Material Densification
White paper

Phase Transformation under Isostatic Pressure in HIP

The new HIP cooling systems enable very fast cooling rates under isostatic pressure. This does not only enable shorter HIP cycles but also allows complete heat treatment cycles to be performed in one HIP cycle. It has been shown in previous studies that extreme pressures of several thousand bar can push phase transformation towards longer times.
Phase Transformation under Isostatic Pressure in HIP

The new URQ HIP cooling systems give the opportunity to investigate the impact of pressures up to 2000 bar on phase transformation time dependency. For each of the two materials in this study, a comparison of austenite phase transformation time at 100 bar and 1700 bar was performed. The study was performed by isothermal heat treatment of specimens for a specific time followed by quenching. To evaluate the influence of pressure on hardenability, the phase fractions were evaluated using grid method on SEM images. The study found significant influence of HIP pressure on hardenability.

Related links

Share:

Related content

Webinar The Production of High-Performance Heat Exchangers for Aerospace Applications
Webinar

The production of high-performance heat exchangers for aerospace applications

Leveraging HIP as a Productivity Tool for AM Metallic Components
Webinar

Leveraging HIP as a Productivity Tool for AM Metallic Components

Shaping the future of the HIP industry
Brochure

Shaping the future of the HIP industry

White paper

Sustainable production potential of aero engine components in alloy 718 with Flexform™

White paper

Transforming heavy manufacturing with large-scale PM-HIP

PM-AM cylinder demo part
Customer Stories

Paragon Medical elevates their medical device AM manufacturing with Quintus® Care and Quintus Purus®

Need help choosing the right press for your business?

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