ASTM D 696 : 2016 : REDLINE
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
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Standard Test Method for Coefficient of Linear Thermal Expansion of Plastics Between −30°C and 30°C with a Vitreous Silica Dilatometer
04-09-2024
English
01-04-2016
CONTAINED IN VOL. 08.01, 2017 Includes determination of the coefficient of linear thermal expansion for plastic materials having coefficients of expansion greater than 1[mu]m/(m. degrees C) by use of a vitreous silica dilatometer.
Committee |
D 20
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DocumentType |
Redline
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Pages |
5
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PublisherName |
American Society for Testing and Materials
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Status |
Superseded
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SupersededBy |
1.1This test method covers determination of the coefficient of linear thermal expansion for plastic materials having coefficients of expansion greater than 1 µm/(m.°C) by use of a vitreous silica dilatometer. At the test temperatures and under the stresses imposed, the plastic materials shall have a negligible creep or elastic strain rate or both, insofar as these properties would significantly affect the accuracy of the measurements.
1.1.1Test Method E228 shall be used for temperatures other than −30°C to 30°C.
1.1.2This test method shall not be used for measurements on materials having a very low coefficient of expansion (less than 1 µm/(m.°C). For materials having very low coefficient of expansion, interferometer or capacitance techniques are recommended.
1.1.3Alternative technique commonly used for measuring this property is thermomechanical analysis as described in Test Method E831, which permits measurement of this property over a scanned temperature range.
1.2The thermal expansion of a plastic is composed of a reversible component on which are superimposed changes in length due to changes in moisture content, curing, loss of plasticizer or solvents, release of stresses, phase changes and other factors. This test method is intended for determining the coefficient of linear thermal expansion under the exclusion of these factors as far as possible. In general, it will not be possible to exclude the effect of these factors completely. For this reason, the test method can be expected to give only an approximation to the true thermal expansion.
1.3The values stated in SI units are to be regarded as standard. The values in parentheses are for information only.
1.4This 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 and health practices and determine the applicability of regulatory limitations prior to use.
Note 1:There is no known ISO equivalent to this standard.
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I.S. EN 13493:2013 | GEOSYNTHETIC BARRIERS - CHARACTERISTICS REQUIRED FOR USE IN THE CONSTRUCTION OF SOLID WASTE STORAGE AND DISPOSAL SITES |
I.S. EN 15382:2013 | GEOSYNTHETIC BARRIERS - CHARACTERISTICS REQUIRED FOR USE IN TRANSPORTATION INFRASTRUCTURE |
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DIN EN 13362:2013-11 | GEOSYNTHETIC BARRIERS - CHARACTERISTICS REQUIRED FOR USE IN THE CONSTRUCTION OF CANALS |
DIN EN 13493:2013-11 | GEOSYNTHETIC BARRIERS - CHARACTERISTICS REQUIRED FOR USE IN THE CONSTRUCTION OF SOLID WASTE STORAGE AND DISPOSAL SITES |
CEN ISO/TS 24817:2011 | Petroleum, petrochemical and natural gas industries - Composite repairs for pipework - Qualification and design, installation, testing and inspection (ISO/TS 24817:2006) |
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ASTM E 228 : 2017 : REDLINE | Standard Test Method for Linear Thermal Expansion of Solid Materials With a Push-Rod Dilatometer |
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