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新型ZnO/TM/PET复合负离子功能纤维的制备与性能

Preparation and Performance of a Novel ZnO/TM/PET Composite Negative Ion Functional Fiber.

作者信息

Zhang Mengxin, Zhang Jishu, Lu Xin, Wu Jianbing, Peng Jiajia, Wang Wei, Tao Jin

机构信息

School of Textile Garment & Design, Changshu Institute of Technology, Changshu 215500, China.

College of Textile and Clothing, Suzhou University, Suzhou 215031, China.

出版信息

Polymers (Basel). 2024 May 19;16(10):1439. doi: 10.3390/polym16101439.

Abstract

Using zinc oxide (ZnO), tourmaline (TM), and polyethylene terephthalate (PET) as main raw materials, a novel ZnO/TM/PET negative ion functional fiber was created. The rheological properties of a ZnO/TM/PET masterbatch were investigated; the morphology, XRD, and FT-IR of the fibers were observed; and the mechanical properties, thermal properties, and negative ion release properties of the new fiber were tested. The results showed that the average particle size of the ZnO/TM composite is nearly 365 nm, with an increase in negative ion emission efficiency by nearly 50% compared to the original TM. The apparent viscosity of fiber masterbatch decreases with the increase in the addition of the ZnO/TM composite, and the rheological properties of the PET fiber masterbatch are not significantly effected, still showing shear thinning characteristics when the amount of addition reaches 10%. The ZnO/TM composite disperses well in the interior and surface of the ZnO/TM/PET fiber matrix. The prepared ZnO/TM/PET fiber has excellent properties, such as fineness of 1.54 dtex, glass transition temperature of 122.4 °C, fracture strength of 3.31 cN/dtex, and negative ion release of 1640/cm, which shows great industrialization potential.

摘要

以氧化锌(ZnO)、电气石(TM)和聚对苯二甲酸乙二酯(PET)为主要原料,制备了一种新型的ZnO/TM/PET负离子功能纤维。研究了ZnO/TM/PET母粒的流变性能;观察了纤维的形态、XRD和FT-IR;测试了新型纤维的力学性能、热性能和负离子释放性能。结果表明,ZnO/TM复合材料的平均粒径约为365nm,与原始TM相比,负离子发射效率提高了近50%。纤维母粒的表观粘度随着ZnO/TM复合材料添加量的增加而降低,当添加量达到10%时,PET纤维母粒的流变性能没有受到显著影响,仍表现出剪切变稀特性。ZnO/TM复合材料在ZnO/TM/PET纤维基体内部和表面分散良好。制备的ZnO/TM/PET纤维具有优异的性能,如纤度为1.54 dtex,玻璃化转变温度为122.4℃,断裂强度为3.31 cN/dtex,负离子释放量为1640/cm,具有很大的产业化潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47af/11125451/e56a302e17e2/polymers-16-01439-g001.jpg

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