PSI - Issue 60

R.P. Pandey et al. / Procedia Structural Integrity 60 (2024) 324–334 R. P. Pandey/ Structural Integrity Procedia 00 (2023) 000 – 000

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Al-Aboodi M.N., Abdel R.N. Shuaib A.Y., 2009. FE evaluation of effect of groove geometry on roller and hydraulically expanded joint strength, International Journal of Precision Technology, 1(2):201-207. Al-Aboodi M.N., Abdel R.N. Shuaib A.Y., 2009. Effects of friction on roller expanded tube-tubesheet joint strength, International Journal of Material Forming, 3(4):253-257. Cheadle, B.A., 2010. The development ofZr-2.5Nb pressure tubes for CANDUreactors,Journal of ASTMInternational, 7(8):JAI103057. Christodoulou, N., Turner P.A., Ho E.T.C., ChowC.K., Levi M.R., 2000. Anisotropy of yielding in aZr-2.5Nb pressure tube material, Metallurgical and Materials Transactions A31(2):409-420. Fong, R.W.L., Fazeli, F. and Smith, T., 2015. Thermal expansion anisotropy of Zr-2.5Nb pressure tube material on heating to 1100°C, In: Proceedings 35th annual conference of the Canadian Nuclear Society and 38th annual CNS/CNA student conference, (Saint John, NB, Canada: May 31 - June 2, 2015), Canada: Canadian Nuclear Society, pp. 636-647, AECL-CW--126200-CONF-009. Kalnins, A., Updike D.P. and Caldwell S.M., 1991. Contact pressure in rolled tube-to-tubesheet joints, Nuclear Engineering and Design 130(2):229 234. Langille S.T ., Coleman C.E., McRae G.A. 2021. Deuterium ingress at the rolled joints in CANDU reactors: where does it come from and how can it be reduced? ASME Journal of Nuclear Engineering and Radiation Science, 7(3):031801. Manu C., Babu S., Baset S., Millard J., 2005. Initial development of a numerical methodology to simulate the roller expansion forming process. In: Proceedings of the ASME 2005 Pressure Vessels and Piping Conference: Volume 2: Computer Technology, (Denver, U.S.A.: ASME2005, July 17 – 21, 2005), New York: American Society of Mechanical Engineers, pp. 337-345. Merah. N., Al-Aboodi M.N., Shuaib A.Y., and Al-Anizi S.S., 2009. Combined effects of tube projection, initial tube-tubesheet clearance, and tube material strain hardening on rolled joint strength, Journal of Pressure Vessel T echnology, 131(5):051201-1. Paley M., William J., 2012. Experimental determination of residual stresses in roll expanded joints in CANDU nuclear reactors, MSc., Thesis, Carleton University (Canada). Perryman E.C.W., 1978. Pickering pressure tube cracking experience. Nuclear Energy, 17 (2): 95-105. Samal, M.K., Syed A., Sen D., Chattopadhyay J., 2020. Experimental evaluation of orientation and temperature dependent material stress-strain curves of Zr2.5%Nb Indian pressure tube material and development of a suitable anisotropic material model, Journal of Nuclear Materials, 530:151970. Samal, M.K., Syed A., Chattopadhyay J., 2022. Compendium of Indian NPP material properties generated by RSD, BARC: Volume VII – Version 1 – Zirconium Alloys, Report No. BARC/2022/E/001, Bhabha Atomic Research Centre, India. Shewfelt, R.S.W., 1984. The anisotropic deformation of Zr-2.5 wt% Nb CANDU pressure tubes between 20 and 700°C, Canadian Metallurgical Quarterly, 23(4):441-445. Williams, D.K., 2007. Comparison of residual stresses in the mechanical roll expansion of HX tubes into TEMA grooves, Transactions of the ASME Journal of Pressure Vessel Technology 129(2):234-241. Wilson R., 1978.Theelastic-plasticbehaviour ofa tube during expansion.In:1978 ASME-CSME Montreal Pressure Vessel & Piping Conference, (Montreal, Quebec, Canada, June 25-29, 1978), ASME Paper No. 78-PVP-112. Yoo H.-S., Chung J.-G., 1998. A reviewof pressure tube failure accident in the CANDUreactor and methods for improving reactor performance, Journal of Korean Nuclear Society, 30(3):262-272.

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