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Numerical and experimental study of crack behaviour at the zinc/TRIP steel 800 interface

机译:锌/ TRIP钢800界面裂纹行为的数值和实验研究

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In the present study, the behaviour of a crack with different orientations at the zinc/steel bi-material interface was investigated. ABAQUS finite element simulation was used for the estimation of stress intensity factor and energy release rate. It was found that the normalised stress intensity factor in the coating decreases and rapidly increases once the crack crosses the interface. The computation of the ratio between the energy release rate for deflection and penetration showed a value much lower than 1 whatever the crack orientation is. This result means that a crack is much more likely to deflect than to penetrate into the interface. In addition, analytical and numerical results were confirmed by microscopic examinations obtained from SEM observations.
机译:在本研究中,研究了在锌/钢双材料界面处不同取向的裂纹行为。 ABAQUS有限元模拟用于估算应力强度因子和能量释放率。已经发现,一旦裂纹越过界面,涂层中的归一化应力强度因子就会减小并迅速增加。无论裂纹取向如何,挠度和穿透的能量释放速率之间的比率的计算显示出的值远小于1。该结果意味着裂纹比渗透到界面中的可能性更大。另外,通过从SEM观察获得的显微镜检查证实了分析和数值结果。

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