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Correlations Between Damage Accumulation and Strength Degradation of Fiber Reinforced Composites Subjected to Cyclic Loading

机译:循环载荷纤维增强复合材料的损伤积累与强度降解的相关性

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Composite materials subjected to cyclic loading degrade their strength and/or stiffness due to the accumulation of different overlapping damage mechanisms. Three substantial regimes of damage are commonly recognized. At the early stage of the loading a diffuse matrix cracking and matrix/fiber debonding (Stage I) precipitate in a saturation state termed "characteristic damage state" (CDS) that represents the initiation of fibers rupture and incipient delamination phenomena (Stage II). The final collapse is debited to the coalescence of macro cracks with resulting ply ruptures and delamination (Stage III). In this paper, summarizing the capabilities of a recently developed two-parameter phenomenological model based on residual strength, it is shown that the strength degradation kinetics can be described by three distinct functions associated to the sequence of damage mechanisms. Despite the phenomenological prerogative of the model, from the analytical approach it results that the multiple damage mechanisms develop simultaneously even with different kinetics and manifest their effectiveness at different time scales, accordingly. This highlights the hierarchical nature of damage accumulation in composites, from diffuse matrix cracking, to fiber/matrix interface failure to fiber and ply rupture and delamination.
机译:受循环加载的复合材料由于不同重叠损伤机制的积累而降低了它们的强度和/或刚度。通常认可三个大量的损害制度。在加载弥漫性基质裂化和基质/纤维剥离(阶段I)的饱和状态下沉淀出来的饱和状态被称为“特征损伤状态”(CDS)的沉淀,其表示纤维破裂和初期分层现象(第II阶段)。最终崩溃被借用于宏观裂缝的聚结,得到斜面破裂和分层(第III阶段)。在本文中,总结基于残余强度最近开发的双参数现象模型的能力,示出了强度降解动力学可以通过与损伤机构序列相关的三个不同功能来描述。尽管该模型的现象学特权,因此,即使在不同的动力学中,多种损伤机制也会同时发生,因此在不同的时间尺度上表现出它们的有效性。这突出了复合材料中损伤积累的分层性质,从漫反射矩阵裂解,纤维/矩阵界面失败与光纤和层面破裂和分层。

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