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Gamble, R.M.; Zahoor, A.; Ghassemi, B.
Nuclear Regulatory Commission, Washington, DC (United States). Div. of Engineering; NOVETECH Corp., Rockville, MD (United States). Funding organisation: Nuclear Regulatory Commission, Washington, DC (United States)1994
Nuclear Regulatory Commission, Washington, DC (United States). Div. of Engineering; NOVETECH Corp., Rockville, MD (United States). Funding organisation: Nuclear Regulatory Commission, Washington, DC (United States)1994
AbstractAbstract
[en] A simplified procedure has been defined for computing the allowable circumferential throughwall crack length as a function of applied loads in piping. This procedure has been defined to enable leak-before-break (LBB) evaluations to be performed without complex and time consuming analyses. The development of the LBB evaluation procedure is similar to that now used in Section 11 of the ASME Code for evaluation of part-throughwall flaws found in piping. The LBB evaluation procedure was bench marked using experimental data obtained from pipes having circumferential throughwall flaws. Comparisons of the experimental and predicted load carrying capacities indicate that the method has a conservative bias, such that for at least 97% of the experiments the experimental load is equal to or greater than 90% of the predicted load. The procedures described in this report are applicable to pipe and pipe fittings with: (1) wrought austenitic steel (Ni-Cr-Fe alloy) having a specified minimum yield strength less than 45 ksi, and gas metal-arc, submerged arc and shielded metal-arc austenitic welds, and (2) seamless or welded wrought carbon steel having a minimum yield strength not greater than 40 ksi, and associated weld materials. The procedures can be used for cast austenitic steel when adequate information is available to place the cast material toughness into one of the categories identified later in this report for austenitic wrought and weld materials
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Oct 1994; 44 p; Also available from OSTI as TI95003004; NTIS; GPO
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Report
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Numerical Data
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ALLOYS, AUSTENITIC STEELS, CARBON ADDITIONS, CHROMIUM ALLOYS, CHROMIUM STEELS, CHROMIUM-MOLYBDENUM STEELS, CHROMIUM-NICKEL STEELS, CHROMIUM-NICKEL-MOLYBDENUM STEELS, CORROSION RESISTANT ALLOYS, DATA, FAILURES, HEAT RESISTANT MATERIALS, HEAT RESISTING ALLOYS, HIGH ALLOY STEELS, INFORMATION, IRON ALLOYS, IRON BASE ALLOYS, JOINTS, LOW CARBON-HIGH ALLOY STEELS, MATERIALS, MOLYBDENUM ALLOYS, NICKEL ALLOYS, NUMERICAL DATA, STAINLESS STEELS, STEEL-CR17NI12MO3, STEEL-CR17NI12MO3-L, STEEL-CR19NI10, STEELS, TRANSITION ELEMENT ALLOYS
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