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ASTM D 1149 : 2018

Current

Current

The latest, up-to-date edition.

Standard Test Methods for Rubber Deterioration—Cracking in an Ozone Controlled Environment

Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

01-06-2018

£52.98
Excluding VAT

1.1 These test methods are used to estimate the effect of exposure, under surface tensile strain conditions, either dynamic or static, in an atmosphere containing specified levels of ozone concentration, expressed as partial pressure (refer to Note 1), on vulcanized rubber, rubber compounds, molded or extruded soft rubber, and other specified materials, or as may be determined empirically. The effect of naturally occurring sunlight or light from artificial sources is excluded.

Committee
D 11
DocumentType
Test Method
Pages
14
ProductNote
THIS STANDARD ALSO REFERS TO : D1171
PublisherName
American Society for Testing and Materials
Status
Current
Supersedes

1.1These test methods are used to estimate the effect of exposure, under surface tensile strain conditions, either dynamic or static, in an atmosphere containing specified levels of ozone concentration, expressed as partial pressure (refer to Note 1), on vulcanized rubber, rubber compounds, molded or extruded soft rubber, and other specified materials, or as may be determined empirically. The effect of naturally occurring sunlight or light from artificial sources is excluded.

1.2Previously published ASTM documents Test Method D518 and Test Methods D3395 have been included in these test methods, D1149, in 2007. Please refer to Note 2.

1.2.1Test Method D518 and Test Methods D3395 have henceforth been withdrawn and superseded by Test Methods D1149. When Test Methods D1149 is cited, or otherwise referenced, a notation shall be included to this effect. Please refer to section 3.2 for the appropriate references.

1.3The specified conditions of exposure to ozone in the controlled environments are accelerated in comparison to outdoor exposure. These accelerated ozone test methods may not give results which correlate with outdoor exposure tests or service performance.

1.4All materials, instruments, or equipment used for the determination of mass, force, dimension, ozone concentration, partial pressure, temperature, velocity, and gas exchange rate shall have direct traceability to the National Institute for Standards and Technology, or other internationally recognized organization parallel in nature.

1.5The values stated in SI units are to be regarded as standard. The values given in parentheses are for information only. Many of the stated SI units are direct conversions from the U.S. Customary System to accommodate the instrumentation, practices, and procedures that existed prior to the Metric Conversion Act of 1975.

1.6This standard involves hazardous materials, specifically ozone. It may also involve hazardous operations and equipment. This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety, health, and environmental practices and determine the applicability of regulatory limitations prior to use.

Note 1:A discussion and explanation regarding the measurement of ozone concentrations based upon parts of ozone per unit of air versus partial pressure is provided in Test Methods D4575, specifically Appendices X1 and X2. Test Methods D4575 is also recommended as a source of background information regarding standards involving materials exposed to ozone.

1.7This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

ASME A112.36.2/CSA B79.2:2022 Cleanouts
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ANSI/AWWA C300:2022+ADD:2023 Reinforced Concrete Pressure Pipe, Steel-Cylinder Type
ANSI/AWWA C509:2023 Resilient-Seated Gate Valves for Water Supply Service

