使用仪器压痕的结构评估:强度,韧性和残余应力

D. Kwon, Jong Hyoung Kim, O. Kwon, Woojoo Kim, Sungki Choi, Seunghun Choi, K. Kim, D. Ro
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引用次数: 0

摘要

仪器压痕技术(IIT)是一种通过分析压痕过程中测量的压痕载荷-深度曲线来评价材料拉伸性能、韧性和残余应力等力学性能的新方法。它可以直接应用于工业结构和结构部件的小尺寸和局部截面,因为样品制备非常容易,实验过程是非破坏性的。本文介绍了用IIT测量力学性能的原理:利用具有代表性的应力应变法测量拉伸性能,通过分析无应力和应力状态压痕曲线分析残余应力,根据材料的断裂行为基于韧性或脆性模型测量金属的断裂韧性。通过对比单轴拉伸测试拉伸性能、机械锯切和钻孔测试残余应力以及CTOD测试断裂韧性等常规方法的结果,验证了IIT的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structure Assessment Using Instrumented Indentation: Strength, Toughness and Residual Stress
The instrumented indentation technique (IIT) is a novel method for evaluating mechanical properties such as tensile properties, toughness and residual stress by analyzing the indentation load-depth curve measured during indentation. It can be applied directly on small-scale and localized sections in industrial structures and structural components since specimen preparation is very easy and the experimental procedure is nondestructive. We introduce the principles for measuring mechanical properties with IIT: tensile properties by using a representative stress and strain approach, residual stress by analyzing the stress-free and stressed-state indentation curves, and fracture toughness of metals based on a ductile or brittle model according to the fracture behavior of the material. The experimental results from IIT were verified by comparing results from conventional methods such as uniaxial tensile testing for tensile properties, mechanical saw-cutting and hole-drilling methods for residual stress, and CTOD test for fracture toughness.
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