figure 6, this embodiment provides a yarn guide base having a movable yarn nozzle, the yarn guide base includes a movable yarn nozzle 40, and the yarn guide base 10 is provided with a movable area 20 for controlling the movement of the movable yarn nozzle 40.

[0197] Three movable yarn nozzles 40 are provided, and each movable yarn nozzle 40 is located in a corresponding movable region 20.

[0198] The numbers 1, 2, and 3 shown in Figure 6 each indicate a yarn nozzle with a different number, and each yarn nozzle is a movable yarn nozzle 40 (which can move in various directions such as left and right, front and back, and up and down).In Figure 6, the black areas are areas that are controlled so that the yarn nozzle can move freely when it is operating.

[0199] When the entire yarn guide table 10 is performing knitting work, the three (and more than three) yarn nozzles move (including in each direction such as left and right, front and back, and up and down) following the movement of the entire yarn guide table 10, or are fixed and move arbitrarily within the black area in which they are located to perform knitting work.

[0200] Example 38 Referring to Figure 7, this embodiment provides a yarn guide base having movable yarn nozzles, and all of the yarn nozzles in the yarn guide base are movable yarn nozzles 40, and the yarn guide base 10 is provided with a movable area 20 for controlling the movement of the movable yarn nozzles 40.

[0201] Four movable yarn nozzles 40 are provided, and the movable yarn nozzles 40 are attached in at least two layers, and any one of the movable yarn nozzles 40 is attached independently to any layer of the yarn guide table 10, and the movable area 20 for controlling its movement is the entire yarn guide table 10, and the movable area 20 for controlling the movement of the remaining movable yarn nozzles 40 is the independent movable area 20 in which the yarn nozzle is located.

[0202] The numbers 1, 2, 3, and 4 shown in Figure 7 each indicate a different numbered yarn nozzle, and all of them are yarn nozzles that are controlled to be movable (including movement in each direction, such as left and right, front and back, and up and down). In Figure 7, the black areas are areas that are controlled to be freely movable when the corresponding yarn nozzles No. 1, No. 2, and No. 3 are operating, and the gray areas are areas that are controlled to be freely movable when yarn nozzle No. 4 is operating.

[0203] The yarn guide table 10 may be divided into two layers (or multiple layers), i.e., a front layer and a rear layer, and yarn nozzles 1, 2, and 3 are located in the rear layer as shown in FIG. 7 (in practice, the layer in which the yarn nozzles are located is not limited and they may be located in either the front layer or the rear layer), and yarn nozzle 4 is located in the front layer as shown in the same figure (in practice, the layer in which they are located is not limited).

[0204] When the entire yarn guide table 10 performs knitting work, all the yarn nozzles move in any direction within their respective movable ranges (or remain fixed) while following the movement of the entire yarn guide table 10 to perform knitting work.

[0205] Example 39 Referring to FIG. 11, this embodiment is based on the structures of the first to thirty-eighth embodiments and provides a yarn guide base having a movable yarn nozzle provided with the following structure.

[0206] The yarn nozzle is provided with a plurality of independent yarn feeders 60, and the spacing between adjacent yarn feeders 60 is adjustable, the height of each independent yarn feeder 60 is individually adjustable, and the size of each independent yarn feeder 60 is adjustable. The yarn nozzle may be optimized using at least one configuration selected arbitrarily from the adjustable spacing, adjustable height, and adjustable size of the yarn feeders 60. The yarn feeder configuration and the configuration for adjusting the yarn feeders may be provided in either a fixed yarn nozzle or a movable yarn nozzle.

[0207] The first, second, and third adjustment mechanisms of the present invention refer to structures for controlling the relative positional fluctuations of corresponding yarn nozzles. When a yarn guide table 10 having a movable yarn nozzle 40 is attached to a knitting equipment, the knitting equipment controls the entire yarn guide table 10 having the movable yarn nozzle 40 to move back and forth within the knitting area of ​​the knitting equipment using a displacement member. The first, second, and third adjustment mechanisms are used to adjust and control the yarn nozzles on the yarn guide table 10 when the displacement member is not controlling the movement of the yarn guide table 10. The first, second, and third adjustment mechanisms may be structural members that perform active control independent of the yarn guide table 10, or transition members that perform adjustments in conjunction with the yarn guide table 10. When the first, second, and third adjustment mechanisms are transition members, the structures are still central to controlling the relative positional fluctuations of corresponding yarn nozzles, but the driving force may be provided in the knitting equipment. For example, if the first adjustment mechanism includes teeth and a spring, the teeth and spring are provided in the structure of the yarn guide table 10, the knitting equipment is provided with a rack and a motor for controlling the rotation of the rack, and the rack and the teeth are configured to mesh, controlling the rack can indirectly control the up and down movement of the yarn nozzle corresponding to the first adjustment mechanism. In the present invention, the first adjustment mechanism, the second adjustment mechanism, and the third adjustment mechanism directly or indirectly control the movable yarn nozzle 40 to adjust forward / backward, left / right, and up and down. This means that the displacement member controls the entire yarn guide table 10 having the movable yarn nozzle 40 to move back and forth within the knitting area of ​​the knitting equipment, and further adjusts the position of the movable yarn nozzle 40. The forward / backward, left / right, and up and down adjustments are independent of the direction of the reciprocating movement of the entire yarn guide table 10 having the movable yarn nozzle 40 within the knitting area of ​​the knitting equipment by the displacement member, and the two adjustments are independent and do not affect each other.The first adjustment mechanism according to the present invention is a general term for structures for indirectly controlling the movement of the movable yarn nozzle 40, and affects the yarn nozzle by adjusting the yarn guide base, the second adjustment mechanism is a general term for structures for directly controlling the movement of the movable yarn nozzle 40, and the third adjustment mechanism is a general term for structures for controlling the oscillation of the movable yarn nozzle 40. The first, second, and third adjustment mechanisms may be structural assemblies that provide integrated control along different directions, or may be a combination of a single structure that provides individual control along a single direction.

