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Laser Analysis Powder

Laser Analysis Powder, Total:262 items.

In the international standard classification, Laser Analysis Powder involves: Paints and varnishes, Ferroalloys, Particle size analysis. Sieving, Powder metallurgy, Organic chemicals, Ceramics, Aircraft and space vehicles in general, Nuclear energy engineering, Manufacturing forming processes, Welding, brazing and soldering, Analytical chemistry, Non-ferrous metals, Inorganic chemicals, Mechanical testing, Education, Products of non-ferrous metals, Medical equipment, Surface treatment and coating, Civil engineering in general, Testing of metals, Natural gas, Spices and condiments. Food additives, Air quality, Equipment for the chemical industry, Industrial automation systems, Linear and angular measurements, Metalliferous minerals, Radiation measurements, Ferrous metals, Environmental testing, Electronic components in general, Coals.


British Standards Institution (BSI), Laser Analysis Powder

  • BS EN ISO 8130-13:2010 Coating powders. Particle size analysis by laser diffraction
  • BS EN ISO 8130-13:2001 Coating powders. Particle size analysis by laser diffraction
  • BS EN ISO 8130-13:2019 Tracked Changes. Coating powders. Particle size analysis by laser diffraction
  • BS EN ISO/ASTM 52911-1:2019 Additive manufacturing. Design - Laser-based powder bed fusion of metals
  • BS EN ISO/ASTM 52911-2:2019 Additive manufacturing. Design - Laser-based powder bed fusion of polymers
  • BS ISO 13320:2020 Particle size analysis. Laser diffraction methods
  • BS 3900-J13:2001 Methods of test for paints - Testing of coating powders - Particle size analysis by laser diffraction
  • BS ISO 13320:2010 Particle size analysis. Laser diffraction methods
  • BS ISO 13320:2009 Particle size analysis - Laser diffraction methods
  • 20/30416706 DC BS EN ISO/ASTM 52925. Additive manufacturing processes. Laser sintering of polymer parts/laser-based powder bed fusion of polymer parts. Qualification of materials
  • BS EN ISO/ASTM 52925:2022 Additive manufacturing of polymers. Feedstock materials. Qualification of materials for laser-based powder bed fusion of parts
  • BS ISO 20720:2018 Microbeam analysis. Methods of specimen preparation for analysis of general powders using WDS and EDS
  • 19/30333249 DC BS ISO 13320. Particle size analysis. Laser diffraction methods
  • BS ISO 13320-1:2000 Particle size analysis - Laser diffraction methods - General principles
  • DD ENV 725-4-1994 Advanced technical ceramics. Methods of test for ceramic powders. Determination of oxygen content in aluminium nitride by XRF analysis
  • BS EN 725-4:2006 Advanced technical ceramics - Methods of test for ceramic powders - Determination of oxygen content in aluminium nitride by XRF analysis
  • BS EN 61207-7:2014 Expression of performance of gas analyzers. Tuneable semiconductor laser gas analyzers
  • BS EN 61207-7:2013 Expression of performance of gas analyzers. Tuneable semiconductor laser gas analyzers
  • BS DD ENV 12908:1998 Lead and lead alloys - Analysis by optical emission spectrometry (OES) with spark excitation

CEN - European Committee for Standardization, Laser Analysis Powder

European Committee for Standardization (CEN), Laser Analysis Powder

  • EN ISO 8130-13:2010 Coating powders - Part 13: Particle size analysis by laser diffraction (ISO 8130-13:2001)
  • EN ISO/ASTM 52911-1:2019 Additive manufacturing - Design - Part 1: Laser-based powder bed fusion of metals (ISO/ASTM 52911-1:2019)
  • EN ISO/ASTM 52911-2:2019 Additive manufacturing - Design - Part 2: Laser-based powder bed fusion of polymers (ISO/ASTM 52911-2:2019)
  • EN ISO/ASTM 52925:2022 Additive manufacturing of polymers - Feedstock materials - Qualification of materials for laser-based powder bed fusion of parts (ISO/ASTM 52925:2022)
  • DD ENV 12908-1997 Lead and lead alloys - Analysis by Optical Emission Spectrometry (OES) with spark excitation

