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Annealing characteristics of ultraoriented high‐density polyethylene

机译:超取向高连字符密度聚乙烯的退火特性

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摘要

The annealing characteristics of ultraoriented high‐density polyethylene fibers have been studied using differential scanning calorimetry, thermomechanical analysis, and tensile testing. The melting point of unannealed fibers was estimated to be 130 °C using a 10 °C min−1heating rate. Fiber annealing between 126 and 132 °C split the melting endotherm into two peak melting at 132 and 139 °C. The weight fraction of fiber which had reorganized to the lower melting point increased with annealing time, finally attaining a constant value. However, annealing of laterally constrained fibers below 136 °C did not result in structural changes as detected by calorimetry. Melting‐point variations with heating rates≳0.625 °C min−1indicated the equilibrium melting point of the unconstrained fiber at zero heating rate as 138 °C, while a similarly extrapolated value using heating rates <0.625 °C was ∼132 °C. The linear expansion coefficients rapidly increased near 132 °C and were attributed to the structural reorganization detected by calorimetry. Fiber annealing markedly decreased the tensile modulus from 50 GPa towards the 1 GPa observed for the unoriented polyethylene. The annealing behavior was consistent with the thermal instability associated with the anisotropy of the surface free energies of the ultraoriented crystalline fibers as well as sources of melting‐point reduction such as defects.
机译:采用差示扫描量热法、热机械分析法和拉伸试验法研究了超取向高密度聚乙烯纤维的退火特性。使用10 °C min−1的加热速率,未退火纤维的熔点估计为130 °C。在126和132°C之间进行纤维退火,在132和139°C下将熔化吸热分成两个峰熔。 重组到较低熔点的纤维重量分数随着退火时间的增加而增加,最终达到恒定值。然而,在136°C以下对横向约束纤维进行退火不会导致量热法检测到的结构变化。加热速率≳0.625 °C min−1的熔点变化表明,在零加热速率下,无约束纤维的平衡熔点为138 °C,而使用加热速率<0.625 °C的类似外推值为∼132 °C。 在132 °C附近,线膨胀系数迅速增加,归因于量热法检测到的结构重组。纤维退火将拉伸模量从50 GPa显著降低到未定向聚乙烯的1 GPa。退火行为与超取向结晶纤维表面自由能各向异性的热不稳定性以及缺陷等熔点减少源一致。

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  • 来源
    《journal of applied physics》 |1976年第10期|4278-4288|共页
  • 作者

    W. T. Mead; Roger S. Porter;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 英语
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