Scallop hollowed-out knitted fabric tissue structure
By weaving a scallop hollow-shaped knitted fabric structure, the problem that existing knitted fabrics are difficult to show the scallop shape is solved, and a knitted fabric effect with clear texture, strong three-dimensional sense and distinct layers is achieved, which enhances the uniqueness of the product and the variety of patterns and colors.
Patent Information
- Application Number
- CN202422842047.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-11-20
AI Technical Summary
Existing knitted fabrics are difficult to show the shape and pattern of scallops, and lack the structural characteristics of clear texture, strong three-dimensional sense and distinct layers.
The scallop hollow knitted fabric structure is adopted. Through basic circulation units such as positive needle loops, transfer loops, double drop loops, etc., combined with the weaving method of radial ribs and small comb teeth, a three-dimensional structure with a scallop texture is formed.
The knitted fabric structure with clear texture, realistic shape, strong three-dimensional sense and distinct layers is achieved, which increases the uniqueness and variety of products.
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Figure CN223468513U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of knitted fabric, concretely relates to a scallop hollow form knitted fabric organization structure. BACKGROUND
[0002] Scallops belong to a kind of common shellfish, and scallop meat can be eaten, the shell form is beautiful, color is bright, and has radial pattern, and is often used to make art and souvenirs.
[0003] The development of knitted fabric organization structure needs to find inspiration from various things in life, how to show scallop form and pattern on knitted fabric is a technical problem to be solved at present. INVENTION CONTENTS
[0004] The utility model aims at providing a scallop hollow form knitted fabric organization structure, with the structural characteristics of clear texture, strong three-dimensional feeling and distinct levels.
[0005] Technical scheme as follows:
[0006] The scallop hollow form knitted fabric organization structure includes multiple basic circulation units, and the basic circulation unit includes: straight needle loop, transfer hole loop and double drop loop;The basic circulation unit takes the straight stitch of the straight needle loop as the base, and the basic circulation unit is provided with a center base column, a frame braid and a small comb tooth, the frame braid is diamond-shaped, the center base column penetrates the opposite corners of the frame braid, and the small comb tooth is located inside the frame braid, and multiple small comb teeth are arranged on both sides of the center base column and extend outward;The straight needle loop in the middle of the basic circulation unit is taken as the center base column, and the straight needle loop forms the transfer hole loop after transfer, one transfer hole loop is connected with the oblique straight needle loop to form the double drop loop, and multiple double drop loops form the frame braid and the small comb tooth respectively;Multiple small comb teeth are parallel to each other, and the number of double drop loops decreases from bottom to top.
[0007] Further, multiple parallel radial ribs are arranged between the small comb tooth and the frame braid;Two transfer hole loops are connected with the oblique straight needle loop to form a composite drop loop, and the connection positions of the two radial ribs and the center base column and the connection positions of the radial rib and the small comb tooth are the composite drop loop.
[0008] Further, the transfer hole loop is shifted once per knitting row.
[0009] Further, the basic circulation unit includes 27 columns and 27 rows of loops.
[0010] Compared with the prior art, the utility model has the following advantages:
[0011] By observing and summarizing the scallop morphology and shell texture, a kind of knitting fabric structure with scallop openwork texture morphology is developed, and the knitting fabric structure has the characteristics of clear texture, realistic morphology, strong three-dimensionality and distinct hierarchy.
[0012] The scallop openwork morphology knitting fabric structure is applied to the design of knitted products, so that the product variety is increased and the product uniqueness is improved. DRAWINGS
[0013] Figure 1 It is the loop structure diagram of the scallop openwork morphology knitting fabric structure in the utility model. CONCRETE IMPLEMENTATION
[0014] The following description fully shows the concrete implementation of the utility model, so that those skilled in the art can practice and reproduce.
[0015] As Figure 1 shown, it is the loop structure diagram of the scallop openwork morphology knitting fabric structure in the utility model.
[0016] The scallop openwork morphology knitting fabric structure comprises a plurality of basic cycle units, and the basic cycle unit comprises: a straight needle loop a, a loop transfer hole loop b and a double drop cover loop c; the basic cycle unit takes the straight needle stitch knitted by the straight needle loop a as a base, the basic cycle unit is provided with a center base column X, a frame braid Y and a small comb tooth W, the shape of the frame braid Y is a rhombus, the center base column X penetrates the opposite angles of the frame braid Y, the plurality of small comb teeth W are arranged on both sides of the center base column and extend to both sides, and the small comb tooth W is located inside the frame braid Y; the straight needle loop a in the middle of the basic cycle unit is taken as the center base column X, the straight needle loop a forms the loop transfer hole loop b after loop transfer, one loop transfer hole loop b is knitted and connected with the oblique straight needle loop a to form the double drop cover loop c, and the plurality of double drop cover loops c respectively form the frame braid Y and the small comb tooth W.
[0017] The plurality of small comb teeth W are parallel to each other, and the number of the double drop cover loops c decreases in turn from bottom to top; a plurality of parallel radial ribs Z are arranged between the small comb tooth W and the frame braid Y; two loop transfer hole loops b are knitted and connected with the oblique straight needle loop a to form a composite drop cover loop d, the connection positions of the two radial ribs Z and the center base column X and the connection positions of the radial rib Z and the small comb tooth W are the composite drop cover loop d.
[0018] The shape of the frame constitutes the outer edge of the shell pattern, the shape of the radial rib Z constitutes the long pattern of the shell pattern, and the shape of the small comb tooth W constitutes the short pattern of the shell pattern.
[0019] The shift of the hole-poking loop b is once per row. The basic loop unit in the shell hollow structure can be different in the number of columns, rows, long and short patterns, arrangement and distribution, etc. Thus, different shell hollow structures can be knitted with different shapes and appearances.
