1. Field of Invention
The present invention relates to velvet plush, and more particularly to a method of manufacturing velvet plush throw which utilizes synthetic fiber to produce a particularly soft and smooth velvet plush throw.
2. Description of Related Arts
Velvet plush has a generally soft and smooth texture and is a very popular material used in textiles. Velvet plush throws, blankets, and similar plush textiles are in popular use because they are very smooth and soft. However, the cost to manufacture a velvet plush throw, blanket or the like is very high. Conversely, efforts to manufacture velvet plush throws and blankets at more reasonable cost have resulted in lower quality articles. Materials such as silk, cashmere, mohair, linen and cotton are traditionally used for manufacturing velvet plush. Velvet plush articles produced from silk are especially soft and smooth. Silk, however, is a very expense raw material and is, therefore, less desirable when seeking to contain manufacturing costs. On the other hand, synthetic materials such as polyester and nylon are more reasonable in price, but the quality of a velvet plush cloth made with polyester or nylon is relatively low.
The conventional method for manufacturing a tufted surface involves needling and adding the tufted pile onto a backing, but this technique does not produce a smooth and soft tufted surface of high quality having an evenly distributed pile layer.
There is, thus, no practical cost-effective method in the prior art for the manufacture of a high quality velvet plush throw.
A method of manufacturing a velvet plush article according to the present invention comprises the steps of:
Alternately, after step (B) or (C), the method of manufacturing a velvet plush article further comprises the steps of:
First and a second filaments are provided in step (A) in a ratio of 4:1, respectively.
The brushing in step (B) involves brushing in a frontward direction and in a backward direction; the first setting involves heat-setting at 120-130° C. at a rolling speed of 25 m/min; the singeing involves a sequential rolling for six times at a frontward, backward, backward, frontward, backward and backward directions; the second setting involves heat-setting at 170-180° C. at a rolling speed of 25 m/min.
In step (C), dyeing the greige cloth includes bathing in dye fluid and rinsing in water. In one embodiment of the invention, the greige cloth is dyed for an additional twenty minutes and rinsed in water having a neutral or nearly neutral pH in order to produce a smooth and bright surface.
In step (D), printing includes the steps of brushing in a frontward direction, setting at 150° C. at a rolling speed of 25 m/min, and printing a preset pattern.
In step (E), softening includes washing to add acidity until the greige cloth is soft and then neutralizing the greige cloth until a pH of the greige cloth is neutral. If the pH is lower than 7, the fiber density of the greige cloth will diminish. If the pH is higher than 7, the greige cloth will be overly hardened; drying includes drying under 190° C. at a rolling speed of 20 m/min with an upper drying channel operated at 300 rpm and a lower drying channel operated at 1200 rpm; brushing includes two brushing cycles; stentering includes stentering at a frontward direction and a backward direction; heat-setting includes heat-setting under 150° C. at a rolling speed of 25 m/min with soft air; singeing includes singe rolling in frontward and backward directions, and preferably includes singe rolling in backward, backward, frontward, frontward, backward, frontward, backward and frontward directions sequentially; shearing includes shearing at a frontward, backward, backward, frontward, frontward, frontward, backward and backward directions sequentially such that the final orientation of the pile hair is the same when approaching the cloth in both frontward and backward directions; and final heat-setting includes heat-setting at 190° C. at a rolling speed of 30 m/min.
In accordance with another aspect of the invention, the present invention comprises a velvet plush article, comprising:
In one embodiment, a color and/or a pattern is provided to the flat body of the velvet plush article. The velvet plush article manufactured according to the method can also be a velvet plush blanket or simply a velvet plush sheet which can be further processed.
The method described above advantageously uses synthetic materials to product a high quality velvet plush article having superior smoothness and a soft hand, employs an automated process which lowers costs and improves quality, and flexibly allows the article to optionally be dyed and printed.
Referring to
The dyeing and printing steps are optional and may be performed as desired in order to provide the velvet plush article with a particular color and pattern.
As shown in
As shown in
Alternately, after the step (B) or (C), the method of manufacturing a velvet plush article further comprises the steps of:
Preferably, in step (A), first and second filaments are provided in a ratio of 4:1, wherein the first filament is a backing filament.
In step (B), the brushing involves brushing in a frontward direction and in a backward direction; the first setting involves heat-setting at 120-130° C. at a rolling speed of 25 m/min; the singeing involves a sequential rolling for six times at a frontward, backward, backward, frontward, backward and backward directions; and the second setting involves heat-setting at 170-180° C. at a rolling speed of 25 m/min.
In step (C), dyeing the greige cloth includes bathing in dye fluid and rinsing with water. In one embodiment additional dyeing time of 20 minutes is required due to immersion of the greige cloth in a water bath having a neutral pH or the lowest acidity that will result in a smooth and bright surface.
In step (D), printing includes the steps of brushing in a frontward direction, setting at 150° C. at a rolling speed of 25 m/min, and printing a preset pattern.
In step (E), softening includes washing to add acidity until the greige cloth is soft and then neutralizing the pH of the greige cloth. If the pH is lower than 7, the fiber density of the greige cloth will diminish. If the pH is greater than 7, the greige cloth will be hardened; drying includes drying under 190° C. at a rolling speed of 20 m/min with an upper drying channel operated at 300 rpm and a lower drying channel operated at 1200 rpm; brushing includes brushing two brushing cycles; stentering includes stentering in a frontward direction and a backward direction; heat-setting includes heat-setting under 150° C. at a rolling speed of 25 m/min with soft air; singeing includes passing the greige cloth across hot singe rollers in frontward and backward directions, and preferably includes passing the greige cloth across hot singe rollers in backward, backward, frontward, frontward, backward, frontward, backward and frontward directions sequentially; shearing includes shearing in frontward, backward, backward, frontward, frontward, frontward, backward and backward directions sequentially such that the final orientation of the pile hair is the same when approaching the cloth in both frontward and backward directions; and final heat-setting includes heat-setting at 190° C. at a rolling speed of 30 m/min.
There have thus been described and illustrated certain embodiments of a method of manufacturing velvet plush according to the invention. Although the present invention has been described and illustrated in detail, it should be clearly understood that the disclosure is illustrative only and is not to be taken as limiting, the spirit and scope of the invention being limited only by the terms of the appended claims and their legal equivalents.
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Number | Date | Country | |
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20140013555 A1 | Jan 2014 | US |