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Irradiation of graphene

Irradiation of graphene, Total:91 items.

In the international standard classification, Irradiation of graphene involves: Inorganic chemicals, Nuclear energy engineering, Construction materials, Test conditions and procedures in general, Textile fibres, Physics. Chemistry, Materials for the reinforcement of composites, Petroleum products in general, Farming and forestry, Paints and varnishes, Products of the textile industry, Fruits. Vegetables, TESTING, Electrical and electronic testing, Aerospace electric equipment and systems, Analytical chemistry, Optics and optical measurements, Organic chemicals, Metrology and measurement in general, Materials for aerospace construction, Medical equipment.


American Society for Testing and Materials (ASTM), Irradiation of graphene

  • ASTM C625-15 Standard Practice for Reporting Irradiation Results on Graphite
  • ASTM D7301-21 Standard Specification for Nuclear Graphite Suitable for Components Subjected to Low Neutron Irradiation Dose
  • ASTM D7301-11 Standard Specification for Nuclear Graphite Suitable for Components Subjected to Low Neutron Irradiation Dose
  • ASTM D7301-11(2015) Standard Specification for Nuclear Graphite Suitable for Components Subjected to Low Neutron Irradiation Dose
  • ASTM E3220-20 Standard Guide for Characterization of Graphene Flakes
  • ASTM C625-95(2005) Standard Practice for Reporting Irradiation Results on Graphite
  • ASTM C625-15(2021) Standard Practice for Reporting Irradiation Results on Graphite
  • ASTM C625-95(2010) Standard Practice for Reporting Irradiation Results on Graphite
  • ASTM D1159-01 Standard Test Method for Bromine Numbers of Petroleum Distillates and Commercial Aliphatic Olefins by Electrometric Titration
  • ASTM F2565-06 Standard Guide for Extensively Irradiation-Crosslinked Ultra-High Molecular Weight Polyethylene Fabricated Forms for Surgical Implant Applications

Group Standards of the People's Republic of China, Irradiation of graphene

  • T/SBMIA 010-2019 Technical specification for floor radiant heating system with graphene heating plate
  • T/ZGIA 005-2021 Graphene Test Method for Determination of Graphene-Based Materials in Composite Fibers Nylon
  • T/ZGIA 003-2020 Graphene Test Method for Determination of Graphene-Based Materials in Composite Fibers Polyester
  • T/GDASE 0011-2020 Determination of conductivity of graphene powder
  • T/GDASE 0007-2020 Determination of thermal conductivity of graphene powder
  • T/GDASE 0010-2020 Determination of Electron Mobility in Graphene Thin Films
  • T/CGIA 002-2018 Guidance on naming of products containing graphene materials
  • T/CGIA 011-2019 Test method of iodine adsorption number for graphene materials
  • T/GDASE 0009-2020 Determination of the content of carbon, hydrogen, oxygen, nitrogen and sulfur in graphene
  • T/CSTM 00229-2020 Identification of graphene materials in coatings materials Scanning Electron Microscope-Energy Dispersive Spectrometer method
  • T/CNTAC 21-2018 Test method for identification of graphene materials in fibres– Transmission electron microscope (TEM) method
  • T/CNTAC 70-2020 Quantitative detection for graphene materials in fibers - Elemental analysis method
  • T/GDASE 0008-2020 Determination of Young's modulus of graphene film
  • T/ZGIA 001-2019 Graphene test method for the determination of powder conductivity four-probe method
  • T/CGIA 013-2019 Determination of silicon content in graphene materials — Molybdenum blue spectrophotometry
  • T/ZSA 39-2020 Characterization of Graphene - Work function - Ultraviolet photoelectron spectroscopy (UPS) method
  • T/ZGIA 002-2020 Graphene Test Methods Determination of Work Function Ultraviolet Photoelectron Spectroscopy
  • T/GDASE 0012-2020 Determination of Layer Number of Graphene Films by Laser Microscopy Confocal Raman Spectroscopy
  • T/GDASE 0013-2020 Determination of Defect Degree in Graphene Powder by Laser Microscopy Confocal Raman Spectroscopy

British Standards Institution (BSI), Irradiation of graphene

  • BS PD ISO/TS 21356-1:2021 Nanotechnologies. Structural characterization of graphene. Graphene from powders and dispersions
  • PD CEN ISO/TS 21356-1:2022 Nanotechnologies. Structural characterization of graphene. Graphene from powders and dispersions
  • BS PAS 1201:2018 Properties of graphene flakes. Guide
  • 18/30376981 DC PD IEC/TS 62607-6-11. Nanomanufacturing. Key control characteristics. Part 6-11. Graphene. Defect level of graphene analysed by Raman spectroscopy
  • PD ISO/TR 19733:2019 Nanotechnologies. Matrix of properties and measurement techniques for graphene and related two-dimensional (2D) materials

International Organization for Standardization (ISO), Irradiation of graphene

  • ISO/TS 21356-1:2021 Nanotechnologies - Structural characterization of graphene - Part 1: Graphene from powders and dispersions

