CN213172811U - Meteor knitting structure - Google Patents

Meteor knitting structure Download PDF

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Publication number
CN213172811U
CN213172811U CN202021075025.5U CN202021075025U CN213172811U CN 213172811 U CN213172811 U CN 213172811U CN 202021075025 U CN202021075025 U CN 202021075025U CN 213172811 U CN213172811 U CN 213172811U
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Prior art keywords
needle
transfer
knitting
meteor
stitch
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CN202021075025.5U
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Chinese (zh)
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丁慧
王新泉
董瑞兰
乔建成
郭建丽
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INNER MONGOLIA KINGDEER CASHMERE CO Ltd
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INNER MONGOLIA KINGDEER CASHMERE CO Ltd
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Abstract

The utility model discloses a meteor's knitting organizational structure, including at least one weft knitting unit, the weft knitting unit includes: the front needle tissue, the back needle tissue and the transfer plait, the transfer plait includes: the front needle transfer braid and the reverse needle transfer braid are connected in a crossed and staggered mode through coils. The utility model discloses an outward appearance and the radiation point of meteor pattern have the shape pleasing to the eye among the knitting organizational structure, characteristics such as the third dimension is strong.

Description

Meteor knitting structure
Technical Field
The utility model relates to a knitting tissue, specifically say so, relate to a meteor knitting organizational structure.
Background
People often give a nice connotation to meteors, and think that seeing and making a wish against meteors can achieve a nice wish. The light tracks generated by friction combustion of meteors entering the earth atmosphere and the atmosphere are all seen to be emitted from the same point in the sky and go all around, and the point is called a radiating point.
The most common knitting structure is a plain stitch (also called a weft plain stitch) or a single-side stitch, and the existing knitting structure is a plane pattern. How to weave a meteor-shaped pattern on a knitting structure and show a three-dimensional effect is a technical problem to be solved at present.
SUMMERY OF THE UTILITY MODEL
The technical problem solved by the utility model is to provide a meteor knitting structure, the outward appearance and the radiation point of meteor pattern have the characteristics of pleasing to the eye shape, strong third dimension etc. in knitting structure.
The technical scheme is as follows:
meteor knit stitch construction comprising at least one weft unit comprising: the front needle tissue, the back needle tissue and the transfer plait, the transfer plait includes: the front needle transfer braid and the reverse needle transfer braid are connected in a crossed and staggered mode through coils.
Furthermore, the transfer quantity of each needle of the transfer braid is at least one needle.
Furthermore, the number of columns and the number of rows of different weft knitting units are different, and the number of transfer braids is different.
Further, the transfer braid adopts a positive needle pressing reverse needle transfer tissue.
Furthermore, the symmetrical direction of the transfer braid adopts a form that the left side presses the right side or the right side presses the left side, and after the coils are mutually pressed, a radiation point is formed at the central position.
Further, the positive stitch presses the reverse stitch to transversely knit 2 rows, the positive stitch moves 1 row longitudinally, and the reverse stitch moves 1 row in the reverse direction.
The utility model discloses technical effect includes:
the utility model discloses changed the structure of weaving of traditional knitting tissue, the utility model discloses a traditional knitting tissue weaves one time innovation or extension of structure, uses the demand that can stand out individuation and fashion in knitting series products of cashmere, can produce very big breakthrough and innovation efficiency in the knitting tissue of computer style, and the outward appearance and the radiation point of meteor pattern have the shape pleasing to the eye, characteristics such as the third dimension is strong.
Drawings
Fig. 1 is a knitting structure coil diagram of the meteor knitting structure of the present invention.
Detailed Description
The following description sufficiently illustrates specific embodiments of the invention to enable those skilled in the art to practice and reproduce it.
On the basis of conventional weave, certain loops are transferred to form a knitted fabric weave according to pattern requirements, the wales at the transfer position are staggered or interrupted, the appearance presents an eyelet effect, or the loops are mutually transferred and dislocated, the appearance presents a twisted texture effect, various knitting principles or knitting modes such as looping, gathering, transferring, floating thread, needle turning, knocking over and the like of a computerized flat knitting machine are utilized, different functional yarns are used, various pattern composite weave structures with different shapes can be designed in a combined mode, and the method is a main means for innovation, design and extension of the knitted weave structure.
