Measurement uncertainty of metallic ductility in tensile tests: intermediate temperature embrittlement and strain rate embrittlement

Author:

Xu Ting-Dong ,Liu Zhen-Jun ,Yu Hong-Yao ,Wang Kai ,

Abstract

International Standard, ISO 6892-2, Metallic Materials-Tensile Testing: Method of Test at Elevated Temperature maintained that the strain rate variations and test temperature variations can induce the measurement uncertainty of mechanical properties in tensile testing, which will imperil the reliability of tension tests. In this paper, the measurement uncertainties of shrinkage rate or elongation rate in tensile testing cross-section, intermediate temperature embrittlement and strain rate embrittlement are first described experimentally. Second, the fundamental results on the microscopic theory of elastic deformation in metals are briefly mentioned. Then the phenomena of the measurement uncertainties are explained based on the microscopic theory. It is expounded that the elastic deformation of tension tests induces the impurities to segregate to grain boundaries and the relative embrittlement which produces the measurement uncertainties of reduction in area. This work gives a theoretical basis for correcting the present standard method of tension testing to avoid the measurement uncertainty of reduction in area.

Publisher

Acta Physica Sinica, Chinese Physical Society and Institute of Physics, Chinese Academy of Sciences

Subject

General Physics and Astronomy

Reference23 articles.

1. Zhang C L, Han P D, Wang X H, Zhang Z X, Wang L P, Xu H X 2013 Chin. Phys. B 22 126802

2. ASTM International: 2003 Standard Test Methods for Elevated Temperature Tension Tests of Metallic Materials ASTM International, Designation: E21-03a, 1

3. International Standard 2011 ISO 6892-2, Metallic Materials-Tensile Testing Part 2: Method of Test at Elevated Temperature (1st Ed.) 9

4. Sun D S, Yamane T, Hirao K 1991 J. Mater. Sci. 26 689

5. Sun D S, Yamane T, Hirao K 1991 J. Mater. Sci. 26 5767

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