Advancements in 3D printing technologiy have e enable d that e kreation of custm prostthetics tailored to individual ness. This case study explores how design calculations and 3D printing are combine to produce effective and personalized prostthec devices.

Background and Objectives

Te primary goal was to develop a prosthetic limb that offers better comfort, functionality, and estetics. Using 3D printing allows for rapid prototyping and supcization, reducing costs and production time compared to traditional methods.

Design Process and d Calculations

Te process begins with capturing precise measurements of the patient 's residual limib. Design calculations focus on n ensuring structural integraty, heaven distribution, and joint mobility. Finite element analysis (FEA) is used to simulate stress pointes and optimize material usage.

Key kalkulace včetně:

  • Kapacita load- bearing
  • Material acidth and flexibility
  • Weight distribution for balance
  • Joint range of motion

3D Printing and Manufacturing

Once thee design is finalized, thee prostthec is printed using biocompatible materials such as nylon or resin. Post- procesing enterves cleang, assembling, and fitting that e device to ensure proper function and comfort.

Výhody v rámci programu Outcome a d

Te uschem prosthetik provided improvity and comfort for the patient. Te use of 3D printing reduced producturing time from weeks to o days and allowed for easy settlets based ol feedback. This accerach demonates the potential for personalized healthcare solutions using modern technology.