German Institute for Standardization, Irradiation of graphene

  • DIN CEN ISO/TS 21356-1:2022-08 Nanotechnologies - Structural characterization of graphene - Part 1: Graphene from powders and dispersions (ISO/TS 21356-1:2021); German version CEN ISO/TS 21356-1:2022
  • DIN EN 62565-3-1:2014-11 Nanomanufacturing - Material specifications - Part 3-1: Graphene - Blank detail specification for electrotechnical applications (IEC 113/217/CD:2014) / Note: Date of issue 2014-10-17

ES-UNE, Irradiation of graphene

  • UNE-CEN ISO/TS 21356-1:2022 Nanotechnologies - Structural characterization of graphene - Part 1: Graphene from powders and dispersions (ISO/TS 21356-1:2021) (Endorsed by Asociación Española de Normalización in May of 2022.)

Association Francaise de Normalisation, Irradiation of graphene

  • XP CEN ISO/TS 21356-1:2022 Nanotechnologies - Caractérisation structurelle du graphène - Partie 1 : graphène issu de poudres et de dispersions
  • XP T16-226-1*XP CEN ISO/TS 21356-1:2022 Nanotechnologies - Structural characterization of graphene - Part 1 : graphene from powders and dispersions
  • FD T16-406*FD ISO/TR 19733:2019 Nanotechnologies - Matrix of properties and measurement techniques for graphene and related two-dimensional (2D) materials
  • FD ISO/TR 19733:2019 Nanotechnologies - Matrice des propriétés et des techniques de mesure pour le graphène et autres matériaux bidimensionnels (2D)

Hebei Provincial Standard of the People's Republic of China, Irradiation of graphene

  • DB13/T 5255-2020 Determination of square resistance of graphene conductive ink by four-probe method
  • DB13/T 2768.1-2018 Graphene powder material test method part 1: Determination of ash content
  • DB13/T 2768.3-2018 Graphene powder material testing method Part 3: Determination of electrical conductivity
  • DB13/T 2768.5-2018 Graphene powder material testing method Part 5: Determination of thermal diffusivity flash method
  • DB13/T 2768.2-2018 Graphene powder material detection method part 2: Determination of carbon, nitrogen, hydrogen, sulfur, oxygen element content
  • DB13/T 5025.1-2019 Determination method of graphene-carbon nanotube composite conductive paste Part 1: Determination of solid content

Korean Agency for Technology and Standards (KATS), Irradiation of graphene

  • KS M ISO 6615:2015 Petroleum products-Determination of carbon residue-Conradson method

European Committee for Standardization (CEN), Irradiation of graphene

  • FprCEN ISO/TS 21356-1:2021 Nanotechnologies - Structural characterization of graphene - Part 1: Graphene from powders and dispersions (ISO/TS 21356-1:2021)
  • CEN ISO/TS 21356-1:2022 Nanotechnologies - Structural characterization of graphene - Part 1: Graphene from powders and dispersions (ISO/TS 21356-1:2021)

海关总署, Irradiation of graphene

  • SN/T 5397-2022 Minimum absorbed dose of guava fruit fly quarantine irradiation treatment

Guangxi Provincial Standard of the People's Republic of China, Irradiation of graphene

  • DB45/T 1423-2016 Detection and characterization methods of graphene three-dimensional structure powder materials
  • DB45/T 1424-2016 Specifications for the design of high-temperature reaction furnaces for the production of graphene three-dimensional structure powder materials

Jiangsu Provincial Standard of the People's Republic of China, Irradiation of graphene

  • DB32/T 4379-2022 Determination of Fourier Transform Infrared Spectrum of Graphene Oxide Material
  • DB32/T 3596-2019 Determination of thermal diffusivity and thermal conductivity of graphene materials by flash method
  • DB32/T 3595-2019 Elemental analyzer method for the determination of carbon, hydrogen, nitrogen, sulfur and oxygen content in graphene materials

(U.S.) Ford Automotive Standards, Irradiation of graphene

  • FORD ESA-M4D375-A-2005 POLYTETRAFLUOROETHYLENE - 10% GRAPHITE FILLED ***TO BE USED WITH FORD WSS-M99P1111-A***
  • FORD ESA-M4D375-A-2009 POLYTETRAFLUOROETHYLENE - 10% GRAPHITE FILLED ***TO BE USED WITH FORD WSS-M99P1111-A***
  • FORD ESB-M1L105-A-2003 LOW TENSION CABLE, IRRADIATED POLYVINYL CHLORIDE INSULATED (THIN WALL) - BARE ***TO BE USED WITH FORD WSS-M99P1111-A***

