CA1277445C

Nuclear radiation apparatus and method for dynamically measuring density of test materials during compaction

Abstract

NUCLEAR RADIATION APPARATUS AND METHOD FOR DYNAMICALLY MEASURING DENSITY OF TEST MATERIALS DURING COMPACTIONAbstract of the DisclosureThe present invention provides an apparatus andmethod for dynamically measuring the density of soil,asphaltic material and the like during the compaction ofthe material. The gauge includes a nuclear radiationsource and a nuclear radiation detector means which aremounted in spaced relation from the surface of the testmaterial to form an air gap therebetween. The gaugealso includes means for measuring the size of the airgap between the test material and the source and detec-tor system, and means to compensate for the effect ofthe size of the air gap to thereby obtain the density ofthe test material.

CA1277445C, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 4 December 2007, 18.8 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

12 claims: 5 independent, 7 dependent

  1. 1
    277443 THE EMBODIMENTS OF THE INVENTION IN WHICH AN EXCLUSIVE PROPERTY OR PRIVILEGE IS CLAIMED ARE DEFINED AS FOLLOWS;1. A compactor vehicle having rollers for compaction of materials such as soil, asphalt pavement and the like, said rollers also serving as wheels for the compactor vehicle, a chassis connected to the rollers and adapted for receiving thereon the operator of the compactor vehicle, and motor means for propelling the compactor vehicle along the surface of the material;and in combination therewith nuclear density gauge means for measuring the density of the material during operation of the compactor vehicle, said gauge means comprising a nuclear radiation source, nuclear radiation detector means mounted in predetermined spaced relation from said source, a measurement unit including a housing enclosing said source and said detector means, means for suspendingly mounting said housing from said vehicle chassis in spaced relation from the surface of the material so that the source is positioned for emitting nuclear radiation through an air gap beneath the gauge means and into the underlying material and the detector means is positioned for detecting backscattered radiation from the material, means cooperating with said detector means for obtaining a count of the photons which are backscattered to the detector means by the test material, means for measuring the air gap between the surface of the test material and the detector means, and means for calculating the density of the test material as a function of said count of backscattered photons and said measurement of the air gap.
  2. 6
    A compactor vehicle having rollers for compaction of materials such as soil, asphalt pavement and the like, said rollers also serving as wheels for the compactor vehicle, a chassis connected to the rollers and adapted for receiving thereon the operator of the compactor vehicle, and motor means for propelling the compactor vehicle along the surface of the material; and in combination therewith nuclear density gauge means for measuring the density of the material during operation of the compactor vehicle, said gauge means comprising a control unit mounted on the vehicle chassis at a location accessible to the compactor vehicle operator, a measurement unit operatively connected to said control unit and including a nuclear radiation source and nuclear radiation detector means mounted in predetermined spaced relation from said source, means for suspendingly mounting said measurement unit from the underside of said vehicle chassis with said source and detector means being located in spaced relation from the surface of the material so that the source is positioned for emitting nuclear radiation through an air gap beneath the gauge means and into the underlying material and the detector means is positioned for detecting backscattered radiation from the material, means cooperating with said detector means for obtaining a count of the photons which are backscattered to the detector means by the test •i ·:ΧΖ7744Γ5 material, means for measuring the size of the air gap between the surface of the test material and the detector means, and means for calculating the density of the test material as a function of said count of backscattered photons and said measurement of the air gap.
  3. 7
    A compactor vehicle having rollers for compaction of materials such as soil, asphalt pavement and the like, said rollers also serving as wheels for the compactor vehicle, a chassis connected to the rollers and adapted for receiving thereon the operator of the compactor vehicle, and motor means for propelling the compactor vehicle along the surface of the material ;and in combination therewith nuclear density gauge means for measuring the density of the material during operation of the compactor vehicle, said gauge means comprising a measurement unit including a gauge housing;means for suspending said gauge housing from the compactor vehicle in spaced relationship from the surface of the material;nuclear radiation source means carried by said housing and adapted for emitting gamma radiation from the housing into the underlying air gap between the housing and the material and into the underlying material ;nuclear radiation detector means carried by said housing for detecting photons which have been backscattered from said material, counter means associated with said detector means for obtaining a count of said backscattered photons;means for measuring the distance of said housing from the surface of said material;and means cooperating with said distance measuring means and with said counter means for correcting said count of backscattered photons to compensate for the effect of the air gap and to thereby obtain the density of the test material. 1.277443
  4. 8
    Apparatus for measuring the density of a test material comprising a gauge housing;means for mounting said gauge housing in spaced relationship from the surface of the test material;nuclear radiation source means carried by said housing and adapted for emitting gamma radiation from the housing into the underlying air gap between the housing and the test material and into the underlying test material ;nuclear radiation detector means carried by said housing for detecting photons which have been backscattered from said test material, counter means associated with said detector means for obtaining a count of said backscattered photons;means for measuring the distance of said housing from the surface of said test material;and means cooperating with said distance measuring means and with said counter means for correcting said count of backscattered photons to compensate for the effect of the density of the air gap and to thereby obtain the density of the test material.
  5. 11
    A method of measuring the density of a test material using a nuclear radiation backscatter gauge including nuclear radiation source and nuclear radiation detector means positioned in spaced relation to the source, said method comprising moving the source and detector relative to the test 1,277445 material while maintaining the source and detector in spaced relation above the surface of the test material to form an air gap therebetween, obtaining a count of the photons which are backscattered to the detector means by the test material, obtaining a measurement which represents the size of the air gap between the surface of the test material and the detector means, and correcting said count of backscattered photons based upon the obtained measurement of the air gap to compensate for the effect of the air gap and to thereby determine the density of the test material.