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Fracture mechanics analysis of coating/substrate systems part I: analysis of tensile and bending experiments

机译:涂层/基体系统的断裂力学分析第一部分:拉伸和弯曲实验分析

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摘要

A finite fracture mechanics model is used to predict the development of multiple cracks in the coating layer of coating/substrate systems. The stresses in a cracked coating are evaluated by a variational mechanics approach. These stresses are then used to calculate the total energy released due to the formation of a complete crack in the coating layer. The analysis can handle tensile loads or bending loads and includes the effect of residual thermal stresses. By assuming the next coating crack forms when the energy released due to the formation of a complete microcrack equals the in situ fracture toughness of coating, it is proposed that one can predict the number of coating cracks as a function of applied strain. Alternatively, it is proposed that experimental data for number of cracks vs. strain can be fit to the fracture analysis and be used to determine an in situ coating fracture toughness.
机译:使用有限的断裂力学模型来预测涂层/基材系统的涂层中多个裂纹的发展。裂纹涂层中的应力通过变力学方法进行评估。然后将这些应力用于计算由于在涂层中形成完整裂纹而释放的总能量。该分析可以处理拉伸载荷或弯曲载荷,并包括残余热应力的影响。通过假设当由于形成完整的微裂纹而释放的能量等于涂层的原位断裂韧性时,会形成下一个涂层裂纹,建议人们可以根据施加的应变来预测涂层裂纹的数量。或者,建议将裂纹数量与应变的实验数据拟合到断裂分析中,并用于确定原位涂层断裂韧性。

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