ASTM D 3360 : 1996
Withdrawn
A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.
Standard Test Method for Particle Size Distribution by Hydrometer of the Common White Extender Pigments (Withdrawn 2003)
English
01-01-1996
05-11-2013
CONTAINED IN VOL 06.03, 2001 Determines particle-size distribution in sub-sieve size range of common extender pigments e.g. aluminum silicate (kaolin clay), magnesium silicate (talc), calcium carbonate (calcite, dolomite, or precipitated) and mica pigments, also denser prime pigments e.g. white titanium pigments (rutile or anatase).
| Committee |
D 01
|
| DocumentType |
Test Method
|
| Pages |
6
|
| PublisherName |
American Society for Testing and Materials
|
| Status |
Withdrawn
|
1.1 This test method covers the determination of the particle-size distribution in the sub-sieve size range of the common extender pigments such as aluminum silicate (kaolin clay), magnesium silicate (talc), calcium carbonate (calcite or dolomite or precipitated calcium carbonate), and mica pigments, and may also be extended to the denser prime pigments such as the white titanium pigments (rutile or anatase) and similar mineral pigments when and if such information is of concern. Particle-size distribution has significance in the evaluation of rheological and pigmentary properties of pigments in paint and also may sometimes be used to characterize the identity or grade of pigments.
1.2 Sedimentation methods having as their basis Stoke's law have found general acceptance for this purpose. Results are expressed in terms of equivalent spherical diameter (e.s.d.), the diameter of a sphere having the same specific gravity as the particle in question and which settles at the same rate. Most mineral pigment particles are more-or-less asymmetrical, but despite differences in the relationship between equivalent spherical diameter and actual dimensions, the results of a sedimentation particle-size analysis can be correlated readily with many pigment properties.
1.3 Procedures limited to gravitational sedimentation are relatively inaccurate for pigment particles smaller than about 1 [mu]m e.s.d., and centrifugal procedures may be required for the much finer ranges. Nevertheless, the data obtained above the 1 [mu]m limitation provide useful information. This method is particularly applicable to pigments if a major fraction of the particles fall in the range from about 15 to 1.5 [mu]m, but have a total particle-size range of at least two decades.
1.4 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 and health practices and determine the applicability of regulatory limitations prior to use.
| ASTM D 4288 : 2002 : R2012 | Standard Specification for Calcium Borosilicate Pigments |
| ASTM D 3089 : 1997 : R2008 | Standard Practice for Determining the A-D Dimension of Aerosol Valve Dip Tubes |
| TAPPI T 649 : OM 83 | PARTICLE SIZE DISTRIBUTION OF COATING CLAY |
| ASTM D 4288 : 2002 : R2007 | Standard Specification for Calcium Borosilicate Pigments |
| ASTM D 1199 : 1986 : R2003 | Standard Specification for Calcium Carbonate Pigments |
| ASTM D 1199 : 1986 : R2014 | Standard Specification for Calcium Carbonate Pigments |
| ASTM D 1199 : 1986 : R1999 | Standard Specification for Calcium Carbonate Pigments |
| ASTM D 1199 : 1986 : R2008 | Standard Specification for Calcium Carbonate Pigments |
| ASTM D 4288 : 2002 | Standard Specification for Calcium Borosilicate Pigments |
| ASTM D 422 : 1963 : R2002 : EDT 1 | Standard Test Method for Particle-Size Analysis of Soils |
| ASTM E 100 : 2017 : REDLINE | SPECIFICATION FOR ASTM HYDROMETERS |
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