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Atomistic modeling of nanoindentation in iron and silver

机译:铁和银中纳米压痕的原子建模

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Experimental and theoretical investigations of nanoindentation into fcc silver and bcc iron were performed, including an investigation of the effect near the grain boundaries. Experimentally, micrograph images of the surfaces and force-depth curves were obtained which were used to determine the hardness and Young's modulus of the materials. Molecular dynamics simulations, on smaller systems than those investigated experimentally, exhibit the main experimental attributes, showing the plastic deformation of the substrates with piling-up of the work material along the indenter sides. The simulations also show how defects in the substrates form and these are contrasted with the various materials under investigation.
机译:进行了对fcc银和bcc铁纳米压痕的实验和理论研究,包括对晶界附近影响的研究。实验上,获得了表面的显微照片图像和力-深度曲线,用于确定材料的硬度和杨氏模量。在比实验研究的系统更小的系统上进行的分子动力学模拟显示了主要的实验属性,显示了随着工作材料沿压头侧堆积而导致的基材塑性变形。仿真还显示了基材中缺陷的形成方式,并将这些缺陷与正在研究的各种材料进行对比。

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