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Experimental-numerical approach for characterization of mechanical properties of thin electrochemically deposited chromium and copper films

机译:薄电化学沉积铬和铜薄膜力学性能表征的实验 - 数值方法

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A hybrid experimental-numerical approach, which combines microindentation experiments (where we measure the diagonal of the residual imprint after unloading) and numerical simulations by means of the finite-element method has been developed. The investigated materials in the present work are electrochemically deposited on brass substrates chromium and copper films with known thickness and unknown mechanical properties. Mechanical properties of the brass (CuZn36) substrate are known. Vickers' microindentation experiments were carried out on the films and as a result the experimental load-displacement curves were obtained. After that the process of microindentation was modelled numerically by means of the finite-element method. Numerically obtained load-displacement curves were compared with the experimental curves. The results show good coincidence between numerical and experimental curves. Additionally it was realized nanoindentation experiment of thin copper film and these two methods (nanoindentation experiment and hybrid experimental-numerical method which combines experiment of microindentation and numerical simulations) for determination of mechanival properties of thin copper films were compared. Results obtained by means of the afore-mentioned two methods almost coincide but the second method is cheaper and gives more information about material properties of the film than the first method. It is shown that the second method is preferable to determine the mechanical properties of thin metal films.
机译:已经开发了一种混合实验 - 数值方法,其结合了微观化实验(在卸载后剩余印记的对角线)和通过有限元方法的数值模拟已经开发出来。本作工作中的研究材料在黄铜基材上用已知厚度和未知的机械性能电化学沉积在黄铜基材铬和铜膜上。已知黄铜(CuzN36)衬底的力学性能。在薄膜上进行维克斯的微观化实验,结果获得了实验性负载 - 位移曲线。之后,通过有限元方法,数值上模拟微图案的过程。将数值获得的负载 - 位移曲线与实验曲线进行比较。结果表现出数值和实验曲线之间的良好巧合。另外,它实现了薄铜膜的纳米凸缘实验,并进行了这两种方法(结合了微观entation的实验和数值模拟的杂交实验 - 数值方法,用于测定薄铜膜的机械性能。通过前述两种方法获得的结果几乎重合,但第二种方法更便宜并提供关于膜的材料特性的更多信息,而不是第一方法。结果表明,第二种方法优选确定薄金属膜的机械性能。

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