Knowledge Base — Manufacturing

How Custom Emblems & Metal Nameplates Are Made

A plain-English guide to the eight manufacturing processes behind custom badges, decals, and nameplates — so you can pick the right method for your product, budget, and production volume before you request a quote.

Short answer: Custom emblems and nameplates are produced using one of eight core processes — die casting, electroforming, stamping & embossing, extrusion, injection molding, domed polyurethane application, chrome plating, or anodizing — each chosen based on the material, the level of detail required, the order volume, and where the badge will be used (indoor, outdoor, or marine).
The 8 Core Processes

Which Manufacturing Method Fits Your Badge?

Every method trades off detail, durability, cost, and minimum order quantity differently. Here’s what each one actually does.

01 — CASTING

Zinc Die Casting

Molten zinc alloy is injected under high pressure into a steel mold cavity, then finished with plating or paint. Produces crisp, three-dimensional detail with a solid, weighted feel — the go-to process for automotive grille badges and key fob emblems.

High detailSolid feelMid-high MOQ
See Zinc Nameplates →
02 — ELECTROFORMING

Nickel Electroforming

Nickel is deposited layer by layer onto a master mold in an electroplating bath until a thin, precise metal shell forms. Delivers the finest achievable detail and a premium, jewelry-like surface — favored for luxury goods, guitars, and premium automotive interiors.

Ultra-fine detailPremium lookLightweight
See Nickel Electroforming →
03 — FORMING

Stamping & Embossing

Flat metal sheet — typically aluminum or stainless steel — is pressed between hardened dies to cut the outline and raise the logo in a single stroke. Fast, cost-effective at scale, and the standard choice for flat automotive and equipment nameplates.

Cost-efficientFast turnaroundHigh volume
See Aluminum Nameplates →
04 — EXTRUSION

Aluminum Extrusion

Aluminum billet is pushed through a shaped die to create a continuous profile, which is then cut, machined, and finished. Ideal for elongated trim pieces, frames, and badges that need a consistent cross-section along their length.

Continuous profilesLightweight
See Aluminum Nameplates →
05 — MOLDING

Injection Molding

Molten plastic resin is injected into a precision mold under pressure and cooled into shape. The most economical route to complex geometries and curved surfaces, and the base process behind most plastic and domed badges.

Low costComplex shapesHigh volume
See Plastic Nameplates →
06 — APPLICATION

Domed Polyurethane

A clear polyurethane resin is dispensed over a printed or metal base and cured into a raised, glossy dome. Adds a soft-touch 3D finish and strong UV protection over the printed graphic — common on tool cases, appliances, and powersports badges.

Glossy 3D finishUV protective layer
See Plastic Nameplates →
07 — FINISHING

Chrome Plating

A thin layer of chromium is electroplated over a base metal or plastic substrate — usually over a nickel underlayer — to create the bright, mirror-like automotive chrome look. Adds corrosion resistance along with the finish.

Mirror finishCorrosion resistant
See Stainless Steel →
08 — FINISHING

Anodizing

Aluminum parts are electrochemically treated to thicken the natural oxide layer on the surface, which can then be dyed to a precise color. Locks in color stability and adds a hard, scratch- and corrosion-resistant surface without adding a coating that can chip.

Color-stableScratch resistant
See Aluminum Nameplates →
Quick Reference

Process Comparison at a Glance

A fast way to shortlist a process before requesting a quote.

Process Best For Detail Level Typical MOQ Relative Cost
Zinc Die CastingGrille badges, key fobsHighMedium$$
Nickel ElectroformingLuxury goods, premium interiorsVery HighMedium$$$
Stamping & EmbossingFlat automotive/equipment platesMediumLow–High$
Aluminum ExtrusionTrim, frames, elongated badgesMediumMedium$$
Injection MoldingPlastic & domed badges at scaleMedium-HighHigh$
Domed PolyurethaneGlossy 3D finish over printMediumLow–Medium$$
Chrome PlatingMirror automotive finishFinish onlyLow–High$$
AnodizingColor-stable aluminum finishFinish onlyLow–High$
FAQ

Common Manufacturing Questions

Most chrome automotive emblems start as zinc die castings or ABS injection-molded plastic, then go through nickel plating followed by a final chrome plating layer for the mirror finish. The base process depends on the level of 3D detail and durability required.

Stamping & embossing and injection molding scale most efficiently for high-volume runs because tooling cost is spread across large quantities and cycle times are short. Electroforming and domed polyurethane tend to cost more per piece regardless of volume.

Anodizing thickens aluminum’s own natural oxide layer and can be dyed in color — it won’t chip because it’s part of the metal itself. Chrome plating adds an external metal layer (usually over nickel) for a bright, mirror-like look, but as a coating it can potentially chip or peel if damaged.

Yes — this is common. For example, a die-cast zinc base might be chrome-plated and then have a domed polyurethane overlay added for color and UV protection. Combining processes lets you balance detail, cost, and durability for a specific application.

It comes down to four questions: how much design detail do you need, what’s your order volume, where will the badge be used (indoor, outdoor, or marine), and what’s your per-unit budget. Our team reviews your artwork and application free of charge and recommends the process that fits — request a free sample to compare finishes firsthand.

Not Sure Which Process Fits Your Product?

Send us your logo and application details — we’ll recommend the right manufacturing process and material, and ship free samples so you can compare before you commit.