Association Francaise de Normalisation, Laser Analysis Powder

ES-UNE, Laser Analysis Powder

  • UNE-EN ISO 8130-13:2020 Coating powders - Part 13: Particle size analysis by laser diffraction (ISO 8130-13:2019)
  • UNE-EN ISO/ASTM 52911-1:2020 Additive manufacturing - Design - Part 1: Laser-based powder bed fusion of metals (ISO/ASTM 52911-1:2019)
  • UNE-EN ISO/ASTM 52911-2:2020 Additive manufacturing - Design - Part 2: Laser-based powder bed fusion of polymers (ISO/ASTM 52911-2:2019)
  • UNE-EN ISO/ASTM 52925:2022 Additive manufacturing of polymers - Feedstock materials - Qualification of materials for laser-based powder bed fusion of parts (ISO/ASTM 52925:2022)

German Institute for Standardization, Laser Analysis Powder

  • DIN EN ISO 8130-13:2019-08 Coating powders - Part 13: Particle size analysis by laser diffraction (ISO 8130-13:2019); German version EN ISO 8130-13:2019
  • DIN EN ISO 8130-13:2019 Coating powders - Part 13: Particle size analysis by laser diffraction (ISO 8130-13:2019)
  • DIN EN ISO/ASTM 52911-1:2020-05 Additive manufacturing - Design - Part 1: Laser-based powder bed fusion of metals (ISO/ASTM 52911-1:2019); German version EN ISO/ASTM 52911-1:2019
  • DIN EN ISO 8130-13:2011 Coating powders - Part 13: Particle size analysis by laser diffraction (ISO 8130-13:2001); German version EN ISO 8130-13:2010
  • DIN EN ISO/ASTM 52911-2:2020-06 Additive manufacturing - Design - Part 2: Laser-based powder bed fusion of polymers (ISO/ASTM 52911-2:2019); German version EN ISO/ASTM 52911-2:2019
  • DIN EN ISO/ASTM 52911-1:2020 Additive manufacturing - Design - Part 1: Laser-based powder bed fusion of metals (ISO/ASTM 52911-1:2019)
  • DIN EN ISO/ASTM 52911-2:2020 Additive manufacturing - Design - Part 2: Laser-based powder bed fusion of polymers (ISO/ASTM 52911-2:2019)
  • DIN ISO 13320:2022-12 Particle size analysis - Laser diffraction methods (ISO 13320:2020)
  • DIN EN ISO/ASTM 52925:2023-06 Additive manufacturing of polymers - Feedstock materials - Qualification of materials for laser-based powder bed fusion of parts (ISO/ASTM 52925:2022); German version EN ISO/ASTM 52925:2022
  • DIN EN 725-4:2006 Advanced technical ceramics - Methods of test for ceramic powders - Part 4: Determination of oxygen content in aluminium nitride by XRF analysis; English version of DIN EN 725-4:2006-07
  • DIN ISO 13320:2022 Particle size analysis - Laser diffraction methods (ISO 13320:2020)
  • DIN EN ISO/ASTM 52925:2020 Additive manufacturing processes - Laser sintering of polymer parts/laser-based powder bed fusion of polymer parts - Qualification of materials (ISO/ASTM DIS 52925:2020); German and English version prEN ISO/ASTM 52925:2020
  • DIN V ENV 12908:1998 Lead and lead alloys - Analysis by Optical Emission Spectrometry (OES) with spark excitation; German version ENV 12908:1997
  • DIN 17024-3:2021 Additive manufacturing - Process characteristics and performance - Part 3: Directed energy deposition using powder and laser in aerospace applications

