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Database: 365,228(8 Aug 2026)

The photothermal effect of perylene

The photothermal effect of perylene, Total:112 items.

The international standard classification for "The photothermal effect of perylene" includes: Physicochemical methods of analysis , Earth-moving machinery , Lighting .

The Chinese standard classification for "The photothermal effect of perylene" includes: Architectural engineering construction machinery , Electric lighting in general .


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

  • GB/T 19933.6-2014 Earth-moving machinery―Operator enclosure environment―Part 6:Determination of effect of solar heating
  • GB/T 46119-2025 Non-visual biological effects action dose of light via eyes
  • GB/T 32006-2015(英文版) Evaluation of photothermal effect of gold nanorods
  • GB/T 32006-2015 Evaluation of photothermal effect of gold nanorods
  • GB/T 19933.6-2005 Earth-moving machinery - Operator enclosure environment - Part6: Determination of effect of solar heating on operator enclosure

Guangdong Provincial Standard of the People's Republic of China

  • DB44/T 1820-2016 Determination of total mercury content in solids Electrothermal-Zeman effect atomic absorption spectrometry

American Society of Heating, Refrigerating and Air-Conditioning Engineers (ASHRAE)

German Institute for Standardization

  • DIN SPEC 18198:2022-05 Methods for measuring and evaluating optical anisotropy effects in thermally stressed glasses
  • DIN 52018:2005 Bitumens and bituminous binders - Thermal effect in an oven and determination of change in mass by thermal effect
  • DIN SPEC 91373:2018-06 Magnetocalorics – Terminology;
  • DIN 52018:2016 Bitumens and bituminous binders - Thermal effect in an oven and determination of change in mass by thermal effect
  • DIN EN ISO 3248:2016-12 Paints and varnishes - Determination of the effect of heat (ISO 3248:2016); German version EN ISO 3248:2016
  • DIN 52018:2005-04 Bitumens and bituminous binders - Thermal effect in an oven and determination of change in mass by thermal effect
  • DIN 52018:2016-08 Bitumens and bituminous binders - Thermal effect in an oven and determination of change in mass by thermal effect
  • DIN EN ISO 3248:2000 Paints and varnishes - Determination of the effect of heat (ISO 3248:1998); German version EN ISO 3248:2000
  • DIN 52018 E:2016-03 Bitumens and bituminous binders - Thermal effect in an oven and determination of change in mass by thermal effect
  • DIN 52018 E:2016 Draft Document - Bitumens and bituminous binders - Thermal effect in an oven and determination of change in mass by thermal effect
  • DIN EN ISO 15831:2004-05 Clothing - Physiological effects - Measurement of thermal insulation by means of a thermal manikin (ISO 15831:2004); German version EN ISO 15831:2004
  • DIN EN ISO 3248 E:2014-06 Determination of thermal effects of paints and varnishes (draft)
  • DIN EN ISO 7933:2004 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain (ISO 7933:2004); German version EN ISO 7933:2004
  • DIN EN ISO 15831:2004 Clothing - Physiological effects - Measurement of thermal insulation by means of a thermal manikin (ISO 15831:2004); German version EN ISO 15831:2004
  • DIN EN ISO 7933 E:2002-12 Thermal Environmental Ergonomics Determining and Interpreting Thermal Stress Analytically Using Predicted Thermal Strain Models (Draft)

(U.S.) Telecommunications Industries Association

British Standards Institution (BSI)

Society of Automotive Engineers (SAE)

International Electrotechnical Commission (IEC)

  • IEC TR 62690:2014 Hydrogen effects in optical fibre cables - Guidelines
  • IEC 60949:1988 Calculation of thermally permissible short-circuit currents, taking into account non-adiabatic heating effects

Illuminating Engineering Society of North America

American Gear Manufacturers Association

  • AGMA 24FTM25 Efficient Numerical Assessment of Thermal Effects in a Gearbox Using Smoothed Particle Hydrodynamics

Ente Nazionale Italiano di Unificazione

Gosstandart of Russia

  • GOST 33291-2015 Paint materials. Method for determination of the effect of heat
  • GOST R 53651-2009 Paint materials. Method for determination of the effect of heat
  • GOST R IEC 60949-2009 Calculation of thermally permissible short-circuit currents, taking into account non-adiabatic heating effects
  • GOST R 50254-1992 Short circuit in electrical installations. Calculation methods of thermit and electrodinamic effects of short circuit currents
  • GOST 28895-1991 Calculation of thermally permissible short-circuit currents, taking into account non-adiabatic heating effects

Association Francaise de Normalisation

American Society for Testing and Materials (ASTM)

  • ASTM C1171-15 Standard Test Method for Quantitatively Measuring the Effect of Thermal Shock and Thermal Cycling on Refractories
  • ASTM C1171-05 Standard Test Method for Quantitatively Measuring the Effect of Thermal Shock and Thermal Cycling on Refractories
  • ASTM C1171-05(2011) Standard Test Method for Quantitatively Measuring the Effect of Thermal Shock and Thermal Cycling on Refractories

