Advanced Space Propulsion
Kosaint is developing next-generation propulsion hardware through an additive-first engineering approach.
Rather than adapting traditional propulsion designs for additive manufacturing, we begin with the capabilities of advanced manufacturing itself — combining simulation-driven design, design-for-additive-manufacturing, metal additive manufacturing, inspection and validation to create propulsion hardware that is lighter, simpler, faster to manufacture and more scalable.
Our first space technology demonstrator is an additively manufactured thrust chamber assembly — the foundation of a repeatable development platform for the rapid design, manufacture and validation of next-generation space propulsion hardware.
Additively manufactured thrust chamber assembly
A development platform validating the same additive-first workflow for space propulsion hardware.

This capability extends to thrust chambers, injectors, nozzles, manifolds, heat exchangers and other high-performance components for launch vehicles, spacecraft propulsion, orbital manoeuvring and future in-space transportation.
VARIANT OF THE KOSAINT ADDITIVE-FIRST DEVELOPMENT WORKFLOW
- 01Propulsion requirements
- 02CAD design
- 03Thermal & structural simulation
- 04Manufacturability assessment
- 05Metal additive manufacturing
- 06Post-processing
- 07Inspection
- 08Materials characterisation
- 09Validation planning
Working on space propulsion, launch systems, or advanced manufacturing? Get in touch.