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SERVICES

Insert Molding Service

We mold Metal-to-Plastic (and compatible grades) for functional, structural and aesthetic parts — from low-volume bridge production to high-volume runs.

WHAT WE OFFER

What We Offer

HOW IT WORKS

From Inquiry to Delivery

1

Insert preparation

Inserts are knurled, threaded, grooved or through-holed so the plastic locks on mechanically. Brass and steel inserts are pre-cleaned and deburred before loading.

2

Loading into the cavity

Inserts are placed manually or by pick-and-place robot into the mold. Manual placement typically runs a 45–90 s cycle; robotic loading shrinks it further and removes operator variability.

3

Injection around the insert

Plastic flows around and through the insert features. The resin shrinks onto the metal as it cools — that clamping force is the core of the mechanical bond.

4

Cooling and ejection

The part cools in the tool and ejects with the insert captured. Design must account for the different thermal expansion of metal and plastic so the insert neither loosens nor cracks the plastic.

5

Inspection and secondary work

Insert position, pull-out resistance and dimensions are checked — controlled positions hold ±0.02 mm against the mold pins. Threads arrive ready to use; no post-insertion.

CHALLENGES

Challenges This Service Solves

FAQ

Insert Molding Service — FAQ

Can you help with product development?

Yes. From design review and material selection to prototyping, tooling and mass production — our engineers support you through the entire product lifecycle.

Do you ship internationally?

Yes. We ship worldwide via air and sea freight, with export packing, documentation and delivery tracking handled by our team.

What quality inspections do you perform?

First article inspection, dimensional measurement, material verification and surface checks — with inspection reports provided per batch. Full details are agreed before production.

What is the difference between rapid and production tooling?

Rapid tooling uses softer materials and simplified construction for fast, low-cost validation runs (hundreds to low thousands of parts). Production tooling uses hardened steel for high-volume, long-life programs.

How long does injection mold making take?

Rapid tooling prototypes can be ready in days; production tooling typically takes several weeks depending on complexity, cavity count and steel grade. We confirm a detailed schedule with your quotation.

Do you provide DFM feedback?

Yes. Every quotation includes a design-for-manufacturing review: draft angles, wall thickness, gate and weld-line locations, tolerance recommendations and cost-saving suggestions — before any tooling is cut.

What file formats do you accept?

We accept STEP, IGES, STL, X_T and 2D drawings (PDF or DWG). A 3D model lets us quote most accurately; 2D drawings are used to confirm critical tolerances and specifications.

How do I get a quote?

Upload your 3D file (STEP, IGES, STL or X_T) through the quote page, or email it directly. Our engineers review the design, run a DFM check and send you a detailed quotation — usually within one business day.

RELATED SEARCHES

What Buyers Search

Injection MoldingOvermolding ServiceTwo-Shot MoldingCNC MachiningMold Makinginsert molding / insert molding services / metal insert molding / threaded insert molding

* Keywords from Semrush competitor data — one page per search intent.

Metal-to-Plastic (Thermoplastic) Injection Molding Capabilities

Process options selected to match your part geometry, material and annual volume.

In-house Metal-to-Plastic process engineering — material selection reviewed against your mechanical and thermal requirements.

Tight-tolerance metal-to-plastic molding with automated cells for repeatable quality run after run.

Custom tooling & rapid DFM feedback — shorten lead time from design to first article.

One-stop production: molding, secondary operations and inspection under one roof.

Insert Types We Mold

The inserted component can be metal, ceramic, glass or even a hard plastic — the range below is what we run on our Sodick vertical and horizontal machines.

Brass threaded inserts (M1.6–M8) — the most common insert material: corrosion-resistant, affordable, easy to machine, and it holds threads that survive repeated assemblyStainless steel inserts & studs — for medical, food and high-temperature programs where corrosion resistance mattersCopper & copper-alloy contacts / terminals — electrical conductivity for connectors, switches and sensorsSteel pins, shafts and locator pins — wear surfaces and alignment features molded in placeAluminum inserts — lightweight structural elements for electronics and EV componentsCeramic & glass insulators — dielectric, high-temperature standoffs for heating elements and HV componentsHard-plastic-to-plastic inserts — molded-in plastic parts (e.g. a molded lens or clip) bonded in the same shot

Insert Material Selection Guide

Material choices referenced from First Mold's insert molding page — brass is the default, everything else is application-driven.

Insert materialWhy it is usedTypical parts
BrassCorrosion-resistant, affordable, easy to machine — the most common insert materialThreaded inserts, standoffs, electrical terminals
Stainless steelCorrosion and temperature resistance with high strengthMedical device housings, food equipment, fasteners
Copper / Cu alloysElectrical and thermal conductivityContacts, terminals, heatsink cores
Steel / alloy steelHigh strength and wear resistanceGears, shafts, locator pins, wear pads
AluminumLightweight with good strength-to-weightElectronics housings, EV battery components
Ceramic / glassDielectric, high-temperature insulationHeater insulators, HV standoffs, sensors

Insert Molding Applications

Connectors & sensors

Metal contacts and terminals molded directly into housings — microelectronic components with tight tolerances, no assembly.

Automotive gears & brackets

High-strength housings with molded-in shafts and bushes, produced under IATF 16949 control with PPAP.

Medical instruments

Stainless steel hubs, blades and sleeves encapsulated in handles — ISO 13485 traceable lots.

Power tools & appliances

Threaded brass inserts molded into housings so screws bite into metal, not plastic.

Electronics enclosures

Aluminum standoffs and heat sinks captured in one shot for EMI shielding and thermal paths.

Aerospace & defense

Ceramic and high-temp inserts for valve bodies and sensor housings in demanding environments.