Material Densification
White paper

Hot Isostatic Pressing in Space – Essential Technology to Ensure Mission Safety

The space industry has seen a great deal of interest in recent years, with all major nations actively pursuing both civil and military space programs. In 2020, the global industry had grown to approximately $400 Billion, and the greatest growth was seen in the private sector. Market expectations are the overall Space market will reach $1 Trillion by 2030.
Hot Isostatic Pressing in Space – Essential Technology to Ensure Mission Safety

Mission critical components are processed using HIP to ensure integrity with significantly increased fatigue life, in the range of 10 to 100 times. Increased ductility and fracture toughness are also a result of defect healing. This technique has been utilised for many years on cast material and is becoming increasingly important for newer production methods such as additive manufacturing, or 3D printing.

Related links

Share:

Related content

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®

Isostatic pression solutions for scalable, cost-effective solid-state battery (SSB) production
White paper

Throughput and cost analysis of solid-state battery production

Brochure

QIH 200 URC® – the largest HIP with full HPHT™ capability

White paper

Benefits of using HIP for additively manufactured thin-walled, high-performance heat exchangers