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ASTM D3505-12

Historical Revision

Standard Test Method for Density or Relative Density of Pure Liquid Chemicals (Withdrawn 2023)

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1.1 This test method describes a simplified procedure for the measurement of density or relative density of pure liquid chemicals for which accurate temperature expansion functions are known. It is restricted to liquids having vapor pressures not exceeding 79 993 Pascal (0.800 bar, 600 mm Hg (0.789 atm) at the equilibration temperature, and having viscosities not exceeding 15 cSt at 20°C.

1.2 Means are provided for reporting results in the following units:

Density g/cm3 at 20°C

Density g/mL at 20°C

Relative density 20°C/4°C

Relative density 15.56°C/15.56°C

Note 1—This test method is based on the old definition of 1 L = 1.000028 dm3 (1 mL = 1.000028 cm3). In 1964 the General Conference on Weights and Measures withdrew this definition of the litre and declared that the word litre was a special name for the cubic decimetre, thus making 1 mL = 1 cm3 exactly.

Note 2—An alternative method for determining relative density of pure liquid chemicals is Test Method D4052.

1.3 The following applies to all specified limits in this test method: for purposes of determining conformance with this test method, an observed value or a calculated value shall be rounded off to the nearest unit in the last right-hand digit used in expressing the specification limit, in accordance with the rounding-off method of Practice E29.

1.4 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

1.5 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. Specific hazard statements are given in 7.1.

This test method is suitable for setting specification, for use as an internal quality control tool, and for use in development or research work on industrial aromatic hydrocarbons and related materials. In addition to the pure liquid chemicals for which expansion functions are known, it may also be used for liquids for which temperature expansion data are not available, or for impure liquid chemicals if certain limitations are observed. Information derived from this test can be used to describe the relationship between weight and volume.

SDO ASTM: ASTM International
Document Number D3505
Publication Date March 1, 2012
Language en - English
Page Count 12
Revision Level 12
Supercedes
Committee D16.04
Publish Date Document Id Type View
Feb. 15, 2018 D3505-18 Revision
March 1, 2012 D3505-12E01 Revision
March 1, 2012 D3505-12 Revision
Jan. 1, 2000 D3505-96 Revision
Jan. 1, 2006 D3505-96R06 Reaffirmation
Jan. 1, 2000 D3505-96R00 Reaffirmation