Specialized additive manufacturing for aerospace, defence, and energy sectors delivering fully qualified components with exceptional precision and durability. Our rapid, reliable production process shortens development cycles, reduces downtime, and ensures mission-critical parts are ready exactly when they’re needed.
Technical 3D printing capabilities supporting prototyping through full-scale production, with material properties engineered to meet demanding operational requirements.
Industrial FDM printing engineered for durable, dimensionally stable thermoplastic components. Our process supports large-format builds, strong layer adhesion, and consistent mechanical properties—delivering functional prototypes, tooling, and production-grade parts with optimized heat resistance, impact strength, and environmental durability.
Industrial MJF printing for high-strength, isotropic nylon components with exceptional surface quality and tight dimensional accuracy. This process enables fast, repeatable production of complex geometries, fine features, and lightweight structures—ideal for functional prototypes and end-use parts requiring durability, precision, and consistent mechanical performance.
Industrial SLS printing for high-strength nylon and composite components with excellent mechanical performance and complex geometry capability. The powder-bed process produces durable, lightweight parts without support structures—delivering consistent dimensional accuracy, functional assemblies, and end-use components built for demanding operational environments.
High-precision SLA printing for ultra-detailed polymer components with exceptional surface finish, fine feature resolution, and tight dimensional accuracy. This photopolymer process delivers smooth, production-grade parts ideal for complex prototypes, visual models, and functional components requiring crisp details, material rigidity, and reliable performance in controlled environments.
Advanced metal laser sintering for high-density, aerospace-grade components with exceptional strength, precision, and material integrity. This process fuses metal powders layer by layer to create complex geometries, internal channels, and lightweight structures that traditional machining can’t achieve—delivering fully functional, mechanically robust parts qualified for demanding thermal, mechanical, and operational environments.
Scalable production-grade 3D printing for consistent, repeatable manufacturing of end-use components across metals and polymers. Our integrated workflows deliver tight tolerances, uniform mechanical properties, and rapid turnaround enabling low- to mid-volume production runs.
Our capabilities support complex bends, formed assemblies, and welded structures across a range of metals—delivering production-ready parts engineered for strength, fit, and performance in demanding industrial environments.
Precision laser sheet cutting for flat metal components requiring tight tolerances, clean edge quality, and consistent repeatability.
Advanced laser tube cutting for round, square, and custom-profile tubing with high positional accuracy and clean, distortion-free cuts.
High-precision CNC machining for metal and polymer components built to exacting tolerances and strict dimensional requirements. Our multi-axis capabilities support prototyping through production, delivering accurately machined, surface-finished parts engineered for dependable performance in demanding aerospace, defence, and energy environments.
Precision CNC milling for multi-axis machining of metal and polymer components, delivering accurate features, tight tolerances, and high-quality surface finishes.
CNC turning for rotational components requiring concentricity, smooth finishes, and consistent dimensional control across production runs.
Wire EDM machining for electrically conductive materials, enabling intricate profiles, fine features, and burr-free cuts in hardened or heat-treated metals.
CNC routing for large-format panels and lightweight materials, producing clean, accurate cuts suited for fixtures, enclosures, and structural components.
Medical-grade CNC machining for precision components used in medical devices and equipment, manufactured to strict tolerances and controlled quality standards.
Post-processing and finishing services that enhance surface quality, dimensional accuracy, and functional performance of manufactured components. Our finishing capabilities support deburring, surface preparation, and protective treatments to ensure parts meet specification, integrate seamlessly, and perform reliably in demanding operational environments.
Precision assembly services that ensure proper fit, alignment, and functional performance across subassemblies and fully integrated systems.
Rapid prototyping enables fast iteration and design validation, producing functional parts quickly to accelerate development and reduce time to production.
Powder coating provides a durable, uniform protective finish that enhances corrosion resistance, wear performance, and visual consistency.
Vapour smoothing improves surface finish and part strength by sealing layer lines, resulting in smoother, more durable polymer components.
High-accuracy 3D scanning captures precise dimensional data from physical parts and assemblies. This data supports inspection, reverse engineering, and digital workflows—ensuring accurate reproduction, validation, and integration into downstream manufacturing processes.
High-precision 3D scanning captures accurate dimensional data to support inspection, reverse engineering, and digital manufacturing workflows.
DFAM optimizes parts specifically for additive processes, improving performance, reducing material use, and enabling manufacturable, production-ready designs.
Technical design guidelines that align geometry, materials, and tolerances with manufacturing processes to reduce risk and improve part performance.
Digital warehousing secures critical designs, data, and production-ready files in a controlled, resilient virtual environment. By storing validated digital inventories, we enable rapid, on-demand manufacturing while reducing physical stock, lead times, and supply chain risk.
Digital Warehouse Coming Soon
Digital twinning creates a high-fidelity virtual representation of physical components and systems, enabling real-time analysis, testing, and optimization before anything is built. By simulating performance, stress, and environmental conditions, we reduce risk, validate designs faster, and ensure production-ready outcomes.
Digital Warehouse Coming Soon
High-accuracy site scanning captures precise spatial and dimensional data of facilities, equipment, and environments. This data supports planning, verification, and digital workflows—reducing uncertainty, improving fit, and enabling informed decisions before fabrication or installation begins.
Digital Warehouse Coming Soon