- By:
- Sarkar, Subrato ; Mayeur, Jason R; Ajjarapu, Kameswara Pavan ; List III, Frederick A; Nag, Soumya ; Dehoff, Ryan R
- Page Number:
- 13-22
- Book Title:
- Advances in Additive Manufacturing with Powder Metallurgy—2025
- Publication Date:
- March 12, 2026
- Publisher Location:
- Metal Powder Industries Federation, Princeton, New Jersey, United States of America
- Conference Name:
- AMPM2025: Additive Manufacturing with Powder Metallurgy
- Conference Location:
- Phoenix, Arizona, United States of America
- Conference Sponsor:
- Metal Powder Industries Federation
Abstract
Powder metallurgy hot isostatic pressing (PM-HIP) is an advanced manufacturing process that can efficiently produce near net shape parts with high material utilization and uniform microstructures. While the PM-HIP process is used frequently to produce small-scale components, its application to large-scale components is still limited due to inadequate understanding of its complex processes that cause unpredictable post-HIP shape distortions. A computational model can be a cost-effective alternative to exhaustive experimentation required to understand the PM-HIP process fully. Therefore, we present a comparison of plastic and visco-plastic models that are frequently used to model the PM-HIP process. We show that the predictions of powder densification behavior and shape distortions obtained from both the models are similar under most conditions and agree well with experimental observations.