首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Strain-rate dependence of the microstructure and mechanical properties for hot-air-drawn nylon 6 fibers
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Strain-rate dependence of the microstructure and mechanical properties for hot-air-drawn nylon 6 fibers

机译:拉伸速率对尼龙6纤维热风拉伸组织和力学性能的影响

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A hot-air (HA) drawing method was applied to nylon 6 fibers to improve their mechanical properties and to study the effect of the strain rate in the HA drawing on their mechanical properties and microstructure. The HA drawing was carried out by the HA, controlled at a constant temperature, being blown against an original nylon 6 fiber connected to a weight. As the HA blew against the fiber at a flow rate of 90 liter/min, the fiber elongated instantaneously at strain rates ranging from 9.1 to 17.4 s(-1). The strain rate in the HA drawing increased with increasing drawing temperature and applied tension. When the HA drawing was carried out at a drawing temperature of 240 degrees C under an applied tension of 34.6 MPa, the strain rate was at its highest value, 17.4 s(-1). The draw ratio, birefringence, crystallite orientation factor, and mechanical properties increased as the strain rate increased. The fiber drawn at the highest strain rate had a birefringence of 0.063, a degree of crystallinity of 47%, and a dynamic storage modulus of 20 GPa at 25 degrees C. (C) 2000 John Wiley & Sons, Inc. [References: 26]
机译:将热风(HA)拉伸方法应用于尼龙6纤维,以改善其力学性能,并研究HA拉伸过程中的应变速率对其力学性能和微观结构的影响。 HA的拉伸是通过HA进行的,将HA控制在恒定的温度下,吹到与重物相连的原始尼龙6纤维上。当HA以90升/分钟的流速吹向光纤时,光纤在9.1至17.4 s(-1)的应变速率下瞬间伸长。 HA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HA拉伸在240℃的拉伸温度下在34.6MPa的施加张力下进行时,应变速率处于其最高值17.4s(-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。以最高应变速率拉伸的纤维在25摄氏度下的双折射率为0.063,结晶度为47%,动态储能模量为20 GPa。(C)2000 John Wiley&Sons,Inc. [参考:26 ]

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