TY - RPRT A1 - Pavlovic, Mato A1 - Takahashi, K. A1 - Müller, Christina A1 - Boehm, Rainer A1 - Ronneteg, U. T1 - NDT Reliability - Final report - Reliability in non-destructive testing (NDT) of the canister components T2 - SKB Rapport R-08-129 N2 - This report describes the methodology of the reliability investigation performed on the ultrasonic phased array NDT system, developed by SKB in collaboration with Posiva, for inspection of the canisters for permanent storage of nuclear spent fuel. The canister is composed of a cast iron insert surrounded by a copper shell. The shell is composed of the tube and the lid/base which are welded to the tube after the fuel has been place, in the tube. The manufacturing process of the canister parts and the welding process are described. Possible defects, which might arise in the canister components during the manufacturing or in the weld during the welding, are indentified. The number of real defects in manufactured components have been limited. Therefore the reliability of the NDT system has been determined using a number of test objects with artifical defects. The reliability analysis is based on the signal response analysis. The conventional signal response analysis is adopted and further developed before applied on the modern ultrasonic phased-array NDT system. The concept of multi-parameter a, where the response of the NDT system is dependent on more than just one parameter, is introduced. The weakness of use of the peak signal response in the analysis is demonstrated and integration of the amplitudes in the C-scan is proposed as an alternative. The calculation of the volume POD, when the part is inspected with more configurations, is also presented. The reliability analysis is supported by the ultrasonic simulation based on the point source synthesis method. KW - POD KW - Reliability KW - Nuclear waste KW - Final disposal PY - 2008 UR - http://www.skb.se/upload/publications/pdf/R-08-129webb.pdf SN - 1402-3091 SP - 1 EP - 56 CY - Stockholm AN - OPUS4-20620 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -