D'Amore Alberto, Grassia Luigi
Department of Engineering, University of Campania "Luigi Vanvitelli", 81031 Aversa (CE), Italy.
Department of Engineering, University of Messina, Contrada Di Dio (Sant'Agata), 98166 Messina, Italy.
Materials (Basel). 2019 Aug 14;12(16):2586. doi: 10.3390/ma12162586.
This paper summarizes the principal features of composites' responses when subjected to constant amplitude (CA) cyclic loadings. The stochastic nature of the responses; the absence of a detectable fatigue limit; the sudden drop of strength; the general validity of the strength-life equal-rank assumption (SLERA); and, ultimately, the residual strength-life equal-rank assumption (RSLERA) are discussed on the basis of the selected experimental data available in literature. The objective is defining a robust test in order to ascertain the reliability of the phenomenological models. A two-parameter phenomenological model accounting for the maximum cyclic stress, σ, and the stress ratio, R = σ/σ, was used for guidance through the phenomenology of fatigue. It is concluded that the robustness of the models dealing with fatigue can be checked only when the characteristics of the composites' responses are described simultaneously with fixed parameters.
本文总结了复合材料在恒幅(CA)循环载荷作用下响应的主要特征。基于文献中可用的选定实验数据,讨论了响应的随机性、不存在可检测的疲劳极限、强度的突然下降、强度-寿命等秩假设(SLERA)的普遍有效性,以及最终的残余强度-寿命等秩假设(RSLERA)。目的是定义一种稳健的测试,以确定现象学模型的可靠性。一个考虑最大循环应力σ和应力比R = σ/σ的双参数现象学模型被用于指导疲劳现象学研究。得出的结论是,只有当用固定参数同时描述复合材料响应的特征时,才能检验处理疲劳问题模型的稳健性。