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Thermal oxidative degradation of bicomponent PP/PET fiber during thermal bonding process

机译:热粘合过程中双组分PP / PET纤维的热氧化降解

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摘要

The effects of the thermal bonding temperature, dwell time, and the type of mold materials on the thermal oxidative degradation of the PP sheath of bicomponent fibers were investigated using the Fourier Transform Infrared Spectra (FTIR) and Thermal Gravimetry/Differential Scanning Calorimetry (TG-DSC) techniques. The samples were prepared on a new 3D nonwovens process based on air-laying and through-air thermal bonding. The fiber material was a commercial polypropylene (PP)/polyester (PET) (sheath/core) bicomponent staple fiber. The results reveal that ketone developed following P-scission in the thermally bonded nonwovens. The level of thermal oxidative degradation increases with increase in the bonding temperature, dwell time, and the thermal conductivity of the mold material. Such thermal oxidative degradation led to the slight widening of the melting peaks of the fiber PP sheath in the thermally bonded nonwovens, and a slight decreasing of melting point compared with those of the as-received fiber. (c) 2007 Wiley Periodicals, Inc.
机译:使用傅立叶变换红外光谱(FTIR)和热重分析/差示扫描量热法(TG- DSC)技术。样品是在基于气流成网和热风热粘合的新型3D非织造布工艺上制备的。纤维材料是商业聚丙烯(PP)/聚酯(PET)(皮/芯)双组分短纤维。结果表明,在热粘合非织造布中,P断裂后产生了酮。随着接合温度,保压时间和模具材料的热导率的增加,热氧化降解的程度也增加。这种热氧化降解导致热粘合的非织造物中的纤维PP鞘的熔融峰略微变宽,并且与所接收的纤维相比,熔点略微降低。 (c)2007年Wiley Periodicals,Inc.

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