Material Densification
White paper

Reducing fatigue failure in titanium alloys: Opportunities for HIP in aerospace and medical AM

Titanium alloys like Ti-6Al-4V are indispensable to aerospace and biomedical engineering, yet their performance can be severely limited by fatigue-related failures—especially in Additive Manufacturing (AM) applications.

This whitepaper examines the root causes of fatigue in AM titanium components and highlights Hot Isostatic Pressing (HIP) as a transformative solution. Through analysis of microstructural evolution, case studies, and emerging standards such as AMS 7028, we explore how HIP enhances fatigue life and mechanical integrity, supporting greater adoption in safety-critical industries.

Share:

Related content

Customer Stories
MTC Powder Solutions expands PM-HIP capabilities with Quintus QIH 286
Webinar
Hot Isostatic Pressing (HIP) for Metal AM
White paper
Reducing heat treatment distortion through High Pressure Heat Treatment (HPHT™)
3D printed Ti6Al4V acetabular cup with delicate trabecular surface structure prone to alpha-case embrittlement
Technical Publication
Meeting demands for manufactured medical implants
Brochure
High-end sinter-based parts powered by Hot Isostatic Pressing
Webinar
Innovations and trends in Hot Isostatic Pressing for orthopedic implants

Need help choosing the right press for your business?

Do not hesitate to contact us. We are always ready to answer your questions.