Magyar Szabványügyi Testület

GCC Standardization Organization

  • GSO IEC/TR 62690:2017 Hydrogen effects in optical fibre cables - Guidelines
  • GSO ISO 3248:2021 Paints and varnishes — Determination of the effect of heat
  • GSO ISO 15831:2013 Clothing -- Physiological effects -- Measurement of thermal insulation by means of a thermal manikin
  • GSO ISO 11079:2015 Ergonomics of the thermal environment -- Determination and interpretation of cold stress when using required clothing insulation (IREQ) and local cooling effects

The Directorate General of Specifications and Metrology (DGSM)

Korean Agency for Technology and Standards (KATS)

  • KS M ISO 3248-2017(2022) Paints and varnishes-Determination of the effect of heat
  • KS M ISO 3248:2017 Paints and varnishes-Determination of the effect of heat
  • KS M ISO 3248:2007 Paints and varnishes-Determination of the effect of heat
  • KS M ISO 3248-2017 Paints and varnishes-Determination of the effect of heat
  • KS M ISO 3248-2022 Paints and varnishes-Determination of the effect of heat
  • KS A ISO 7933-2005(2021) Ergonomics of the thermal environment-Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • KS M ISO 4611:2012 Plastics-Determination of the effects of exposure to damp heat, water spray and salt mist
  • KS A ISO 7933-2021 Ergonomics of the thermal environment-Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • KS C IEC 60949-2019 Calculation of thermally permissible short-circuit currents, taking into account non-adiabatic heating effects
  • KS A ISO 7933:2005 Ergonomics of the thermal environment-Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • KS C IEC 60949-2004(2024) Calculation of thermally permissible short-circuit currents, taking into account non-adiabatic heating effects
  • KS C IEC 60949-2004(2019) Calculation of thermally permissible short-circuit currents, taking into account non-adiabatic heating effects
  • KS K ISO 15831:2010 Clothing-Physiological effects-Measurement of thermal insulation by means of a thermal manikin

European Committee for Standardization (CEN)

International Organization for Standardization (ISO)

  • ISO 3248:2016 Paints and varnishes - Determination of the effect of heat
  • ISO 3248:1998 Paints and varnishes - Determination of the effect of heat
  • ISO 3248:1975 Paints and varnishes; Determination of the effect of heat
  • ISO/TR 22588:2005 Optics and photonics - Lasers and laser-related equipment - Measurement and evaluation of absorption-induced effects in laser optical components
  • ISO 4611:1987 Plastics; Determination of the effects of exposure to damp heat, water spray and salt mist
  • ISO/FDIS 7933 Ergonomics of the thermal environment — Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • ISO 7933:2004 Ergonomics of the thermal environment - Analytical determination and interpretation of heat stress using calculation of the predicted heat strain
  • ISO 15831:2004 Clothing - Physiological effects - Measurement of thermal insulation by means of a thermal manikin

Danish Standards Foundation

Spanish Association for Standardization (UNE)

  • UNE-EN ISO 3248:2017 Paints and varnishes - Determination of the effect of heat (ISO 3248:2016)
  • AENOR UNE-EN ISO 3248:2017 Paints and varnishes - Determination of the effect of heat (ISO 3248:2016)
  • AENOR UNE-EN ISO 15831:2004 Clothing - Physiological effects - Measurement of thermal insulation by means of a thermal manikin (ISO 15831:2004)
  • UNE 21192:1994 ERRATUM CALCULATION OF THERMALLY PERMISSIBLE SHORT-CIRCUIT CURRENTS, TAKING INTO ACCOUNT NON-ADIABATIC HEATING EFFECTS.

Canadian Standards Association (CSA)

  • CSA C293.2-2017 Application Guide for Skin Effect Tracking Heating Systems

Japanese Industrial Standards Committee (JISC)

  • JIS B 6193:2003 Test code for machine tools -- Determination of thermal effects

Association of German Mechanical Engineers

  • VDI 3822 Blatt 2.1.5-2013 Schadensanalyse - Schaeden an thermoplastischen Kunststoffprodukten durch thermische Beanspruchung
  • VDI 3822 Blatt 2.1.5-2011 Schadensanalyse - Schaeden an thermoplastischen Kunststoffprodukten durch thermische Beanspruchung

American National Standards Institute (ANSI)

Standards Norway

  • NS-EN ISO 3248:2000 Paints and varnishes — Determination of the effect of heat (ISO 3248:1998)
  • NS-EN ISO 3248:2016 Paints and varnishes — Determination of the effect of heat (ISO 3248:2016)

Lithuanian Standards Office

COMMISSION FOR THE STANDARDS, METROLOGY AND QUALITY OF VIETNAM (STAMEQ)

  • TCVN 7321-2009 Ergonomics of the thermal environment.Analytical determination and interpretation of heat stress using calculation of the predicted heat strain

Finnish Standards Institute

  • SFS 5518-1989 Protective clothing. The protective effect of materials against heat. grade