Publications
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. Effect of Boron Addition and Initial Heat-Treatment Temperature on Microstructure and Mechanical Properties of Modified 9Cr-1Mo Steels Under Different Heat-Treatment Conditions. Metallurgical and Materials Transactions A. 2013:1–16.
. Effect of Boron on Creep Behaviour of Inter-Critically Annealed Modified 9Cr-1Mo Steel. Procedia Engineering. 2013;55:402–407.
. Transition of Crack from Type IV to Type II Resulting from Improved Utilization of Boron in the Modified 9Cr-1Mo Steel Weldment. Metallurgical and Materials Transactions A. 2012;43:3724–3741.
. Understanding room temperature deformation behavior through indentation studies on modified 9Cr–1Mo steel weldments. Materials Science and Engineering: A. 2012;552:419–426.
. Characterization of ferrite in tempered martensite of modified 9Cr-1Mo steel using the electron backscattered diffraction technique. Metallurgical and Materials Transactions A. 2011;42:3849–3852.
. Study of deformation behavior of simulated inter-critical heat-affected zones of modified 9Cr-1Mo steel. Materials and Manufacturing Processes. 2011;26:62–65.
. Microstructural evolution in the intercritical heat affected zone of a boron containing modified 9Cr-1Mo steel. Welding World. 2009;53:511–515.
. Effect of prior microstructure on microstructure and mechanical properties of modified 9Cr–1Mo steel weld joints. Materials Science and Engineering: A. 2008;477:185–192.
. EFFECT OF PRIOR HEAT TREATMENT OF BASE METAL ON THE DEFORMATION BEHAVIOUR OF HEAT AFFECTED ZONES. WELDING IN THE WORLD-LONDON-. 2007;51:171.