[0208] In the prior art, the structure of the movable yarn nozzle 40 may include a yarn nozzle frame, which is provided with upper and lower guide rails, a yarn nozzle mount attached to the yarn nozzle frame, a lower movement device attached to the lower guide rail, a left swing arm and a right swing arm connected to the yarn nozzle mount, an upper movement device connected to the left swing arm and the right swing arm and an elastic adjustment device between the left swing arm and the right swing arm. The left swing arm and the right swing arm are attached to the yarn nozzle mount via a rotating shaft, and the elastic adjustment device adjusts the up and down swing of the swing arm so that the upper movement device engages with the upper guide rail, allowing the yarn nozzle to reciprocate on the yarn nozzle mount. The elastic adjustment device includes a rotating shaft attached to the yarn nozzle mount, and a torsion spring attached to the rotating shaft, with both ends of the torsion spring connected to the left swing arm and the right swing arm, respectively. Both ends of the torsion spring abut against the left and right swing arms, respectively, to swing the left and right swing arms up and down, thereby allowing the upper movement device on the swing arms to closely engage with the upper guide rail and improve running stability. The left and right swing arms are rotatably connected to and symmetrically installed on both sides of the yarn nozzle mount, and both the left and right swing arms have a bent structure, with their upper ends connected to the upper movement device and their lower ends provided with a locking groove for engaging with the torsion spring. The torsion spring is attached to the rotation shaft of the yarn nozzle mount and both ends are locked in the locking groove, making it difficult to come off, improving structural installation stability and facilitating installation of the torsion spring. The yarn nozzle mount is provided with a limiting groove for limiting the maximum stroke of the left and right swing arms. The restricting groove is a V-shaped groove provided on the rear side of the yarn nozzle mount, and the left swing arm and the right swing arm can only move within the restricting groove, thereby restricting their highest positions. Both the lower moving device and the upper moving device use U-shaped bearings or U-shaped grooved rollers.The U-shaped bearings or U-shaped grooved rollers tightly engage with the upper and lower guide rails, improving stability and reducing vibration during movement, and the rolling fit increases the smoothness of operation. Belt tightening blocks are connected to both ends of the yarn nozzle mount, which are connected to the belt via the belt tightening blocks. A drive motor is provided at the end of the yarn nozzle frame to drive the rotation of the belt, and operation of the drive motor rotates the belt, allowing the yarn nozzle mount to move back and forth.

[0209] Referring to FIG. 17 , according to some embodiments, the present invention provides a woven fabric. The woven fabric includes a base fabric 70 and a patterned weave knitted integrally with the base fabric 70. The patterned weave 80 includes a plurality of lines 801, and any angle 802 can be formed between any two adjacent lines 801. The base fabric 70 may be a single-layer base fabric 70 or a two-layer base fabric 70. The present invention uses a plurality of movable yarn nozzles to knit the patterned weave 80 integrally with the base fabric 70. The patterned weave 80 includes a plurality of lines 801, and any angle 802 can be formed between any two adjacent lines 801. This allows the patterned weave 80 to form a layout in the warp direction or / and weft direction of the base fabric 70. The patterned weave 80 can form various patterns, which not only improves the aesthetic effect of the base fabric 70 but also reduces the stretchability of the base fabric 70 in the warp direction or / and weft direction, thereby significantly improving the structural stability of the base fabric 70.

[0210] 12 , according to some embodiments of the present invention, the angle 802 optionally includes a first angle 8021, which has a magnitude of 90° or 180°. In the present invention, the base fabric 70 is knitted using a movable yarn nozzle, and the movable yarn guide table does not swing in directions such as back and forth, left and right, or up and down. Therefore, the knitted first angle 8021 can be 90° or 180°. That is, the knitted pattern 80 is a linear or stepped linear pattern, which greatly improves the aesthetic effect of the base fabric 70, greatly reduces the stretchability of the base fabric 70 in the warp and / or weft directions, and makes the structure of the base fabric 70 more stable.

[0211] 13-14 , according to some embodiments of the present invention, the angle 802 optionally includes a second angle 8022, and the magnitude of the second angle 8022 is 0°<second angle 8022<90° or 90°<second angle 8022<180°. In the present invention, the base fabric 70 is knitted using a movable yarn nozzle, and the movable yarn nozzle can be arbitrarily swung in directions such as front-to-back, left-to-right, and up-down. Therefore, the magnitude of the knitted second angle 8022 is 0°<second angle 802<990° or 180°<second angle 802<180°. That is, the knitted patterned design 80 has a curved shape, which greatly improves the aesthetic effect of the base fabric 70, greatly reduces the extensibility of the base fabric 70 in the warp direction and / or weft direction, and makes the structure of the base fabric 70 more stable.

[0212] According to some embodiments of the present invention, two adjacent second angles 8022 are selectively made to have the same size. In the present invention, the base fabric 70 is knitted using a movable yarn nozzle, which can swing in any direction, such as back and forth, left and right, or up and down, and by always making the sizes of two adjacent second angles 8022 the same, the patterned design 80 can be made smoother.

[0213] According to some embodiments of the present invention, optionally, two adjacent second angles 8022 are not the same in size. In the present invention, the base fabric 70 is knitted using a movable yarn nozzle, which can swing in any direction, such as front and back, left and right, or up and down, and by always keeping the sizes of two adjacent second angles 8022 not the same, the style of the patterned fabric 80 can be made more diverse.

[0214] 13, according to some embodiments of the present invention, optionally, line 801 is a segment 8011 formed by loopless knitting using a movable yarn nozzle. The present invention knits patterned design 80 by loopless knitting using a movable yarn nozzle so that patterned design 80 is embedded in base fabric 70.

[0215] 14, according to some embodiments of the present invention, optionally, line 801 has a long axis 8012 formed by loop knitting with a movable yarn nozzle. In the present invention, patterned fabric 80 is knitted by loop knitting with a movable yarn nozzle, and the patterned fabric 80 is entangled with the base fabric 70, thereby significantly improving the structural stability of the base fabric 70.

[0216] According to some embodiments of the present invention, the colors of two adjacent lines 801 may be mismatched. By replacing the movable yarn nozzle, the present invention can make the colors of the two adjacent lines 801 mismatched, thereby making the color of the patterned texture 80 more diverse.

[0217] According to some embodiments of the present invention, the line 801 is optionally knitted with multiple threads. The present invention can knit the line 801 with multiple threads using a movable thread nozzle, and further, by adjusting the thickness of the line 801, it is possible to realize a patterned texture 80 with different raised structures.

[0218] According to some embodiments of the present invention, the patterned structure 80 is selectively knitted to be hidden and / or exposed under the base fabric 70. The patterned structure 80 according to the present invention may be knitted to be hidden within the base fabric 70, or may be knitted to be exposed outside the base fabric 70, or may be knitted to be partially hidden and partially exposed, thereby achieving different visual effects and structural stability.

[0219] Example 40 15, this embodiment provides a woven fabric. The woven fabric includes a base fabric 70 and a patterned design 80 knitted integrally with the base fabric 70. The patterned design 80 includes a plurality of lines 801, and an angle 802 of 90° or 180° is formed between two adjacent lines 801.

