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首页> 外文期刊>Journal of Composites Science >Predicting Fatigue Damage of Composites Using Strength Degradation and Cumulative Damage Model
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Predicting Fatigue Damage of Composites Using Strength Degradation and Cumulative Damage Model

机译:基于强度退化和累积损伤模型的复合材料疲劳损伤预测

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摘要

This paper discusses the prediction of fatigue response of composites using an empirical strength and stiffness degradation scheme coupled to a cumulative damage accumulation approach. The cumulative damage accumulation approach is needed to account for the non-constant stress levels that arise due to stress distributions from stiffness degradation during the fatigue loading. Degradation of strength and stiffness during fatigue loading of the composite was implemented by following the empirical model presented by Shokrieh and Lessard with some modification and correction to the non-dimensional load parameter definition. The fatigue analysis was performed using ABAQUS? finite element software using a user-defined material subroutine UMAT developed for the material response. Implementation results were first verified for unidirectional laminate test cases and validated by predicting stress versus life (S-N) curves for several laminate coupons test simulations and residual strengths of Open Hole Tension (OHT) specimens subjected to constant amplitude fatigue loading.
机译:本文讨论了使用经验强度和刚度退化方案以及累积损伤累积方法的复合材料疲劳响应预测。需要累积损伤累积方法来解决由于疲劳载荷过程中刚度降低引起的应力分布而产生的非恒定应力水平。通过遵循Shokrieh和Lessard提出的经验模型,对无量纲载荷参数定义进行了一些修改和修正,实现了复合材料疲劳载荷期间强度和刚度的降低。疲劳分析使用ABAQUS?使用用户定义的材料子程序UMAT开发的有限元软件,用于材料响应。首先对单向层压板测试案例验证了实施结果,并通过预测几种层压板试样测试模拟的应力与寿命(S-N)曲线以及承受恒定振幅疲劳载荷的裸眼张力(OHT)标本的残余强度来进行验证。

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