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Mechanical Behavior and Damage of Zinc Coating for Hot Dip Galvanized Steel Sheet DP600

机译:热浸镀锌钢板锌涂层的力学行为及损伤DP600

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Advanced high strength galvanized steel sheet has been one of the dominant materials of modern automotive panels because of its outstanding mechanical properties and corrosion resistance. The zinc coating thickness of hot dip galvanized steel sheet is only about 10–20μm, which is a discarded object on the macro level. However, it is obvious to damage and impact on stamping performance. Therefore, this paper takes zinc coating as the research object and builds its mechanical constitutive model based on a nano-indentation test and dimensional analysis theory. We separated the zinc coating from the galvanized steel substrate and constructed a sandwich material model by introducing a cohesive layer to connect the zinc coating and the steel substrate. We obtained the interface binding energy between the zinc coating and the steel substrate through the nano-scratch test. The accuracy of the model is verified by the finite element analysis of hemispherical parts. We used the five-layers element model with 0 thickness cohesive layer to simulate the zinc coating damage of galvanized steel sheet. The hemispherical part drawing experiment is used to verify the feasibility of the finite element analysis results. The results demonstrate that it is more accurate to consider the finite element numerical simulation of the zinc coating, introducing the cohesive element to simulate damage between the coating and the substrate. Drawing depth, stamping force, and the strain of the numerical simulation are closer to the experimental results.
机译:先进的高强度镀锌钢板是现代汽车面板的主导材料之一,因为其出色的机械性能和耐腐蚀性。热浸镀锌钢板的锌涂层厚度仅为10-20μm,这是宏观水平上的丢弃物体。然而,显而易见的是损坏和对冲压性能的影响。因此,本文采用锌涂层作为研究对象,基于纳米压痕试验和尺寸分析理论构建其机械本构模型。我们将锌涂层从镀锌钢基板分开并通过引入粘性层构建夹层材料模型,以连接锌涂层和钢基板。我们通过纳米划痕试验获得了锌涂层和钢基板之间的界面结合能量。通过半球形部件的有限元分析来验证模型的准确性。我们使用了具有0厚度粘性层的五层元素模型来模拟镀锌钢板的锌涂层损坏。半球形部分绘图实验用于验证有限元分析结果的可行性。结果表明,考虑锌涂层的有限元数值模拟更准确,引入粘性元件以模拟涂层和基材之间的损伤。绘制深度,冲压力和数值模拟的应变更接近实验结果。

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