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Fatigue life prediction of matrix dominated polymer composite materials

机译:基质为主的聚合物复合材料的疲劳寿命预测

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Fatigue life prediction is investigated analytically for matrix dominated polymer composite laminates having nonlinear stress/strain response, based on the fatigue modulus concept. Fatigue modulus degradation rate at any fatigue cycle was assumed as a power function of number of fatigue cycles. A new stress function describing the relation of initial fatigue modulus and elastic modulus was used to account for material non-linearity at the first cycle. It was assumed that fatigue modulus at failure is proportional to the applied stress level. A new fatigue life prediction equation as a function of applied stress is proposed. The prediction was verified experimentally using cross-ply carbon/epoxy laminate (CFRP) tube under torsional fatigue loading. It is shown that the proposed equation has wide applicability and agrees well with experimental data. [References: 18]
机译:基于疲劳模量概念,对具有非线性应力/应变响应的基体主导的聚合物复合材料层压板的疲劳寿命预测进行了分析研究。假定在任何疲劳循环下的疲劳模量退化率都是疲劳循环数的幂函数。描述初始疲劳模量和弹性模量之间关系的新应力函数用于解决第一个循环中的材料非线性问题。假定失效时的疲劳模量与施加的应力水平成正比。提出了一个新的疲劳寿命预测方程,它是外加应力的函数。使用交叉碳/环氧层压板(CFRP)管在扭转疲劳载荷下通过实验验证了这一预测。结果表明,该方程具有广泛的适用性,与实验数据吻合良好。 [参考:18]

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