Society of Automotive Engineers (SAE), Irradiation of graphene

  • SAE AMS3636G-1991 Tubing, Plastic, Electrical Insulation Irradiated Polyolefin, Pigmented, Flexible, Heat-Shrinkable 2 to 1 Shrink Ratio
  • SAE AMS3632E-1991 Tubing, Plastic, Electrical Insulation Irradiated Polyvinylidene Fluoride, Semi-Rigid, Heat-Shrinkable 2 to 1 Shrink Ratio
  • SAE AMS3636H-2012 Tubing, Plastic, Electrical Insulation, Irradiated Polyolefin, Pigmented, Flexible, Heat-Shrinkable, 2 to 1 Shrink Ratio
  • SAE AMS3678/7-2006 Type 7 Virgin Polytetrafluoroethylene (PTFE) Moldings or Extrusions with 25% Carbon and Graphite
  • SAE AMS3588D-1993 Plastic Tubing, Electrical Insulation Irradiated Polyolefin, Clear, Very Flexible, Heat-Shrinkable 2 to 1 Shrink Ratio
  • SAE AMS3670/3B-2004 Polyamide-Imide Bar, Rod, and Shapes, 12% Graphite - 3% Polytetrafluoroethylene Filled
  • SAE AMS3670/2B-1992 Polyamide-Imide Bar, Rod, and Shapes 20 Graphite - 3 Polytetrafluorethylene (PTFE) Filled
  • SAE AMS3670/3B-1995 Polyamide-Imide Bar, Rod, and Shapes 12% Graphite - 3% Polytetrafluoroethylene Filled
  • SAE AMS3639F-1993 Tubing, Irradiated Polyolefin Plastic, Electrical Insulation Clear, Semi-Rigid, Heat Shrinkable, 2 to 1 Shrink Ratio
  • SAE AMS3639G-2012 Tubing, Irradiated Polyolefin Plastic, Electrical Insulation, Clear, Semi-Rigid, Heat-Shrinkable, 2 to 1 Shrink Ratio
  • SAE AMS3587D-1993 Plastic Tubing, Electrical Insulation Irradiated Polyolefin, Pigmented, Very Flexible, Heat- Shrinkable Low Recovery Temperature 2 to 1 Shrink Ratio
  • SAE AMS3632F-2011 Tubing, Plastic, Electrical Insulation, Irradiated Polyvinylidene Fluoride, Semi-Rigid, Heat-Shrinkable, 2 to 1 Shrink Ratio
  • SAE AMS3678/7A-2010 Type 7 Virgin Polytetrafluoroethylene (PTFE) Moldings or Extrusions with 25% Carbon and Graphite
  • SAE AMS3658E-2010 Polytetrafluoroethylene (PTFE) Extrusions, Premium Strength, Sintered and Stress- Relieved Radiographically Inspected
  • SAE AMS3588E-2011 Plastic Tubing, Electrical Insulation, Irradiated Polyolefin, Clear, Very Flexible, Heat Shrinkable 2 to 1 Shrink Ratio

国家市场监督管理总局、中国国家标准化管理委员会, Irradiation of graphene

  • GB/Z 38062-2019 Nanotechnologies—Determination of specific surface area of graphene materials—Methylene blue adsorption method
  • GB/T 40069-2021 Nanotechnologies—Measurement of the number of layers of graphene-related two-dimensional (2D) materials—Raman spectroscopy method
  • GB/T 40071-2021 Nanotechnologies—Measurement of the number of layers of graphene-related two-dimensional (2D) materials—Optical contrast method
  • GB/T 38114-2019 Nanotechnologies—Quantitative analysis of the surface oxygen functional groups on graphene materials—Chemical titration method
  • GB/T 41067-2021 Nanotechnologies—Determination of sulfur, fluorine, chlorine and bromine content in graphene flakes—Combustion ion chromatography method
  • GB/T 41068-2021 Nanotechnologies—Determination of water-soluble anions content in graphene powder—Ion chromatography method

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Irradiation of graphene

  • GB/T 7717.16-2009 Acrylonitrile for industrial use-Part 16:Determination of content of iron-Graphite furnace atomic absorption spectrometer method
  • GB/T 7717.17-2009 Acrylonitrile for industrial use-Part 17:Determination of content of copper-Graphite furnace atomic absorption spectrometer method
  • GB/T 42310-2023 Determination of specific surface area of nanotechnology graphene powder by argon adsorption static capacity method

Guangdong Provincial Standard of the People's Republic of China, Irradiation of graphene

  • DB44/T 1216-2013 Characterization of graphene using scanning electron microscopy and X-ray spectroscopy

SAE - SAE International, Irradiation of graphene

  • SAE AMS3678/7B-2016 Type 7 Virgin Polytetrafluoroethylene (PTFE) Moldings or Extrusions with 25% Carbon and Graphite

PH-BPS, Irradiation of graphene

  • PNS ISO/TR 19733:2021 Nanotechnologies - Matrix of properties and measurement techniques for graphene and related two-dimensional (2D) materials

未注明发布机构, Irradiation of graphene

  • SAE AMS3670/2B-2006 Polyamide-Imide Bar, Rod, and Shapes 20 Graphite - 3 Polytetrafluorethylene (PTFE) Filled

KR-KS, Irradiation of graphene

  • KS C ISO TR 19733-2023 Nanotechnologies — Matrix of properties and measurement techniques for graphene and related two-dimensional(2D) materials

BR-ABNT, Irradiation of graphene

GOSTR, Irradiation of graphene

  • PNST 500-2020 Nanotechnologies. Part 13. Graphene and two dimensional (2D) materials based on it. Terms and definitions




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