CN108018649B - Knitting method of rope embroidery fabric - Google Patents

Knitting method of rope embroidery fabric Download PDF

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Publication number
CN108018649B
CN108018649B CN201810096243.8A CN201810096243A CN108018649B CN 108018649 B CN108018649 B CN 108018649B CN 201810096243 A CN201810096243 A CN 201810096243A CN 108018649 B CN108018649 B CN 108018649B
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China
Prior art keywords
guide bar
needle
looping
weft insertion
machine
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CN108018649A (en
Inventor
王占洪
丁伟
赵加洋
赵红霞
陈佩佩
李宁
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Priority to PCT/CN2019/070231 priority patent/WO2019149025A1/en
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    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B21/00Warp knitting processes for the production of fabrics or articles not dependent on the use of particular machines; Fabrics or articles defined by such processes
    • D04B21/06Patterned fabrics or articles
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B23/00Flat warp knitting machines
    • D04B23/12Flat warp knitting machines with provision for incorporating unlooped wefts extending from selvedge to selvedge
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B23/00Flat warp knitting machines
    • D04B23/16Flat warp knitting machines specially adapted for producing fabrics, or article blanks, of particular form or configuration
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B27/00Details of, or auxiliary devices incorporated in, warp knitting machines, restricted to machines of this kind
    • D04B27/06Needle bars; Sinker bars
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B27/00Details of, or auxiliary devices incorporated in, warp knitting machines, restricted to machines of this kind
    • D04B27/10Devices for supplying, feeding, or guiding threads to needles
    • D04B27/24Thread guide bar assemblies
    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B27/00Details of, or auxiliary devices incorporated in, warp knitting machines, restricted to machines of this kind
    • D04B27/10Devices for supplying, feeding, or guiding threads to needles
    • D04B27/24Thread guide bar assemblies
    • D04B27/32Thread guide bar assemblies with independently-movable thread guides controlled by Jacquard mechanisms

Abstract

The utility model discloses a knitting method of rope embroidery fabric, which is knitted on a Raschel warp knitting machine and comprises the following steps: a guide bar arrangement: in the guide bar device of the Raschel warp knitting machine, a first loop forming guide bar, a second weft insertion guide bar and a third loop forming guide bar are sequentially arranged from the machine front to the machine back; weaving by an upper machine: the third looping guide bar is used for weaving the bottom net; the second weft insertion guide bar is used as a needle back for traversing, yarns in the second weft insertion guide bar do not enter a groove needle in the whole knitting process and do not participate in yarn-laying movement, and a three-dimensional pattern layer is formed on the surface of the bottom net knitted by the third looping guide bar; the first looping guide bar is used as a looping tissue formed by needle back yarn and needle front yarn to bind the three-dimensional pattern layer on the surface of the bottom net, so that the rope embroidery fabric is formed by one-time braiding. The utility model can weave the rope embroidery fabric on any Raschel warp knitting machine with any machine number at one time, and has high production efficiency, good stability of the fabric, more patterns and stronger third dimension.

