ASTM E 2012 : 2006 : R2012
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
View Superseded by
Standard Guide for the Preparation of a Binary Chemical Compatibility Chart
English
01-12-2012
15-05-2020
A binary chemical compatibility chart also called inter-reactivity chart, documents the hazards associated with the mixing of pairs of materials.
| Committee |
E 27
|
| DocumentType |
Guide
|
| Pages |
7
|
| ProductNote |
Reconfirmed 2012
|
| PublisherName |
American Society for Testing and Materials
|
| Status |
Superseded
|
| SupersededBy | |
| Supersedes |
1.1A binary chemical compatibility chart also called inter-reactivity chart, documents the hazards associated with the mixing of pairs of materials. This guide provides an aid for the preparation these charts. It reviews a number of issues that are critical in the preparation of such charts: accurate assessment of chemical compatibility, suitable experimental techniques for gathering compatibility information, incorporation of user-friendliness, and provision for revisions.
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| ASTM E 1231 : 2010 | Standard Practice for Calculation of Hazard Potential Figures-of-Merit for Thermally Unstable Materials |
| NFPA 491 : 1997 | GUIDE FOR HAZARDOUS CHEMICAL REACTIONS |
| ASTM E 1231 : 2001 : R2006 | Standard Practice for Calculation of Hazard Potential Figures-of-Merit for Thermally Unstable Materials |
| ASTM E 1231 : 2001 | Standard Practice for Calculation of Hazard Potential Figures-of-Merit for Thermally Unstable Materials |
| ASTM E 1231 : 2001 : EDT 1 | Standard Practice for Calculation of Hazard Potential Figures-of-Merit for Thermally Unstable Materials |
| ASTM E 1231 : 1996 : REV A | Standard Practice for Calculation of Hazard Potential Figures-of-Merit for Thermally Unstable Materials |
| ASTM E 537 : 2012 : REDLINE | Standard Test Method for The Thermal Stability of Chemicals by Differential Scanning Calorimetry |
| ASTM E 1231 : 2015 | Standard Practice for Calculation of Hazard Potential Figures of Merit for Thermally Unstable Materials |
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