Sign In |Help & Support
ALL SECTORS
  • ALL SECTORS
  • GB(National Standard)
  • CB(Shipping)
  • CECS(Engineering Construction)
  • CJ(Urban Construction)
  • CY(News and Publication)
  • DB(Provincial Standard)
  • DL(Electricity & Power)
  • DZ(Geology & Mineralogy)
  • FZ(Spinning & Textile)
  • GA(Public Security)
  • HB(Aviation)
  • HG(Chemical Industry)
  • HJ(Environmental Protection)
  • JB(Machinery)
  • JC(Building Materials)
  • JG(Building & Construction)
  • JJ(Metering)
  • JT(Highway & Transportation)
  • LY(Forestry)
  • MT(Coal)
  • NB(Energy)
  • NY(Agriculture)
  • QB(Light Industry)
  • QC(Automobile & Vehicle)
  • QJ(Aerospace)
  • SH(Petrochemical)
  • SJ(Electronics)
  • SL(Water Resources)
  • SN(Commodity Inspection)
  • SY(Oil & Gas)
  • TB(Railway & Train)
  • YB(Ferrous Metallurgy)
  • YC(Tobacco)
  • YD(Telecommunication)
  • YY(Medical Device)
Database: 365,228(8 Aug 2026)

neutron detection method

neutron detection method, Total:102 items.

The international standard classification for "neutron detection method" includes: Optical measuring instruments , Radiation measurements , Nuclear energy engineering , Optical equipment , Other standards related to analytical chemistry , Electronic components in general , Switches , Testing of metals .

The Chinese standard classification for "neutron detection method" includes: Electron optics and other physical optics instrument , Nuclear instrument and detector in general , Nuclear detector , Electrochemical, thermochemistry and optical profile type analyzer , Infrared device , Electrical equipment and tool in general , Ultrasonic wave and sound radiation defectoscope .


Professional Standard - Energy

  • NB/T 20695-2023 Identification of external neutron detectors in nuclear power plants
  • NB/T 20150-2012 Characteristics and Test Methods of Self-powered Neutron Detectors for Nuclear Power Plants

Professional Standard - Nuclear Industry

Military Standard of the People's Republic of China-General Armament Department

  • GJB 1788-1993 Infrared detector test method
  • GJB 10098-2021 Specifications for mid-energy particle detectors in space
  • GJB 9562-2018 Simulated field neutron spectrum and fluence measurement methods for radiation-resistant reinforcement: Threshold detector method
  • GJB 3495-1998 Neutron energy spectrum measurement method for fast neutron pulse reactor

General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China

  • GB/T 15074-1994 General guide for EPMA quantitative analysis
  • GB/T 13584-1992 Measuring methods for parameters of infrared detectors
  • GB/T 17360-1998 Method of quantitative electron probe microanalysis on low contents of Si and Mn in steels
  • GB/T 15074-2025 General specification for EPMA quantitative analysis
  • GB/T 15074-2008 General guide of quantitative analysis by EPMA
  • GB/T 7167-1996 Test procedures for germanium gamma-ray detectors
  • GB/T 15075-1994 Method for testing EPMA instrument
  • GB/T 17360-2020 Microbeam analysis- Method of quantitative determination for low contents of silicon and manganese in steels using electron probe microanalyzer
  • GB/T 5201-2012 Test procedures for semiconductor charged particle detectors
  • GB/T 7167-2008 Test procedures for germanium gamma-ray detectors
  • GB/T 17363-1998 Method of quantitative electron probe microanalysis on gold products
  • GB/T 44299-2024 Methods of measurement and declaration of the detection range of detectors—Passive infrared detectors for major and minor motion detection
  • GB/T 17360-2008 Quantitative analysis method of low content Si and Mn in steel with electron probe microanalysis
  • GB/T 15244-2002 Quantitative analysis of glass by electron probe microanalysis
  • GB/T 5201-1994 Test procedures for semiconductor charged particle detectors

Professional Standard - Aviation

  • HB 8422-2014 Quantitative detection method of EPMA for trace elements in alloys

Professional Standard - Machinery

  • JB/T 10062-1999 Testing methods for performance of probes used in ultrasonic flaw detection

未注明发布机构

Yunnan Provincial Standard of the People's Republic of China

  • DB53/T 443-2012 Fire technical appraisal method Electron probe analysis method

Professional Standard - Earthquake

  • DB/T 15-2005 Method for surveying and prospecting of active fault

Professional Standard - Petroleum

  • SY/T 6027-2019 Quantitative analysis of rocks and minerals by electron probe microanalysis
  • SY/T 6027-2012 Quantitative Analysis Method of Rock and Mineral by Electron Probe Microanalysis
  • SY/T 6027-1994 Electron Probe Quantitative Analysis Method for Oxygenated Minerals