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Laser Analysis Powder

  • GB/T 21782.13-2009 Coating powders.Part 13:Particle size analysis by laser diffraction
  • GB/T 42618-2023 Additive manufacturing—Design—Laser-based powder bed fusion of polymers
  • GB/T 42617-2023 Additive Manufacturing Design Metal Materials Laser Powder Bed Fusion
  • GB/T 42622-2023 Additive manufacturing—Titanium and titanium alloy powder for laser-based directed energy deposition
  • GB/T 19077.1-2003 Particle size analysis--Laser diffraction method
  • GB/T 19077-2016 Particle size analysis.Laser diffraction methods
  • GB/T 25476-2010 Tunable laser gas analyzer
  • GB 6524-1986 Determination of Particle Size Distribution of Metal Powders - Light Transmission Method
  • GB/T 6524-1986 Determination of particle size distribution of metallic powders by method of photosedimentation
  • GB/T 12729.3-2008 Spices and condiments.Preparation of a ground sample for analysis
  • GB/T 12729.3-1991 Spices and condiments--Preparation of a ground semple for analysis
  • GB/T 12377-1990 Analytical method of microquantity uranium in air by laser-fluoremetry
  • GB/T 11846-2015 Determination of silicon in uranium dioxide powder and pellets by spectrophotometry
  • GB/T 11843-1989 Uranium dioxide powder and pellets--Determination of nitrogen--Spectrophotometric method
  • GB/T 11845-1989 Uranium dioxide powder and pellets--Determination of tungsten--Spectrophotometric method
  • GB/T 11846-1989 Uranium dioxide powder and pellets--Determination of silicon--Spectrophotometric method
  • GB 11843-1989 Determination of Nitrogen in Uranium Dioxide Powder and Pellets Spectrophotometric Method
  • GB 11845-1989 Determination of Tungsten in Uranium Dioxide Powder and Pellets Spectrophotometric Method
  • GB/T 41949-2022 Particle─Laser particle size analyser─Technical requirements
  • GB/T 19077.1-2008 Particle size analysis.Laser diffraction methods.Part 1:General principles
  • GB/T 11926-1989 Uranium dioxide powder and pellet--Determination of phosphorus--Molybdenum blue spectrophotometric method
  • GB 11926-1989 Determination of Phosphorus in Uranium Dioxide Powder and Pellets Molybdenum Blue Spectrophotometry
  • GB/T 6524-2003 Metallic powders-Determination of particle size distribution by gravitational sedimentation in a liquid and attenuation measurement

Danish Standards Foundation, Laser Analysis Powder

International Organization for Standardization (ISO), Laser Analysis Powder

  • ISO 8130-13:2001 Coating powders - Part 13: Particle size analysis by laser diffraction
  • ISO 8130-13:2019 Coating powders — Part 13: Particle size analysis by laser diffraction
  • ISO/ASTM 52911-1:2019 Additive manufacturing — Design — Part 1: Laser-based powder bed fusion of metals
  • ISO/ASTM 52911-2:2019 Additive manufacturing — Design — Part 2: Laser-based powder bed fusion of polymers
  • ISO 13320:2020 Particle size analysis — Laser diffraction methods
  • ISO 13320:2009 Particle size analysis - Laser diffraction methods
  • ISO 24235:2007 Fine ceramics (advanced ceramics, advanced technical ceramics) - Determination of particle size distribution of ceramic powders by laser diffraction method
  • ISO 20720:2018 Microbeam analysis - Methods of specimen preparation for analysis of general powders using WDS and EDS
  • ISO/ASTM 52925:2022 Additive manufacturing of polymers — Feedstock materials — Qualification of materials for laser-based powder bed fusion of parts
  • ISO 13320-1:1999 Particle size analysis - Laser diffraction methods - Part 1: General principles

