Standards Worldwide
Standards Worldwide
Phone +49 30 58885700-07

Standard [CURRENT]

ASTM G 114:2021

Standard Practices for Evaluating the Age Resistance of Polymeric Materials Used in Oxygen Service

Publication date
2021
Original language
English
Pages
12

from 73.80 EUR VAT included

from 68.97 EUR VAT excluded

Format and language options

PDF download
  • 73.80 EUR

  • 88.60 EUR

Shipment (3-5 working days)
  • 82.10 EUR

Monitor with the Standards Ticker

This option is only available after login.
Easily subscribe: Save time and money now!

You can also subscribe to this document - together with other important standards in your industry. This makes your work easier and pays for itself after a short time.

Sparschwein_data
Subscription advantages
Sparschwein Vorteil 1_data

Important standards for your industry, regularly updated

Sparschwein Vorteil 2_data

Much cheaper than buying individually

Sparschwein Vorteil 3_data

Useful functions: Filters, version comparison and more

Publication date
2021
Original language
English
Pages
12
DOI
https://dx.doi.org/10.1520/G0114-21

Quick delivery via download or delivery service

Buy securely with a credit card or pay upon receipt of invoice

All transactions are encrypted

Short description
1.1 These practices describe procedures that are used to determine the age resistance of plastic, thermosetting, elastomeric, and polymer matrix composite materials exposed to oxygen-containing media. 1.2 While these practices focus on evaluating the age resistance of polymeric materials in oxygen-containing media prior to ignition and combustion testing, they also have relevance for evaluating the age resistance of metals, and nonmetallic oils and greases. 1.3 These practices address both established procedures that have a foundation of experience and new procedures that have yet to be validated. The latter are included to promote research and later elaboration in this practice as methods of the former type. 1.4 The results of these practices may not give exact correlation with service performance since service conditions vary widely and may involve multiple factors such as those listed in 5.8 . 1.5 Three procedures are described for evaluating the age resistance of polymeric materials depending on application and information sought. 1.5.1 Procedure A: Natural Aging- This procedure is used to simulate the effect(s) of one or more service stressors on a material's oxygen resistance, and is suitable for evaluating materials that experience continuous or intermittent exposure to elevated temperature during service. 1.5.2 Procedure B: Accelerated Aging Comparative Oxygen Resistance- This procedure is suitable for evaluating materials that are used in ambient temperature service, or at a temperature that is otherwise lower than the aging temperature, and is useful for developing oxygen compatibility rankings on a laboratory comparison basis. 1.5.3 Procedure C: Accelerated Aging Lifetime Prediction- This procedure is used to determine the relationship between aging temperature and a fixed level of property change, thereby allowing predictions to be made about the effect of prolonged service on oxidative degradation. 1.6 Units- The values stated in SI units are to be regarded as the standard; however, all numerical values shall also be cited in the systems in which they were actually measured. 1.7 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. Specific precautionary statements are given in Section 10 . 1.8 This 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.
ICS
13.220.40, 71.100.20
DOI
https://dx.doi.org/10.1520/G0114-21
Loading recommended items...
Loading recommended items...
Loading recommended items...