Quintus Purus® enabling a clean HIP atmosphere

Delivers moisture-free HIP processing for uncompromised part quality

Prevent moisture from interacting with your parts with Quintus Purus®

Modern Quintus Hot Isostatic Pressing (HIP) furnace design delivers a moisture-free HIP environment, removing moisture from both the system and the parts. This eliminates unwanted effects such as alpha-case formation and oxidation in critical components.

Cleaner HIP atmosphere

Actively removes moisture and contaminants, reducing discoloration, oxidation, embrittlement, and unwanted surface reactions.

Improved part performance and reliability

Reduces impurities, improving fatigue and ductility in HIP-sensitive titanium- and nickel-based alloys.

Reduced post-processing and lower cost

Minimizes or eliminates the need for machining, chemical milling, or sacrificial getter wrapping, saving time, cost, and complexity.

Greater process repeatability and efficiency

Delivers stable atmosphere quality cycle-to-cycle, improves furnace and argon gas cleanliness, and supports scalable, qualification-critical production workflows.

How we help our customers

Webinar

Quintus Purus® Clean HIP Processing

White paper

Quintus Purus® enabling clean processing in Hot Isostatic Pressing

Customer Stories

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

Webinar

Quintus Purus® Clean HIP Processing

Quintus Purus® Enabling clean processing in Hot Isostatic Pressing
White paper

Quintus Purus® enabling clean processing in Hot Isostatic Pressing

PM-AM cylinder demo part
Customer Stories

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

Mostly used in

Consumer Electronics
Vehicles
Service Providers
Aerospace
Space
Defence
Medical Implants and Tools
Consumer Electronics
Vehicles
Service Providers
Aerospace
Space
Defence
Medical Implants and Tools

Quintus Purus is a capability developed to ensure the cleanest possible atmosphere during the HIP cycle. Its purpose is to reduce the risk of oxidation and oxygen uptake in component surfaces. It has proven vital for avoiding, e.g., alpha case on titanium alloys used in medical implants.

HPHTᵀᴹ is short for High Pressure Heat Treatment. It includes capabilities for integrating different heat treatment strategies within the HIP process.

The main features include

  • Latest generation of temperature control and high steered cooling rates of the URC®
  • Minimum distortion gas quenching feature of the URQ®
  • Steered Cooling™
  • Quintus Purus®

The basis for these is the ability to control and steer the high-pressure gas in the vessel and furnace.

Uniform Rapid Cooling, URC®, is a Quintus invention which enables uniform cooling of the payload. Forced convection of high temperature and high pressure gas over a heat sink enables controllable cooling of the gas. URC® is used for metals as well as ceramic materials, to increase productivity and heat treat parts.

Uniform Rapid Quenching, URQ®, is a Quintus invention which enables high speed quenching of the payload, at similar cooling rates to gas quenching. Cold gas in the HIP is exchanged with the hot gas in the furnace at a very high rate, effectively quenching the payload in a uniform way with minimal induced stress.

The different capabilities of HPHTᵀᴹ are features developed for controlling the high-pressurized gas inside the pressure vessel. Having this capability enables us to steer the temperature and temperature change rate the components are subjected to, making accurate process control and heat treatments strategies possible.

HPHTᵀᴹ makes up of different features within Quintus HIP. Its capabilities are to optimize densification, heat treatment, and general processes. It’s done by controlling and steering high-pressure gas.

Most standard heat treatment processes for metals and ceramics, using temperature and temperature change rate, can be performed in the HIP vessel. In addition to the traditional pressureless heat treatments, the MPa pressure of the HIP process can be used both for altering the kinetics of the process and for more precise control of temperature uniformity and temperature change rates.

Related knowledge

White paper

Reducing heat treatment distortion through High Pressure Heat Treatment (HPHT™)

Technical Publication

Meeting demands for manufactured medical implants

Brochure

High-end sinter-based parts powered by Hot Isostatic Pressing

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 heat treatment distortion through High Pressure Heat Treatment (HPHT™)

Technical Publication

Meeting demands for manufactured medical implants

Brochure

High-end sinter-based parts powered by Hot Isostatic Pressing

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

Related products

Need help choosing the right press for your business?

Need help choosing the right press for your business?

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