Korean Agency for Technology and Standards (KATS), Laser Analysis Powder

  • KS M ISO 8130-13:2019 Coating Powders — Part 13: Particle size analysis by laser diffraction
  • KS L 1614-2001(2016) Determination of particle size distributions for fine ceramic raw powders by laser diffraction method
  • KS L 1614-2001 Determination of particle size distributions for fine ceramic raw powders by laser diffraction method
  • KS L 1614-2001(2021) Determination of particle size distributions for fine ceramic raw powders by laser diffraction method
  • KS M ISO 8130-13:2008 Coating powders-Part 13:Particle size analysis by laser diffraction
  • KS L 9300-2017(2022) Methods for chemical analysis of barium titanate powders
  • KS L 9310-2017(2022) Methods for chemical analysis of aluminum nitride powders
  • KS L 9310-2017 Methods for chemical analysis of aluminum nitride powders
  • KS A ISO 13320:2022 Particle size analysis — Laser diffraction methods
  • KS L 1211-2006(2016) Precision wet sieve analysis of nonplastic ceramic powders
  • KS L 1211-2006(2021) Precision wet sieve analysis of nonplastic ceramic powders
  • KS A ISO 13320-2014(2019) Particle size analysis — Laser diffraction methods
  • KS L 1612-2011 Methods for chemical analysis of fine silicon carbide powders for fine ceramics
  • KS L 1613-2011 Methods for chemical analysis of fine silicon nitride powers for fine ceramics
  • KS L 3318-1998 METHODS FOR CHEMICAL ANALYSIS OF FINE SILICON NITRIDE POWDERS FOR FINE CERAMICS
  • KS L 3318-1988 METHODS FOR CHEMICAL ANALYSIS OF FINE SILICON NITRIDE POWDERS FOR FINE CERAMICS
  • KS A ISO 13320:2014 Particle size analysis — Laser diffraction methods
  • KS L ISO 24235:2008 Fine ceramics (advanced ceramics, advanced technical ceramics)-Determination of particle size distribution of ceramic powders by laser diffraction method
  • KS L ISO 24235-2008(2018) Fine ceramics (advanced ceramics, advanced technical ceramics)-Determination of particle size distribution of ceramic powders by laser diffraction method
  • KS L 1613-1994 Methods for chemeical analysis of fine silicon nitride powers for fine ceramics
  • KS L 1613-2011(2021) Methods for chemical analysis of fine silicon nitride powers for fine ceramics
  • KS A ISO 13320-1-2004(2009) Particle size analysis Laser diffraction methods - Part 1 General principles

KR-KS, Laser Analysis Powder

  • KS M ISO 8130-13-2019 Coating Powders — Part 13: Particle size analysis by laser diffraction
  • KS A ISO 13320-2022 Particle size analysis — Laser diffraction methods
  • KS L 1671-2023 Method for chemical analysis of titanium dioxide powders using inductively coupled plasma–optical emission spectrometry

Society of Automotive Engineers (SAE), Laser Analysis Powder

Lithuanian Standards Office , Laser Analysis Powder

  • LST EN ISO 8130-13:2011 Coating powders - Part 13: Particle size analysis by laser diffraction (ISO 8130-13:2001)
  • LST L ENV 12908-2000 Lead and lead alloys - Analysis by Optical Emission Spectrometry (OES) with spark excitation

