Research progress digital-twin-driven full life-cycle is a M.Tech project topic for Mechanical Engineering. It gives students a clear starting point for research, implementation planning, and documentation.
Research progress digital-twin-driven full life-cycle Project Details
| Abstract |
Using digital‑twin technology in the design and manufacture of rehabilitation assistive devices marks a major shift in personalized health engineering. This research looks at the methods, frameworks, and tech advances that enable a full life‑cycle, digital‑twin‑driven development process. By creating a two‑way data link between a physical device and its virtual copy, engineers can improve structural performance, tailor ergonomic interfaces, and forecast wear under changing physiological loads. The approach combines multi‑physics simulation, real‑time sensor data, and finite‑element analysis to assess the structural integrity of custom orthotic and prosthetic systems. It also tackles material selection, additive‑manufacturing limits, and continuous closed‑loop feedback for iterative design refinement. A systematic review and conceptual model
provide a clear guide for applying digital‑twin architectures in medical‑device production. The resulting insights help move from static CAD models to dynamic, adaptive virtual representations, boosting the reliability, safety, and therapeutic effectiveness of rehabilitation devices throughout their lifespan.
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| Reference Paper |
Research progress on digital-twin-driven full life-cycle design and manufacturing of rehabilitation assistive devices. |
| Domain |
Mechanical Engineering |
| Sub-Domain |
Design & Manufacturing / CAD/CAM/CAE / Simulation-Driven Design |
| PDF Download |
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