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首页> 外文期刊>Mechanics of materials >Study Of The Rate-dependent Behavior Of Pure Nickel In Conical Nanoindentation Through Numerical Simulation Coupled To Experiments
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Study Of The Rate-dependent Behavior Of Pure Nickel In Conical Nanoindentation Through Numerical Simulation Coupled To Experiments

机译:通过数值模拟与实验研究纯镍在锥形纳米压痕中的速率依赖性行为

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摘要

The use of specific metallic materials in micro-mechanical systems is promising for surgical applications due to their bio-compatibility and interesting mechanical and wear properties compared to the widely used material, silicon. Nanoindentation is one of the methods used to investigate the mechanical properties of materials at the nano-scale. Numerical simulation tools are useful in the understanding of the nanoindentation experiment. In this paper, the results of numerical simulations coupled to nanoindentation experiments conducted at various indentation depths and at different load rates on pure nickel are presented. The study parameters are carefully chosen to ensure the closest possible conditions between the experiments and the numerical simulations. It is shown that a good agreement between the experimental and the numerical results can be obtained for both the load levels and the creep indentation phase (displacement-time curves in the holding period) when taking into account a simple model with rate-dependent material behavior, and using a material parameter set that is in the acceptable domain for metals.
机译:与广泛使用的材料硅相比,由于微材料的生物相容性以及令人感兴趣的机械和磨损性能,在微机械系统中使用特殊的金属材料有望在外科手术中得到应用。纳米压痕是用于研究材料在纳米尺度上的机械性能的方法之一。数值模拟工具有助于理解纳米压痕实验。在本文中,给出了在纯镍上不同压痕深度和不同负载率下进行的纳米压痕实验的数值模拟结果。仔细选择研究参数,以确保实验和数值模拟之间最接近的可能条件。结果表明,当考虑到一个简单的具有速率相关材料行为的模型时,对于载荷水平和蠕变压痕阶段(保持期间的位移时间曲线),都可以在实验和数值结果之间取得良好的一致性。 ,并使用金属可接受范围内的材料参数集。

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