GB/T 17360-2020
Microbeam analysis—Method of quantitative determination for low contents of silicon and manganese in steels using electron probe microanalyzer (English Version)

Standard No.
GB/T 17360-2020
Language
Chinese, Available in English version
Release Date
2020
Published By
国家市场监督管理总局、中国国家标准化管理委员会
Latest
GB/T 17360-2020
Replace
GB/T 17360-2008
Scope
This standard specifies the calibration curve for the determination of silicon and manganese content in carbon steel and low alloy steel (iron mass fraction greater than 95%) using an electron probe. This standard is applicable to electron probe spectrometers, not to energy spectrometers. A scanning electron microscope with a spectrometer can be used as a reference.

GB/T 17360-2020 Referenced Document

  • GB/T 13298 Inspection methods of microstructure for metals
  • GB/T 15074 General guide of quantitative analysis by EPMA
  • GB/T 15247 Microbeam analysis.Electron probe microanalysis.Guidelines for determining the carbon content of steels using calibration curve method
  • GB/T 20725 Electron probe microanalysis guidelines for qualitative point analysis by wavelength dispersive X-ray spectrometry
  • GB/T 21636 Microbeam analysis—Electron probe microanalysis (EPMA)—Vocabulary*2021-12-31 Update
  • GB/T 27025 General requirements for the competence of testing and calibration laboratories
  • GB/T 4930 Microbeam analysis—Electron probe microanalysis—Guidelines for the specification of certified reference materials (CRMs)*2021-05-21 Update

GB/T 17360-2020 history

  • 2020 GB/T 17360-2020 Microbeam analysis—Method of quantitative determination for low contents of silicon and manganese in steels using electron probe microanalyzer
  • 2008 GB/T 17360-2008 Quantitative analysis method of low content Si and Mn in steel with electron probe microanalysis
  • 1998 GB/T 17360-1998 Method of quantitative electron probe microanalysis on low contents of Si and Mn in steels
Microbeam analysis—Method of quantitative determination for low contents of silicon and manganese in steels using electron probe microanalyzer



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