Friction Stir Based Additive Manufacturing (FSAM) of NiTinol, a Functionally Advanced Material, for Additive Manufacturing, Surface Protection and Repairing of Defective Components
Completed
Role: OtherGrant: PDF/2021/1330
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Scholarly Publications
Experimental and numerical analysis of laser forming mechanism of high-density open cell titanium foam using fourier number approach
Authors: Mohammad Shahid Raza; Sumanta Mukherjee; Susmita Datta; Partha Saha
Synthesis and characterization of nickel free titanium–hydroxyapatite composite coating over Nitinol surface through in-situ laser cladding and alloying
Authors: Rajib Chakraborty; Mohammad Shahid Raza; Susmita Datta; Partha Saha
Improvement of ionic bonding strength and electrochemical corrosion resistance of hydroxyapatite- calcium phosphate pulsed electro chemically deposited in-situ coating through hydroxyl ion treatment
Conference Paper
Year: 2018.
Pages: V001T05A015
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Authors: Chakraborty, R.; Datta, S.; Raza, M.S.; Saha, P.
A Review on Present Status of Friction Stir Welding of Nitinol, a Functionally Advanced, Versatile and Widely Used Shape Memory Alloy