What We Build in Metal
A sample of the part types we produce most often. Every project starts with a review of your geometry, load case, and material requirements.
Aerospace Components
Lightweight brackets, housings and structural components in aerospace-grade titanium and nickel alloys, topology-optimised to cut weight without cutting strength.
Miniaturised Cooling Channels
Conformal cooling channels routed exactly where heat needs to go — geometry that's physically impossible to drill or machine, only achievable through metal AM.
Dental Implants
Patient-specific implants and abutments in biocompatible titanium, produced to tight tolerances directly from intraoral scan data.
Robotic Parts
End-effectors, arm segments and drive housings built lighter and stiffer than machined equivalents, with internal features consolidated into a single print.
Impellers
Single-piece impellers with complex curved vanes that would otherwise need multi-part assembly and welding, printed to final blade geometry with minimal post-machining.
Turbine Blades
High-temperature alloy blades with internal cooling passages and aerofoil profiles held to aerospace tolerance, built for real operating conditions.
Cranial Implants
Patient-matched cranial plates designed from CT scan data and produced in medical-grade titanium for a precise anatomical fit.
Lattice Structures
Engineered lattice infills that cut part weight while retaining structural performance, with cell size and strut thickness tuned to a target stiffness-to-weight ratio.
Spherical Lattice
Spherical lattice geometries for porous, bone-mimicking structures and controlled-permeability parts, where load-bearing performance and osseointegration both matter.
Precision Machining
CNC machining, EDM, grinding, spinning and surface treatment — combined as each part demands, for components where tolerance and finish are the specification.
Optical Components
Aluminium mounts and structures for optical assemblies, taken through CNC machining, EDM and grinding to hold the alignment and flatness the optical path depends on.
Combustion Chambers
Chamber liners spun and welded in stainless steel and Inconel, holding roundness and wall thickness across large diameters while surviving sustained heat and thermal cycling.
Semiconductor Components
Chamber rings and housings in aluminium and stainless steel, precision machined, ground and surface treated to the cleanliness and dimensional standards fab equipment demands.
Lens Housings & Barrels
Barrels, hoods and threaded retaining rings turned and milled in aluminium, then black anodised — concentric bores and clean thread fits that seat the element without stressing it.
Mounting & Base Plates
Machined aluminium plates with integrated rails, ribbed webs and full tapped hole arrays — flat and square enough to serve as the datum everything else assembles to.
Vacuum Casting
Melting and pouring under vacuum to keep gas porosity and oxide inclusions out of the part — the route for reactive alloys and components where internal soundness is non-negotiable.
Aerospace Components
Turbine blades, blisks and engine casings cast in nickel-based superalloys and titanium, where vacuum melting keeps the microstructure clean enough to survive high-cycle loading at temperature.
Medical Implants
Our medical department is dedicated to artificial hip joints and the complete set of associated products — mould design, vacuum casting, precision machining, surface treatment and sterile packaging delivered as one continuous process.
Glass Moulds
Blank and blow moulds for glass container forming, with dense cooling fins cast into the body to pull heat out evenly — cavity profile and thermal balance both holding through long production runs.