[0220] Example 41 16, this embodiment provides a woven fabric. The woven fabric includes a base fabric 70 and a patterned structure 80 knitted integrally with the base fabric 70. The patterned structure 80 includes a plurality of lines 801, and an angle 802 is formed between two adjacent lines 801, and the magnitude of the angle 802 is 0°<angle 802<90° or 90°<angle 802<180°.

[0221] Example 42 17, this embodiment provides a woven fabric. The woven fabric includes a base fabric 70 and a patterned design 80 knitted integrally with the base fabric 70. The patterned design 80 includes a plurality of lines 801, and any angle 802 can be formed between any two adjacent lines 801.

[0222] Example 43 Referring to Fig. 18, this embodiment provides a woven fabric. The woven fabric includes a base fabric 70 and a patterned design 80 knitted integrally with the base fabric 70. The patterned design 80 includes a plurality of lines 801, and an angle 802 is formed between two adjacent lines 801, the angle 802 being 0° to 990° or 180° to 180°, and not 0°, 90°, or 180°, and the size of the angle 802 formed between two adjacent lines 801 is the same.

[0223] Example 44 19, this embodiment provides a woven fabric. The woven fabric includes a base fabric 70 and a patterned design 80 knitted integrally with the base fabric 70. The patterned design 80 includes a plurality of lines 801, and an angle 802 is formed between two adjacent lines 801, the angle 802 being between 0° and 990° or between 180° and 180°, and not 0°, 90°, or 180°, and the magnitudes of the angles 802 formed between two adjacent lines 801 are not the same.

[0224] Example 45 20, this embodiment provides a woven fabric. The woven fabric includes a base fabric 70 and a patterned structure 80 integrally knitted with the base fabric 70. The patterned structure 80 includes a plurality of lines 801, and any angle 802 can be formed between any two adjacent lines 801, and the colors of the adjacent two lines 801 do not match.

[0225] Example 46 Referring to Fig. 21, this embodiment provides a woven fabric. The woven fabric includes a base fabric 70 and a patterned fabric 80 knitted integrally with the base fabric 70. The patterned fabric 80 includes a plurality of lines 801, and any angle 802 can be formed between two adjacent lines 801. The lines 801 can be knitted with a plurality of yarns using a movable yarn nozzle. Furthermore, by adjusting the thickness of the lines 801, the patterned fabric 80 can be realized with different raised structures.

[0226] Example 47 Referring to Fig. 22, this embodiment provides a woven fabric. The woven fabric includes a base fabric 70 and a patterned design 80 knitted integrally with the base fabric 70. The patterned design 80 includes a plurality of lines 801, and any angle 802 can be formed between two adjacent lines 801. The patterned design 80 is knitted so that a portion of the patterned design 80 is hidden within the base fabric 70 and a portion of the patterned design 80 is exposed outside the base fabric 70, thereby achieving different visual effects and structural stability.

[0227] Referring to FIG. 23 , according to some embodiments, the present invention provides a flyknit fabric having a warp structure 100. The flyknit fabric includes a flyknit fabric body 90 and a warp structure 100 knitted integrally with the flyknit fabric body 90. The warp structure 100 is knitted by a movable yarn nozzle feeding yarns in the warp direction of the flyknit fabric body 90, and the movable yarn nozzle does not need to perform a kicking motion to retract when feeding yarns and knitting. Because the present invention uses a movable yarn nozzle to feed yarns and knit the flyknit fabric body 90 without requiring a kicking motion to retract during the knitting process, it is possible to quickly knit a warp structure 100 having multiple warp stripes 1001, greatly enriching the line pattern structure in the warp direction of the flyknit fabric, and increasing the strength and stability of the flyknit fabric in the warp direction while reducing elongation and deformation ability.

[0228] Referring to Figures 24 to 26, according to some embodiments of the present invention, optionally, the warp thread design 100 is one or more of a straight warp thread design 100, a curved warp thread design 100, and a radial warp thread design 100.

[0229] Optionally, the warp weave 100 is a straight warp weave 100, a curved warp weave 100, or a radial warp weave 100.

[0230] Optionally, the warp weave 100 is a combination of a straight warp weave 100 and a curved warp weave 100 .

[0231] Optionally, the warp design 100 is a combination of a straight warp design 100 and a radial warp design 100 .

[0232] Optionally, the warp design 100 is a combination of a curved warp design 100 and a radial warp design 100 .

[0233] According to some embodiments of the present invention, the warp yarn structure 100 is optionally knitted into the top layer and / or the back layer of the flyknit fabric body 90.

[0234] Optionally, the warp yarn structure 100 is knitted on the surface layer of the flyknit fabric body 90.

[0235] Optionally, the warp structure 100 is knitted into the back layer of the flyknit fabric body 90.

[0236] Optionally, the warp yarn structure 100 is knitted into the face and back layers of the flyknit fabric body 90.

[0237] According to some embodiments of the present invention, optionally, the warp structure 100 is integrally knitted with the flyknit fabric body 90 using inlay, float, loop, tucking, or needle turning techniques.

[0238] Optionally, the warp structure 100 is knitted integrally with the flyknit fabric body 90 using an inlay knitting method. In the present invention, to form the warp structure 100 having a warp inlaying effect, yarns are fed in the warp direction of the flyknit fabric body 90 using a movable yarn nozzle, and the warp yarns are knitted into the front layer and / or back layer of the flyknit fabric body 90 using an inlay knitting method.

[0239] Optionally, the warp structure 100 is knitted integrally with the flyknit fabric body 90 using a float knitting method. In the present invention, to form the warp structure 100 having a raised effect, yarns are fed in the warp direction of the flyknit fabric body 90 using a movable yarn nozzle, and the warp yarns are knitted into the front layer and / or back layer of the flyknit fabric body 90 using a float knitting method.

[0240] Optionally, the warp structure 100 is knitted integrally with the flyknit fabric body 90 using a loop knitting method. In the present invention, to make the connection between the warp structure 100 and the flyknit fabric body 90 more stable and strong, yarns are fed in the warp direction of the flyknit fabric body 90 using a movable yarn nozzle, and the warp yarns are knitted into the front layer and / or back layer of the flyknit fabric body 90 using a loop knitting method.

[0241] Optionally, the warp structure 100 is knitted integrally with the flyknit fabric body 90 using a needle-turn knitting method. In the present invention, the warp structure 100 is fed in the warp direction of the flyknit fabric body 90 using a movable yarn nozzle so that the warp structure 100 is disposed in the front and back layers of the flyknit fabric body 90, and the warp is knitted into the flyknit fabric body 90 using a needle-turn knitting method.

