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Results 1-10 of 24 (Search time: 0.039 seconds).
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Issue DateTitleAuthor(s)
2013Microstructural Modifications due to Tungsten and Tantalum in 9Cr Reduced Activation Ferritic Martensitic Steels on Creep ExposureMathew, M D; Mythili, R; Ravikirana; Vsnaja, J; Laha, K; Saroja, S; Jayakumar, T; Rajendrakumar, E
2013Improvement in Creep Damage Tolerance of 14Cr-15Ni- Ti modified Stainless Steel by Addition of Minor ElementsMathew, M D; Latha, S; Panneer Selvi, S; Mannan, S L
2013Evaluation of Low Cycle Fatigue Damage in Grade 91 Steel Weld Joints for High Temperature ApplicationsMathew, M D; Shankar, Vani; Mariappan, K; Sandhya, R
2013Modelling the Effect of Grain Boundary Sliding on Creep Lifetime: Application to Two Austenitic Stainless SteelMathew, M D; Mahesh, Sivasambu
2013Effect of Prior Cold Work on the Creep Rupture Properties of 14Cr-15Ni-Ti Stainless SteelMathew, M D; Vijayanand, V D; Nandagopal, M; Parameswaran, P; Laha, K; Mathew, M D
2013Effects of Tungsten and Tantalum on Creep Deformation and Rupture Properties of Reduced Activation Ferritic-Martensitic SteelMathew, M D; Vanaja, J; Laha, K; Jayakumar, T; Rajendra Kumar, E
2013Development of Stainless Steels in Nuclear Industry with Emphasis on Sodium Cooled Fast Spectrum ReactorsMathew, M D
2013Thermomechanical Fatigue Behaviour of a Modified 9Cr-1Mo Ferritic SteelMathew, M D; Nagesha, A; Kannan, R; Sandhya, R; Sastry, G V S; Rao, K Bhanu Sankara; Singh, Vakil
2013Materials-development-for-fast-reactor-applications_2013_Nuclear-Engineering-and-DesignMathew, M D
2013Application of Impression Creep Technique for Development of Creep Resistant Austenitic Stainless SteelMathew, M D; Naveena, V D; Vijayanand; Ganesan, V; Laha, K