AENOR, Laser Analysis Powder

American Society for Testing and Materials (ASTM), Laser Analysis Powder

  • ASTM E3340-22 Standard Guide for Development of Laser Diffraction Particle Size Analysis Methods for Powder Materials
  • ASTM UOP856-85 Particle Size Distribution of Powders by Laser Light Scattering
  • ASTM E2651-10 Standard Guide for Powder Particle Size Analysis
  • ASTM E2651-19 Standard Guide for Powder Particle Size Analysis
  • ASTM E2651-13 Standard Guide for Powder Particle Size Analysis
  • ASTM ISO/ASTM52911-1-19 Additive manufacturing — Design — Part 1: Laser-based powder bed fusion of metals
  • ASTM ISO/ASTM 52911-1-19 Additive manufacturing — Design — Part 1: Laser-based powder bed fusion of metals
  • ASTM ISO/ASTM52911-2-19 Additive manufacturing — Design — Part 2: Laser-based powder bed fusion of polymers
  • ASTM ISO/ASTM 52911-2-19 Additive manufacturing — Design — Part 2: Laser-based powder bed fusion of polymers
  • ASTM E3353-22 Standard Guide for In-Process Monitoring Using Optical and Thermal Methods for Laser Powder Bed Fusion
  • ASTM B214-99 Standard Test Method for Sieve Analysis of Metal Powders
  • ASTM B214-07(2011) Standard Test Method for Sieve Analysis of Metal Powders
  • ASTM B214-22 Standard Test Method for Sieve Analysis of Metal Powders
  • ASTM B214-16 Standard Test Method for Sieve Analysis of Metal Powders
  • ASTM C696-11 Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Uranium Dioxide Powders and Pellets
  • ASTM B214-15 Standard Test Method for Sieve Analysis of Metal Powders
  • ASTM C889-99 Standard Test Methods for Chemical and Mass Spectrographic Analysis of Nuclear-Grade Gadolinium Oxide (Gd2O3) Powder
  • ASTM F3318-18 Standard for Additive Manufacturing – Finished Part Properties – Specification for AlSi10Mg with Powder Bed Fusion – Laser Beam
  • ASTM C925-09(2019) Standard Guide for Precision Electroformed Wet Sieve Analysis of Nonplastic Ceramic Powders
  • ASTM F3554-22 Standard Specification for Additive Manufacturing – Finished Part Properties – Grade 4340 (UNS G43400) via Laser Beam Powder Bed Fusion for Transportation Applications
  • ASTM ISO/ASTM 52925-22 Additive manufacturing of polymers — Feedstock materials — Qualification of materials for laser-based powder bed fusion of parts
  • ASTM ISO/ASTM52925-22 Additive manufacturing of polymers — Feedstock materials — Qualification of materials for laser-based powder bed fusion of parts
  • ASTM UOP856-07 Particle Size Distribution of Powders by Laser Light Scattering
  • ASTM C371-09(2018) Standard Test Method for Wire-Cloth Sieve Analysis of Nonplastic Ceramic Powders
  • ASTM C697-98 Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Plutonium Dioxide Powders and Pellets
  • ASTM C696-99(2005) Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Uranium Dioxide Powders and Pellets
  • ASTM C696-99 Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Uranium Dioxide Powders and Pellets
  • ASTM C696-19 Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Uranium Dioxide Powders and Pellets
  • ASTM F3626-23 Standard Guide for Additive Manufacturing — Test Artifacts — Accelerated Build Quality Assurance for Laser Beam Powder Bed Fusion (PBF-LB)
  • ASTM C697-16 Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Plutonium Dioxide Powders and Pellets
  • ASTM C371-89(2003) Standard Test Method for Wire-Cloth Sieve Analysis of Nonplastic Ceramic Powders
  • ASTM C925-79(2000) Standard Test Method for Precision Electroformed Wet Sieve Analysis of Nonplastic Ceramic Powders
  • ASTM C371-89(1999) Standard Test Method for Wire-Cloth Sieve Analysis of Nonplastic Ceramic Powders
  • ASTM C371-09 Standard Test Method for Wire-Cloth Sieve Analysis of Nonplastic Ceramic Powders
  • ASTM C925-09 Standard Guide for Precision Electroformed Wet Sieve Analysis of Nonplastic Ceramic Powders
  • ASTM C371-09(2014) Standard Test Method for Wire-Cloth Sieve Analysis of Nonplastic Ceramic Powders
  • ASTM C697-10 Standard Test Methods for Chemical, Mass Spectrometric, and Spectrochemical Analysis of Nuclear-Grade Plutonium Dioxide Powders and Pellets

Professional Standard - Ferrous Metallurgy, Laser Analysis Powder

  • YB/T 6084-2023 Iron-based alloy powder for laser cladding
  • YB/T 4183-2009 Laser Diffraction Method for Determination of Particle Size Distribution of Smelting Slag Powder

Universal Oil Products Company (UOP), Laser Analysis Powder

  • UOP 856-2007 PARTICLE SIZE DISTRIBUTION OF POWDERS BY LASER LIGHT SCATTERING

SE-SIS, Laser Analysis Powder

工业和信息化部, Laser Analysis Powder

  • YS/T 1268-2018 Nickel-based alloy powder for selective laser melting
  • YS/T 1489.5-2021 Methods for chemical analysis of cobalt-chromium-tungsten alloy powders Part 5: Determination of silicon content Molybdenum blue spectrophotometry
  • YS/T 1489.4-2021 Methods for chemical analysis of cobalt-chromium-tungsten alloy powders Part 4: Determination of nickel content Diacetyl oxime spectrophotometry