[0242] According to some embodiments of the present invention, optionally, the warp construction 100 includes a plurality of warp stripes 1001, each warp stripe 1001 being parallel and / or crossing each other.

[0243] Optionally, the warp stripes 1001 are parallel to each other to form a regular warp weave 100.

[0244] Optionally, each warp stripe 1001 crosses over each other to form a richly patterned warp weave 100.

[0245] Optionally, each warp stripe 1001 is partially parallel to each other and partially crosses each other to form a warp weave 100 with regularity and rich patterns.

[0246] Optionally, the warp construction 100 does not match the color of the flyknit fabric body 90, according to some embodiments of the present invention.

[0247] Optionally, according to some embodiments of the present invention, the flyknit fabric body 90 is single layer, double layer, or multi-layer.

[0248] According to some embodiments of the present invention, the present invention comprises: pull-in knitting, which performs a yarn pulling operation to pull the warp yarn into the knitting position; A fabric knitting operation for knitting a flyknit fabric; pull-out knitting, which performs a yarn pulling operation to pull out the warp yarn from the knitting position; The present invention provides a knitting process for a flyknit fabric having a warp yarn structure 100, including:

[0249] According to some embodiments of the present invention, the knitting method may optionally further include a fixed knitting step between the pull-in knitting and the weaving knitting, and a running knitting step between the weaving knitting and the pull-out knitting. The fixed knitting step is a knitting step in which tuck knitting is performed when knitting the flyknit fabric, and serves to fix the warp yarns at a stationary position and prevent positional slippage when the subsequent warp yarns move. The running knitting step is a knitting step in which the warp yarns are knitted while running, and serves to form a curve in the flyknit fabric body 90 that bends in the warp direction.

[0250] According to some embodiments of the present invention, when knitting a fabric, it is necessary to selectively shift the knitting by one stitch between two adjacent knittings of the fabric. The specific knitting process is as follows:

[0251] Yarns A, B, and C are the warp yarns to be inlaid, and yarns D and E are TPU.

[0252] In the first and second rows, a thread pulling operation is performed to pull the A yarn into the knitting position, in the third and fourth rows, a thread pulling operation is performed to pull the B yarn into the knitting position, and in the fifth and sixth rows, a thread pulling operation is performed to pull the C yarn into the knitting position. In the 7th row, knit purl stitches on the left and right edges with D yarn, and in the center, knit tight purl tucks and knit purl stitches alternately. In the 8th row, purl with E yarn. In the 9th line, a threading operation is performed to pull out the A yarn from the knitting position, in the 10th line, a threading operation is performed to pull out the B yarn from the knitting position, and in the 11th line, a threading operation is performed to pull out the C yarn from the knitting position, In the 12th row, knit purl stitches on the left and right edges with D yarn, and in the center, knit a tight purl tuck and knit a purl stitch alternately, shifting one stitch from the 7th row. On row 13, purl with E yarn. In the 14th row, purl with D yarn, in the 15th row, purl with E yarn, and in the 16th and 17th rows, repeat the knitting of the 14th and 15th rows. In the 18th and 19th lines, a thread pulling operation is performed to pull the A yarn into the knitting position, in the 20th and 21st lines, a thread pulling operation is performed to pull the B yarn into the knitting position, and in the 22nd and 23rd lines, a thread pulling operation is performed to pull the C yarn into the knitting position. In row 24, knit purl stitches on the left and right edges with D yarn, and in the center, knit tight purl tuck stitches and knit purl stitches alternately. On row 25, purl with E yarn. In the 26th line, a threading operation is performed to pull out the A yarn from the knitting position, in the 27th line, a threading operation is performed to pull out the B yarn from the knitting position, and in the 28th line, a threading operation is performed to pull out the C yarn from the knitting position, In row 29, knit purl stitches on the left and right edges with D yarn, and in the center, knit a tight purl tuck and alternate with knitting, shifting one stitch from row 24. On line 30, purl with E yarn, on line 31, purl with D yarn, on line 32, purl with E yarn, on line 33, purl with D yarn, on line 34, purl with E yarn, In the 35th and 36th lines, a thread pulling operation is performed to pull the A yarn into the knitting position, in the 37th and 38th lines, a thread pulling operation is performed to pull the B yarn into the knitting position, and in the 39th and 40th lines, a thread pulling operation is performed to pull the C yarn into the knitting position. In row 41, knit purl stitches on the left and right edges with D yarn, and in the center, knit tight purl tucks and knit purl stitches alternately. On row 42, purl with E yarn. In the 43rd line, a threading operation is performed to pull out the A yarn from the knitting position, in the 44th line, a threading operation is performed to pull out the B yarn from the knitting position, and in the 45th line, a threading operation is performed to pull out the C yarn from the knitting position, In row 46, knit purl stitches on the left and right edges with D yarn, and in the center, knit a tight purl tuck and knit a purl stitch alternately, shifting one stitch from row 41. On line 47, purl with E yarn, on line 48, purl with D yarn, on line 49, purl with E yarn, on line 50, purl with D yarn, on line 51, purl with E yarn, In lines 52 and 53, a thread pulling operation is performed to pull yarn A into the knitting position, in lines 54 and 55, a thread pulling operation is performed to pull yarn B into the knitting position, and in lines 56 and 57, a thread pulling operation is performed to pull yarn C into the knitting position. In row 58, knit purl stitches on the left and right edges with D yarn, and in the center, knit tight purl tucks and knit purl stitches alternately. On row 59, purl with E yarn. In the 60th line, a threading operation is performed to pull out the A yarn from the knitting position, in the 61st line, a threading operation is performed to pull out the B yarn from the knitting position, and in the 62nd line, a threading operation is performed to pull out the C yarn from the knitting position, In row 63, knit purl stitches on the left and right edges with D yarn, and in the center, knit a tight purl tuck and knit again, shifting one stitch from row 58. On line 64, purl with E yarn, on line 65, purl with D yarn, on line 66, purl with E yarn, on line 67, purl with D yarn, and on line 68, purl with E yarn.

[0253] Example 48 23, this embodiment provides a flyknit fabric having a warp thread structure 100. The flyknit fabric includes a flyknit fabric body 90 and a warp thread structure 100 knitted integrally with the flyknit fabric body 90.

