Dr. Vikram Raja Jothi

Profil

Derzeitige StellungPost Doc
FachgebietMechanische Eigenschaften von metallischen Werkstoffen und ihre mikrostrukturellen Ursachen
KeywordsStress exponent and Activation energy, High temperature deformation, Refractory complex concentrated alloys (RCCAs), Matrix-precipitate interaction, Creep

Aktuelle Kontaktadresse

LandDeutschland
OrtKarlsruhe
Universität/InstitutionKarlsruher Institut für Technologie (KIT)
Institut/AbteilungInstitut für Angewandte Materialien - Werkstoffkunde

Gastgeber*innen während der Förderung

Dr.-Ing. Martin HeilmaierInstitut für Angewandte Materialien - Werkstoffkunde, Karlsruher Institut für Technologie (KIT), Karlsruhe
Beginn der ersten Förderung01.02.2024

Programm(e)

2023Humboldt-Forschungsstipendien-Programm für Postdocs

Publikationen (Auswahl)

2026R.J. Vikram: Ultra-slow coarsening in precipitation-strengthened refractory high-entropy alloys. In: Scripta Materialia, 271, 2026, 117026
2025R.J. Vikram: Strategic alloy design and processing for improved mechanical response in the Mo-Si-Ti system. In: Scripta Materialia, 2025,
2024R.J. Vikram: Unveiling the Intricacies of a Ductile‐Phase Toughened Intermetallic: An In‐depth Exploration of a Eutectic Mo‐Si‐Ti Alloy and its Mechanical Behavior. In: Advanced Engineering Materials, 2024,
2023R.J. Vikram: Design of a nickel–cobalt based eutectic high entropy alloy (NiCo)1.7AlCrFe with hierarchical microstructural length scales. In: Philosophical Magazine, 2023,
2022R.J. Vikram: Mechanism Controlling Elevated Temperature Deformation in Additively Manufactured Eutectic High-Entropy Alloy. In: Metallurgical & Materials Transaction, 2022,
2021R.J. Vikram: Design of a new cobalt base nano-lamellar eutectic high entropy alloy. In: Scripta Materialia, 2021,
2020R.J. Vikram: Effect of heat treatment on the modification of microstructure of selective laser melted (SLM) IN718 and its consequences on mechanical behavior. In: Journal of Materials Research, 2020,
2020R.J. Vikram: Insights into micro-mechanical response and texture of the additively manufactured eutectic high entropy alloy AlCoCrFeNi2. 1. In: Journal of Alloys and Compounds, 2020,
2019R.J. Vikram: A fractal approach to predict the oxidation and corrosion behavior of a grain boundary engineered low SFE high entropy alloy. In: Materialia, 2019,