ASTM D 3182 : 2015 Standard Practice for Rubber—Materials, Equipment, and Procedures for Mixing Standard Compounds and Preparing Standard Vulcanized Sheets
ASTM D 1171 : 1999 Standard Test Method for Rubber Deterioration-Surface Ozone Cracking Outdoors or Chamber (Triangular Specimens)
ASTM D 1171 : 2016 Standard Test Method for Rubber Deterioration—Surface Ozone Cracking Outdoors (Triangular Specimens)
ASTM D 3182 : 2007 : R2012 Standard Practice for Rubber—Materials, Equipment, and Procedures for Mixing Standard Compounds and Preparing Standard Vulcanized Sheets
ASTM D 1349 : 2014 : R2019 Standard Practice for Rubber—Standard Conditions for Testing
ASTM D 1171 : 1999 : R2007 Standard Test Method for Rubber Deterioration<span class='unicode'>—</span>Surface Ozone Cracking Outdoors or Chamber (Triangular Specimens)
ASTM D 1171 : 2015 Standard Test Method for Rubber Deterioration—Surface Ozone Cracking Outdoors or Chamber (Triangular Specimens)
ASTM D 3182 : 1989 : R2006 Standard Practice for Rubber-Materials, Equipment, and Procedures for Mixing Standard Compounds and Preparing Standard Vulcanized Sheets
ASTM D 4575 : 1999 Standard Test Methods for Rubber Deterioration—Reference and Alternative Method(s) for Determining Ozone Level in Laboratory Test Chambers
ASTM D 3182 : 1989 : R2001 : EDT 1 Standard Practice for Rubber-Materials, Equipment, and Procedures for Mixing Standard Compounds and Preparing Standard Vulcanized Sheets
ASTM D 4482 : 2011 Test Method for Rubber Property<char: emdash>Extension Cycling Fatigue
ASTM D 4575 : 2009 Standard Test Methods for Rubber Deterioration—Reference and Alternative Method(s) for Determining Ozone Level in Laboratory Test Chambers
ASTM D 4482 : 2011 : R2021 Standard Test Method for Rubber Property—Extension Cycling Fatigue
ASTM D 4575 : 2009 : R2019 Standard Test Methods for Rubber Deterioration—Reference and Alternative Method(s) for Determining Ozone Level in Laboratory Test Chambers
ASTM D 4575 : 2009 : R2015 Standard Test Methods for Rubber Deterioration—Reference and Alternative Method(s) for Determining Ozone Level in Laboratory Test Chambers
ASTM D 1349 : 1999 Standard Practice for Rubber-Standard Temperatures For Testing
ASTM D 4482 : 2006 Standard Test Method for Rubber Property-Extension Cycling Fatigue
ASTM D 3182 : 2007 Standard Practice for Rubber-Materials, Equipment, and Procedures for Mixing Standard Compounds and Preparing Standard Vulcanized Sheets
ASTM D 1349 : 2009 Standard Practice for Rubber-Standard Temperatures for Testing
ASTM D 1349 : 2014 Standard Practice for Rubber—Standard Conditions for Testing
ASTM D 4482 : 2011 : R2017 Standard Test Method for Rubber Property—Extension Cycling Fatigue
ASTM D 4482 : 2007 Standard Test Method for Rubber Property-Extension Cycling Fatigue
ASTM D 4482 : 1999 Standard Test Method for Rubber Property-Extension Cycling Fatigue
ASTM D 3182 : 1989 : R2001 Standard Practice for Rubber—Materials, Equipment, and Procedures for Mixing Standard Compounds and Preparing Standard Vulcanized Sheets
ASTM D 1171 : 2016 : EDT 1 Standard Test Method for Rubber Deterioration—Surface Ozone Cracking Outdoors (Triangular Specimens)
ASTM D 1349 : 2007 Standard Practice for Rubber-Standard Temperatures for Testing
ASTM D 3182 : 2021 Standard Practice for Rubber—Materials, Equipment, and Procedures for Mixing Standard Compounds and Preparing Standard Vulcanized Sheets
ASTM D 3182 : 1989 : R1994 Standard Practice for Rubber—Materials, Equipment, and Procedures for Mixing Standard Compounds and Preparing Standard Vulcanized Sheets
ASTM D 3182 : 2016 Standard Practice for Rubber—Materials, Equipment, and Procedures for Mixing Standard Compounds and Preparing Standard Vulcanized Sheets
ASTM D 1171 : 2018 Standard Test Method for Rubber Deterioration—Surface Ozone Cracking Outdoors (Triangular Specimens)
ASTM D 3182 : 2021 : REV A Standard Practice for Rubber—Materials, Equipment, and Procedures for Mixing Standard Compounds and Preparing Standard Vulcanized Sheets
ASTM D 3182 : 2015 : REV A Standard Practice for Rubber—Materials, Equipment, and Procedures for Mixing Standard Compounds and Preparing Standard Vulcanized Sheets

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