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Approach for Obtaining Material Mechanical Properties in Local Region of Structure Based on Accurate Analysis of Micro-indentation Test

Xue He, Jinxuan He, Jianlong Zhang, Yuxuan Xue

2021Chinese Journal of Mechanical Engineering11 citationsDOIOpen Access PDF

Abstract

Abstract The hot or cold processing would induce the change and the inhomogeneous of the material mechanical properties in the local processing region of the structure, and it is difficult to obtain the specific mechanical properties in these regions by using the traditional material tensile test. To accurately get actual material mechanical properties in the local region of structure, a micro-indentation test system incorporated by an electronic universal material test device has been established. An indenter displacement sensor and a group of special micro-indenter assemblies are established. A numerical indentation inversion analysis method by using ABAQUS software is also proposed in this study. Based on the above test system and analysis platform, an approach to obtaining material mechanical properties in the local region of structures is proposed and established. The ball indentation test is performed and combined with the energy method by using various changed mechanical properties of 316L austenitic stainless steel under different elongations. The investigated results indicate that the material mechanical properties and the micro-indentation morphological changes have evidently relevance. Compared with the tensile test results, the deviations of material mechanical parameters, such as hardness H , the hardening exponent n , the yield strength σ y , and others are within 5% obtained through the indentation test and the finite element analysis. It provides an effective and convenient method for obtaining the actual material mechanical properties in the local processing region of the structure.

Topics & Concepts

IndentationMaterials scienceMaterial propertiesIndentation hardnessComposite materialHardening (computing)Tensile testingFinite element methodUltimate tensile strengthStructural engineeringMicrostructureEngineeringLayer (electronics)Metal and Thin Film MechanicsForce Microscopy Techniques and ApplicationsAdvanced Surface Polishing Techniques
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