Medical Devices Education & Training

Grow your career or accelerate your team’s impact with training from ASM International.

Learn from industry experts in a variety of formats that suit your budget, schedule, and preferred learning style.

Instructor-Led Courses

Hands-on learning that takes place in-person at ASM headquarters in our state-of-the-art training labs and classrooms, or virtually through direct interaction with an expert ASM instructor without needing to travel!

Self-Study Courses

Online education courses which allow you to learn at your own pace in an independent study format.

Not sure which training opportunity to choose?
Schedule a no-obligation consultation with one of ASM’s Education advisors to discuss which course and format might best suit your needs!
Need help outlining the value to your organization?
Check out our helpful Training Justification Template to share with your leadership.
Instructor-Led Course

Nitinol for Medical Devices

The unique properties of the shape memory alloy Nitinol have led to many transformational medical device innovations, including self-expanding stents, percutaneous delivered heart valves, kink resistant guide wires, and self-locking orthopedic devices. Its superelastic qualities allow the alloy to withstand large amounts of recoverable strain, and its potential for excellent biocompatibility and fatigue resistance make it the material of choice for some of the most demanding medical device applications. However, Nitinol’s unique properties are very dependent upon alloy composition and processing.

In this course, you will learn the variables that affect Nitinol’s properties, how to control them, and how its unique properties can be applied in medical devices.

Virtual Option
Self-Study Course

Medical Device Design Validation and Failure Analysis 

This course provides students with a fundamental understanding of the design process necessary to make robust medical devices. Fracture, fatigue, stress analysis, and corrosion design validation approaches are examined, and real-world medical device design validations are reviewed.