As shown in fig. 1, it is a knitting structure coil diagram of the meteor knitting structure of the present invention.
Meteor knit stitch construction comprising at least one weft unit comprising: the needle transfer plait comprises a front needle tissue a, a reverse needle tissue b and transfer plaits (comprising a front needle transfer plait c and a reverse needle transfer plait d), wherein the front needle transfer plait c and the reverse needle transfer plait d are connected in a cross and staggered mode through a coil.
Different weft knitting units in the meteor knitting structure can have different columns, different rows and different transfer braids, thus forming meteor knitting structures with patterns of different sizes.
The transfer braid adopts a positive needle to press a reverse needle for transfer tissue. The transfer braid direction includes: and pressing the left and right symmetrical directions, and forming a radiation point at the central position after the coils are mutually pressed and attached.
The front needle tissue a, the back needle tissue b, the front needle transfer braid c and the back needle transfer braid d are emitted from the same point according to a meteor structure, and spread in all directions to form a plurality of radiation points, so that a meteor structure is formed.
The transfer quantity of each needle of the transfer braid is at least one needle (one row or one column).
In the preferred embodiment, the used yarn components are loop yarns, the raw materials are 24S/2 loop yarns, 13 wales/25.4 mm, and the roving fabric is woven by a domestic Youhao computerized flat knitting machine A252C type and a 12G vehicle.
14 columns and 13 rows of the two areas A-B, C-D jointly form a basic cyclic unit, wherein four columns of coils at the 1 st ', 2 nd', 3 rd ', 4 th' and B, C th areas of the A, D area are used as basic structural columns to form meteor radiation points; the foundation row is firstly knitted with a reverse needle tissue b, the transfer plaits are changed into a front needle tissue a after being formed, and the transfer plaits are distributed on two sides of the foundation row to jointly form a basic circulation structure of the meteor tissue.
The positive stitch a presses the reverse stitch b to weave 2 rows transversely, the positive stitch a moves 1 column longitudinally, and the reverse stitch b moves 1 column reversely.
During weaving: the areas A-B are taken as an example for illustration, and the weaving principle of the areas C-D is completely the same as that of the areas A-B, and only the dislocation direction and the transfer direction of the table during the weaving action are opposite.
When knitting the 1' th row, the front plate with the needle outlet height of 1 st and 6 th needles 3/4 is knitted into a loop to knit a straight stitch a; the back plate knitting needle return stitch b is knitted after the needle outlet heights 3/4 of the 2 nd, 3 rd, 4 th, 5 th and 7 th needles are out;
when knitting the 2' th row, the front plate with the needle outlet height 3/4 of the 1 st and the 6 th needles is knitted into a loop to knit a straight stitch a; the back plate knitting needle-loop stitch b is knitted after the needle-out height 3/4 of the 2 nd, 3 rd, 4 th, 5 th and 7 th needles. After knitting the 2' th row, alternating a 6 th needle positive needle coil with a 5 th needle reverse needle coil, and forming intersection at the positions of a 6 th needle positive needle knitting needle and a 5 th needle reverse needle knitting needle from the 6 th needle to the 5 th needle;
when knitting the 3' th row, the front plate with the needle outlet height of 1 st and 5 th needles 3/4 is knitted into a loop to knit a straight stitch a; the back plate knitting needle return stitch b is knitted after the needle outlet heights 3/4 of the 2 nd, 3 rd, 4 th, 6 th and 7 th needles are out;
when knitting the 4' th row, the front plate with the needle outlet height of 1 st and 5 th needles 3/4 is knitted into a loop to knit a straight stitch a; the back plate knitting needle-loop stitch b is knitted after the needle-out height 3/4 of the 2 nd, 3 rd, 4 th, 6 th and 7 th needles. And after the 4' th row is knitted, alternating the 5 th needle positive stitch and the 4 th needle negative stitch, and forming intersection at the positions of the 5 th needle positive needle knitting needle to the 4 th needle positive needle knitting needle and at the positions of the 4 th needle negative needle knitting needle to the 5 th needle negative needle knitting needle.
When knitting the 5' th row, the front plate with the needle outlet height of 1 st and 4 th needles 3/4 is knitted into a loop to knit a straight stitch a; the back plate knitting needle-loop stitch b is knitted after the needle-out height 3/4 of the 2 nd, 3 rd, 5 th, 6 th and 7 th needles. And after the 5' th row is knitted, alternating the 1 st needle positive stitch and the 2 nd needle negative stitch, and forming intersection at the positions of the 1 st needle to the 2 nd needle positive stitch knitting needle and the 2 nd needle to the 1 st needle negative stitch knitting needle.
