Anti-ultraviolet protection type easy-care finishing liquid for shirts and finishing method of shirts
A non-iron finishing and anti-ultraviolet technology, which is applied in fiber processing, textiles and papermaking, etc., can solve the problems of unfavorable energy saving and emission reduction, loss of moisture-wicking comfort performance of cotton garments, and irritating wearing, so as to avoid waste of resources and environmental protection emission issues, improve the effect of anti-shrinkage and anti-wrinkle, and the effect of good biocompatibility
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Embodiment example 1
[0031] Implementation case 1: Take the production of 80 double twill shirts as an example:
[0032] (1) Selection of fabrics: select long-staple cotton compact spun 80-count double twill fabrics treated with liquid ammonia + mercerizing technology;
[0033] (2) Three-dimensional cutting: use three-dimensional cutting technology to cut the fabric into independent clothing pieces;
[0034] (3) Inlay sewing: use the inlay overlock sewing technology with a stitch distance of 3 cm and 16 needles to sew the garment parts to obtain a semi-finished shirt;
[0035] (4) Finishing liquid treatment: Finishing liquid absorption is completed in the reaction chamber by step-by-step operation, so that the liquid-carrying rate of the fibers of the garment fabric is controlled at 50%;
[0036] (5) Pre-drying and humidity adjustment: Infrared three-dimensional drying technology is used to pre-dry and adjust the humidity of the hanging shirts. The pre-drying temperature is 105°C and the pre-dryi...
Embodiment example 2
[0043] Implementation case 2: Take the production of 80 double-plain shirts as an example:
[0044] (1) Selection of fabrics: select long-staple cotton compact spun 80-count double plain weave fabrics treated with liquid ammonia + mercerizing technology;
[0045] (2) Three-dimensional cutting: use three-dimensional cutting technology to cut the fabric into independent clothing pieces;
[0046] (3) Inlay sewing: the garment parts are sewn by the overlock sewing technique with a stitch distance of 17 needles of three centimeters to obtain a semi-finished shirt;
[0047] (4) Finishing liquid treatment: Finishing liquid absorption is completed in the reaction chamber by step-by-step operation, so that the liquid-carrying rate of the fibers of the garment fabric is controlled at 50%;
[0048] (5) Pre-drying and humidity adjustment: Infrared three-dimensional drying technology is used to pre-dry and adjust the humidity of the hanging shirts. The pre-drying temperature is 100°C and ...
Embodiment example 3
[0055] Implementation case 3: Take the production of 100 double twill shirts as an example:
[0056] (1) Selection of fabrics: select long-staple cotton compact spun 100-count double twill fabrics treated with liquid ammonia + mercerizing technology;
[0057] (2) Three-dimensional cutting: use three-dimensional cutting technology to cut the fabric into independent clothing pieces;
[0058] (3) Inlay sewing: use the inlay overlock sewing technology with a stitch distance of 3 cm and 19 stitches to sew the garment parts to obtain a semi-finished shirt;
[0059] (4) Finishing liquid treatment: Finishing liquid absorption is completed in the reaction chamber by step-by-step operation, so that the liquid-carrying rate of the fibers of the garment fabric is controlled at 50%;
[0060] (5) Pre-drying and humidity adjustment: Infrared three-dimensional drying technology is used to pre-dry and adjust the humidity of the hanging shirts. The pre-drying temperature is 95°C and the pre-dr...
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