Space Thermal Applications

Solve temperature and weight challenges with AM heat exchangers.

 

Launch Vehicles

Thermal management in launch vehicles is critical to mission success. From cooling powerful rocket engines to preserving cryogenic propellants, protecting sensitive electronics, and safeguarding structures during re-entry, these systems ensure performance under extreme conditions.

Space Infrastructure

Thermal management in space infrastructure plays a key role in maintaining functionality. It ensures temperature regulation across power systems, shields equipment from solar radiation, and sustains critical operations in orbiting stations or space habitats.

Satellites

For satellites, thermal control is vital to protecting onboard electronics from extreme temperatures. It maintains stable operation by dissipating excess heat and managing cold exposure, ensuring reliable communication, data transmission, and power generation.

Gallery

Charge Air Cooler

Features

Experience unparalleled performance with Conflux heat exchangers. Our innovative approach redefine what’s possible in thermal management, offering key advantages to elevate the performance of your most demanding space systems.

 

High Thermal Efficiency

Maximizes heat transfer for optimised performance in demanding space environments.

Lightweight Design

Ensures minimal weight to meet stringent payload restrictions.

Robust Materials

Engineered for resilience under extreme temperature fluctuations and cosmic radiation.

Compact Form Factor

Conserves space, enabling integration within tight spacecraft design constraints.

Accreditations

 

 

AS9100D AS9100D ISO 9001 ISO 9001

Working With Conflux

Partner with Conflux for a streamlined approach to advanced heat exchange solutions. Our process is designed to guide you from concept to optimised, high-performance outcomes.

1.
Feasibility

We begin by evaluating whether an additive manufacturing heat exchanger (AM HX) will meet your thermal performance needs. Through a rough design and preliminary simulation, we provide insights into the potential success of integrating the heat exchanger into your platform, helping you make an informed decision before committing to full-scale development.

2.
Proof of Concepts

We create a working design backed by detailed simulations and deliver a physical part. We also offer recommendations for testing the prototype to ensure it meets your operational needs. If required, we adjust the quantity of parts to suit the needs of your project.

3.
Optimisation & Verification

We work closely with you to refine the heat exchanger design, focusing on how it will seamlessly integrate with your platform. This iterative process includes performance optimisation and operational testing to ensure the part functions as intended in real-world conditions. The goal is to achieve final design approval through collaborative, hands-on development.

4.
Qualification

We ensure your heat exchanger meets industry qualification standards, including those related to our additive manufacturing processes. This phase focuses on producing a functional part and verifying the manufacturing process, with all requirements typically driven by your specific industry standards, ensuring readiness for production.

Meet with us

Discover our innovative heat exchange technology


At Conflux, we're on a mission to revolutionise the heat exchange industry by developing innovative solutions that address real-world challenges. 

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