Conflux Technology - High Performance Additive Manufactured Thermal Solutions.
At Conflux Technology, we design solutions that integrate at a system level providing enhanced service capability and part reliability whether on ground, sea or air. Conflux is driving innovation in defence through cutting-edge solutions for high performance heat exchange.
We are pioneers of thermal technology, and our team of subject matter experts are uniquely positioned to transform heat exchange performance. We’ve dedicated our years of experience, research and development to advancing additive-manufactured thermal solutions.
By partnering with industry leaders, we are developing state-of-the-art thermal solutions for application on existing and next-generation defence platforms. Conflux’s deep specialist knowledge and industry-leading products extend to reliable serial production utilising our internal capability and partner network.
• Cutting-edge design with a deep understanding of Design for AM (DfAM) principals
• Full simulation capabilities including CFD and FEA
• Production facilities with manufacturing and post processing equipment in-house
• Extensive experience working in Aerospace and Defence applications in a global market
• Cargo, fighter/fast jets, helicopters, unmanned air vehicles, electronic pods
• Military ground vehicles, engine radiators, accessories, intercoolers, oil coolers
• Nuclear reactor gas cooling, navy cooling applications; coldplates, vapour chambers
• Missiles, weapon systems, high energy weapons, directed energy
• Radar, antenna, environmental control systems, bearing oil coolers, ancillary system coolers, engine coolers, transmission coolers, radar cooling, generator and motor air coolers (Avantair, CACCA, CACW)
• Gas duct cooling, electronics cooling, regenerative cooling, film cooling, radiative cooling
• Battery cooling, electronics cooling, air/air heat exchangers, air/liquid heat exchangers, liquid/liquid heat exchangers, Conflux cartridge, Conflux charge air cooler, cold plate technology
• Conformal & compact designs
– Efficient use of space and flexible packaging options allows for an increase in thermal load management with the most efficient use of the packaging volume available
• Part consolidation
– Designing at a system level, we enable neighbouring parts to be integrated into the heat exchanger. This consolidation of
part numbers leads to a simplification of the bill of materials, a reduction in sub assembly lead time and overall increase in
production efficiency
• Legacy system integration
– Additive manufacturing can support previously unrepairable components that are no longer in production to extend the life
cycle of these systems
• Higher thermal exchange
– Enhanced surface area density to volume ratio results in high thermal exchange performance
• Speed to market
– Agile product design and development unlocks parts within months, not years. Further to this, AM allows for on-demand
production minimising downtime
• Reliability
– AM products are designed and tested to withstand the most extreme operational environments providing performance you
can rely on
• Industry leader in thermal application development harnessing AM technology
• End-to-end development capability from design through to simulation and production and NDT
• Global patents in the design and manufacture of AM heat exchangers
• Strong partnerships with industry, defence and research organisations
• Vertically integrated facilities
At every stage of development, we continuously assess and refine our approach to ensure a smooth transition to production. This includes proactively identifying and mitigating potential risks, such as supply chain challenges, to support seamless scaling. Our focus is on achieving a production-ready solution that meets your specific needs, while maintaining flexibility to adapt to supply chain diversity and ensure long-term reliability.
• General Atomics
• Kawasaki
• Ricardo
• Australian Government
• Rocket Factory Augsburg
• ANSTO
• AMSL Aero
• AS9100D
• ISO9001
• AUKUS Accepted
• ITAR Compliant
• MIL-STD-810