APID Academic Profile Identity
borad M Barkachary

Dr. borad M Barkachary

Associate Professor · Mechanical Engineering
Author
APID
12974
ORCID
0000-0002-4175-7419
Scopus
56884880600
Google Scholar
MryyTp8AAAAJ
Location
Jorhat, Assam, India
Expertise
Manufacturing, Ultra-Precision Machining, Finite element method, optimization
Areas of interest
Precision Machining, Finite element method, optimization, additive manufacturing
Member since
June 2026

Biography

Greetings!
I'm Dr. Borad M Barkachary, an Associate Professor at Jorhat Institute of Science & Technology (JIST), India. With a Ph.D. in Manufacturing from IIT Guwahati and an M.Tech. in Computer Integrated Manufacturing from NIT Warangal, my academic journey has been driven by a passion for exploring manufacturing processes and optimization.
My research has led to publications, including a Best Paper Awards and recognition of outstanding reviewer. I'm an active member of professional bodies such as The Indian Society for Technical Education, The Institution of Engineers (India), and the International Society for Nanomanufacturing. I am deeply committed to nurturing innovation and research excellence.
With over a decade of teaching experience, I've had the privilege of guiding students in various engineering subjects and Projects. In addition to my academic roles, I've taken on administrative responsibilities, serving as the Training and Placement Officer, Convenor for MoU-AICTE, the Coordinator for NBA, and the Coordinator for the 'Student Induction Program' at JIST.

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Publications

  1. Diamond machining of additively manufactured Ti6Al4V ELI: Newer mode of material removal challenging the current simulation tools
  2. Diamond machining of additively manufactured Ti6Al4V ELI: Newer mode of material removal challenging the current simulation tools
  3. Integrated finite element method and response surface methodology-based modelling and simulation of single point diamond turning of silicon
  4. Numerical Computation and Analysis of Cutting Forces during Nanometric Scratching of Silicon Carbide
  5. Numerical Computation and Analysis of Cutting Forces during Nanometric Scratching of Silicon Carbide
  6. Numerical Simulation and Experimental Validation of Nanoindentation of Silicon Using Finite Element Method
  7. Surface Defects incorporated Diamond Machining of Silicon
  8. Ultra-Precise Single-Point Diamond Turning Process and Its Low-Cost Alternative Methods