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Crack behaviour in zinc coating and at the interface zinc-hot galvanised TRIP steel 800

机译:锌涂层和界面处的裂纹行为锌热镀锌TRIP钢800

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In the present work, two paths of crack propagation in the bimaterial structure of zinc-TRIP steel 800 were investigated. Abaqus numerical simulation and singular integral equation method were used for the estimation of the crack behaviour at the interface. It was found that the energy release rate decreases as soon as the crack approaches the interface and increases when crossing it. The computation of the strain energies of deflection and penetration obtained from elastic modelling showed that the crack is more prone to deflect into the interface rather than to penetrate it. The same behaviour was supported by the volumetric approach results. Finally, analytical and numerical findings were in a good agreement with microscopic examination obtained from SEM observations.
机译:在本工作中,研究了锌-TRIP钢800的双材料结构中裂纹扩展的两个路径。用Abaqus数值模拟和奇异积分方程方法估计界面处的裂纹行为。已经发现,能量的释放速率随着裂纹接近界面而降低,而在穿过界面时则增加。通过弹性建模获得的挠曲和穿透应变能的计算表明,裂纹更容易挠曲到界面而不是穿透界面。体积方法结果支持了相同的行为。最后,分析和数值结果与从SEM观察得到的显微镜检查非常吻合。

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