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Nanoindentation Size Effect of KDP Crystal by Instrumented Indentation Testing

机译:仪表压痕试验KDP晶体的纳米凸起尺寸效应

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摘要

Indentation tests and single-point scratch tests are probably the simplest methods of measuring the elastic, plastic and fracture behavior of brittle materials. In this paper, the near-surface mechanical properties of KDP single crystal have been investigated including the elasticity like Young's modulus E, and the plasticity like the hardness H. These material properties can be used to predict the material responses in optical manufacturing operations. Hardness and elastic modulus on different crystal plane of KDP single crystal have been examined under different loads by nanoindentation test, and the influence of the indentation load on hardness and elastic modulus have been also analyzed systematically. The results show the nanoindentation size effect, that is, the hardness and elastic modulus increase as the indentation load decreases. The hardness and elastic modulus have strong anisotropy in the different crystallographic orientation of the same crystal plane.
机译:压痕试验和单点划痕测试可能是测量脆性材料的弹性,塑料和断裂行为的最简单方法。本文研究了KDP单晶的近表面机械性能,包括杨氏模量E等弹性,以及硬度H的可塑性。这些材料特性可用于预测光学制造操作中的材料响应。通过纳米狭窄试验在不同负载下检查了KDP单晶不同晶体平面上的硬度和弹性模量,并系统地分析了压痕载荷对硬度和弹性模量的影响。结果表明,随着压痕载荷减小,纳米凸缘尺寸效应,即硬度和弹性模量增加。硬度和弹性模量具有相同晶体平面的不同晶体取向的强四个各向异性。

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