Description

Knitting method of rope embroidery fabric
Technical Field
The utility model relates to a rope embroidery fabric, in particular to a knitting method of the rope embroidery fabric, and belongs to the technical field of textile fabric preparation.
Background
The existing knitting method of the rope embroidery fabric generally uses a warp knitting machine to knit a bottom net, and then uses an embroidery machine to perform rope embroidery on the bottom net, so that the rope embroidery fabric is formed. However, this braiding method has the following disadvantages in the actual braiding process:
(1) Because two machines, namely a warp knitting machine and an embroidery machine, are adopted for knitting in a stepwise manner, the production efficiency of the rope embroidery fabric is greatly reduced;
(2) Because an embroidery machine is adopted, for example, a rope embroidery computerized embroidery machine disclosed in Chinese patent application ZL201020166366.3 comprises a frame, rope embroidery machine heads are arranged on the frame at intervals, each rope embroidery machine head comprises a shell and a needle bar arranged in the shell, a mounting sleeve capable of rotating by 360 degrees is arranged on the periphery below the needle bar, two pairs of charging frames are arranged on the periphery of the mounting sleeve, a mounting bracket is arranged below the charging frames, a rope pipe fixing frame is arranged below the mounting bracket, and a rope pipe is threaded on the rope pipe fixing frame; the embroidery machine has a complex structure and high manufacturing cost, so that the production cost of the rope embroidery fabric is greatly increased;
(3) Because the warp knitting machine is used for knitting the bottom net firstly, and then the embroidery machine is used for rope embroidery on the bottom net, the stability of the cloth cover is poor.
Disclosure of Invention
The utility model aims to solve the technical problem of providing the knitting method of the rope embroidery fabric, which not only can greatly improve the production efficiency, reduce the production cost and ensure that the stability of the cloth cover is better, but also has stronger three-dimensional effect of patterns and richer patterns, and can better meet the development trend of diversified patterns.
In order to solve the technical problems, the utility model adopts the knitting method of the rope embroidery fabric, the rope embroidery fabric is knitted on a Raschel warp knitting machine, the Raschel warp knitting machine comprises a loop forming device and a guide bar device, the loop forming device comprises a groove needle, a needle core and a sinker loop forming machine part, the guide bar device comprises a plurality of guide bars, and the steps are as follows:
(1) A guide bar arrangement: in the guide bar device of the Raschel warp knitting machine, a first loop forming guide bar, a second weft insertion guide bar and a third loop forming guide bar are sequentially arranged from the machine front to the machine back;
(2) Weaving by an upper machine: the third looping guide bar is used for weaving the bottom net; the second weft insertion guide bar is used as a needle back for traversing, yarns in the second weft insertion guide bar do not enter a groove needle in the whole knitting process and do not participate in yarn-laying movement, and a three-dimensional pattern layer is formed on the surface of the bottom net knitted by the third looping guide bar; the first looping guide bar is used as a looping tissue formed by needle back yarn and needle front yarn to bind the three-dimensional pattern layer on the surface of the bottom net, so that the rope embroidery fabric is formed by one-time braiding.
In a preferred embodiment of the present utility model, a fourth weft insertion guide bar is further disposed behind the third looping guide bar, and the fourth weft insertion guide bar is used as a needle backing yarn for forming a shadow pattern layer on the back surface of the bottom net knitted by the third looping guide bar, and a bottom net loop structure formed by the third looping guide bar as both the needle backing yarn and the needle front backing yarn binds the shadow pattern layer on the back surface of the bottom net.
As a preferred embodiment of the present utility model, in the upper weaving step, when the grooved needle moves to the front needle limit position, the first and third looping bars perform the front needle shogging, and the second weft insertion bar remains in place without performing the front needle shogging; the groove needle continues looping movement, and when the groove needle and the needle core start to be closed, the first looping guide bar, the second weft insertion guide bar, the third looping guide bar and the fourth weft insertion guide bar carry out needle back shogging.
As another preferred embodiment of the present utility model, in the upper weaving step, when the grooved needle moves to the front needle limit position, the first and third looping bars perform the front needle shogging, and the second weft insertion bar moves upward by the driving action of the transmission mechanism without performing the front needle shogging; the groove needle continues to perform looping movement, when the groove needle and the needle core start to be closed, the first looping guide bar, the third looping guide bar and the fourth weft insertion guide bar perform needle back sideslip, and the second weft insertion guide bar performs needle back sideslip and simultaneously drives the downward movement through the transmission mechanism.
In the utility model, the transmission mechanism preferably comprises a swing arm and a guide bar shaft, the second weft insertion guide bar is fixedly arranged at the lower end of the swing arm, the upper end of the swing arm is fixedly arranged on the guide bar shaft, and the guide bar shaft is rotatably arranged on a frame of the raschel knitting machine.