The 1 'to 5' rows of the a-region form meteor radiation points.
When knitting the 6' th row, the front plate with the needle outlet height of 2 nd and 4 th needles 3/4 is knitted into a loop to knit a straight stitch a; the back plate knitting needle-loop stitch b is knitted after the needle-out height 3/4 of the 1 st, 3 rd, 5 th, 6 th and 7 th needles. After the 6' th row is knitted, a 4 th needle positive needle coil and a 3 rd needle reverse needle coil are alternated, and the positions of the 4 th needle positive needle knitting needle and the 3 rd needle reverse needle knitting needle are crossed;
when knitting the 7 th and 8 th rows, the 3 rd needle-out height 3/4 front plate knitting the straight stitch a in a looping way; the back plate knitting needle-loop stitch b is knitted after the needle-out height 3/4 of the 1 st, 2 nd, 4 th, 5 th, 6 th and 7 th needles.
When knitting the 9' th row, the front plate with the needle outlet height 3/4 of the 3 rd and the 7 th needles is knitted into a loop knitting positive stitch a; the back plate knitting needle-loop stitch b is knitted after the needle-out height 3/4 of the 1 st, 2 nd, 4 th, 5 th and 6 th needles. After knitting the 9' th row, alternating a 3 rd needle positive needle coil with a 4 th needle reverse needle coil, and forming intersection at the positions of a 3 rd needle to a 4 th needle positive needle knitting needle and a 4 th needle to a 3 rd needle reverse needle knitting needle;
when knitting the 10' th row, the front plate with the needle outlet height 3/4 of the 4 th and the 7 th needles is knitted into a loop knitting positive stitch a; the back plate of the needle outlet heights 3/4 of the 1 st, 2 nd, 3 th, 5 th and 6 th needles is knitted into a loop knitting purl b;
when knitting the 11' th row, the front plate with the needle outlet height 3/4 of the 4 th and the 7 th needles is knitted into a loop knitting positive stitch a; the back plate knitting needle-loop stitch b is knitted after the needle-out height 3/4 of the 1 st, 2 nd, 3 rd, 5 th and 6 th needles. After the 11' th row is knitted, a 4 th needle positive needle coil and a 5 th needle reverse needle coil are alternated, and the positions of the 4 th needle positive needle knitting needle and the 5 th needle reverse needle knitting needle are crossed;
when knitting the 12' th row, the front plate knitting front stitch a with the 5 th and 7 th needle-out height 3/4; the back plate of the needle outlet heights 3/4 of the 1 st, 2 nd, 3 th, 4 th and 6 th needles is knitted into a loop knitting purl b;
when knitting the 13 th' row, the front plate with the needle outlet height 3/4 of the 5 th and the 7 th needles is knitted into a loop knitting positive stitch a; the back plate knitting needle-loop stitch b is knitted after the needle-out height 3/4 of the 1 st, 2 nd, 3 th, 4 th and 6 th needles. And after the 13' th row is knitted, alternating the 7 th needle positive stitch and the 6 th needle negative stitch, and forming intersection at the positions of the 7 th needle positive stitch to the 6 th needle positive stitch and the 6 th needle negative stitch.
The rows 9 'to 13' of the B region form meteor radiation points.
This forms a transfer braid c which extends all the way through the forward stitch a and floats on the reverse stitch.
Similarly, the weaving method for weaving 8-14 rows and 1 '-13' rows in the C-D area is completely the same as the weaving method for 1-7 rows and 1 '-13' rows in the A-B area, only the cradle dislocation direction and the transfer direction in the weaving action are opposite, the meteor structure and the radiation points are formed, and the complete meteor structure with the scattered radiation points is combined according to the weaving. Therefore, in the preferred embodiment, the pattern is inversely symmetrical with respect to the base column (column 7).
The utility model discloses the motorcycle type is woven in the use, and yarn count and raw materials composition all unrestrained requirement. The utility model discloses organizational structure's line number and needle number are not only limited to the line number and the needle number enumerated in this embodiment, can be according to different shapes and size adjustment.
The terminology used herein is for the purpose of description and illustration, rather than of limitation. As the present invention may be embodied in several forms without departing from the spirit or essential characteristics thereof, it should also be understood that the above-described embodiments are not limited by any of the details of the foregoing description, but rather should be construed broadly within its spirit and scope as defined in the appended claims, and therefore all changes and modifications that fall within the meets and bounds of the claims, or equivalences of such meets and bounds are therefore intended to be embraced by the appended claims.

