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ULTIMATE STRENGTHENING, THEORETICAL AND LIMIT TOOL HARDNESS

机译:终极强化,理论和限制工具硬度

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The influence of passing from a microcrystalline to a nanocrystalline structure on the mechanical properties of chromium deposited by magnetron sputtering is studied. The possibility of additional strengthening nanomaterials due to enrichment of grain boundaries by "useful" additives elements is established. A wide spectrum of materials in different structural states was investigated by the method of micromechanical tests. The notions of the "theoretical" hardness (largest hardness for the material) and "limit tool" hardness, connected with tool limitations in indentation, are introduced.
机译:研究了通过磁控溅射沉积的铬镀铬的机械性能对纳米晶体结构的影响。建立了通过“有用”添加剂元素富集晶界,额外加强纳米材料的可能性。通过微机械测试方法研究了不同结构状态的广谱材料。介绍了“材料的理论”硬度(材料的最大硬度)和“限制工具”硬度,与压痕中的刀具限制相关的“限制工具”硬度。

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