SAE AIR1387C PDF

SAE AIR1387C PDF

Name:
SAE AIR1387C PDF

Published Date:
12/30/2003

Status:
Active

Description:

Designing With Elastomers for Use At Low Temperatures, Near Or Below Glass Transition

Publisher:
SAE International

Document status:
Active

Format:
Electronic (PDF)

Delivery time:
10 minutes

Delivery time (for Russian version):
200 business days

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Choose Document Language:
$30
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To ensure success in design of elastomeric parts for use at low temperature, the design engineer must understand the peculiar properties of rubber materials at these temperatures.

There are no static applications of rubber. The Gaussian theory of rubber elasticity demonstrates that the elastic characteristic of rubber is due to approximately 15% internal energy and the balance, 85%, is entropy change. In other words, when an elastomer is deformed, the elastomer chain network is forced to rearrange its configuration thereby storing energy through entropy change. Thermodynamically, this means that rubber elasticity is time and temperature dependent (Reference 25).

The purpose of this report is to provide guidance on low temperature properties of rubber with the terminology, test methods, and mathematical models applicable to rubber, and to present some practical experience. In this way, it is hoped that mistakes can be avoided, particularly in selection of rubber materials, enabling the design engineer to weigh low-temperature material properties together with the many other factors involved in the design process.
File Size : 1 file , 300 KB
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Published : 12/30/2003

History

SAE AIR1387C
Published Date: 12/30/2003
Designing With Elastomers for Use At Low Temperatures, Near Or Below Glass Transition
$30

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