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Dongli Has Developed A New Hollow Polyester Fabric.

2013/12/31 21:34:00 19

DongliHollow Polyester FabricJapan

< p > recently, the Dongli company launched the newly developed C type a href= "//www.sjfzxm.com/news/index_c.asp" > hollow polyester fabric < /a > AIRLYSUMLON+C, which has a hollow fiber ratio of 50%, which can be used for yarn twisting and twisting. It has the characteristics of light weight and large volume.

The Dongli company plans to use it in the production of multiple products.

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The yarn cross-section of < p > "AIRLYSUMLON+C" fabric shows a C hollow structure. The principle of production is to spin and weave two kinds of polymer core sheath type fibers, then melt the core of the yarn into a hollow structure by chemical treatment.

Because it is hollow after weaving, it can carry out the shrinkage treatment of the past hollow structure yarn.

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< p > > a href= "//www.sjfzxm.com/news/index_c.asp" > new material < /a > compared with the previous hollow yarn, the gap is bigger. Compared with the ordinary polyester, its unit area weight is only half of the same thickness of the polyester fabric, and its surface area is large, the expansion is high, and it has the characteristics of fast drying.

The new fabric also uses air suction structure, which is 1.8 times stronger in the heat insulation test CLO compared with the common yarn of the same unit area weight.

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< p > Dongli plans to apply the "AIRLYSUMLON+C" fabric to less than a href= "//www.sjfzxm.com/news/index_c.asp" > skiing clothes < /a > jacket, thick knitted fabric and other units of heavier weight garments, so as to reflect the characteristics of new fabrics.

The products will start selling in autumn and winter in 2014~2015.

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< p > in the spring and summer products of 2015, Dongli will use "AIRLYSUMLON+C" as the main material for running, fitness, yoga and competitive sports.

In order to expand the use of sports material, Dongli is also considering the use of this material in Olympic business dress, such as business dress shirts, jackets and so on.

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< p > at present, this new yarn is made by Dongli synthetic fiber Nantong company (TFNL), which is located in China.

At first, the new fabric was first produced in Japan, and now it is also preparing for large-scale production in China.

As a high value-added fabric, Dongli will also strengthen the global production system of this new fabric.

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< p > related links: < /p >


< p > polyester fabric is a very popular fabric used in daily life.

Its biggest advantage is wrinkle resistance and good shape retention. Therefore, it is suitable for outdoor clothing such as coats, bags and tents.

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< p > polyester is widely used for manufacturing garments and industrial products.

Because of its permanent flame retardancy, flame retardant polyester has a wide range of applications. It plays an irreplaceable role besides industrial textiles, interior decoration, pportation decoration and so on. It also plays a lot of role in the field of protective clothing.

According to the national standard of flame retardant protective clothing, fire-retardant protective clothing should be used in metallurgy, forestry, chemical, petroleum, fire and other departments.

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< p > China should use flame retardant protective clothing more than a million people, and the market of flame retardant protective clothing is huge.

In addition to pure flame retardant polyester, we can produce multifunctional products such as flame-retardant, waterproof, oil repellent and antistatic according to the special requirements of users.

If the flame retardant polyester fabric is waterproofing and oil repellent finishing, the function of flame retardant clothing can be improved. The flame retardant polyester and conductive fiber are interwoven to produce antistatic flame retardant fabric. The flame retardant fiber and high performance fiber are blended and interwoven to produce high performance flame retardant fabric. The flame retardant fiber is blended with cotton and viscose to improve the comfort of the protective clothing and reduce the two burns.

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