[0254] The warp structure 100 is a straight warp structure 100 formed by knitting the movable yarn nozzle by feeding yarn in the warp direction of the flyknit fabric body 90, and the movable yarn nozzle does not need to perform a kicking operation for retraction when knitting by feeding yarn.

[0255] The warp yarn structure 100 is knitted into the surface layer and / or the back layer of the flyknit fabric body 90.

[0256] The warp yarn structure 100 is knitted into the surface layer and / or back layer of the flyknit fabric body 90 using an inlay, float, loop, tuck, or needle backknit knitting method.

[0257] Example 49 27, this embodiment provides a flyknit fabric having a warp structure 100. The flyknit fabric includes a flyknit fabric body 90 and a warp structure 100 knitted integrally with the flyknit fabric body 90.

[0258] The warp structure 100 is a curved warp structure 100 formed by the movable yarn nozzle feeding and knitting yarn in the warp direction of the flyknit fabric body 90, and the movable yarn nozzle does not need to perform a kicking motion for retraction when feeding and knitting yarn.

[0259] The warp yarn structure 100 is knitted into the surface layer and / or the back layer of the flyknit fabric body 90.

[0260] The warp yarn structure 100 is knitted into the surface layer and / or back layer of the flyknit fabric body 90 using an inlay, float, loop, tuck, or needle backknit knitting method.

[0261] Example 50 28, this embodiment provides a flyknit fabric having a warp structure 100. The flyknit fabric includes a flyknit fabric body 90 and a warp structure 100 knitted integrally with the flyknit fabric body 90.

[0262] The warp structure 100 is a radial warp structure 100 formed by the movable yarn nozzle feeding and knitting yarn in the warp direction of the flyknit fabric body 90, and the movable yarn nozzle does not need to perform a kicking motion for retraction when feeding and knitting yarn.

[0263] The warp yarn structure 100 is knitted into the surface layer and / or the back layer of the flyknit fabric body 90.

[0264] The warp yarn structure 100 is knitted into the flyknit fabric body 90 layer and / or back layer using an inlay, float, loop, tuck or needle back stitch technique.

[0265] Example 51 29, this embodiment provides a flyknit fabric having a warp thread structure 100. The flyknit fabric includes a flyknit fabric body 90 and a warp thread structure 100 knitted integrally with the flyknit fabric body 90.

[0266] The warp design 100 is a warp design 100 in which straight sections and bent sections are combined and formed by knitting the movable yarn nozzle by feeding yarn in the warp direction of the fabric body 90, and the movable yarn nozzle does not need to perform a kicking operation for retraction when knitting by feeding yarn.

[0267] The warp yarn structure 100 is knitted into the surface layer and / or the back layer of the flyknit fabric body 90.

[0268] The warp yarn structure 100 is knitted into the surface layer and / or back layer of the flyknit fabric body 90 using an inlay, float, loop, tuck, or needle backknit knitting method.

[0269] Example 52 This embodiment provides a flyknit fabric having a warp thread structure 100. The flyknit fabric includes a flyknit fabric body 90 and a warp thread structure 100 knitted integrally with the flyknit fabric body 90.

[0270] The warp structure 100 is a straight warp structure 100 formed by knitting with a plurality of yarn nozzles feeding yarns in the warp direction of the flyknit fabric body 90, and the movable yarn nozzles do not need to perform a kicking motion for retraction when feeding yarns and knitting.

[0271] The warp yarn structure 100 is knitted into the flyknit fabric body 90 using an inlay knitting technique.

[0272] Referring to FIG. 30, part of the knitting process of the flyknit fabric according to this embodiment is as follows.

[0273] In Figure 30, A, B, and C yarns are inlaid warp yarns, and D and E yarns are TPU.

[0274] In the first row, a yarn pulling operation is performed to pull yarn A into the knitting position, In the second row, the yarn B is pulled into the knitting position. In the third row, the C yarn is pulled into the knitting position. When the A, B, and C threads reach their designated positions, they are stopped and fixed. In the fourth row, alternate between purl stitches and open needles with D yarn. In the fifth row, alternate between purl stitches and empty needles with E yarn. For rows 6 to 27, repeat the knitting of rows 4 and 5. During the knitting process, when the D and E yarn nozzles encounter the A, B and C yarn nozzles at the stop position, they do not perform a kicking motion to retreat. In the 28th row, a yarn pulling operation is performed to pull yarn A into the knitting position, In the 29th row, a yarn pulling operation is performed to pull yarn B into the knitting position, In the 30th row, a yarn pulling operation is performed to pull the C yarn into the knitting position.

[0275] Example 53 This embodiment provides a flyknit fabric having a warp thread structure 100. The flyknit fabric includes a flyknit fabric body 90 and a warp thread structure 100 knitted integrally with the flyknit fabric body 90.

[0276] The warp structure 100 is a curved warp structure 100 formed by knitting by a plurality of yarn nozzles feeding yarn in the warp direction of the flyknit fabric body 90, and the movable yarn nozzles do not need to perform a kicking motion to retract when feeding yarn and knitting.

[0277] The warp yarn structure 100 is knitted into the back layer of the flyknit fabric body 90 using an inlay knitting method.

[0278] Referring to FIG. 31, part of the knitting process for the flyknit fabric in this example is as follows.

[0279] In Figure 31, A, B, and C yarns are inlaid warp yarns, and D and E yarns are TPU.

[0280] In the first row, a yarn pulling operation is performed to pull yarn A into the knitting position, In the second row, the yarn B is pulled into the knitting position. In the third row, the C yarn is pulled into the knitting position. In the fourth row, the warp position is fixed at the rest position, and to prevent the position from slipping when the following warp moves, D yarn is used to knit tight back tucks and alternate with empty needles. In the fifth row, alternate between purl stitches and empty needles with E yarn. In the 6th row, alternate knitting with D yarn and open needles. In the 7th row, alternate between purl stitches and empty needles with E yarn. For rows 8-11, repeat the knitting from rows 6-7. In the 12th row, move yarn A and do an open needle float stitch. In the 13th row, move the B yarn and do an open needle float stitch. In the 14th row, move the C yarn and do an open needle float stitch. The knitting operations in lines 15 to 22 are the same as those in lines 4 to 11. In the 23rd row, move yarn A and do an open needle float stitch. In the 24th row, move the B yarn and do an open needle float stitch. In the 25th row, move the C yarn and do an open needle float stitch. In lines 12-14 and 23-25, the warp yarns are moved to form a curve in the warp direction of the flyknit fabric, The knitting operations in lines 26 to 33 are consistent with those in lines 4 to 11. In the 34th row, a yarn pulling operation is performed to pull out yarn A from the knitting position, In the 35th row, the yarn B is pulled out from the knitting position. In the 36th row, a yarn pulling operation is performed to pull out the C yarn from the knitting position.

