Ramesh Rajagopal
Sri Venkateswara College of Engineering, Indian Institute of Technology (Madras)
About
Dr. R. Ramesh is a Professor of Mechanical Engineering and serves as Assistant Dean (Academic) at Sri Venkateswara College of Engineering, Sriperumbudur, India. He earned his B.E. in Mechanical Engineering and M.E. in Computer-Aided Design before pursuing a Ph.D. in Machine Design from the Indian Institute of Technology Madras (IIT Madras).
With more than 19 years of teaching and research experience, Dr. Ramesh's areas of expertise include mechanical vibrations, tribology, machine design, and the fatigue behavior of composite materials. He has successfully executed government-funded research projects and has extensive experience in industrial consultancy, particularly in the areas of mechanical design and mechanical vibration analysis.
Employment
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Sri Venkateswara College of Engineering Professor
Education
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Indian Institute of Technology (Madras) PhD2002 - 2006
Projects & Funding
Projects & funding information is unavailable.
Publications (34)
- Experimental Investigation On Effect Of Cyclic Loading On Free Vibration Characteristics Of Glass/Jute Hybrid Composite Beams Save
- Free Vibration Study on Woven Fabric Carbon Epoxy Laminate Plied with Neoprene Rubber Using Impulse Hammer Technique Save
- Study of mechanical properties of sustainable biocomposite panels using Jute-PLA and Sisal-PLA Save
- Study on the Influence of Nanosized Silica Reinforcement in Microrubber Blended Epoxy Carbon Composite Laminate Subjected Under Dynamic Mechanical Analysis Save
- Influence of Stacking Sequence on Mechanical Properties and Vibration Characteristics of Glass/Carbon Hybrid Plates with Different Fabric Areal Densities Save
- Mechanical Strength Behavior of Hybrid Composites Tailored by Glass/Kevlar Fibre-Reinforced in Nano-Silica and Micro-Rubber Blended Epoxy Save
- Experimental investigation of mechanical, tribological and dielectric properties of alumina nano wire-reinforced PEEK/PTFE composites Save
- Evaluation of mechanical and vibration behavior of hybrid epoxy carbon composite beam carrying micron-sized CTBN rubber and nanosilica particles Save
- Mechanical and low velocity impact behaviour of intra-ply glass/kevlar fibre reinforced nano-silica and micro-rubber modified epoxy resin hybrid composite Save
- Experimental Study on Fatigue–Vibration Interactions of Cyclically Loaded FRP Composite Cantilever Beams Made of Glass/Carbon-Layered Arrangements Save