As a preferred embodiment of the present utility model, the first looping bar is at least one gathered pattern bar, the second lining bar is at least one gathered pattern bar, and the third looping bar is one ground bar, two ground bars, or a split jacquard bar, or is composed of one gathered pattern bar and one ground bar.
As a preferred embodiment of the utility model, the fourth weft insertion guide bar consists of at least one gathered pattern guide bar, a separate jacquard guide bar and a spandex guide bar.
In the present utility model, the first looper bar is preferably two gathered flower bars and the second inlay bar is preferably two gathered flower bars.
As a preferred embodiment of the present utility model, the fourth weft insertion guide bar is preferably composed of four gathered flower guide bars, a separate jacquard guide bar and spandex guide bar.
After the weaving method is adopted, the utility model has the following beneficial effects:
the knitting method can knit the rope embroidering fabric on the Raschel warp knitting machine at one time, does not need to knit the bottom net by the Raschel warp knitting machine and uses the embroidery machine to embroider the rope, thereby greatly improving the production efficiency, reducing the production cost and having better stability of the cloth cover.
According to the knitting method, the yarns in the second weft insertion guide bar are always arranged at the needle backs of the groove needles and do not enter the groove needles, and the yarns in the first looping guide bar are bound on the surface of the bottom net, so that the thickness of yarn raw materials in the second weft insertion guide bar is not limited, thick raw material strands can be adopted for knitting, and the three-dimensional effect of patterns is stronger.
The knitting method breaks the traditional mode of the arrangement of the guide bars in the existing warp knitting machine, provides a new arrangement mode, namely, all the guide bars are divided into four parts, the guide bars are arranged at intervals to form loop guide bars and weft insertion guide bars, and the number of the guide bars of each part can be configured according to actual needs, so that the more complex pattern process requirements can be met, the patterns of the knitted rope embroidery fabric are more abundant, and the development trend of pattern diversification can be better met.
The knitting method of the utility model is not limited to the thickness of the yarns in the second weft insertion guide bar, and patterns with strong three-dimensional effect can be knitted on any Raschel warp knitting machine with any machine number.
The second weft insertion guide bar moves up and down through the driving action of the transmission mechanism, so that the needle back traversing and the whole knitting process are more reliable.
Drawings
The following describes the embodiments of the present utility model in further detail with reference to the drawings.
FIG. 1 is a schematic view of a bar arrangement in a method of knitting a rope embroidery fabric according to the utility model.
Fig. 2 is a schematic structural view of the first embodiment of the knitting method of the rope embroidery fabric according to the present utility model when the grooved needle moves to the limit position before the needle.
Fig. 3 is a schematic structural view of the first embodiment of the knitting method of the rope embroidery fabric according to the present utility model, when the grooved needle is moved to a position where it is closed with the needle core.
Fig. 4 is a schematic structural view of the second embodiment of the knitting method of the rope embroidery fabric according to the present utility model when the grooved needle moves to the limit position before the needle.
Fig. 5 is a schematic structural view of a second embodiment of a method for knitting a rope embroidery fabric according to the present utility model, wherein the grooved needle is moved to a position where it is closed with the needle core.
Fig. 6 is a schematic diagram of a second structure of the transmission mechanism in the present utility model.
Detailed Description
Referring to fig. 1 to 6, a knitting method of a rope embroidering fabric which can be knitted on a raschel knitting machine of any machine number, the raschel knitting machine comprising a knitting device and a bar device, the knitting device comprising a groove needle 1 mounted on a groove needle bed, a needle core 2 mounted on a needle core bed, a sinker 3 mounted on a sinker bed, and loop forming members such as a loop releasing needle block mounted on a loop releasing needle bed, the bar device comprising a plurality of bars, the steps of: (1) bar configuration: in the guide bar device of the Raschel warp knitting machine, a first looping guide bar A, a second weft insertion guide bar B and a third looping guide bar C are sequentially arranged from the machine front to the machine back; (2) weaving on a machine: the third looping guide bar C is used for weaving the bottom net; the second weft insertion guide bar B is used for needle back sideslip, yarns in the second weft insertion guide bar B do not enter the groove needle 1 and do not participate in yarn padding movement in the whole knitting process, a three-dimensional pattern layer is formed on the surface of a bottom net knitted by the third looping guide bar C, the second weft insertion guide bar B preferably adopts roving, and strong three-dimensional pattern lines can be formed on the surface of the bottom net; the first looping guide bar A is used as a loop forming tissue formed by needle back yarn and needle front yarn to bind the three-dimensional pattern layer on the surface of the bottom net, so that the rope embroidery fabric is formed by one-time braiding.
