Application of instrumented indentation technique in <italic>in situ</italic> performance characterization of high-speed rail rim

Author:

FANG Jian,DONG Li,CHEN TianBin,ZHANG JianWei

Publisher

Science China Press., Co. Ltd.

Reference37 articles.

1. Cong T, Han J M, Chen G, et al. Study on performance of new material wheel for high speed electric multiple unit (in Chinese). China Railway Sci, 2018, 39: 75–81 [丛韬, 韩建民, 陈刚, 等. 高速动车组新材质车轮性能研究. 中国铁道科学, 2018, 39: 75–81].

2. International Organization for Standard. ISO/TR 29381: 2008 Metallic materials—Measurement of mechanical properties by an instrumented indentation test—Indentation tensile properties. Switzerland: ISO Copyright Office, 2008.

3. State Administration for Market Regulation, Standardization Administration. GB/T 39635-2020 Determination of indentation tensile properties and residual stresses of metallic materials by instrumented indentation (in Chinese). Beijing: China Standards Press, 2020 [国家市场监督管理总局, 国家标准化管理委员会. GB/T 39635-2020《金属材料仪器化压入法测定压痕拉伸性能和残余应力》. 北京: 中国标准出版社, 2020].

4. Zhang T, Wang S, Wang W. A constitutive model independent analytical method in determining the tensile properties from incremental spherical indentation tests (ISITs). Int J Mech Sci, 2018, 148: 9-19.

5. Zhang T, Wang S, Wang W. A comparative study on uniaxial tensile property calculation models in spherical indentation tests (SITs). Int J Mech Sci, 2019, 155: 159-169.

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