Real-World Uses of Hot Isostatic Pressing Technology

  • Diffusion Bonding of Similar & Dissimilar Materials
  • Densification of MMC’s & Ceramics
  • Rejuvenation of Creep Damaged Parts & Weldments
  • Casting Densification
  • Metal Powder Densification
  • MIM Part Densification
  • 3D Printed (AM) Part Densification

Applications We Specialize In

Delivering HIP solutions across industries where performance, consistency, and reliability are critical.

Hot Isostatic Pressing For Casting Densification

Hot Isostatic Pressing enhances castings by eliminating internal shrinkage defects, improving mechanical properties, and delivering more consistent performance in critical applications.

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Aerospace Casting Densification

HIP is used to remove porosity from a wide range of nickel-based super alloy and titanium precision castings for aircraft engines and structural components.

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Biomedical Device Densification

HIP is used in the medical industry to improve the properties of cast cobalt chrome, titanium and stainless steel implants.

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Industrial Casting Densification

Industrial applications for hot isostatic pressing covers a wide range of industries and products such as electrical and electronic casings, machine tools and pump impellers.

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Power Generation Casting Densification

In the power generation industry, hot isostatic pressing is used to densify turbine blades, discs and other components to remove porosity and enhance performance.

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Additive Manufacturing & 3D Printing (Metal)

3D printing of metals combined with HIP processing offers the possibility to produce parts with qualities that are comparable to those resulting from conventional manufacturing methods.

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Powder Metallurgy (Consolidation) & MIM

Powder metal consolidation via HIP is used to produce both simple shapes for further processing and near net shape components faster, with reduced weight and less machining than traditional castings and forgings.

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Diffusion Bonding

HIP is used in a range of applications to clad, weld and join dissimilar materials.

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Custom & Emerging Applications

We partner with customers to apply HIP technology to new materials, designs, and manufacturing challenges.

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Talk to an Expert

Our team can evaluate your components and recommend the right HIP approach.

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Materials Processed

The hot isostatic pressing process is ideal for components produced from the following materials:

  • Aluminum based alloys
  • Magnesium based alloys
  • Cobalt Chromium alloys
  • Copper based alloys
  • Cemented tungsten carbide
  • Magnetic materials
  • Metal matrix composites
  • Nickel and cobalt based superalloys
  • Optical Materials
  • Plasma sprayed and other coatings
  • Steel castings - low and high alloy
  • Titanium based alloys

Our HIP Services

Pressure Technology provides hot isostatic pressing (HIP) services for the aerospace, medical, ceramics, electronics, precision casting, powder metallurgy, and additive manufacturing industries, among others. We specialize in densifying a broad range of materials, including investment castings, powder metal parts, ceramics, carbides, composites, intermetallics, weldments, and advanced alloys. Our capabilities also include diffusion bonding of dissimilar metals and powder consolidation. PTI supports HIP processing for research and development, prototyping, repair and rejuvenation, as well as full production runs.

About Our Services

Approved By Major Industry Leaders

Our HIP Capabilities

PTI offers a broad range of hot isostatic pressing (HIP) capabilities supported by modern, state-of-the-art equipment. Our production units, ranging from 16″ to 30″ in diameter, are designed for cost-effective processing of diverse customer requirements. Operating 24/7, we provide fast, reliable turnaround. Our molybdenum furnace systems with argon atmosphere vessels deliver enhanced cooling, research and development flexibility, pressures up to 30,000 psi, and temperatures reaching 2550°F.

About Our Capabilities

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Submit your details and our team will evaluate the best HIP solution for performance, consistency, and cost efficiency.

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