Group Standards of the People's Republic of China, Laser Analysis Powder

  • T/GAMA 13-2020 Design specification for polymer powder bed laser fusion for additive manufacturing
  • T/CSTM 00819-2022 Ti-6Al-4V powder for selective laser melting product of civil aircraft
  • T/GAMA 06-2020 Safety regulations for powder and laser use in metal 3D printing process
  • T/CMES 35005-2021 Technical requirements of laser powder bed fusion AlSi10Mg alloy for additive manufacturing
  • T/CMES 35007-2021 Technical Requirements for Additive Manufacturing Laser Powder Bed Fusion TC4 Alloy
  • T/CMES 35006-2021 Additive manufacturing laser powder bed fusion IN718 alloy technical requirements
  • T/CMES 35004-2021 Additive Manufacturing Laser Powder Bed Fusion 316L Stainless Steel Technical Requirements
  • T/CI 139-2022 Standard for alloying composition and mechanical properties of 2xxx aluminum alloy powder used for selective laser melting
  • T/GAMA 15-2021 Test method for tensile properties of additively manufactured powder bed laser fused parts
  • T/GAMA 11-2020 Process characteristics and design specifications of metal powder bed laser melting for additive manufacturing
  • T/GAMA 17-2021 Powder bed laser melting 18Ni300 mold steel grafting additive manufacturing process and requirements
  • T/ZZB 019-2015 Tunable laser gas analyzer
  • T/GAMA 16-2021 Quality control specification for the use of metal powder in laser selective melting process for additive manufacturing
  • T/SDAS 308-2021 Soil Particle Grading Analysis Laser Method
  • T/CSTM 00011E-2021 General rules for original position statistic distribution analysis by laser induced breakdown spectroscopy
  • T/CSTM 00011-2017 General Rules for In Situ Statistical Distribution Analysis Method of Laser Induced Breakdown Spectroscopy
  • T/GMES 004-2018 Determination of various components in chromite by X-ray fluorescence spectrometry (powder compression)
  • T/CGWSTC 001-2022 Determination of various components in ceramic raw materials X-ray fluorescence spectrometry (powder compression)

PL-PKN, Laser Analysis Powder

  • PN H04933-1990 Metallic powders Sieve analysis
  • PN C04504-1992 Chemical analysis. Determination of density of liquid chemical products and solids in powder

RO-ASRO, Laser Analysis Powder

Japanese Industrial Standards Committee (JISC), Laser Analysis Powder

  • JIS K 5600-9-3:2006 Testing methods for paints -- Part 9: Coating powders -- Section 3: Particle size analysis by laser diffraction
  • JIS R 1629:1997 Determination of particle size distributions for fine ceramic raw powders by laser diffraction method
  • JIS Z 8825:2013 Particle size analysis.Laser diffraction methods
  • JIS Z 8825:2022 Particle size analysis -- Laser diffraction methods
  • JIS R 1649:2002 Methods for chemical analysis of aluminium oxide powders for fine ceramics
  • JIS R 1688:2010 Methods for chemical analysis of magnesium oxide powders for fine ceramics
  • JIS R 1603:1994 Methods for chemical analysis of fine silicon nitride powders for fine ceramics
  • JIS R 1616:1994 Methods for chemical analysis of fine silicon carbide powders for fine ceramics
  • JIS R 1603:2007 Methods for chemical analysis of fine silicon nitride powders for fine ceramics
  • JIS R 1616:2007 Methods for chemical analysis of fine silicon carbide powders for fine ceramics
  • JIS R 1622:1995 General rules for the sample preparation of particle size analysis of fine ceramic raw powder
  • JIS Z 8825-1:2001 Particle size analysis -- Laser diffraction methods -- Part 1: General principles

