Metal 3D Printing Service

Move metal prototypes and production components through a practical additive manufacturing review.

ISO 9001:2015 | ISO 13485:2016 | AS9100D | ITAR Registered

Where Metal Additive Manufacturing Fits

Metal printing is useful when a design benefits from integrated geometry, reduced assembly count, internal channels, or a fast route from digital model to functional hardware.

The Metal Printing Guide

Download a compact planning guide covering geometry review, material selection, and post-processing decisions for metal additive builds.

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Build Specifications

ParameterUSMetric
Available build envelopeQuoted by geometryQuoted by geometry
Layer resolutionProcess selectedProcess selected
Minimum feature planningReview at quoteReview at quote
Tolerance approachFeature dependentFeature dependent

Material Mechanical Properties

MaterialTensileModulusElongation
Aluminum AlSi10MgAlloy dependentAlloy dependentBuild dependent
Stainless 316LAlloy dependentAlloy dependentBuild dependent
Titanium Ti64Alloy dependentAlloy dependentBuild dependent
Inconel 718Alloy dependentAlloy dependentBuild dependent
Cobalt ChromeAlloy dependentAlloy dependentBuild dependent
Maraging SteelAlloy dependentAlloy dependentBuild dependent

Metal 3D Printing Materials

Compare a broad set of metal routes before matching a material to geometry, environment, finishing, and program requirements.

Aluminum AlSi10Mg

A lightweight metal option for detailed functional components.

Stainless 316L

A corrosion-conscious alloy for durable complex parts.

Titanium Ti64

A high-strength, low-weight route for demanding applications.

Inconel 718

A high-temperature material for rigorous operating conditions.

Cobalt Chrome

A hard-wearing option selected for specific performance needs.

Maraging Steel

A tooling-focused metal with predictable heat-treatment planning.

Copper Alloy

A conductive material option for selected thermal requirements.

Tool Steel

A production-oriented alloy for robust functional programs.

Nickel Alloy

A material family for heat and corrosion considerations.

Chromium Steel

A strong material route for controlled end-use parts.

Cobalt Alloy

A specialized route for wear and temperature performance.

Aluminum Scalmalloy

A lightweight choice for advanced geometry studies.

Stainless 17-4PH

A precipitation-hardened option for reliable mechanical needs.

Titanium Grade 5

A versatile titanium selection for detailed build planning.

Inconel 625

A nickel alloy option for challenging environments.

Brass

A metal choice for selected conductive or aesthetic applications.

Bronze

A practical alloy for specific surface and wear goals.

M2 Tool Steel

A durable option for tooling and fixture decisions.

H13 Tool Steel

A hot-work alloy for high-demand build discussions.

A2 Tool Steel

A stable hardenable option for functional programs.

4140 Steel

A general engineering alloy for mechanical applications.

Low Alloy Steel

A balanced selection for strength and machining follow-up.

Pure Copper

A conductive route for thermal-focused design concepts.

Gold Alloy

A specialist option for precision presentation work.

Metal Material Details

Placeholder detail copy for Aluminum AlSi10Mg.

Placeholder detail copy for Stainless 316L.

Placeholder detail copy for Titanium Ti64.

Placeholder detail copy for Inconel 718.

Placeholder detail copy for Cobalt Chrome.

Placeholder detail copy for Maraging Steel.

Post-Processing Capabilities

Why Use Metal 3D Printing?

Use a metal additive workflow when integrated geometry, reduced assembly count, controlled thermal paths, or low-volume functional hardware make a conventional route less practical.

How Metal Printing Works

A digital build plan divides the part into controlled layers, then joins those layers into the finished geometry before the selected finishing and review steps.

Need Bigger Parts?

For projects that need a larger printed envelope, explore the large-format workflow alongside your material and production requirements.

Related Resources

Metal Design Guide

A concise guide to planning geometry for an additive metal build.

Production Readiness

A checklist for moving a validated metal design into a repeatable program.

Metal Materials Notes

Material-selection considerations for strength, heat, and finishing needs.

Additive Manufacturing Session

A recorded introduction to reviewing a metal additive project.

Quote a metal print today.

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