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Fatigue of short fiber thermoplastic composites: A review of recent experimental results and analysis

机译:短纤维热塑性复合材料的疲劳:最近的实验结果和分析综述

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摘要

Cyclic deformation and fatigue behavior of two short fiber thermoplastic composites (SFTCs) under a number of loading and environmental conditions are investigated. The considered environmental effects include those of low and elevated temperatures as well as moisture (or water absorption). Fatigue behavior is also explored under the action of non-zero mean stress (or R ratio) in addition to fully-reversed (R = -1), as well as various cyclic loading frequencies. Material anisotropy and geometrical discontinuity effects (i.e. stress concentration) are other aspects considered in this study. Mechanisms of fatigue failure are also assessed under environmental effects. Based on experimental observations and analysis, a number of analytical and empirical models are developed for estimating fatigue behavior under different conditions. Empirical equations are presented to characterize self-heating under cyclic loading. Tsai-Hill criterion is applied to account for the effect of fiber orientation on fatigue life. Mean stress effect is corrected with several mean stress parameters and a shift factor of Arrhenius type is defined to characterize the effect of temperature on fatigue life. Two methodologies are presented to estimate fatigue properties based on tensile properties, in addition to approximation of strain-life curves based on load-controlled fatigue data. Estimation of notched fatigue behavior based on smooth (un-notched) fatigue behavior is also presented.
机译:研究了两种短纤维热塑性复合材料(SFTC)在一定载荷和环境条件下的循环变形和疲劳行为。所考虑的环境影响包括低温和高温以及湿气(或水吸收)的影响。除了完全逆转(R = -1)以及各种循环加载频率外,还在非零平均应力(或R比)的作用下探索疲劳行为。材料各向异性和几何不连续性效应(即应力集中)是本研究中考虑的其他方面。疲劳破坏的机制也受到环境影响的评估。基于实验观察和分析,开发了许多分析和经验模型来估计不同条件下的疲劳行为。提出了经验公式来表征循环载荷下的自热。 Tsai-Hill标准适用于说明纤维取向对疲劳寿命的影响。用几个平均应力参数校正了平均应力效应,并定义了Arrhenius型位移因子来表征温度对疲劳寿命的影响。除了基于载荷控制的疲劳数据的应变寿命曲线的近似值之外,还提出了两种方法来基于拉伸特性估算疲劳特性。还提出了基于平滑(无缺口)疲劳行为的缺口疲劳行为的估计。

著录项

  • 来源
    《International Journal of Fatigue》 |2017年第9期|171-183|共13页
  • 作者单位

    Mechanical Industrial and Manufacturing Engineering Department, The University of Toledo, 2801 West Bancroft Street, Toledo, OH 43606, USA;

    Mechanical Industrial and Manufacturing Engineering Department, The University of Toledo, 2801 West Bancroft Street, Toledo, OH 43606, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fatigue; Short fiber; Thermoplastic composites; Modeling;

    机译:疲劳;短纤维;热塑性复合材料;造型;

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