Dmytro Krasnovyd

Design Engineer / Additive Manufacturing & Biomedical Systems

Design engineer at the Science Park of Additive Technologies Sikorsky Challenge, an expert in designing complex engineering systems, additive manufacturing and developing innovative products for real-world application.

Combines deep engineering expertise, modern design approaches, and experience creating competitive products from idea to finished solution.

Expertise

  • engineering design and construction of complex products
  • development of CAD models and design documentation
  • additive manufacturing and design optimization for 3D printing
  • technical calculations
  • patent research and innovative developments

Practical Role

  • designs products (including those for biomedical applications)
  • ensures solutions meet technical requirements, standards and economic feasibility
  • participates in creating and testing prototypes and experimental samples
  • coordinates the process from design to production implementation
  • works with interdisciplinary teams (engineers, doctors, researchers)
  • Biomedical / Prosthetics area
  • designs orthoses, prosthetic components and assistive devices
  • adapts engineering solutions to individual user needs
  • participates in creating personalized products using additive technologies
  • ensures reliability, ergonomics and functionality of products

Impact

  • creating innovative products with high added value
  • reducing development time and implementing engineering solutions
  • improving the quality and accessibility of biomedical products
  • transferring technology from science to production

Professional Achievements

  • Candidate of Technical Sciences (Ph.D), Associate Professor, specialist in mechanical engineering
  • participates in training engineering personnel and educational programs
  • scientific and research activity in modern technologies and design
  • engages students in real engineering and DFM (design for manufacturing) projects, introducing ideas into production

Approach

  • Works on the principle: design → validation → prototyping → implementation
  • Focuses on creating solutions that combine engineering precision, innovation and practical value with a real impact on industry and rehabilitation.