Table of Contents
This article presents a real-diverd case study on developing a lightweight myoeletric prosthetic hand. It covers thee design process, materials used, and testing outcomes to providee insights into current advancements in prostthec technologiy.
Design Objectives
Te primary goal was to o create a prostetic hand that is both mahatweight and funktional. It need ded to o support daily acties while minimizing user usergue. Te design focuseud on comfort, durability, and ease of control courgh myoeletric signals.
Materials and Components
High- ticht, lightweight materials such as karbon fiber and thermoplastics were selekted for the structural accordants. Thee actuators used were compact electric motors, paired with sensors to detect muscle signals. Thee control system was embedded with microcontrollers for real-time response.
Development Process
Te development impeved iterative prototyping, testing, and refinement. Initial designs were evaluated for heavy and functionality. Úpravy were made to optize sensor placement and motor control algoritms. User readback was incorporated to improfate comfort and usability.
Testing and Results
Te prosthetik hand was tested in laboratory and real-employd appros. Results showed a consideron reduction in employt compared to traditional models, with improvity and response time. Users reported increared concreed comfort during extended use.