[0281] Example 54 This embodiment provides a flyknit fabric having a warp thread structure 100. The flyknit fabric includes a flyknit fabric body 90 and a warp thread structure 100 knitted integrally with the flyknit fabric body 90.

[0282] The warp structure 100 is a radial warp structure 100 formed by knitting by a plurality of yarn nozzles feeding yarn in the warp direction of the flyknit fabric body 90, and the movable yarn nozzles do not need to perform a kicking motion to retract when feeding yarn and knitting.

[0283] The warp yarn structure 100 is knitted into the back layer of the flyknit fabric body 90 using an inlay knitting method.

[0284] Referring to FIGS. 32 and 33, part of the knitting process of the flyknit fabric according to this example is as follows.

[0285] In Figures 32-33, yarns A, B, and C are inlay warp yarns, and yarns D and E are TPU.

[0286] In the first and second rows, a yarn pulling operation is performed to pull yarn A into the knitting position, In the third and fourth rows, the yarn B is pulled into the knitting position. In the fifth and sixth rows, the C yarn is pulled into the knitting position. In the 7th row, knit purl stitches on the left and right edges with D yarn, and in the center, knit tight purl tucks and knit purl stitches alternately. In the 8th row, purl with E yarn. In the 9th row, a yarn pulling operation is performed to pull out yarn A from the knitting position, In the 10th row, the yarn B is pulled out from the knitting position. In the 11th row, the C yarn is pulled out from the knitting position. In the 12th row, knit purl stitches on the left and right edges with D yarn, and in the center, knit a tight purl tuck and knit a purl stitch alternately, shifting one stitch from the 7th row. On row 13, purl with E yarn. On row 14, purl with D yarn. On row 15, purl with E yarn. For rows 16 and 17, repeat the knitting of rows 14 and 15. In the 18th and 19th rows, a yarn pulling operation is performed to pull yarn A into the knitting position, In the 20th and 21st rows, the yarn B is pulled into the knitting position. In the 22nd and 23rd rows, the C yarn is pulled into the knitting position. In row 24, knit purl stitches on the left and right edges with D yarn, and in the center, knit tight purl tuck stitches and knit purl stitches alternately. On row 25, purl with E yarn. The 26th line performs a yarn pulling operation to pull out yarn A from the knitting position, The 27th line performs a yarn pulling operation to pull out yarn B from the knitting position, The 28th line performs a yarn pulling operation to pull out the C yarn from the knitting position, In row 29, knit purl stitches on the left and right edges with D yarn, and in the center, knit a tight purl tuck and alternate with knitting, shifting one stitch from row 24. On row 30, purl with E yarn. On row 31, purl with D yarn. On row 32, purl with E yarn. On row 33, purl with D yarn. On row 34, purl with E yarn. In the 35th and 36th rows, a yarn pulling operation is performed to pull yarn A into the knitting position, In the 37th and 38th rows, the yarn B is pulled into the knitting position. In the 39th and 40th rows, the C yarn is pulled into the knitting position. In row 41, knit purl stitches on the left and right edges with D yarn, and in the center, knit tight purl tucks and knit purl stitches alternately. On row 42, purl with E yarn. In the 43rd row, a yarn pulling operation is performed to pull out yarn A from the knitting position, In the 44th row, the yarn B is pulled out from the knitting position. In the 45th row, the C yarn is pulled out from the knitting position. In row 46, knit purl stitches on the left and right edges with D yarn, and in the center, knit a tight purl tuck and knit a purl stitch alternately, shifting one stitch from row 41. On row 47, purl with E yarn. On row 48, purl with D yarn. On row 49, purl with E yarn. On row 50, purl with D yarn. On row 51, purl with E yarn. In the 52nd and 53rd rows, a yarn pulling operation is performed to pull yarn A into the knitting position, In the 54th and 55th rows, the yarn B is pulled into the knitting position. In the 56th and 57th rows, the C yarn is pulled into the knitting position. In row 58, knit purl stitches on the left and right edges with D yarn, and in the center, knit tight purl tucks and knit purl stitches alternately. On row 59, purl with E yarn. In the 60th row, a yarn pulling operation is performed to pull out yarn A from the knitting position, In the 61st row, the yarn B is pulled out from the knitting position. In the 62nd row, the C yarn is pulled out from the knitting position. In row 63, knit purl stitches on the left and right edges with D yarn, and in the center, knit a tight purl tuck and knit again, shifting one stitch from row 58. On row 64, purl with E yarn. On row 65, purl with D yarn. On row 66, purl with E yarn. On row 67, purl with D yarn. On row 68, purl with E yarn.

[0287] Example 55 This embodiment provides a flyknit fabric having a warp thread structure 100. The flyknit fabric includes a flyknit fabric body 90 and a warp thread structure 100 knitted integrally with the flyknit fabric body 90.

[0288] The warp yarn structure 100 is a warp yarn structure 100 in which straight sections and bent sections are combined and formed by knitting by a plurality of yarn nozzles feeding yarn in the warp direction of the flyknit fabric body 90, and the movable yarn nozzles do not need to perform a kicking operation for retraction when feeding yarn and knitting.

[0289] The warp yarn structure 100 is knitted into the flyknit fabric body 90 using an inlay knitting technique.

[0290] Referring to FIG. 34, part of the knitting process for the flyknit fabric in this example is as follows.

[0291] In Figure 34, A, B, and C yarns are inlaid warp yarns, and D and E yarns are TPU.

[0292] In the first row, a yarn pulling operation is performed to pull yarn A into the knitting position, In the second row, the yarn B is pulled into the knitting position. In the third and fourth rows, the C yarn is pulled into the knitting position. When A and B reach the designated position, they stop and are fixed. In the fifth row, alternate between purl stitches and open needles with D yarn. In the 6th row, alternate between purl stitches and empty needles with E yarn. For rows 7-10, repeat the knitting from rows 5-6. In the 11th row, move the C yarn and do an open needle float stitch. For rows 12 to 17, repeat the knitting from rows 5 to 10. In the 18th row, move the C yarn and do an open needle float stitch. For rows 19-24, repeat the knitting from rows 12-17. In the 25th row, move the C yarn and do an open needle float stitch. For rows 26-31, repeat the knitting from rows 19-24. In the 32nd row, the C yarn is pulled out from the knitting position. In the 33rd row, the yarn B is pulled out from the knitting position. In the 34th row, a yarn pulling operation is performed to pull out yarn A from the knitting position.