As a preferred embodiment of the present utility model, as shown in fig. 2, 3, 4 and 5, in the guide bar arrangement, a fourth weft insertion guide bar D is further arranged behind the third looping guide bar C, the fourth weft insertion guide bar D is used as a needle backing yarn for forming a shadow pattern layer on the back surface of the bottom net knitted by the third looping guide bar C, and the third looping guide bar C is used as both a needle backing yarn and a bottom net loop structure formed by a needle front backing yarn for binding the shadow pattern layer on the back surface of the bottom net.
As a preferred embodiment of the present utility model, in the upper weaving step, when the slot needle 1 moves to the pre-needle limit position, as shown in fig. 2, the first and third looping bars a and C perform the pre-needle shogging, and the second weft insertion bar B remains in its original position and does not perform the pre-needle shogging; the groove needle 1 continues to perform looping movement, when the groove needle 1 and the needle core 2 start to be closed, as shown in fig. 3, the first looping guide bar a, the second weft insertion guide bar B, the third looping guide bar C and the fourth weft insertion guide bar D perform needle back traversing, yarns on the second weft insertion guide bar B cannot scratch other guide bars in the needle back traversing process of all guide bars, and the yarns can be swung behind the first looping guide bar a, so that the yarns can be bound by the yarns on the first looping guide bar a.
As another preferred embodiment of the present utility model, in the upper weaving step, when the slot needle 1 moves to the pre-needle limit position, as shown in fig. 4, the first and third looping bars a and C perform the pre-needle shog, and the second weft insertion bar B moves upward by the driving action of the transmission mechanism without performing the pre-needle shog; the grooved needle 1 continues to perform looping movement, and when the grooved needle 1 and the needle core 2 start to be closed, as shown in fig. 5, the first looping guide bar a, the third looping guide bar C and the fourth weft insertion guide bar D perform needle back shogging, and the second weft insertion guide bar B performs needle back shogging and simultaneously performs downward movement through the driving action of the transmission mechanism. In the shogging process of the needle backs of all the guide bars, the yarns on the second weft insertion guide bar B cannot scratch other guide bars, and the yarns can be swung behind the first looping guide bar A, so that the yarns can be well bound by the yarns on the first looping guide bar A, and the needle back shogging and the whole braiding process of each guide bar are more reliable.
In the present utility model, as shown in fig. 4 and 5, the transmission mechanism preferably includes a swing arm 4 and a guide bar shaft 5, the second weft insertion guide bar B is fixedly installed at the lower end of the swing arm 4, the upper end of the swing arm 4 is fixedly installed on the guide bar shaft 5, the guide bar shaft 5 is rotatably installed on the frame of the raschel knitting machine through a bearing, the guide bar shaft 5 can be driven to swing by a motor or other looping machine, and the second weft insertion guide bar B is driven to move up and down by driving the guide bar shaft 5 to swing.
In the utility model, the transmission mechanism can also adopt other structures, such as a first swing link 6, a second swing link 7, a swing link rotating shaft 8, a guide bar swing arm 9 and a guide bar shaft 5; the second weft insertion guide bar B is fixedly arranged at the lower end of the first swing connecting rod 6, one end of the second swing connecting rod 7 is connected with the swing connecting rod rotating shaft 8 through a bearing, the other end of the second swing connecting rod is connected with the rod body of the first swing connecting rod 6 through a bearing, the upper end of the first swing connecting rod 6 is connected with one end of the guide bar swinging arm 9 through a bearing, the other end of the guide bar swinging arm 9 is fixed on the guide bar shaft 5, the guide bar shaft 5 is rotatably arranged on the frame of the Raschel warp knitting machine through a bearing, and the second weft insertion guide bar B is driven to do up-down motion through driving the guide bar shaft 5, as shown in fig. 6.
As a preferred embodiment of the present utility model, as shown in fig. 1 to 5, the first loop forming guide bar a is at least one gathered pattern guide bar a, the second weft insertion guide bar B is at least one gathered pattern guide bar a, and the third loop forming guide bar C is one ground guide bar B, two ground guide bars B, or a split jacquard guide bar, or is composed of one gathered pattern guide bar a and one ground guide bar B. The fourth weft insertion guide bar D consists of at least one gathered flower guide bar a, a separated jacquard guide bar e and a spandex guide bar D. According to the utility model, a separated jacquard guide bar e is used in the fourth weft insertion guide bar D, and lateral offset is generated through jacquard needle displacement control to form offset change tissues, so that a more transparent pattern is formed.
In the present utility model, as shown in fig. 1 to 5, the first looping bar a is preferably two gathered flower bars a, the second weft insertion bar B is preferably two gathered flower bars a, the third looping bar C is preferably composed of one gathered flower bar a and one ground bar B, and the fourth weft insertion bar D is preferably composed of four gathered flower bars a, one split jacquard bar e and spandex bar D.
After trial, the method provided by the utility model can be adopted to weave the rope embroidery fabric on any Raschel warp knitting machine, the woven rope embroidery fabric is richer in patterns and stronger in third dimension, and the development requirement of pattern diversification is better met.

