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State-of-the-art technologies in materials chemistry

State-of-the-art technologies in materials chemistry, Total:80 items.

The international standard classification for "State-of-the-art technologies in materials chemistry" includes: Physicochemical methods of analysis , Mining and quarrying , Coatings and related processes used in aerospace industry , Wood-protecting chemicals , Nuclear energy in general , Surface preparation .

The Chinese standard classification for "State-of-the-art technologies in materials chemistry" includes: Mining , Non-traditional processing technology , Corrosion protection for wood and bamboo , Basic standards and general method , Material Protection .


国家市场监督管理总局、中国国家标准化管理委员会

  • GB/T 39336-2020 Technical requirement of roadside bag filling for gob-side entry retaining with high-water material
  • GB/T 39261-2020 Nanotechnologies-Guidance on physico-chemical characterization of engineered nanoscale materials for toxicologic assessment

Anhui Provincial Standard of the People's Republic of China

  • DB34/T 124.4-2003 Technical regulations for chemical control of cotton diseases, insect pests and weeds along the Yangtze River

国家能源局

  • NB/T 51047-2016 Technical requirement of gob-side entry retaining roadside packing

Hebei Provincial Standard of the People's Republic of China

Professional Standard - Aerospace

  • QJ 2059-1991 化铣标准
  • QJ 953A-1995 Technical Specification for Quality Acceptance of Metal Before Chemical Milling
  • QJ 953-1985 化铣标准
  • QJ 492-1986 Technical Specifications for Chemical Nickel Plating of Non-metallic Material

Professional Standard - Business

  • SB/T 10405-2006 Methods for wet ashing procedures for preparing wood for chemical analysis

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

  • GB/T 27652-2011 Methods of pretreatment for chemical analysis of preservative-treated wood
  • GB/T 4960.7-1996 Glossary of terms: nuclear science and technology nuclear material control
  • GB/T 51320-2018 Standard for applications of chemical grouting materials in construction engineering

中华人民共和国国家质量监督检验检疫总局、中国国家标准化管理委员会

  • GB/T 17850.7-2017 Preparation of steel substrates before application of paints and related products―Specifications for non-metallic blast-cleaning abrasives―Part 7:Fused aluminium oxide

Shanxi Provincial Standard of the People's Republic of China

  • DB14/T 1366-2017 Technical regulations for chemical control of major pests and diseases of apples after flower fall and before bagging

Group Standards of the People's Republic of China

  • T/DZJN 273-2024 Technical requirements for zero-carbon factory evaluation of lithium-ion battery precursor materials

RO-ASRO

  • STAS 7882-1989 Technical drawings maximum material principle
  • STAS SR ISO 2692/A1:1996 Technical drawings. Geometrical tolerancing. Maximum material principie Amendment 1: Least material requirement
  • STAS SR ISO 2692:1996 Technical drawings. Geometrical tolerancing. Maximum material principie
  • STAS 9302/1-1988 WOOD PROTECTION General technical requirements of chemical protection

PL-PKN

RU-GOST R

  • GOST R 56828.7-2015 Best available techniques. Guidelines for the submission of information on current emission levels and resource consumption in the information and technical reference book on the best available techniques
  • GOST R 55832-2013 Resources saving. Best available techniques. Environmentally sound management of previously used oil
  • GOST R 56828.8-2015 Best available techniques. Guidelines for the submission of information on best available techniques in the best available techniques reference document in the information and technical reference book on the best available techniques
  • GOST R 56828.1-2015 Best available techniques. Guidelines for the description of the emerging technologies in the information and technical reference book on the best available techniques
  • GOST R 56828.3-2015 Best available techniques. Guidelines for the submission of information on processing equipment in the information and technical reference book on the best available techniques
  • GOST R 56828.10-2015 Best available techniques. Guidelines for the actualization and cancellation of an information and technical reference book on the best available techniques

KR-KS

  • KS B ISO 2692-2-2004 Technical drawings-Geometrical tolerancing-Maximum material principle-Part 2:Least material requirement
  • KS B ISO 2692-1-2004 Technical drawings-Geometrical tolerancing-Maximum material principle
  • KS B ISO 2692-2020 Geometrical product specifications(GPS) — Geometrical tolerancing — Maximum material requirement(MMR), least material requirement(LMR) and reciprocity requirement(RPR)

GOST

  • GOST R 113.00.22-2023 The best available techniques. Methodological recommendations for the description of promising technologies in the information and technical handbook on the best available technologies

Korean Agency for Technology and Standards (KATS)