Association Francaise de Normalisation

  • XP P94-123-1999 Soil : investigation and testing. Well logging. Neutron probe method.
  • XP P94-123:1999 Soils: reconnaissance and tests - Logging in boreholes - Neutron probe method
  • NF X31-500*NF ISO 10573:1996 Soil quality. Determination of water content of the unsaturated zone. Neutron depth probe method.
  • NF ISO 10573:1996 Soil quality - Determination of the water content of the unsaturated zone - Depth neutron probe method
  • NF EN IEC 63180:2020 Measuring methods and qualification of detector detection range - Passive infrared detectors for detecting high and low amplitude movements

American Society for Testing and Materials (ASTM)

  • ASTM F1393-02 Miller feedback probe measurement of net carrier density in silicon wafers - mercury probe method
  • ASTM E721-07 Standard Guide for Determining Neutron Energy Spectra from Neutron Sensors for Radiation-Hardness Testing of Electronics
  • ASTM STP 339-1963 A new method for electron probe microanalysis: absorption correction calculation
  • ASTM E720-02 Standard Guide for Selection and Use of Neutron Sensors for Determining Neutron Spectra Employed in Radiation-Hardness Testing of Electronics
  • ASTM E720-04e1 Standard Guide for Selection and Use of Neutron Sensors for Determining Neutron Spectra Employed in Radiation-Hardness Testing of Electronics
  • ASTM E720-08 Standard Guide for Selection and Use of Neutron Sensors for Determining Neutron Spectra Employed in Radiation-Hardness Testing of Electronics
  • ASTM E720-04 Standard Guide for Selection and Use of Neutron Sensors for Determining Neutron Spectra Employed in Radiation-Hardness Testing of Electronics
  • ASTM D5220-08 Standard Test Method for Water Mass per Unit Volume of Soil and Rock In-Place by the Neutron Depth Probe Method
  • ASTM F1392-00 Standard Test Method for Determining Net Carrier Density Profiles in Silicon Wafers by Capacitance-Voltage Measurements With a Mercury Probe
  • ASTM F1393-92(1997) Standard Test Method for Determining Net Carrier Density in Silicon Wafers by Miller Feedback Profiler Measurements With a Mercury Probe

British Standards Institution (BSI)

  • BS 7755-5.2:1996 Soil quality. Physical methods. Determination of water content in the unsaturated zone. Neutron depth probe method
  • BS EN 25814:1992 Method for determination of dissolved oxygen in water: electrochemical probe method
  • BS IEC 61468:2000 Nuclear power plants - In-core instrumentation - Characteristics and test methods of self-powered neutron detectors
  • BS ISO 28057:2014 Dosimetry with solid thermoluminescence detectors for photon and electron radiations in radiotherapy

Korean Agency for Technology and Standards (KATS)

  • KS C IEC 61468-2021 Nuclear power plants-In-core instrumentation-Characteristics and test methods of self-powered neutron detectors
  • KS C IEC 61468-2006(2016) Nuclear power plants-In-core instrumentation-Characteristics and test methods of self-powered neutron detectors
  • KS C IEC 61468:2006 Nuclear power plants-In-core instrumentation-Characteristics and test methods of self-powered neutron detectors
  • KS C IEC 61468-2006(2021) Nuclear power plants-In-core instrumentation-Characteristics and test methods of self-powered neutron detectors
  • KS I ISO 10573:2005 Soil quality-Determination of water content in the unsaturated zone(Neutron depth probe method)
  • KS I ISO 10573-2020 Soil quality-Determination of water content in the unsaturated zone(Neutron depth probe method)
  • KS I ISO 10573-2005(2020) Soil quality-Determination of water content in the unsaturated zone(Neutron depth probe method)
  • KS D 0213-1983 Method for magnetic particle testing of ferromagnetic materials and classification of magnetic particle indication
  • KS D 0213-1994 Method for magnetic particle testing of ferromagnetic materials and classification of magnetic particle indication

