The present invention relates to the field of textiles, and in particular to a fabrication process for manufacturing a knitting piece.
All traditional fabric weaving processes (comprising knitting, wool weaving or plain weaving) are limited to warp and weft weaving methods, which resulting in less pattern changes of the fabrics and simple structures of woven products. Therefore, requirements of a user on the fabrics with various pattern changes cannot be satisfied.
In order to solve the above problems, an object of the present invention is to provide a fabrication process for manufacturing a knitting piece, which is simple and may knit knitting pieces with different patterns as required.
A technical solution adopted by the present invention to solve the problems is as follows.
A fabrication process for manufacturing a knitting piece comprises the following steps:
As an improvement to the technical solution, the base material prepared in the step (a) is a lump made of hydrosol, and after taking down the semi-finished knitting piece from the textile machine in the step (c), placing the semi-finished knitting piece into water or an aqueous solution to dissolve and separate the base material from the semi-finished knitting piece.
As an improvement to the above technical solution, in the step (c), the water or aqueous solution has a temperature of 5-40° C. when the semi-finished knitting piece is put into the water or aqueous solution, and the semi-finished knitting piece is soaked in the water or aqueous solution for a period of 5-600 s.
In the present invention, the base material prepared in the step (a) is a hot-melt interlining cloth. After being took down the semi-finished knitting piece from the textile machine in the step (c), the semi-finished knitting piece is soaked in hot water or aqueous solution to dissolve and separate the base material from the semi-finished knitting piece.
Preferably, in the step (c), the hot water or aqueous solution has a temperature of 30-50° C. when the semi-finished knitting piece is put into the water or aqueous solution, and the soaking time is 30-1200 s.
Further, knitting threads used during the piece knitting by the textile machine in the step (b) are one or more of pure spinning yarn, blended yarn, ornamental thread, rope, webbing and stabilized yarn.
The present invention has the following beneficial effects: since the textile machine is adopted to embroider on the base material in the present invention, limitations of a warp and weft weaving method of a traditional weaving process are avoided, so that any changes of lines, color blocks, textures or multi-level overlapped pattern cloth pieces can be knitted, thus the manufactured knitting piece is diversified in patterns and can meet requirements of different users on pattern changes. Meanwhile, the base material can be removed by dissolution, so that the embroidered patterns on the knitting piece may be formed to various effects, such as hollow, pierced, stereoscopic or stabilized and the likes, to obtain diverse finished knitting pieces.
Generally speaking, the present invention is directed to a fabrication process for manufacturing a knitting piece comprises the following steps:
In the present invention, when the base material prepared in the step (a) is a lump made of hydrosol, after being took down from the textile machine in the step (b), the semi-finished knitting piece is placed in water or an aqueous solution to dissolve and separate the base material from the semi-finished knitting piece. In order to better dissolve the base material, herein, as one preferable embodiment of the present invention, in the step (c), the water or aqueous solution has a temperature of 5-40° C. when the semi-finished knitting piece is put into water or an aqueous solution, and the semi-finished knitting piece is soaked in the water or aqueous solution for a period of 5-600 s. Further preferably, the water or aqueous solution temperature is 15-25° C., and the semi-finished knitting piece is soaked in the water or aqueous solution for a period of 250-400 s.
If the base material prepared in the step (a) is a hot-melt interlining cloth, in the step (c), after being took down from the textile machine, the semi-finished knitting piece is soaked in hot water or aqueous solution to dissolve and separate the base material from the semi-finished knitting piece. In order to better dissolve and remove the base material from the semi-finished knitting piece, preferably in the step (c), the hot water or aqueous solution has a temperature of 30-50° C. when the semi-finished knitting piece is put into the water or aqueous solution, and the soaking time is 30-1200 s. Further preferably, the hot water has a temperature of 35-45° C. when the semi-finished knitting piece is put into the water or aqueous solution, and the soaking time is 400-800 s. Of course, in addition to soaking the semi-finished knitting piece in the hot water or aqueous solution to dissolve the base material, other methods can be used to dissolve the base material. For example, after being took down from the textile machine in the step (c), the semi-finished knitting piece is subjected to ironing treatment to dissolve and separate the base material from the semi-finished knitting piece.
In order to enable the knitting piece manufactured by the fabrication process of the present invention to be more diversified, preferably, knitting threads used during the piece knitting by the textile machine in the step (b) are one or more of pure spinning yarn, blended yarn, ornamental thread, rope, webbing and stabilized yarn, wherein the pure spinning yarn can be cotton yarn, wool yarn, ramie yarn, schappe silk yarn, terylene, acrylic fibre and the likes, and the blended yarn can a blended yarn of the terylene and cotton, a blended yarn of wool and viscose and the likes. The textile machine can freely select different kinds of knitting threads according to the requirements of knitting piece patterns, thereby enabling the manufactured knitting piece to be more diversified and intensively changed in textures.
The above disclosures are merely preferable embodiments of the present invention, and technical solutions accomplishing the object of the present invention generally by the same means all fall within the protection scope of the present invention.
Number | Date | Country | Kind |
---|---|---|---|
2016 1 0411360 | Jun 2016 | CN | national |
Number | Name | Date | Kind |
---|---|---|---|
3463692 | Brunner | Aug 1969 | A |
4788922 | Clarius | Dec 1988 | A |
5111760 | Garzone, Jr. | May 1992 | A |
5241919 | LaGreca | Sep 1993 | A |
6263817 | Tajima | Jul 2001 | B1 |
6321672 | Dudek, II | Nov 2001 | B1 |
7104208 | Waterfield | Sep 2006 | B2 |
20100035029 | Ngo | Feb 2010 | A1 |
20110041741 | Cohen | Feb 2011 | A1 |
20170072669 | Sekido | Mar 2017 | A1 |
Number | Date | Country | |
---|---|---|---|
20170356106 A1 | Dec 2017 | US |