ASTM D2950-91(1997)
Standard Test Method for Density of Bituminous Concrete in Place by Nuclear Methods

Standard No.
ASTM D2950-91(1997)
Release Date
1991
Published By
American Society for Testing and Materials (ASTM)
Status
Replace By
ASTM D2950-05
Latest
ASTM D2950/D2950M-22
Scope

1.1 This test method describes a test procedure for determining the density of bituminous concrete by the attenuation of gamma radiation, where the source and detector(s) remain on the surface (Backscatter Method) or the source or detector is placed at a known depth up to 300 mm (12 in.) while the detector or source remains on the surface (Direct Transmission Method).

1.2 The density, in mass per unit volume of the material under test, is determined by comparing the detected rate of gamma emissions with previously established calibration data.

1.3 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. For specific warning statements see Section 6 and Note 4.

1.4 The values stated in SI units are to be regarded as the standard. The inch-pound equivalents may be approximate.

ASTM D2950-91(1997) history

  • 2022 ASTM D2950/D2950M-22 Standard Test Method for Density of Asphalt Mixtures in Place by Nuclear Methods
  • 2014 ASTM D2950/D2950M-14 Standard Test Method for Density of Bituminous Concrete in Place by Nuclear Methods
  • 2011 ASTM D2950/D2950M-11 Standard Test Method for Density of Bituminous Concrete in Place by Nuclear Methods
  • 2010 ASTM D2950/D2950M-10 Standard Test Method for Density of Bituminous Concrete in Place by Nuclear Methods
  • 2009 ASTM D2950-09 Standard Test Method for Density of Bituminous Concrete in Place by Nuclear Methods
  • 2005 ASTM D2950-05 Standard Test Method for Density of Bituminous Concrete in Place by Nuclear Methods
  • 1991 ASTM D2950-91(1997) Standard Test Method for Density of Bituminous Concrete in Place by Nuclear Methods



Copyright ©2024 All Rights Reserved