DocumentCode :
1610251
Title :
Evaluation measurement of accuracy of industrial Computed Tomography
Author :
Si Chen ; Hao Chen ; Shigen Li ; Jing Li ; Shoutao Li
Author_Institution :
Inst. of Appl. Electron., Mianyang, China
fYear :
2013
Firstpage :
177
Lastpage :
180
Abstract :
In order to verify the measurement accuracy of industrial Computed Tomography (ICT), Calibrated test pieces are designed and the technical procedures are established. The experiment is accomplished on the 9Mev high-energy industrial CT system which is produced by the National X-ray Instrument & Equipment Center. Liner dimensions, sphere diameters, angle values, apertures and positioning dimensions are measured. After data analysis, different errors for these dimensions are acquired. The relative error of liner dimensions and angle values are smallest, under 0.4%. The apertures and sphere diameters have a moderate relative error almost 1.2%~1.8%. The positioning dimensions have a highest relative error, up to 2.85%. For the different materials of aluminum, nylon and stainless steel, higher density material with higher density has less measure error without considering the effect of the dimension type. A special standard piece is designed and used for the error of reverse reconstruction process based on CT image. These results compare well to the results attained by CMM (Coordinate Measuring Machining) and validate the ability of industrial CT system as a dimension measuring machine for nondestructive examination.
Keywords :
aluminium; computerised tomography; polymers; spatial variables measurement; stainless steel; units (measurement); Al; aluminum; angle values; apertures; calibrated test pieces; data analysis; electron volt energy 9 MeV; high-energy industrial CT system; industrial computed tomography; liner dimensions; measurement accuracy; nylon; positioning dimensions; relative error; reverse reconstruction process; sphere diameters; stainless steel; Accuracy; Computed tomography; Materials; Measurement uncertainty; Size measurement; Standards; X-ray imaging; Accuracy; Dimensional Measurement; Industrial Computed Tomography (ICT); Verification & Validation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nondestructive Evaluation/Testing: New Technology & Application (FENDT), 2013 Far East Forum on
Conference_Location :
Jinan
Print_ISBN :
978-1-4673-6018-0
Type :
conf
DOI :
10.1109/FENDT.2013.6635551
Filename :
6635551
Link To Document :
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