[0293] Example 56 This embodiment provides a flyknit fabric having a warp thread structure 100. The flyknit fabric includes a flyknit fabric body 90 and a warp thread structure 100 knitted integrally with the flyknit fabric body 90.

[0294] The warp yarn structure 100 is a warp yarn structure 100 in which straight sections and bent sections are combined and formed by knitting by a plurality of yarn nozzles feeding yarn in the warp direction of the flyknit fabric body 90, and the movable yarn nozzles do not need to perform a kicking operation for retraction when feeding yarn and knitting.

[0295] The warp yarn structure 100 is knitted into the back layer of the flyknit fabric body 90 using an inlay knitting method.

[0296] Referring to FIG. 35, part of the knitting process for the flyknit fabric in this example is as follows.

[0297] In Figure 35, A, B, and C yarns are inlaid warp yarns, and D and E yarns are TPU.

[0298] In the first row, a yarn pulling operation is performed to pull yarn A into the knitting position, In the second row, the yarn B is pulled into the knitting position. In the third and fourth rows, the C yarn is pulled into the knitting position. When A and B reach their designated positions, they stop and are fixed. In the fifth row, knit the front with D yarn, In the sixth row, alternate between purl stitches and tight purl tucks with E yarn. In the 7th row, knit the front with D yarn, In the 8th row, E yarn is used to alternate between purl stitches and tight purl stitches, shifting one stitch from the 6th row. The knitting operations in lines 9 and 10 are the same as those in lines 5 and 6. In the 11th row, move the C yarn and do an open needle float stitch. The knitting operations in lines 12 and 13 are consistent with those in lines 7 and 8. The knitting operations in lines 14 to 17 are consistent with those in lines 5 to 8. In the 18th row, move the C yarn and do an open needle float stitch. The knitting operations in lines 19 to 31 are consistent with those in lines 5 to 17. In the 32nd row, the C yarn is pulled out from the knitting position. In the 33rd row, the yarn B is pulled out from the knitting position. In the 34th row, a yarn pulling operation is performed to pull out yarn A from the knitting position.

[0299] The embodiments disclosed herein are not limited to the particular process steps or materials disclosed herein, and equivalents of these features that occur to those skilled in the art are also included within the scope of the present invention. Furthermore, the terminology used herein is used only to describe particular embodiments and is not intended to be limiting.

[0300] The term "embodiment" in this specification means that a particular feature or characteristic described based on the embodiment is included in at least one embodiment of the present invention. Therefore, the description of "embodiment" appearing in various places throughout the specification does not necessarily refer to the same embodiment.

[0301] Furthermore, the described features or characteristics may be incorporated into one or more embodiments in any other suitable manner. In the above description, certain details, such as thicknesses, numbers, etc., are provided to provide a thorough understanding of embodiments of the present invention. However, one skilled in the art will recognize that the present invention may be practiced without one or more of the above details, or may be practiced with other methods, components, materials, etc. [Explanation of symbols]

[0302] 10 Thread guide stand 20 range of motion 30 Fixed thread nozzle 40 Movable thread nozzle 50 Oscillation base point 60 Yarn feeder 70 Base fabric 80 Patterned Texture 801 Line 8011 segments 8012 Long axis 802 angle 8021 First Angle 8022 Second Angle 90 Flyknit fabric body 100 Warp weave 1001 Warp Stripe

Claims

1. a yarn guide table having a movable yarn nozzle, the yarn guide table comprising a yarn guide table and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle, the yarn guide table being provided with a first adjustment mechanism for controlling and driving to adjust the position and direction of the yarn guide table, the position and direction of the movable yarn nozzle in the yarn guide table being adjusted by a second adjustment mechanism, the yarn guide table being provided with at least one movable yarn nozzle, the first adjustment mechanism and the second adjustment mechanism working together to control the movable yarn nozzle in the yarn guide table so that it is displaced from an initial position to a knitting position.

2. 2. A yarn guide base having a movable yarn nozzle as described in claim 1, characterized in that the yarn guide base is adjusted by a first adjustment mechanism so that the entire yarn guide base moves left and right, and the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves up and down and / or back and forth on the yarn guide base.

3. 2. A yarn guide base having a movable yarn nozzle as described in claim 1, characterized in that the yarn guide base is adjusted by a first adjustment mechanism so that the entire yarn guide base moves left and right and front and back, and the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves up and down on the yarn guide base.

4. 2. A yarn guide base having a movable yarn nozzle as described in claim 1, characterized in that the yarn guide base is adjusted by a first adjustment mechanism so that the entire yarn guide base moves left and right and up and down, and the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves back and forth on the yarn guide base.

5. 2. A yarn guide base with a movable yarn nozzle as described in claim 1, characterized in that the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves left and right on the yarn guide base, and the yarn guide base is adjusted by a first adjustment mechanism so that the entire yarn guide base moves up and down and / or back and forth.

6. 2. A yarn guide base having a movable yarn nozzle as described in claim 1, characterized in that the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves left and right or front and back on the yarn guide base, and the yarn guide base is adjusted by a first adjustment mechanism so that the entire yarn guide base moves up and down.

7. 2. A yarn guide base having a movable yarn nozzle as described in claim 1, characterized in that the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves left and right and up and down on the yarn guide base, and the yarn guide base is adjusted by a first adjustment mechanism so that the entire yarn guide base moves back and forth.

8. 2. The yarn guide base having a movable yarn nozzle according to claim 1, wherein the yarn guide base is adjusted by a first adjustment mechanism so that the entire yarn guide base moves up and down, and the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves back and forth on the yarn guide base.

9. 2. A yarn guide base having a movable yarn nozzle as described in claim 1, characterized in that the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves up and down on the yarn guide base, and the yarn guide base is adjusted by a first adjustment mechanism so that the entire yarn guide base moves back and forth.

10. a yarn guide base having a movable yarn nozzle, the yarn guide base including a yarn guide base and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle, the yarn guide base being provided with a first adjustment mechanism for controlling, driving, and adjusting the position and direction of the yarn guide base, the yarn guide base being provided with at least one movable yarn nozzle, the yarn nozzle being adjusted from an initial position to a knitting position by adjusting the position of the entire yarn guide base by the first adjustment mechanism, and the entire yarn guide base being adjusted in at least one direction.

11. 11. The yarn guide base having a movable yarn nozzle according to claim 10, wherein the yarn guide base is adjusted by a first adjustment mechanism so that the entire yarn guide base can move left and right, up and down, or back and forth.

