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COMPARISON OF FATIGUE CRITERIA UNDER PROPORTIONAL AND NON-PROPORTIONAL MULTIAXIAL LOADING

机译:比例和非比例多轴负荷下疲劳标准的比较

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摘要

Owing to their interesting mechanical behavior and their diversity, rubberlike materials are more and more used in the industry. Previous works (Poisson et al.) presented an important experimental investigation on the multiaxial fatigue of polychloroprene rubber, with both proportional and non-proportional combinations of tension and torsion loads (with a large range of loads and three different phase angles: 0 degrees; 90 degrees, 180 degrees). A fatigue criterion, based on the dissipated energy density (DED) was introduced. Comparing this parameter to the most important criteria available on literature-which are the strain energy density (SED), the cracking energy density (CED), and the Eshelby tensor-in their accuracy allows one to predict fatigue life of rubberlike material. All the predictors are computed with an analytical viscoelastic model based on the kinematics of a combined tension and torsion loading applied on a cylinder. This cylinder represents the central part of the axisymetric dumbbell specimen, and the model was identified with a polychloroprene rubber. It is finally shown that the DED and CED reach more conclusive results, provided the structure, the material, and the loads investigated.
机译:由于它们有趣的机械行为及其多样性,橡皮状材料越来越多地用于行业。以前的作品(Poisson等人)对聚氯丁烯橡胶的多轴疲劳进行了重要的实验研究,张力和扭转载荷的比例和非比例组合(具有大范围的载荷和三种不同的相角:0度; 90度,180度)。引入了疲劳标准,基于耗散的能量密度(DED)。将该参数与文献中可用的最重要标准进行比较 - 这是应变能密度(SED),裂缝能量密度(CED),以及eShelby张量的精度允许人们预测橡皮状材料的疲劳寿命。所有预测因子都是基于在汽缸上施加的组合张力和扭转装载的运动学的分析粘弹性模型。该气缸代表轴段哑铃样本的中心部分,用聚氯丁烯橡胶鉴定模型。最后表明,DED和CED达到了更多的确凿结果,提供了结构,材料和调查的负荷。

著录项

  • 来源
    《Rubber Chemistry and Technology》 |2018年第2期|共19页
  • 作者单位

    Tun Abdul Razak Res Ctr Brickendonbury SG13 8NL Herts England;

    Univ Francois Rabelais Tours Lab Mecan &

    Rheol 7 Ave Marcel Dassault F-37200 Tours France;

    Univ Francois Rabelais Tours Lab Mecan &

    Rheol 7 Ave Marcel Dassault F-37200 Tours France;

    Univ Francois Rabelais Tours Lab Mecan &

    Rheol 7 Ave Marcel Dassault F-37200 Tours France;

    Univ Francois Rabelais Tours Lab Mecan &

    Rheol 7 Ave Marcel Dassault F-37200 Tours France;

    Univ Francois Rabelais Tours Lab Mecan &

    Rheol 7 Ave Marcel Dassault F-37200 Tours France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 橡胶工业;
  • 关键词

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