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Effect of material stiffness on hardness: A computational study based on model potentials

机译:材料刚度对硬度的影响:基于模型势的计算研究

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摘要

We investigate the dependence of the hardness of materials on their elastic stiffness. This is possible by constructing a series of model potentials of Morse type; starting with modelling natural Cu, the model potentials exhibit an increased elastic modulus, while keeping all other potential parameters (lattice constant, bond energy) unchanged. Using molecular-dynamics simulation, we perform nanoindentation experiments on these model crystals. We find that the crystal hardness scales with the elastic stiffness. Also the load drop, which is experienced when plasticity sets in, increases in proportion to the elastic stiffness, while the yield point, i.e. the indentation at which plasticity sets in, is independent of the elastic stiffness.
机译:我们研究了材料硬度对其弹性刚度的依赖性。这可以通过构造一系列的摩尔斯型电势来实现。从建模天然Cu开始,模型电势显示出增加的弹性模量,同时保持所有其他电势参数(晶格常数,键能)不变。使用分子动力学模拟,我们对这些模型晶体进行了纳米压痕实验。我们发现晶体硬度与弹性刚度成比例。同样,当塑性进入时,所经历的载荷下降与弹性刚度成比例地增加,而屈服点,即塑性进入的凹痕,与弹性刚度无关。

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