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The effect of the irregular interface geometry in deformation and fracture of a steel substrate-boride coating composite

机译:界面不规则几何形状对钢基底-硼化物涂层复合材料变形和断裂的影响

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摘要

Presented in this paper is a computational analysis of the mechanisms involved in plastic deformation and fracture of a composite with coating under compressive and tensile loading. Using a steel specimen surface-hardened by diffusion borating, a role of the irregular geometry of the interface between the base material and hardened surface layer is investigated. In order to describe the mechanical behavior of the steel substrate and brittle coating, use is made of a plastic flow model including isotropic strain hardening and a fracture model, respectively. Using the Huber fracture criterion, the model takes into account the difference in the critical strength values for different types of local compressive and tensile states. It is shown that the irregular, serrated shape of the substrate-coating interface retards propagation of a longitudinal crack into this coating and prevents it from spalling under external compression of this composite. It is found out that even in the case of a simple uniaxial compression of the mesovolumes of this composite the boride "teeth" are subjected to tensile stresses, whose values are comparable with those of the external compressive load, and the direction of crack propagation and the general fracture behavior largely depend on the external loading conditions.
机译:本文介绍的是在压缩和拉伸载荷作用下具有涂层的复合材料塑性变形和断裂所涉及的机理的计算分析。使用通过扩散硼酸处理而表面硬化的钢试样,研究了基材与硬化表面层之间的界面的不规则几何形状的作用。为了描述钢基底和脆性涂层的机械性能,分别使用了包括各向同性应变硬化和断裂模型的塑性流动模型。使用Huber断裂准则,该模型考虑了不同类型的局部压缩和拉伸状态的临界强度值的差异。结果表明,基底-涂层界面的不规则锯齿状形状阻止了纵向裂纹向该涂层中的传播,并防止了该复合材料在外部压缩下的剥落。已经发现,即使在简单地对该复合材料的介孔腔进行单轴压缩的情况下,硼化物“牙齿”也受到拉伸应力,该拉伸应力的值与外部压缩载荷的值相当,并且裂纹扩展的方向和一般的断裂行为在很大程度上取决于外部载荷条件。

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