Deepak George
Papers
1
Total Citations
5
H-Index
1
About
Deepak George is a materials scientist and mechanical engineer whose research focuses on the thermo-mechanical behavior of advanced elastomeric polymers, with particular emphasis on constitutive modeling and self-heating effects in high-performance materials. His most-cited work, "Incorporation of self-heating effect into a thermo-mechanical coupled constitutive modelling for elastomeric polyurethane" (2024, 5 citations), addresses a critical gap in understanding how elastomeric polyurethane (EPU) responds under cyclic loading—a phenomenon essential for applications in soft robotics and impact-resistant devices. By integrating self-heating into a coupled thermo-mechanical framework, George has provided engineers with predictive tools that enhance the durability and design of EPU-based components. His contributions bridge experimental characterization and computational modeling, offering insights into the interplay between mechanical deformation and thermal dissipation. This work has implications for anti-collision systems and flexible actuators, where material reliability under repeated stress is paramount. Though early in his career, George’s targeted focus on EPU’s unique properties—high toughness, low glass transition temperature, and impact resistance—positions him as a rising authority in polymer mechanics, with potential to influence next-generation smart materials and energy-absorbing structures.
Research Focus
Key Achievements
Top Papers
- 1