[0020] In the preferred embodiment, the yarn material is composed of pure cashmere yarn, and the yarn is woven into a coarse fabric by a Japanese Island Precision SES122-S model computerized flat knitting machine with 12 needles per inch, and 26S / 2 (38.5Tex*2) yarns.
[0021] In the embodiment, the smallest basic loop unit is formed by 27 columns and 27 rows to form a rhombus with equal sides and parallel sides. The smallest basic loop unit is composed of three areas A, B and C, wherein the B area is a center base column X composed of 1 needle straight loop a.
[0022] Knitting of the area A: the front needle bed is raised to 3 / 4 height to knit single-jersey weft plain knitting straight loop a, which forms a straight stitch, and on this basis, a shell pattern is formed.
[0023] Knitting of the frame braid Y: after the 13th needle knits the straight loop a, the front needle bed is raised to 4 / 4 height to form a tuck, and the corresponding back needle bed on the same needle is raised to 1 / 4 height to receive the hole-poking loop b on the front needle bed; the back needle bed is moved to the left by 1 needle position, and at the same time, the back needle bed is raised to 4 / 4 height to form a tuck, and the corresponding front needle bed on the adjacent 12th needle is raised to 1 / 4 height to receive the hole-poking loop b on the back needle bed. The loop is moved by 1 needle position to form a double-deck loop c on the 12th needle, and the loop on the 13th needle is moved, and when it is knitted again, an empty loop e in a hollow mesh shape is formed. According to the knitting principle, the loop on the 12th needle is moved to the 11th needle, the loop on the 11th needle is moved to the 10th needle, and so on until the loop on the 2nd needle is moved to the 1st needle to form the frame braid Y. Continue to fold back to knit, and the knitting principle is the same as described above, only the direction of the bed shake when the back needle bed is moved is opposite.
[0024] Knitting of the radial rib Z: between the outer frame edge and the shell structure, three groups of radial ribs are used as fulcrums, and each group of radial ribs is knitted 2 needles apart, a total of 3 groups. The radial rib Z structure has the feature that the loops on both sides are moved to the center base column B area by 1 needle position each time, and 2 hole-poking loops b are used to form the fulcrum of the radial rib Z, and when moved to the end position, a composite deck loop d is formed.
[0025] The weaving of the small comb teeth W is in a dot matrix radial arrangement, and the weaving principle is the same as that of the border braid Y, and gradually performs loop hole picking from more to less, 8 needles are transferred for the first comb tooth weaving, 7 needles are transferred for the second comb tooth weaving, and so on, and gradually decreases, and finally becomes 1 needle transfer. The longitudinal row transfer organization is shifted once every 2 rows of weaving, after the loops in the region are shifted, the planar structure is changed, and a clear texture fan-like structure is formed.
[0026] Similarly, the weaving principle of the C region on the right side of the base column formed by the center B region is completely the same as that of the A region, and only the direction of the wrong plate shaking bed is opposite to that of the A region in the process of transferring the loops by turning the needles. Thus, the 27 columns and 27' rows of the A, B and C regions form a complete basic cycle unit.
[0027] The scallop hollow structure formed by the circular weaving of the structure changes the characteristics of the traditional single-face weft flat knitting original structure, innovates and develops the weft flat knitting structure on the basis of the original structure, and further exhibits the appearance of the weft flat knitting structure in three dimensions.
[0028] The weaving vehicle used in the utility model has no limitation requirements on the number of yarns and raw material components. It is suitable for various vehicle models, such as 3G, 5G, 7G, 12G, 14G, 16G and 18G vehicle models.
[0029] The number of rows and the number of needles of the structure of the utility model are not limited to the number of rows and the number of needles listed in the embodiment, and can be changed according to different scallop hollow shapes or arrangement modes.
[0030] The terms used in the utility model are illustrative and non-limiting terms. Since the utility model can be embodied in various forms without departing from the spirit or essence of the technical scheme, it should be understood that the above-mentioned embodiments are not limited to any of the above-mentioned details, but should be widely interpreted in the spirit and scope defined by the appended claims, and therefore all changes and modifications falling within the scope of the claims or their equivalents should be covered by the appended claims.
Claims
1. A scallop openwork form of a knitted fabric texture structure, characterized by, The basic loop unit comprises a positive needle loop, a transfer loop hole loop, and a double loop. The basic loop unit is based on a positive needle loop, and the basic loop unit is provided with a center base column, a frame braid, and a small comb tooth. The frame braid is in the shape of a rhombus, the center base column penetrates the opposite corners of the frame braid, and the small comb tooth is located inside the frame braid and arranged on both sides of the center base column and extends outward. The positive needle loop in the middle of the basic loop unit is taken as the center base column, and the positive needle loop is transferred to form a transfer loop hole loop. One transfer loop hole loop is connected with an oblique positive needle loop to form a double loop, and a plurality of double loops form the frame braid and the small comb tooth. The small comb teeth are parallel to each other, and the number of double loops decreases from bottom to top.
2. The scallop openwork knitted fabric stitch structure according to claim 1, characterized in that, A plurality of parallel radial ribs are arranged between the small comb teeth and the frame braid. Two transfer loop hole loops are connected with oblique positive needle loops to form a composite loop, and the connection positions of the two radial ribs and the center base column and the connection positions of the radial ribs and the small comb tooth are the composite loop.
3. The scallop openwork knitted fabric stitch structure according to claim 1, characterized in that, The transfer loop hole loop is shifted once per knitting row.
4. The scallop openwork knitted fabric stitch structure according to claim 1, characterized in that, The basic loop unit comprises 27 columns and 27 rows of loops.