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首页> 外文期刊>International Journal of Mechanical Sciences >Characterization of elastic-plastic coated material properties by indentation techniques using optimisation algorithms and finite element analysis
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Characterization of elastic-plastic coated material properties by indentation techniques using optimisation algorithms and finite element analysis

机译:利用优化算法和有限元分析表征弹性塑料涂层材料特性的缩进技术及有限元分析

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Determination of the material properties of coated thin films on substrates has always been complicated due to the influence of the substrate deformation on the thin film behaviour. In this study, indentation tests are used to continuously capture the indentation load, P, as a continuous function of the depth of penetration, h, into the indented specimen. Numerical optimisation schemes are used to extract elastic-plastic material properties of thin film coating materials from an indentation loading-unloading curve. Material parameters with non-linear isotropic hardening are determined by minimizing the least squares error (LSE) between target data and the results obtained from FE analysis of the indentation test. Lagrange linear interpolation polynomial (LLIP) and Cubic B-Spline approach are used for axisymmetric conical model and three-dimensional Berkovich model, respectively, to obtain the relationship between the applied load and penetration depth in the loading-unloading curve. This study also considers a global optimisation approach using a load-displacement curve based on a sharp indenter tip applied to HA coating on Ti-6Al-4V substrate, Al2O3 coating on Al substrate and Cr coating on SS substrate. Additionally, in order to maintain FE analysis accuracy, multiple starting points are performed to obtain the correct material properties. The proposed optimisation algorithm is shown to achieve excellent convergence even when the initial guess values are much greater or less than the target values and hence is potentially considered for characterising intrinsic material properties of coated thin films on substrates that exhibit significant elastic-plastic deformation.
机译:由于基板变形对薄膜行为的影响,涂覆薄膜的材料特性始终复杂。在该研究中,压痕试验用于连续捕获压痕载荷P,作为渗透深度H的连续函数H,进入凹版标本。数值优化方案用于从压痕装卸曲线中提取薄膜涂料材料的弹性塑料材料特性。具有非线性各向同性硬化的材料参数是通过最小化目标数据之间的最小二乘误差(LSE)和从压痕测试的FE分析获得的结果来确定。拉格朗日线性插值多项式(LLIP)和立方B样条方法用于分别用于轴对称锥形模型和三维Berkovich模型,以获得加载卸载曲线中施加的负载和穿透深度之间的关系。本研究还考虑了使用基于尖锐的压缩曲线的全局优化方法,该曲率基于在Ti-6AL-4V基板上的HA涂层上施加到HA涂层,Al2O3在Al底物上涂布和SS衬底上的Cr涂层。另外,为了维持Fe分析精度,进行多个起始点以获得正确的材料特性。所提出的优化算法表明,即使当初始猜测值大于目标值,也可以实现优异的收敛性,并且因此可能考虑用于表征涂覆薄膜的内在材料特性,其在具有显着弹性塑性变形的基材上。

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