Claims (6)

1. The knitting method of the rope embroidery fabric is characterized in that the rope embroidery fabric is knitted on a Raschel warp knitting machine, the Raschel warp knitting machine comprises a loop forming device and a guide bar device, the loop forming device comprises a groove needle (1), a needle core (2) and a sinker (3) loop forming machine part, the guide bar device comprises a plurality of guide bars, and the steps are as follows:
(1) A guide bar arrangement: in the guide bar device of the Raschel warp knitting machine, a first looping guide bar (A), a second weft insertion guide bar (B) and a third looping guide bar (C) are sequentially arranged from the machine forward to the machine backward, wherein the first looping guide bar (A) is at least one gathered flower guide bar, the second weft insertion guide bar (B) is at least one gathered flower guide bar, and the third looping guide bar (C) is one ground guide bar or two ground guide bars or one separated jacquard guide bar or consists of one gathered flower guide bar and one ground guide bar;
(2) Weaving by an upper machine: the third looping guide bar (C) is used for weaving the bottom net; the second weft insertion guide bar (B) is used for needle back sideslip, yarns in the second weft insertion guide bar (B) do not enter a slot needle (1) in the whole knitting process and do not participate in yarn-laying movement, and a three-dimensional pattern layer is formed on the surface of the bottom net knitted by the third looping guide bar (C); the first looping guide bar (A) is used as a loop forming tissue formed by needle back yarn and needle front yarn to bind the three-dimensional pattern layer on the surface of the bottom net, so that the rope embroidery fabric is formed by one-time braiding;
in the guide bar configuration, a fourth weft insertion guide bar (D) is further arranged behind the third looping guide bar (C), the fourth weft insertion guide bar (D) is used as a needle backing yarn and is used for forming a shadow pattern layer on the back surface of a bottom net woven by the third looping guide bar (C), and the third looping guide bar (C) is used as the needle backing yarn and a bottom net looping tissue formed by the needle front backing yarn to bind the shadow pattern layer on the back surface of the bottom net;
in the upper weaving step, when the groove needle (1) moves to a limit position before the needle, the first looping guide bar (A) and the third looping guide bar (C) carry out needle front shogging, and the second weft insertion guide bar (B) keeps the original position and does not carry out needle front shogging; the groove needle (1) continues looping movement, and when the groove needle (1) and the needle core (2) start to be closed, the first looping guide bar (A), the second weft insertion guide bar (B), the third looping guide bar (C) and the fourth weft insertion guide bar (D) carry out needle back transverse movement.
2. The knitting method of the rope embroidery fabric is characterized in that the rope embroidery fabric is knitted on a Raschel warp knitting machine, the Raschel warp knitting machine comprises a loop forming device and a guide bar device, the loop forming device comprises a groove needle (1), a needle core (2) and a sinker (3) loop forming machine part, the guide bar device comprises a plurality of guide bars, and the steps are as follows:
(1) A guide bar arrangement: in the guide bar device of the Raschel warp knitting machine, a first looping guide bar (A), a second weft insertion guide bar (B) and a third looping guide bar (C) are sequentially arranged from the machine forward to the machine backward, wherein the first looping guide bar (A) is at least one gathered flower guide bar, the second weft insertion guide bar (B) is at least one gathered flower guide bar, and the third looping guide bar (C) is one ground guide bar or two ground guide bars or one separated jacquard guide bar or consists of one gathered flower guide bar and one ground guide bar;
