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Study of Crack Interaction Effects Under Thermal Loading by Digital Photoelasticity and Finite Elements

机译:数字光弹性和有限元热负荷下裂纹相互作用效应的研究

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摘要

The effect of an interacting internal crack on the edge crack in a transient thermal stress field is evaluated using digital photothermoelastic experiments and finite element (FE) analysis. Initially, a transient thermal stress field is simulated using FE analysis for which the thermal boundary conditions are set based on the experimental isochromatic fringes. In this simulated thermal stress field, single edge crack with and without an internal short crack interacting at different configurations are modeled and the non-dimensional Stress Intensity Factor (SIF) values are evaluated at different time intervals. It is observed that the asymmetric and collinear configurations tend to increase the SIF of the edge crack whereas a parallel crack tends to decrease the SIF of the edge crack. For experimental evaluation, specimens with a single edge crack and asymmetric configuration of interacting cracks are considered and the non-dimensional SIF values are evaluated under a thermal stress field generated by edge heating and cooling. The results are compared with those obtained using the FE analysis.
机译:利用数字光热实验和有限元(Fe)分析评估相互作用的内裂对瞬时热应力场中边缘裂纹的影响。最初,使用Fe分析模拟瞬态热应力场,其基于实验性等振性设定了热边界条件。在该模拟的热应力场中,具有在不同配置中相互作用的单边缘裂缝进行建模,并且以不同的时间间隔评估非尺寸应力强度因子(SIF)值。观察到不对称和共线配置倾向于增加边缘裂纹的SIF,而平行裂缝趋于降低边缘裂纹的SIF。对于实验评估,考虑具有单个边缘裂缝和相互作用裂缝的不对称配置的标本,并且在边缘加热和冷却产生的热应力场下评估非维度SIF值。将结果与使用Fe分析获得的结果进行比较。

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