APID Academic Profile Identity
Bharat Vinjamuri

Dr. Bharat Vinjamuri

Professor & Head · Mechanical ENgineering
Author
APID
7997
ORCID
0000-0003-3334-7484
Scopus
57189576432
Google Scholar
9JuFrQQAAAAJ
Location
Bengaluru, Karnataka, India
Expertise
Material technology, Tribology, Wear Characterization, Powder Metallurgy
Areas of interest
Composite Materials, 3D Printing
Member since
September 2024

Biography

Dr. Bharat Vinjamuri's research and academic interests are centered on advancing material technology, manufacturing processes, and the integration of cutting-edge technologies in mechanical engineering. His focus includes materials testing, composite materials, and their applications, particularly in the context of wear properties, thermal behavior, and mechanical performance. With a strong emphasis on applied research, he has published extensively in Scopus-indexed journals on topics like aluminum matrix composites, metal matrix composite fabrication, and finite element analysis (FEA).

In addition to his academic work, Dr. Vinjamuri has been actively involved in skill development programs related to CNC machining, 3D printing, and FEA, aligning with his broader goal of bridging the gap between academia and industry. He has also contributed significantly to curriculum development, ensuring that it meets the latest industry standards.

His administrative roles, including Program Coordinator and NBA Core Committee Member, coupled with his efforts in securing research grants like the AICTE funding, highlight his commitment to both research innovation and academic leadership. Through these endeavors, he has consistently promoted hands-on learning, skill-building, and real-world problem-solving for students and professionals alike.

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Publications

  1. A review on mechanical and wear properties of fiber-reinforced thermoset composites with ceramic and lubricating fillers
  2. Effect of Stirring Parameters on Microstructure of Aluminum hybrid Metal Matrix Composite
  3. Effect of beryl on wear and thermal expansion behavior of Al-beryl MMC
  4. Investigations on Mechanical and Tribological Properties of Beryllium Aluminium Cyclosilicate Reinforced Al Composites produced via powder metallurgy
  5. Microstructure and Mechanical Properties of sintered Al 2024 hybrid MMCs
  6. Sliding Wear Response of Beryl Reinforced Aluminum Composite - A Factorial Design Approach