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Analysis of Buckling and Interfacial Debonding of Galvannealed Coating Layer on Steel Substrates under Applied Tensile Strain

机译:施加拉伸应变的钢基底镀锌涂层的屈曲和界面剥离分析

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摘要

As the hot-dipped galvannealed steels are composed of brittle coating layer with low failure strain and ductile substrate with far higher failure strain. When tensile stress is applied externally on the coated steels, the coating layer exhibits multiple cracking perpendicular to the tensile direction, and then interfacial debonding occurs, following the buckling of the coating layer in the sample width direction. In the present work, the interfacial debonding behavior was observed with the scanning electron microscope and analyzed with 3-dimentional finite element models, to reveal the influence of the crack spacing on the buckling-in-duced interfacial debonding. In the analysis, three cases with different crack spacing in the coating layer were used. The results of analysis could account well for the experimentally observed buckling-induced spalling process of the coating layer. Furthermore it was revealed that, the shorter the crack spacing of the coating layer in the tensile direction, the less the interfacial debonding takes place.
机译:由于热浸镀锌钢由低破坏应变的脆性涂层和高破坏应变的延性基体组成。当在外部向涂层钢施加拉伸应力时,涂层会在垂直于拉伸方向的位置出现多次开裂,然后在涂层沿样品宽度方向弯曲之后发生界面剥离。在目前的工作中,用扫描电子显微镜观察界面剥离行为,并用三维有限元模型进行分析,以揭示裂纹间距对屈曲引起的界面剥离的影响。在分析中,使用了在涂层中具有不同裂缝间距的三种情况。分析结果可以很好地解释实验观察到的涂层引起的屈曲剥落过程。此外还表明,涂层在拉伸方向上的裂纹间距越短,发生的界面剥离越少。

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