Material Densification
Technical Publication

Influence of Combined Heat Treatment and Hot Isostatic Pressure (HT-HIP) on Titanium Aluminide Processed by L-PBF

This work presents a novel strategy to postprocess L-PBF TiAl by applying combined heat treatment and hot isostatic pressing in one process, namely HT-HIP. The process includes three cycles with different conditions (i.e., temperature, time, and pressure). These conditions were determined to achieve improved part quality and microstructure. The results show that the tensile residual stresses decreased from a peak of 249 MPa in the as-built sample to compressive stresses that peaked at -90 MPa after the HT-HIP process. The number and size of internal defects could be greatly reduced. The defects were transformed into a regular spherical shape, which is good in terms of fatigue strength. Additionally, a duplex microstructure with lamellar 2/ colonies could be introduced for better ductility.

Share:

Related content

Webinar

Innovations and trends in Hot Isostatic Pressing for orthopedic implants

Customer Stories

Morgan Advanced Materials improves productivity and eliminates scrap with advanced CIP upgrade

Post-Processing Contributions to Fatigue Variability in L-PBF Ti6Al4V with UW
Tech Talks

Post-processing contributions to fatigue variability in L-PBF Ti6Al4V with the University of Washington

White paper

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

White paper

The role of HIP for investment casting aerospace industry

White paper

HIP: The key to high-performance ceramic medical implants

Need help choosing the right press for your business?

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