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Influence of molecular conformation on the constitutive response of polyethylene: A comparison of HDPE, UHMWPE, and PEX

机译:分子构象对聚乙烯本构反应的影响:HDPE,UHMWPE和PEX的比较

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摘要

The current work presents the characterization and comparison of the mechanical response of three different industrial forms of polyethylene. Specifically, high-density polyethylene (HDPE), ultra high molecular weight polyethylene (UHMWPE), and cross-linked polyethylene (PEX) were tested in compression as a function of temperature (-75 to 100 degrees C) and strain-rate (10(-4) to 2,600 s(-1)). The responses of UHMWPE and PEX are very similar, whereas HDPE exhibits some differences. The HDPE samples display a significantly higher yield stress followed by a flat flow behavior. Conversely UHMWPE and PEX both exhibit significant strain hardening after yield. The temperature and strain-rate dependence are captured by simple linear and logarithmic fits over the full range of conditions investigated. The yield behavior is presented in terms of an empirical mapping function that is extended to analytically solve for the mapping constant. The power-law dependence on strain-rate observed in some polymers is explained using this mapping function.
机译:当前的工作介绍了三种不同工业形式的聚乙烯的机械响应的表征和比较。具体而言,测试了高密度聚乙烯(HDPE),超高分子量聚乙烯(UHMWPE)和交联聚乙烯(PEX)随温度(-75至100摄氏度)和应变率(10的函数)的变化。 (-4)至2,600 s(-1))。 UHMWPE和PEX的响应非常相似,而HDPE表现出一些差异。 HDPE样品显示出明显更高的屈服应力,随后呈现出平坦的流动行为。相反,UHMWPE和PEX在屈服后均表现出明显的应变硬化。通过简单的线性和对数拟合可以在所研究的整个条件范围内捕获温度和应变率的依赖性。根据经验映射函数来表示屈服行为,该经验映射函数被扩展为以解析方式求解映射常数。使用该映射函数解释了在某些聚合物中观察到的幂律对应变率的依赖性。

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