
ADDITIVE FUNCTIONAL COMPONENTS
Heat exchangers and complex flow parts.
Additive manufacturing consolidates internal channels, thin walls and high-surface-area structures into production-oriented thermal and fluid components.
Integrated channels and high-surface-area structures for thermal and fluid management.
Final materials, dimensions and process conditions are confirmed against the product drawing and application requirements.

Integrated heat exchanger
SLM consolidates thin fins and internal paths into one build, reducing assembly interfaces and potential leakage points. Channel geometry, connection, cleaning and pressure conditions are reviewed together.
Structure, material and process conditions.
Product opportunities
Representative applications include heat exchangers, compact thermal structures, fluid manifolds, integrated channels and consolidated functional assemblies.
Design value
Conformal passages, thin fins, lattice structures and part consolidation can increase functional surface area and reduce interfaces between separately manufactured parts.
Material route
Titanium, aluminium, nickel and stainless systems are evaluated around temperature, strength, weight, corrosion, fluid compatibility and post-processing.
From print to verified part
Build preparation, printing, depowdering, heat treatment, support removal, CNC finishing, surface treatment and dimensional or leak testing are planned as one route.
Four structures for heat transfer, cooling and flow control.
Each image is paired with the function enabled by its internal geometry and manufacturing route.

Copper-alloy flow component
Copper-alloy construction combines thermal conductivity with internal passages that conventional machining cannot readily produce.

Conformal cooling channels
SLM builds internal passages along the exterior geometry, bringing cooling closer to the heat source while reducing external piping and joints.

Production-oriented functional parts
Build planning, orientation and batch layout connect complex geometry with repeatable printing, heat treatment and finishing.

Internal-flow design route
Integrated branches and distribution chambers reduce part count, assembly interfaces and potential leakage points in thermal and fluid systems.
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