Regenerated cellulose fiber is a very important raw material. This raw material is a natural material. Especially in the clothing industry, regenerated cellulose fiber is the most widely used. Clothing made of regenerated cellulose fiber has many advantages, such as being breathable and refreshing, and being able to absorb sweat secreted by human skin. The following is a detailed introduction to the relevant characteristics of regenerated cellulose fiber. What is regenerated cellulose fiber? Regenerated cellulose fiber is made from natural cellulose (cotton, linen, bamboo, trees, shrubs, etc.) without changing its chemical structure, but only changing the physical structure of natural cellulose, thereby producing regenerated cellulose fiber with better performance. Its structural composition is similar to that of cotton, but its moisture absorption and air permeability are better than cotton fiber. It can be said that it has the best moisture absorption and air permeability among all chemical fibers, and is known as "breathing fabric." At the same time, it also has some advantages of silk that cotton fiber does not have. Therefore, it is more comfortable to wear; its dyeing beauty is better than cotton fiber; it feels soft, plump and smooth, with excellent drape and silk-like luster; it has high thermal and light stability and does not generate static electricity; its strength and elongation can meet the needs of most textiles. It has good spinnability. Staple fibers can be spun alone or blended with other textile fibers. The fabric is soft, smooth, breathable, comfortable to wear, and has bright colors and good color fastness after dyeing. Suitable for making underwear, outerwear and various decorative items. Regenerated cellulose fiber products are made from natural plant fibers, 100% pure natural materials, naturally biodegradable, no additives, no heavy metals, no harmful chemicals, and are skin-friendly and non-irritating. It is an environmentally friendly "green" fiber with excellent performance. The presence of active hydroxyl groups on cellulose molecules allows for grafting and copolymerization with many other molecules in various links in the production of regenerated cellulose fibers for combined modification, providing broad space for the development of various high-tech technologies in regenerated cellulose fibers. Due to the reduction of arable land and the increasing depletion of oil resources, the output of natural fibers and synthetic fibers will be increasingly restricted; while people pay attention to the environmental performance in the process of textile consumption, they have re-recognized and explored the value of regenerated cellulose fibers. Today, the application of regenerated cellulose fibers has gained an unprecedented development opportunity. |
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