Propulsion systems

Additive manufacturing
for advanced propulsion.

Makerise applies multi-material and digitally controlled manufacturing approaches to propulsion-system development, from integrated structures to advanced material deposition.

Propulsion / 01

Solid Rocket
Motor

Makerise is developing additive-manufacturing approaches for solid rocket motor systems, with a focus on digitally manufactured components, integrated structures and repeatable production workflows.

The outer structural envelope of the motor — the load-bearing housing that defines overall geometry and the mounting interface.

Digitally manufactured components built layer by layer, replacing multi-part fabrication with a single controlled production workflow.

Structural and functional elements consolidated into fewer parts, reducing assembly complexity and improving repeatability across units.

Propulsion / 02

Base Bleed
Motor

Makerise is exploring additive-manufacturing methods for compact base-bleed motor systems, with emphasis on manufacturability, integrated geometry and controlled production.

The compact outer body that defines the motor's form factor and mounting geometry.

A digitally produced core region, built to repeatable geometric tolerances through additive methods.

Component consolidation that brings structural and functional zones into a single manufactured assembly.

Propulsion / 03

Hybrid Rocket
Engine

Makerise is developing additive-manufacturing workflows for hybrid rocket-engine components, bringing complex geometry and integrated manufacturing into a digitally controlled production process.

The elongated structural envelope that houses the engine's core manufactured regions.

Individual components built through layer-controlled additive processes, enabling geometry not practical with conventional fabrication.

Bringing manufactured components together into a coherent, production-ready assembly.

Material process / 04

3D Printed
Propellant

Makerise is researching additive manufacturing for propellant-related material systems, with an emphasis on controlled deposition, repeatable geometry and digitally managed manufacturing.

Digital process.
Controlled deposition.
Repeatable manufacturing.

Layer-controlled material placement, guided entirely by digital process parameters.

Geometry defined and validated in software before a single layer is deposited.

Repeatable, monitored manufacturing steps designed for consistency across production runs.