12. 11. A yarn guide base having a movable yarn nozzle as described in claim 10, characterized in that the yarn guide base is adjusted by a first adjustment mechanism so that the entire yarn guide base moves left and right, and the yarn guide base is adjusted by a first adjustment mechanism so that the entire yarn guide base moves up and down and / or back and forth.

13. 11. The yarn guide base having a movable yarn nozzle according to claim 10, wherein the yarn guide base is adjusted by a first adjustment mechanism so that the entire yarn guide base can move up and down or back and forth.

14. A yarn guide base having a movable yarn nozzle, comprising: a yarn guide base and a plurality of yarn nozzles, the yarn nozzle including a movable yarn nozzle, the position and direction of the movable yarn nozzle being adjusted by a second adjustment mechanism on the yarn guide base, the movable yarn nozzle being controlled by the second adjustment mechanism so that the movable yarn nozzle is displaced from an initial position to a knitting position in at least one direction, and the yarn guide base is provided with at least one movable yarn nozzle.

15. 15. The yarn guide base with a movable yarn nozzle according to claim 14, wherein the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves left and right, up and down, or back and forth on the yarn guide base.

16. 15. The yarn guide base with a movable yarn nozzle according to claim 14, wherein the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves left and right on the yarn guide base, and the movable yarn nozzle is adjusted by the second adjustment mechanism so that the movable yarn nozzle moves up and down and / or back and forth on the yarn guide base.

17. 15. The yarn guide base with a movable yarn nozzle according to claim 14, wherein the movable yarn nozzle is adjusted by a second adjustment mechanism so that the movable yarn nozzle moves up and down or back and forth on the yarn guide base.

18. The yarn guide base with a movable yarn nozzle according to any one of claims 1 to 17, characterized in that the plurality of yarn nozzles are arranged and distributed to form a layered structure.

19. 19. The yarn guide base with a movable yarn nozzle according to claim 18, wherein the movable yarn nozzle is rotatable.

20. 19. The yarn guide base with a movable yarn nozzle according to claim 18, wherein the movable yarn nozzle does not move and is configured as a fixed yarn nozzle.

21. The yarn guide base having a movable yarn nozzle according to any one of claims 14 to 17, characterized in that the movable yarn nozzle is adjusted by a third adjustment mechanism so that the movable yarn nozzle swings back and forth on the yarn guide base.

22. 22. The yarn guide base with a movable yarn nozzle according to claim 21, wherein the movable yarn nozzle is swung back and forth by a third adjustment mechanism in accordance with a swing base point on the yarn guide base or the movable yarn nozzle.

23. 18. The yarn guide base with a movable yarn nozzle according to claim 1, wherein a plurality of independent yarn feeders are arranged in the yarn nozzle, the interval between adjacent yarn feeders is adjustable, the height of each of the independent yarn feeders is adjustable, and the size of each of the independent yarn feeders is adjustable.

24. A patterned structure knitted by a movable yarn nozzle in a yarn guide table having a movable yarn nozzle according to any one of claims 1 to 23, characterized in that the patterned structure includes a plurality of lines, and any angle can be formed between two adjacent lines.

25. 25. The patterned structure of claim 24, wherein the angle comprises a first angle, the first angle being 90 degrees or 180 degrees.

26. 25. The patterned structure according to claim 24, wherein the angle includes a second angle, and the second angle is 0°<second angle<90° or 90°<second angle<180°.

27. 27. The patterned structure according to claim 26, wherein the magnitudes of two adjacent second angles are either the same or different.

28. 25. The patterned structure according to claim 24, wherein the lines are segments formed by loopless knitting with the movable yarn nozzle.

29. 25. The patterned structure according to claim 24, wherein the line has a long axis formed by loop knitting with the movable yarn nozzle.

30. 25. The patterned structure according to claim 24, wherein two adjacent lines are of mismatched colors.

31. 25. The patterned structure according to claim 24, wherein the lines are knitted with a plurality of threads.

32. A woven fabric comprising a base fabric and a patterned design knitted integrally with the base fabric, wherein the patterned design is the patterned design according to any one of claims 24 to 31.

33. A flyknit fabric comprising a flyknit fabric body and a warp structure knitted integrally with the flyknit fabric body, wherein the warp structure is formed by knitting the warp structure by a movable yarn nozzle in a yarn guide base having a movable yarn nozzle according to any one of claims 1 to 23, feeding yarn in the warp direction of the flyknit fabric body, and wherein the movable yarn nozzle does not need to perform a kicking motion for retraction when feeding yarn and knitting.

34. The flyknit fabric according to claim 33, wherein the warp design is one or more of a straight warp design, a curved warp design, and a radial warp design.

35. The flyknit fabric according to claim 33, wherein the warp yarn design is knitted into a surface layer and / or a back layer of the flyknit fabric body.

36. 34. The flyknit fabric of claim 33, wherein the warp yarns are knitted integrally with the flyknit fabric body by an inlay, float, loop, tuck, or needle return knitting technique.

37. 34. The flyknit fabric of claim 33, wherein the warp design includes a plurality of warp stripes, each of the warp stripes being parallel and / or crossing each other.

38. 34. The flyknit fabric of claim 33, wherein the warp weave color does not match the flyknit fabric body color.

39. 34. The flyknit fabric of claim 33, wherein the flyknit fabric body is a single layer, a double layer, or multiple layers.

40. pull-in knitting, which performs a yarn pulling operation to pull the warp yarn into the knitting position; A fabric knitting operation for knitting a flyknit fabric; Pull-out knitting, which performs a yarn pulling operation to pull out the warp yarn from the knitting position; 40. A process for knitting a flyknit fabric according to any one of claims 32 to 39, comprising:

41. 41. The knitting process according to claim 40, further comprising a fixed knitting between the pull-in knitting and the weaving knitting, and a running knitting between the weaving knitting and the pull-out knitting, wherein the fixed knitting is a knitting that performs tuck knitting when knitting a flyknit fabric, and the running knitting is a knitting that performs running knitting when knitting a warp yarn.

42. 41. The knitting process according to claim 40, characterized in that when knitting the fabric, it is necessary to shift the knitting by one stitch for every two adjacent knittings of the fabric.

Citation Information

Patent Citations

  • Yarn feeding mechanism for flat knitting machine

    CN111850793A

  • Yarn distributor for flatbed knitting machine

    JP2008520845A

  • Yarn feeder for flat-knitting machine

    JP2019173247A

  • Apparatus for production of weave-knit material

    US5615562A