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Hygrothermal effect on the strain energy release rates and mode mixity of asymmetric delaminations in generally layered beams

机译:湿热对大致分层梁中不对称分层的应变能释放速率和模式混合的影响

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摘要

An analytical framework is presented to calculate the mode I and II components of the strain energy release rate (SERB) of a delamination between two generally layered sub-laminates, considering the residual hygrothermal stresses effect. First, the sub-laminates are modeled as Timoshenko beams, the crack tip is assumed rotationally flexible and the mode partitioning is based on the global method. Next, SERB and mode mixity are obtained for an arbitrarily loaded delaminated beam and reduced for some typical delamination fracture tests. An asymmetrically delaminated fiber metal laminate (FML) is analyzed under double cantilever beam (DCB) and end-notched flexure (ENF) configurations. For the ENF configuration, the inherent contact problem was analytically approached. We demonstrate that the thermal effect on the SERA and mode mixity of the FML, rather ignored so far in the literature, can be non-negligible. Finally, the analytical results are validated against numerical predictions using the finite element method.
机译:提出了一种分析框架,以计算两种大致分层的亚层压板之间分层的菌株能量释放速率(SERB)的模式I和II组分,考虑到残留的湿热胁迫效应。首先,将子层压板被建模为Timoshenko梁,裂缝尖端被假定旋转灵活,并且模式分区基于全局方法。接下来,获得塞巴和模式混合,用于任意加载的分层光束,并降低了一些典型的分层裂缝试验。在双悬臂梁(DCB)和端部缺口弯曲(ENF)配置下分析不对称分层的纤维金属层压板(FML)。对于ENF配置,在分析了固有的触点问题。我们证明,在文献中,FML的血清和模式混合的热效应可以是不可忽略的。最后,使用有限元方法验证分析结果与数值预测验证。

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