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Method for recalibrating nuclear density gauges

  • US 4,587,623 A
  • Filed: 04/26/1983
  • Issued: 05/06/1986
  • Est. Priority Date: 04/26/1983
  • Status: Expired due to Term
First Claim
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1. A method for recalibration of a nuclear density gauge for one source depth position thereof to account for changes in gauge geometry and other factors affecting gauge calibration accuracy and wherein the gauge has been previously calibrated for the source depth position by calibration tests taken on at least three calibration blocks, with the calibration data derived therefrom fitted to a working exponential equation


  • space="preserve" listing-type="equation">CR=A exp (-BD)-C,
where;

CR=count ratio derived by comparing an accumulated count from a test specimen to a standard count,D=density of test specimen as calculated by the gauge,A,C=constants obtained from original calibration, primarily dependent on gauge geometry, andB=constant obtained from original calibration, primarily dependent on mass attenuation coefficient,and with the original calibration constants A, B, and C for the gauge being recorded and used in the calculation of density D measured by the gauge,said method comprising the steps of;

(a) obtaining the recorded original calibration constant B for the gauge,(b) positioning the gauge with the source at said source depth position with respect to a first calibration block of known density and obtaining an accumulated count of scattered radiation therefrom, comparing the accumulated count to a standard count to obtain a count ratio, and establishing therefrom the following relations,


space="preserve" listing-type="equation">(i) CR.sub.1 '"'"'=A'"'"' exp (-B'"'"'D.sub.1 '"'"')-C'"'"',where;

CR1 '"'"'=the count ratio from step (b), andD1 '"'"'=the known density of the first calibration block;

A'"'"',B'"'"',C'"'"'=constants obtained from recalibration method;

(c) positioning the gauge with the source at said depth position with respect to a second calibration block of known density different from that of said first block and obtaining an accumulated count of scattered radiation therefrom, comparing the accumulated count to a standard count to obtain a count ratio, and establishing therefrom the following relationship,


space="preserve" listing-type="equation">(ii) CR.sub.2 '"'"'=A'"'"' exp (-B'"'"'D.sub.2 '"'"')-C'"'"',where;

CR2 '"'"'=the count ratio from step (c), andD2 '"'"'=the known density of the second calibration block;

(d) calculating values for the unknowns, A'"'"' and C'"'"' from the equations (i) and (ii) by employing as the calibration constant B'"'"', the original calibration constant B, and(e) storing the thus derived values for A'"'"' and C'"'"' for subsequent use in determining density the D in the operation of the gauge.

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