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HIP supports the strength, density and fatigue performance required for suitable high-value aerospace castings, powder-based parts and advanced manufactured components.
HIP can support durable, consistent components for advanced automotive manufacturing, motorsport and mobility development.
HIP supports production routes involving castings, metal and ceramic powders, diffusion-bonded assemblies and suitable additive-manufactured parts.
Suitable defence components can benefit from reduced porosity, improved material consistency and dependable processing for demanding service conditions.
Medical device and biomedical material development can use HIP to improve the integrity and uniformity of suitable metallic and ceramic parts.
Energy applications can use HIP for suitable components that require improved density, material integrity and resistance to demanding operating conditions.
Apply heat and uniform gas pressure to reduce internal porosity in suitable cast components.
Densify containerized powder shapes for near-net-shape and high-performance material development.
Process compatible ceramic materials where uniform density and high-temperature performance are required.
Use controlled heat and pressure to support solid-state bonding of compatible materials and assemblies.
Support densification and stress-relief routes for suitable additive-manufactured and metal-injection-moulded parts.
Develop cycles at laboratory scale, increase sample size and transition into production-oriented HIP systems.