German Institute for Standardization

  • DIN 25456-1:1999-10 Neutron fluence measurement - Part 1: Fast-neutron fluence determination with activation and fission detectors
  • DIN 25456-2:1999 Neutron fluence measurement - Part 2: Fast-neutron fluence determination with iron activation detectors
  • DIN 25456-6:1999 Neutron fluence measurement - Part 6: Fast-neutron fluence determination with thorium fission detectors
  • DIN 25456-4:1999 Neutron fluence measurement - Part 4: Fast-neutron fluence determination with niob activation detectors
  • DIN 25456-5:1999 Neutron fluence measurement - Part 5: Fast-neutron fluence determination with copper activation detectors
  • DIN 25456-3:1999 Neutron fluence measurement - Part 3: Fast-neutron fluence determination with nickel activation detectors
  • DIN IEC 333:1995 Test methods for charged particle semiconductor detectors of nuclear instruments
  • DIN 6800-1:1980 Procedures in dosimetry; principles of photon and electron dosimetry with probe-type detectors
  • DIN 6800-1 E:2013-04 Procedures in dosimetry; principles of photon and electron dosimetry with probe-type detectors
  • DIN 25456-6:1999-10 Neutron fluence measurement - Part 6: Fast-neutron fluence determination with thorium fission detectors
  • DIN 25456-3:1999-10 Neutron fluence measurement - Part 3: Fast-neutron fluence determination with nickel activation detectors
  • DIN 25456-2:1999-10 Neutron fluence measurement - Part 2: Fast-neutron fluence determination with iron activation detectors
  • DIN 25456-5:1999-10 Neutron fluence measurement - Part 5: Fast-neutron fluence determination with copper activation detectors
  • DIN 25456-4:1999-10 Neutron fluence measurement - Part 4: Fast-neutron fluence determination with niob activation detectors
  • DIN 6802-3:2007-06 Neutron dosimetry - Part 3: Methods for neutron measurement in radiation protection
  • DIN 6802-3:2007 Neutron dosimetry - Part 3: Methods for neutron measurement in radiation protection

Kingdom of Bahrain Testing and Metrology Directorate

  • BH GSO IEC 61468:2016 Nuclear power plants - In-core instrumentation - Characteristics and test methods of self-powered neutron detectors
  • BH GSO IEC 61788-22-3:2024 Superconductivity - Part 22-3: Superconducting strip photon detector - Dark count rate

GCC Standardization Organization

  • GSO IEC 61468:2014 Nuclear power plants - In-core instrumentation - Characteristics and test methods of self-powered neutron detectors

International Electrotechnical Commission (IEC)

  • IEC 61468:2000 Nuclear power plants - In-core instrumentation - Characteristics and test methods of self-powered neutron detectors
  • IEC 61468:2000/AMD1:2003 Nuclear power plants - In-core instrumentation - Characteristics and test methods of self-powered neutron detectors; Amendment 1
  • IEC 63180:2020 Methods of measurement and declaration of the detection range of detectors - Passive infrared detectors for major and minor motion detection

European Telecommunications Standards Institute (ETSI)

AASHTO - American Association of State Highway and Transportation Officials

  • T 332-2007 Standard Method of Test for Determining Chloride Ions in Concrete and Concrete Materials by Specific Ion Probe
  • TP55-1998 Standard Test Method for Determining Chloride Ions in Concrete and Concrete Materials by Specific Ion Probe
  • TP 55-1998 Standard Method of Test for Determining Chloride Ions in Concrete and Concrete Materials by Specific Ion Probe

The American Road & Transportation Builders Association

  • AASHTO T 332-2022 Standard Method of Test for Determining Chloride Ions in Concrete and Concrete Materials by Specific Ion Probe
  • AASHTO T 332-2007(2020) Standard Method of Test for Determining Chloride Ions in Concrete and Concrete Materials by Specific Ion Probe
  • AASHTO TP 55-1998(2005) Standard Method of Test for Determining Chloride Ions in Concrete and Concrete Materials by Specific Ion Probe
  • AASHTO T 332-2007(R2020) Standard Method of Test for Determining Chloride Ions in Concrete and Concrete Materials by Specific Ion Probe
  • AASHTO T 332-2007 Standard Method of Test for Determining Chloride Ions in Concrete and Concrete Materials by Specific Ion Probe
  • AASHTO TP55-1998 Standard Test Method for Determining Chloride Ions in Concrete and Concrete Materials by Specific Ion Probe 2000 Edition
  • AASHTO TP 55-1998(R2004) TS-3c TP 55-1 AASHTO Standard Method of Test for Determining Chloride Ions in Concrete and Concrete Materials by Specific Ion Probe

VN-TCVN

  • TCVN 6654-2000 Soil quality.Determination of water content in the unsaturated zone.Neutron depth probe method

ETSI

Ente Nazionale Italiano di Unificazione

  • UNI 10309:1994 Procedures for calibrating neutron measuring devices used for radiation protection.

Danish Standards Foundation

  • DANSK DS/ISO 10573:1997 Soil quality - Determination of water content in the unsaturated zone - Neutron depth probe method
  • DS/ISO 10573:1997 Soil quality - Determination of water content in the unsaturated zone - Neutron depth probe method

Swedish Institute for Standards

  • SS-ISO 10573:1996 Soil quality - Determination of water content in unsaturated zone - Neutron depth probe method

Gosstandart of Russia

  • GOST 17038.7-1979 Ionizing-radiation scintillation detectors. Methods for measurement of effective light attenuation index of scintillation in detector

International Organization for Standardization (ISO)

  • ISO 10573:1995 Soil-quality - Determination of water content in the unsaturated zone - Neutron depth probe method

The Directorate General of Specifications and Metrology (DGSM)

  • OS GSO ISO 10573:2013 Soil quality - Determination of water content in the unsaturated zone - Neutron depth probe method

Japanese Industrial Standards Committee (JISC)