首页> 外文期刊>Journal of Applied Polymer Science >Fine-structure and physical properties of polyethylene fibers in high-speed spinning. I. Effect of melt-flow rate in the high-density polyethylene
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Fine-structure and physical properties of polyethylene fibers in high-speed spinning. I. Effect of melt-flow rate in the high-density polyethylene

机译:聚乙烯纤维在高速纺丝中的精细结构和物理性能。一,高密度聚乙烯中熔体流动速率的影响

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High-density polyethylene (HDPE) fibers, obtained from a melt-flow rate (g/10 min) of II and 28, was produced by a high-speed melt-spinning method in the range of take-up velocity from I to 8 km/min and from 1 to 6 km/min, respectively. The change of fiber structure and physical properties with increasing take-up velocity was investigated through birefringence, wide-angle X-ray diffraction (WAXD), differential scanning calorimetry (DSC), a Rheovibron, and a Fafegraph-M. With an increase in take-up velocity, the birefringence showed a sigmoidal increase, which has distinct changes in the range of 1-5 km/min. Throughout the whole take-up velocities, the birefringence of HDPE(11) was higher than that of HDPE(28). With increasing take-up velocity, the crystalline orientation was transformed from a-axis orientation to c-axis orientation. These crystalline relaxations are confirmed by the tan 6 peak of high-speed spun HDPE fibers. The intensity of the crystalline relaxation peak decreases with increasing take-up velocity in both HDPE(11) and HDPE(28). As above, the crystalline relaxation peaks shift to lower temperature with increasing take-up velocity. With increasing take-up velocity, the ultimate strain decreases while both specific stress and the initial modulus increase. The mechanical behavior may be closely related to, as investigated by birefringence, orientation of the amorphous region, etc., the take-up velocity. (C) 2000 John Wiley & Sons, Inc. [References: 21]
机译:由II和28的熔体流动速率(g / 10 min)获得的高密度聚乙烯(HDPE)纤维是通过高速熔体纺丝方法在1至8的卷取速度范围内生产的km / min和1至6 km / min。通过双折射,广角X射线衍射(WAXD),差示扫描量热法(DSC),Rheovibron和Fafegraph-M研究了纤维结构和物理性质随卷取速度的变化。随着卷取速度的增加,双折射呈S形增加,在1-5 km / min的范围内有明显变化。在整个吸收速度中,HDPE(11)的双折射高于HDPE(28)。随着吸收速度的增加,晶体取向从a轴取向转变为c轴取向。高速纺HDPE纤维的tan 6峰证实了这些晶体松弛。在HDPE(11)和HDPE(28)中,晶体弛豫峰的强度均随着吸收速度的增加而降低。如上所述,随着吸收速度的增加,晶体弛豫峰移至较低温度。随着提升速度的增加,极限应变降低,而比应力和初始模量均增加。如通过双折射,无定形区域的取向等调查,机械行为可能与卷取速度密切相关。 (C)2000 John Wiley&Sons,Inc. [参考:21]

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