B. Venkata Manoj Kumar
Also known as: B V Manoj Kumar
Indian Institute of Technology Roorkee : Roorkee, Uttarakhand, IN, Indian Institute of Technology Roorkee Mahatma Gandhi Central Library, Indian Institute of Technology Roorkee
About
Dr B. Venkata Manoj Kumar is currently working as Professor at Department of Metallurgical and Materials Engineering, Indian Institute of Technology (IIT), Roorkee. With the primary theme of understanding microstructure-property relations, Dr. Kumar has been actively involved in processing advanced ceramic systems like SiC, ZrB2, B4C, Si3N4, TiCN-Ni cermets etc., and studying the influence of microstructural characteristics on their material removal mechanisms when subjected to sliding, fretting, erosion or machining conditions.
Employment
-
Indian Institute of Technology Roorkee : Roorkee, Uttarakhand, IN Professor2021 - Present
-
Indian Institute of Technology Roorkee Mahatma Gandhi Central Library Assocaite Professor2016 - 2021
-
Indian Institute of Technology Roorkee Assistant Professor2011 - 2016
-
University of Seoul Reseasrch Assistant Professor2009 - 2011
-
Seoul National University Post Doctoral Researcher2008 - 2009
-
National Institute of Technology Warangal Lecturer (Adhoc)2001 - 2002
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (95)
- Exploring dip coating technique for in-situ synthesis of hBN interphase for slurry impregnated - spark plasma sintered Cf/SiC composites Save
- Solid particle erosion of SiC-in situ Zr2CN composites: Damage evolution under varying temperature and impact conditions Save
- Spark Plasma Sintering of TaC and TaC-SiC Composites: Densification, Microstructure and Electrical Discharge Machinability Save
- Ballistic resistance of spark plasma sintered B4C-SiC composites Save
- Unveiling wear mechanisms of tantalum carbide‐silicon carbide composites: Influence of silicon carbide content and sliding load Save
- Friction and wear mechanisms of hot-pressed SiC-in situ Zr2CN composites in extreme conditions of humidity and temperature Save
- Development of electrical discharge machinable SiC-ZrN composites: Unveiling high temperature sliding wear resistance Save
- Selected Papers from the International Conference on Processing and Characterization of Materials (ICPCM-2022) Save
- Influence of TiB2 and wear conditions on friction and wear behaviour of SiC ceramics in reciprocating sliding Save
- Editorial Save