  • KS B ISO 2692-2-2007 Technical drawings-Geometrical tolerancing-Maximum material principle-Part 2:Least material requirement
  • KS B ISO 2692-2:2007 Technical drawings-Geometrical tolerancing-Maximum material principle-Part 2:Least material requirement
  • KS B ISO 2692-2:2004 Technical drawings-Geometrical tolerancing-Maximum material principle-Part 2:Least material requirement
  • KS B ISO 2692-1:2004 Technical drawings-Geometrical tolerancing-Maximum material principle
  • KS B ISO 2692-1:2007 Technical drawings-Geometrical tolerancing-Maximum material principle
  • KS B ISO 2692-1-2007 Technical drawings-Geometrical tolerancing-Maximum material principle
  • KS D ISO 14606:2003 Surface chemical analysis-Sputter depth profiling-Optimization using layered systems as reference materials
  • KS B ISO 2692:2020 Geometrical product specifications(GPS) — Geometrical tolerancing — Maximum material requirement(MMR), least material requirement(LMR) and reciprocity requirement(RPR)
  • KS A ISO 5758-2010(2020) Cinematography-Labelling of containers for motion-picture film and magnetic material-Minimum information for exchange of materials

Danish Standards Foundation

  • DS/ISO 2962-Till.1:1993 Technical drawings - Geometricai tolerancing -Maximum material principle -AMENDMENT 1: Least material requirement
  • DS/ISO/TR 13014:2012 Nanotechnologies - Guidance on physico-chemical characterization of engineered nanoscale materials for toxicologic assessment
  • DS/ISO/TR 13014/Cor 1:2012 Nanotechnologies - Guidance on physico-chemical characterization of engineered nanoscale materials for toxicologic assessment

CO-ICONTEC

Association Francaise de Normalisation

  • NF E04-555:1992 Technical drawings - Geometrical tolerancing - Maximum material principle
  • FD T16-304*FD ISO/TR 13014:2012 Nanotechnologies - Guidance on physico-chemical characterization of engineered nanoscale materials for toxicologic assessment
  • NF EN 12325-2:1999 Techniques d'irrigation - Installations avec pivots et rampes frontales - Partie 2 : performances et caractéristiques techniques minimales.
  • NF EN 17114:2018 Conservation of cultural heritage - Surface protection of porous inorganic materials - Technical and chemical data sheets for water-repellent products

SCC

  • NS-ISO 2692:1988 Technical drawings — Geometrical tolerancing — Maximum material principle
  • BS ISO 2692:1988 Technical drawings. Geometrical tolerancing. Maximum material principle
  • BS PD ISO/TR 13014:2012 Nanotechnologies. Guidance on physico-chemical characterization of engineered nanoscale materials for toxicologic assessment
  • DANSK DS/ISO/TR 13014/COR 1:2012 Nanotechnologies - Guidance on physico-chemical characterization of engineered nanoscale materials for toxicologic assessment
  • BS 1902-2.2:1974 Methods of testing refractory materials. Chemical analysis (wet methods)-Chemical analysis of chrome-bearing materials
  • DANSK DS/ISO/TR 13014:2012 Nanotechnologies - Guidance on physico-chemical characterization of engineered nanoscale materials for toxicologic assessment

SE-SIS

  • SIS SS-ISO 2692:1989 Technical drawings — Geometrical tolerancing — Maximum material principle

CZ-CSN

International Organization for Standardization (ISO)

  • ISO 5989:1995 Photography - Pre-packaged chemicals for the processing of silver halide based photographic materials - Vocabulary
  • ISO 5758:1987 Cinematography — Labelling of containers for motion-picture film and magnetic materials — Minimum information for exchange of materials
  • ISO 2692:1988/Amd 1:1992 Technical drawings; geometrical tolerancing; maximum material principle; amendment 1: least material requirement

HU-MSZT

  • MSZ 15747/2-1982 General technical standards for testing main materials in chemical electric cutting
  • MSZ 19848/3-1971 Zinc oxide material detection for galvanic technology

British Standards Institution (BSI)

  • PD ISO/TR 13014:2012 Nanotechnologies. Guidance on physico-chemical characterization of engineered nanoscale materials for toxicologic assessment

International Telecommunication Union (ITU)

  • ITU-R BO.794-1992 Techniques for Minimizing the Impact on the Overall BSS System Performance Due to Rain Along the Feeder-Link Path

American Society for Testing and Materials (ASTM)

  • ASTM C904-01(2006) Standard Terminology Relating to Chemical-Resistant Nonmetallic Materials
  • ASTM C904-01 Standard Terminology Relating to Chemical-Resistant Nonmetallic Materials
  • ASTM C904-98 Standard Terminology Relating to Chemical-Resistant Nonmetallic Materials
  • ASTM G114-98 Standard Practice for Aging Oxygen-Service Materials Prior to Ignitibility or Flammability Testing
  • ASTM C904-01(2018) Standard Terminology Relating to Chemical-Resistant Nonmetallic Materials
  • ASTM C904-01(2012) Standard Terminology Relating to Chemical-Resistant Nonmetallic Materials

(U.S.) Plastic Pipe Association

IPC - Association Connecting Electronics Industries

AR-IRAM

Japanese Industrial Standards Committee (JISC)

North Atlantic Treaty Organization Standards Agency

AENOR

  • UNE 1121-2/1M:1996 TECHNICAL DRAWINGS. GEOMETRICAL TOLERANCING. MAXIMUM MATERIAL PRINCIPLE. AMENDMENT 1: LEAST MATERIAL REQUIREMENTS.