首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Microstructure and Mechanical Properties of Hot-Air Drawn Poly(ethylene terephthalate) Fibers
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Microstructure and Mechanical Properties of Hot-Air Drawn Poly(ethylene terephthalate) Fibers

机译:热风拉伸聚对苯二甲酸乙二酯纤维的组织和力学性能

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Hot-air drawing method has been applied to poly(ethylene terephthalate) (PET) fibers in order to investigate the effect of strain rate on their microstructure and mechanical properties and produce high-performance PET fibers. The hot-air drawing was carried out by blowing hot air controlled at a constant temperature against an as-spun PET fiber connected to a weight. As the hot air blew against the fibers weighted variously at a flow rate of about 90 l/min, the fibers elongated instantaneously at a strain rate in the range of 2.3-18.7 s~(-1). The strain rate in the hot-air drawing increased with increasing drawing temperature and applied tension. When the hot-air drawing was carried out at a drawing temperature of 220deg C under an applied tension of 27.6 MPa, the strain rate was the highest value of 18.7 s~(-1). A draw ratio, birefringence, crystallite orientation factor, and mechanical properties increased as the strain rate increased. The fiber drawn at the highest stain rate had a birefringence of 0.231, degree of crystallinity of 44%, tensile modulus of 18 GPa, and dynamic storage modulus of 19 GPa at 25deg C. The mechanical properties of fiber obtained had almost the same values as those of the zone-annealed PET fiber reported previously.
机译:为了研究应变速率对其微观结构和力学性能的影响,并生产出高性能的PET纤维,热风拉伸方法已经应用于聚对苯二甲酸乙二醇酯(PET)纤维。通过将恒温控制的热空气吹向与重物相连的初纺PET纤维进行热风拉伸。当热空气以约90 l / min的流量吹向各种称重的纤维时,纤维以2.3-18.7 s〜(-1)的应变速率瞬时伸长。热风拉伸中的应变率随着拉伸温度和施加张力的增加而增加。当在220℃的拉伸温度下在27.6MPa的施加张力下进行热风拉伸时,应变速率的最大值为18.7s〜(-1)。拉伸比,双折射,微晶取向因子和机械性能随着应变速率的增加而增加。在最高染色速率下拉伸的纤维在25℃下的双折射率为0.231,结晶度为44%,拉伸模量为18 GPa,动态储能模量为19 GPa。所得纤维的机械性能几乎与先前报道的区域退火PET纤维的那些。

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