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Experimental-numerical failure analysis of the c-Al0.66Ti0.34N-M2 steel system applying instrumented indentation and extended finite element method

机译:C-AL0.66TI0.34N-M2钢系统应用仪表压痕和延伸有限元法的实验 - 数值故障分析

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摘要

An experimental-numerical methodology for failure analysis of the c-Al0.66Ti0.34N/Interface/M2 steel coating system is proposed here. This Al0.66Ti0.34N coating was deposited by the arc-PVD technique. The values of the elastic modulus, the fracture energy release rate and the nano-hardness of the coating were obtained by nanoindentation. Normal and shear stress limits of the interface, as well as the adhesive and cohesive critical loads, were measured with the scratch test method. A finite element analysis, using the experimental mechanical properties, was carried out to understand the relationship between the irreversible work vs. depth curve and the mechanical failure evolution of the coating-substrate system, associating the pop-in with nucleation, crack growth and cracking pattern. Extended finite element method (XFEM) was applied for modeling of the mechanical behavior of the coating; the cohesive zones approach was applied for modeling the interface and the Ramberg-Osgood law for modeling the substrate. This approach proposes an experimental-numerical methodology for failure analysis of hard coatings (monolithic body) allowing to calculate fracture energy of the coating material and to model cracking patterns caused by contact mechanics. This work is the first step to answer questions about multi-scale approaches for multi-functional multi-layer coatings to push their enhancements and further applications.
机译:提出了一种用于C-Al0.66Ti0.34N /界面/ M2钢涂层系统的试验性分析的实验数值方法。通过ARC-PVD技术沉积该Al0.66Ti0.34N涂层。通过纳米狭窄获得弹性模量,断裂能量释放速率和涂层的纳米硬度的值。用刮擦试验方法测量界面的正常和剪切应力限制以及粘合剂和粘合性临界载荷。进行有限元分析,采用实验机械性能进行了解不可逆工作与深度曲线与涂层基板系统的机械故障演化之间的关系,将弹性粘合,裂纹生长和开裂相关联图案。延长有限元法(XFEM)用于建模涂层的力学行为;粘性区域采用方法应用于建模界面和Ramberg-Osgood定律来建造基板。该方法提出了一种用于硬涂层(整体体)的失效分析的实验 - 数值方法,允许计算涂层材料的裂缝能量和由接触力学引起的裂缝模式。这项工作是回答关于多功能多层涂层的多尺度方法问题的第一步,以推动其增强和进一步的应用。

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