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U. Kamachi Mudali

Researcher at Indira Gandhi Centre for Atomic Research

Publications -  422
Citations -  8467

U. Kamachi Mudali is an academic researcher from Indira Gandhi Centre for Atomic Research. The author has contributed to research in topics: Corrosion & Nitric acid. The author has an hindex of 38, co-authored 419 publications receiving 7010 citations. Previous affiliations of U. Kamachi Mudali include Indian Department of Atomic Energy & University of Madras.

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Development of Pyrochemical Reprocessing for Spent Metal Fuels

TL;DR: In this article, the development of all aspects of the pyroprocess flow sheet is in progress at IGCAR to enable the commercialisation of the process, which is ideally suited for treating the spent metallic fuels.
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Corrosion assessment of nitric acid grade austenitic stainless steels

TL;DR: In this paper, the corrosion resistance of three indigenous nitric acid grade (NAG) type 304L stainless steel (SS), designated as 304L1, 304L2 and 304L3 and two commercial NAG SS designated as Uranus-16 similar to 304L composition and Uranus 65 similar to type 310L SS were performed to evaluate the corrosion resilience and passive film property in 6 N and 11.5 N HNO3 media.
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Hydrogen effects on the passive film formation and pitting susceptibility of nitrogen containing type 316L stainless steels

TL;DR: In this paper, the effects of hydrogen on the passivity and pitting susceptibility of type 316L stainless steels have been investigated with alloys containing different nitrogen contents (0.015, 0.198 and 0.556) without affecting breakdown potential.
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Synthesis of hydroxyapatite nanoparticles by a novel ultrasonic assisted with mixed hollow sphere template method.

TL;DR: It is confirmed that the crystallinity and size of the HAP nanoparticles decrease with increasing ultrasonic irradiation time, so the proposed synthesis strategy provides a facile pathway to obtain nano sized HAP with high quality, suitable size and morphology.
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Corrosion of Zircaloy-4 and its welds in nitric acid medium

TL;DR: In this paper, an attempt was made to study the corrosion behavior of Zircaloy-4 (Zr-with Sn-1.5%, Fe-0.22%, Cr-0,1.1%) in wrought and welded forms in comparison with other candidate materials like commercially pure Titanium (CP-Ti), Ti-5%Ta, Ti- 5%Ta and Ti-6%Ta-2%Nb.