Standard Association of Australia (SAA), Laser Analysis Powder

Professional Standard - Nuclear Industry, Laser Analysis Powder

  • EJ/T 20141-2016 Determination of Trace Uranium in Nuclear Grade Plutonium Dioxide Powder by Laser Fluorescence Method
  • EJ/T 20221-2018 Determination of Particle Size of Reprocessed Uranium Trioxide Powder by Laser Diffraction Method
  • EJ/T 823-1994 Laser fluorescence trace uranium analyzer
  • EJ/T 633-1992 Tube Excitation Energy Dispersive X-ray Fluorescence Analyzer
  • EJ 296.2-1987 Analytical method of trace uranium in urine laser liquid fluorescence method
  • EJ/T 684-1992 Portable source excited X-ray fluorescence analyzer
  • EJ/T 767-1993 X-ray fluorescence analyzer excited by radioactive sources

CZ-CSN, Laser Analysis Powder

RU-GOST R, Laser Analysis Powder

Institute of Interconnecting and Packaging Electronic Circuits (IPC), Laser Analysis Powder

Taiwan Provincial Standard of the People's Republic of China, Laser Analysis Powder

  • CNS 12786-1990 Method of Chemical Analysis for Silicon Nitride Powders

IN-BIS, Laser Analysis Powder

Inner Mongolia Provincial Standard of the People's Republic of China, Laser Analysis Powder

  • DB15/T 688.2-2014 Methods for Chemical Analysis of Thorium Dioxide Powders Part 2: Determination of Phosphorus in Thorium Dioxide Powders—Phosphorus Molybdenum Blue Photometric Method
  • DB15/T 688.1-2014 Method for chemical analysis of thorium dioxide powder Part 1: Determination of 22 impurity elements such as aluminum and nickel in thorium dioxide powder—Inductively coupled plasma emission spectrometry
  • DB15/T 688.3-2014 Methods for Chemical Analysis of Thorium Dioxide Powder Part 3: Determination of Fluorine in Thorium Dioxide Powder—Pyrohydrolysis Ion Selective Electrode Method
  • DB15/T 688.4-2014 Methods for the chemical analysis of thorium dioxide powders-Part 4: Determination of uranium, hafnium, antimony, and bismuth in thorium dioxide powders—Inductively coupled plasma mass spectrometry

Professional Standard - Machinery, Laser Analysis Powder

  • JB/T 3168.3-1999 Alloy powder for welding.Chemical analysis methods
  • JB/T 3064-1999 Methods for chemical analysis of friction materials of powder metallurgy
  • JB/T 3064-2011 Methods for chemical analysis of friction materials of powder metallurgy
  • JB/T 8425-1996 Standard test method of X-ray fluorescence spectrometric analysis of content of chromium, nickel, molybdenum and vanadium in iron base dusty spray
  • JB/T 8063.8-1996 Chemical analysis method of powder metallurgy materials and products Determination of iron in copper-based materials and products (EDTA—H2O2 photometry)

Professional Standard - Education, Laser Analysis Powder

  • JY/T 0573-2020 General Rules of Laser Raman Spectroscopy Analysis Method
  • JY/T 002-1996 General Rules for Laser Raman Spectroscopy Analysis Methods
  • JY/T 0586-2020 General Rules for Analytical Methods of Laser Scanning Confocal Microscopy

National Metrological Verification Regulations of the People's Republic of China, Laser Analysis Powder

Jiangsu Provincial Standard of the People's Republic of China, Laser Analysis Powder

  • DB32/T 3599-2019 General technical requirements for powders for laser selective melting of titanium alloy parts for additive manufacturing

National Metrological Technical Specifications of the People's Republic of China, Laser Analysis Powder

  • JJF 1211-2008 Calibration Specification for Static Light Scattering Particle Size Analyzers

Professional Standard - Agriculture, Laser Analysis Powder

  • SN/T 5566-2023 General Rules of Laser Micro Raman Spectroscopy Analysis Method

CU-NC, Laser Analysis Powder

  • NC 04-67-1985 Materials Testing. Metallic Powders. Granulometry Analysis by Sieving