(2) Weaving by an upper machine: the third looping guide bar (C) is used for weaving the bottom net; the second weft insertion guide bar (B) is used for needle back sideslip, yarns in the second weft insertion guide bar (B) do not enter a slot needle (1) in the whole knitting process and do not participate in yarn-laying movement, and a three-dimensional pattern layer is formed on the surface of the bottom net knitted by the third looping guide bar (C); the first looping guide bar (A) is used as a loop forming tissue formed by needle back yarn and needle front yarn to bind the three-dimensional pattern layer on the surface of the bottom net, so that the rope embroidery fabric is formed by one-time braiding;
in the guide bar configuration, a fourth weft insertion guide bar (D) is further arranged behind the third looping guide bar (C), the fourth weft insertion guide bar (D) is used as a needle backing yarn and is used for forming a shadow pattern layer on the back surface of a bottom net woven by the third looping guide bar (C), and the third looping guide bar (C) is used as the needle backing yarn and a bottom net looping tissue formed by the needle front backing yarn to bind the shadow pattern layer on the back surface of the bottom net;
in the upper weaving step, when the groove needle (1) moves to a front needle limit position, the first looping guide bar (A) and the third looping guide bar (C) carry out front needle shogging, and the second weft insertion guide bar (B) is driven by a transmission mechanism to move upwards without carrying out front needle shogging; the groove needle (1) continues to perform looping movement, when the groove needle (1) and the needle core (2) start to be closed, the first looping guide bar (A), the third looping guide bar (C) and the fourth weft insertion guide bar (D) perform needle back traversing, and the second weft insertion guide bar (B) performs needle back traversing and simultaneously performs downward movement through the driving action of the transmission mechanism.
3. The method of knitting a rope embroidery fabric according to claim 2, characterized in that: the transmission mechanism comprises a swing arm (4) and a guide bar shaft (5), the second weft insertion guide bar (B) is fixedly arranged at the lower end of the swing arm (4), the upper end of the swing arm (4) is fixedly arranged on the guide bar shaft (5), and the guide bar shaft (5) is rotatably arranged on a frame of the Raschel warp knitting machine.
4. The method of knitting a rope embroidery fabric according to claim 1 or 2, characterized in that: the fourth weft insertion guide bar (D) is composed of at least one integrated flower guide bar, a separated jacquard guide bar and a spandex guide bar.
5. The method of knitting a rope embroidery fabric according to claim 1 or 2, characterized in that: the first looping guide bar (A) is two gathered flower guide bars, and the second lining guide bar (B) is two gathered flower guide bars.
6. The method of knitting a rope embroidery fabric according to claim 4, wherein: the fourth weft insertion guide bar (D) consists of four gathered flower guide bars, a separated jacquard guide bar and a spandex guide bar.
CN201810096243.8A 2018-01-31 2018-01-31 Knitting method of rope embroidery fabric Active CN108018649B (en)

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CN201810096243.8A CN108018649B (en) 2018-01-31 2018-01-31 Knitting method of rope embroidery fabric
PCT/CN2019/070231 WO2019149025A1 (en) 2018-01-31 2019-01-03 Weaving method for rope-embroidered fabric

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CN108018649B (en) * 2018-01-31 2023-06-09 王占洪 Knitting method of rope embroidery fabric
CN108866793A (en) * 2018-08-01 2018-11-23 武汉纺织大学 It is a kind of to comb double jacquard warps and its pattern fabric weaving method more
CN110592797A (en) * 2019-09-19 2019-12-20 福建信亿机械科技有限公司 Double needle bar warp knitting machine

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EP3101164A1 (en) * 2015-06-03 2016-12-07 Karl Mayer Textilmaschinenfabrik GmbH Warp knitting machine and warp knit fabric
CN204982273U (en) * 2015-07-28 2016-01-20 常州市第八纺织机械有限公司 Take two merchant's card tricot machines of schlagblech

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