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首页> 外文期刊>MATEC Web of Conferences >Multiaxial Fatigue Behavior of High-Density Polyethylene (HDPE) Including Notch Effect: Experiments and Modeling
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Multiaxial Fatigue Behavior of High-Density Polyethylene (HDPE) Including Notch Effect: Experiments and Modeling

机译:高密度聚乙烯(HDPE)的多轴疲劳行为,包括缺口效应:实验和建模

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High-Density Polyethylene (HDPE) is used in many industries with many applications from automotive industry to biomedical implants. It can be manufactured using different processing techniques including compression molding, injection molding, and blow molding. Multiaxial loading and non-proportionality between different loading sources are inevitable in many applications. It is shown that the common multiaxial fatigue criteria such as von Mises equivalent stress are not able to correlate the multiaxial fatigue data. In this study, multiaxial fatigue behavior of neat HDPE is investigated using hollow tubular specimens through experimental fatigue tests. Axial, torsion, and combined in phase and out-of-phase axial-torsion fatigue tests were conducted. Stress concentration effect on multiaxial fatigue behavior was also studied. Experimental results and analytical models used to account for the aforementioned effects are presented and discussed in this paper.
机译:高密度聚乙烯(HDPE)用于许多行业,其中许多应用来自汽车行业到生物医学植入物的应用。它可以使用不同的加工技术制造,包括压缩成型,注塑和吹塑。在许多应用中,不同装载来源之间的多轴加载和非比例是不可避免的。结果表明,诸如vonmes等同应力的常见多轴疲劳标准不能能够与多轴疲劳数据相关联。在该研究中,使用实验疲劳试验使用中空管状试验研究了整齐HDPE的多轴疲劳行为。进行轴向,扭转和相结合的相位和相位异轴扭转疲劳试验。还研究了对多轴疲劳行为的应激集中效应。本文介绍和讨论了用于考虑上述效果的实验结果和分析模型。

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