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R.D.K. Misra

Researcher at University of Texas at El Paso

Publications -  340
Citations -  8153

R.D.K. Misra is an academic researcher from University of Texas at El Paso. The author has contributed to research in topics: Austenite & Martensite. The author has an hindex of 35, co-authored 338 publications receiving 5188 citations.

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The significant impact of phase fraction and austenite stability on the mechanical properties of a low-alloyed TRIP-aided steel: An insight into experimental analysis and predictions

TL;DR: In this article, the significant impact of phase fraction and retained austenite (RA) stability on the mechanical properties of a cold-rolled Fe-1.47Mn 1.025Nb (in wt.%) transformation-induced plasticity (TRIP) aided was studied for different two-stage heat treatments.
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The determining role of aluminum on copper precipitation and mechanical properties in Cu-Ni-bearing low alloy steel

TL;DR: In this article, the determining role of aluminum on the precipitation behavior and mechanical properties in Cu-Ni-bearing low alloy steel was elucidated by electron microscopy in conjunction with the thermodynamic analysis.
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Relationship between non-inclusion induced crack initiation and microstructure on fatigue behavior of bainite/martensite steel in high cycle fatigue/very high cycle (HCF/VHCF) regime

TL;DR: In this paper, the authors used ultrasonic axial cycling test to study high cycle and very high cycle fatigue (HCF/VHCF) in a bainite/martensite (B/M) multiphase steel with varying inclusion size and microstructural features.
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Microstructure, crystallography, and toughness in nugget zone of friction stir welded high-strength pipeline steel

TL;DR: In this article, the relationship between the microstructure, crystallography, and toughness in the nugget zone (NZ) of friction stir welded X80 pipeline steel at various heat input parameters of 300, 400, and 600 rpm was addressed.
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On the impacts of grain refinement and strain-induced deformation on three-body abrasive wear responses of 18Cr–8Ni austenitic stainless steel

TL;DR: In this article, the concept of phase reversion annealing involving cold deformation of metastable austenite to strain-induced martensite was adopted to obtain fine grained 18Cr-8Ni austenitic stainless steel.