国家市场监督管理总局、中国国家标准化管理委员会, Laser Analysis Powder

  • GB/T 39540-2020 Fast determination of shale gas composition—Laser Raman spectroscopy
  • GB/T 41074-2021 Microbeam analysis—Method of specimen preparation for analysis of general powders using WDS and EDS
  • GB/T 12729.3-2020 Spices and condiments—Preparation of a ground sample for analysis

HU-MSZT, Laser Analysis Powder

GOSTR, Laser Analysis Powder

  • GOST R 59036-2020 Additive technologies. Production based on selective laser melt of metal powders. General provisions
  • GOST R 59185-2020 Additive technology. Products obtained by selective laser melting of powder material ВТ6. General specifications
  • GOST R 59183-2020 Additive technologies. Products obtained by selective laser melting of powder material 08Х18Н10Т. General specifications

Shaanxi Provincial Standard of the People's Republic of China, Laser Analysis Powder

  • DB61/T 1161-2018 Natural Gas Composition Analysis Laser Raman Spectroscopy Marshal

国家能源局, Laser Analysis Powder

  • SY/T 7433-2018 Composition analysis of natural gas using laser Raman spectroscopy
  • SY/T 7662-2022 Laser Raman spectroscopy analysis method of solid organic matter and inclusions

Professional Standard - Non-ferrous Metal, Laser Analysis Powder

  • YS/T 424.3-2000 Methods for chemical analysis of titanium diboride powder.Determination of iron content
  • YS/T 424.4-2000 Methods for chemical analysis of titanium diboride powder.Determination of carbon content
  • YS/T 424.5-2000 Methods for chemical analysis of titanium diboride powder.Determination of oxygen content
  • YS/T 424.1-2000 Methods for chemical analysis of titanium diboride powder.Determination of titanium content
  • YS/T 424.2-2000 Methods for chemical analysis of titanium diboride powder.Determination of total boron content
  • YS/T 423.4-2000 Methods for chemical analysis of nuclear-grade boron carbide powder.Determination of iron content
  • YS/T 423.5-2000 Methods for chemical analysis of nuclear-grade boron carbide powder.Determination of oxygen content
  • YS/T 423.1-2000 Methods for chemical analysis of nuclear-grade boron carbide powder.Determination of total boron content
  • YS/T 423.2-2000 Methods for chemical analysis of nuclear-grade boron carbide powder.Determination of total carbon content
  • YS/T 423.3-2000 Methods for chemical analysi of nuclear-grade boron carbide powder.Determination of uncarbonized boron content

中华人民共和国环境保护部, Laser Analysis Powder

  • GB 12377-1990 Analytical method of microguantity uranium in air by laser-fluoremetry

Professional Standard - Chemical Industry, Laser Analysis Powder

  • HG/T 4376-2012 On line laser trace moisture analyzer for chemical industry

Professional Standard - Geology, Laser Analysis Powder

  • DZ/T 0279.10-2016 Methods of Analysis of Regional Geochemical Samples - Part 10: Determination of Chlorine and Bromine Quantification Powder Compression - X-ray Fluorescence Spectrometry
  • DZ/T 0279.1-2016 Analytical methods of regional geochemical samples Part 1: Determination of 24 components such as aluminum oxide and other components by powder compression—X-ray fluorescence spectrometry

Guangdong Provincial Standard of the People's Republic of China, Laser Analysis Powder

  • DB44/T 1078-2012 Laser Diffraction Method for Particle Size Analysis of Ceramic Raw Materials

YU-JUS, Laser Analysis Powder

  • JUS G.S2.682-1991 Plastics Phenolic resin powder.Sieve analysis using air-iet sieve apparatus

Professional Standard - Electron, Laser Analysis Powder

  • SJ/Z 3206.2-1989 Laser source and its performance requirements for determination of emision spectrum

Professional Standard - Building Materials, Laser Analysis Powder

  • JC/T 2176-2013 Fine ceramics (advanced ceramics, advanced technical ceramics).determination of particle size distribution of ceramic powders by laser diffraction menthod

Indonesia Standards, Laser Analysis Powder

  • SNI 13-4694-1998 Composition analysis of coal ash by atomic absorption spectrometry




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