Claims (6)

1. Meteor knitting structure, characterized in that it comprises at least one weft unit, which comprises: the front needle tissue, the back needle tissue and the transfer plait, the transfer plait includes: the front needle transfer braid and the reverse needle transfer braid are connected in a crossed and staggered mode through coils.
2. The meteor knit structure of claim 1 wherein the number of transfers per needle of the transfer braid is at least one needle.
3. A meteor knit structure according to claim 1 wherein the number of transfer plaits varies from row to row and from column to row for different weft elements.
4. The meteor knit structure of claim 1 wherein the transfer plait utilizes a forward needle and reverse needle transfer stitch.
5. The meteor knit structure of claim 1 wherein the symmetry of the transfer plait is left-to-right or right-to-left, and wherein the loops are pressed against each other to form a radiation point at the center.
6. A meteor knit structure according to claim 1 wherein the positive knit stitch presses the negative knit stitch for 2 rows, the positive knit stitch moves longitudinally 1 column, and the negative knit stitch moves in the opposite direction 1 column.
CN202021075025.5U 2020-06-11 2020-06-11 Meteor knitting structure Active CN213172811U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021075025.5U CN213172811U (en) 2020-06-11 2020-06-11 Meteor knitting structure

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Application Number Priority Date Filing Date Title
CN202021075025.5U CN213172811U (en) 2020-06-11 2020-06-11 Meteor knitting structure

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CN213172811U true CN213172811U (en) 2021-05-11

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113789602A (en) * 2021-08-05 2021-12-14 斓帛职业培训学校(桐乡)有限公司 Novel full-forming knitted garment hole structure and weaving method thereof
CN113832594A (en) * 2021-08-07 2021-12-24 斓帛职业培训学校(桐乡)有限公司 Knitted garment mesh structure and knitting method thereof

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113789602A (en) * 2021-08-05 2021-12-14 斓帛职业培训学校(桐乡)有限公司 Novel full-forming knitted garment hole structure and weaving method thereof
CN113832594A (en) * 2021-08-07 2021-12-24 斓帛职业培训学校(桐乡)有限公司 Knitted garment mesh structure and knitting method thereof
CN113832594B (en) * 2021-08-07 2023-01-31 嘉兴市蒂维时装有限公司 Knitted garment mesh structure and knitting method thereof

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