Non-contact precision cutting

Wire EDM Services

Precision wire electrical discharge machining for intricate profiles, hardened metals, sharp internal features, and tight-tolerance components.

6CNC provides wire cut EDM services for tooling, inserts, precision mechanical parts, prototypes, and small batches. The non-contact process removes conductive material with a controlled electrical discharge, avoiding conventional cutting forces on delicate or hardened components.

Conductive metals and alloys

Straight, tapered and intricate profiles

Hardened material capability

Prototype and small-batch support

Fine wire cutting a precision metal profile on a wire EDM machine
Wire EDM uses controlled electrical discharge to cut conductive material without conventional cutting force.

Precision Wire EDM Capabilities

Metal tooling plates with intricate wire cut profiles
Intricate internal and external contours for tooling and precision components.

Intricate 2D Profiles

Cut complex external and internal contours, slots, windows, forms, and precision openings from conductive materials.

Round metal component with multiple intricate gear-shaped openings
Fine repeated profiles demonstrate the geometric flexibility of wire EDM.

Hardened Components

Machine selected heat-treated steels, carbide, and hard alloys without relying on conventional cutting hardness.

Two small round metal parts with fine internal wire cut channels
Small internal features and narrow paths require careful wire, gap and finish planning.

Taper Cutting

Review straight or tapered walls for dies, inserts, electrodes, guides, and precision mechanical components.

Small Internal Radii

Produce fine details and controlled radii subject to wire diameter, spark gap, workpiece thickness, and access.

Stack and Batch Cutting

Selected flat components may be stacked or nested when geometry, accuracy, flushing, and traceability permit.

Combined CNC + EDM

Coordinate milling, turning, grinding, drilling, heat treatment, and wire EDM through one project route.

Precision Profiles Without Conventional Cutting Pressure

Wire EDM is valuable when the component is hard, delicate, narrow, or difficult to machine with a rotating cutter. Because the wire does not mechanically contact the workpiece, thin sections and intricate profiles can often be produced with lower risk of cutting-force deflection.
The process is limited to electrically conductive materials. A programmed wire path passes through the workpiece while controlled discharges remove material in dielectric fluid. Rough cutting establishes the profile; additional skim passes may improve dimensional accuracy and surface condition.

6CNC engineers review material, thickness, profile complexity, corner radii, taper, start holes, clamping, datums, tolerances, surface finish, and inspection needs before quotation.

Wire EDM cutting a metal workpiece with visible electrical discharge
Controlled discharge removes material along the programmed wire path.

6CNC Wire Cut EDM Process

Wire EDM cutting the edge of a thick metal plate
Workpiece thickness, flushing and skim strategy are reviewed for every cut.

Drawing Review

Confirm material, thickness, datums, tolerances, corner radii, taper, surface finish, quantity, and inspection requirements.

Workpiece Preparation

Machine blanks and reference features, complete heat treatment where appropriate, and establish clamping surfaces.

Start-Hole Planning

Create or confirm start holes for closed contours while protecting critical finished surfaces.

Rough Wire Cut

Remove the majority of material using a stable programmed path and controlled discharge conditions.

Skim Passes

Apply additional trim cuts where needed to improve accuracy, geometry, and surface condition.

Inspection

Verify profiles, positions, thickness relationships, and drawing-defined features before delivery.

Materials for Wire Electrical Discharge Machining

Material group

Tool and mold steels

Examples

D2, H13, A2 and drawing-specified grades

Typical applications

Dies, punches, inserts, forms, tooling

Carbon and alloy steels

Examples

1045, 4140, 4340 and hardened grades

Typical applications

Precision machine parts, wear components

Stainless steels

Examples

303, 304, 316, 17-4 PH

Typical applications

Medical, laboratory, food, and industrial parts

Carbide

Examples

Selected cemented carbide grades

Typical applications

Wear parts, punches, tooling inserts

Aluminum and copper alloys

Examples

Aluminum, copper, brass, bronze

Typical applications

Electrodes, instruments, precision components

Titanium and nickel alloys

Examples

Drawing-specified conductive alloys

Typical applications

Aerospace, energy, and demanding equipment

Nonconductive plastics, ceramics, and composites cannot be cut by standard wire EDM unless they have a suitable conductive condition or specialized process route.

Tight-Tolerance EDM and Quality Control

Profile Accuracy

Contour dimensions and locations are verified relative to the drawing datums.

Corner Radii

Minimum radii are reviewed against wire diameter, spark gap, material, thickness, and finish strategy.

Taper and Straightness

Wall angle, verticality, and profile consistency are evaluated over the cut height.

Surface Condition

Rough and skim-cut strategies are selected around functional finish requirements.

Thermal and Stress Control

Material condition, prior heat treatment, residual stress, and part support are considered in process planning.

Inspection Documentation

Dimensional reports, material documents, and project-specific records are available when agreed.

Common Wire EDM Applications

Dies and Punches

Precision cutting edges, die openings, punches, stripper plates, and inserts.

Mold Components

Slides, lifters, inserts, shutoffs, and difficult internal profiles.

Aerospace Parts

Hardened or difficult-alloy profiles, slots, test components, and tooling.

Medical Components

Small conductive parts, instrument components, fixtures, and development hardware.

Precision Machinery

Guides, gauges, wear plates, keys, slots, and alignment components.

Electronics

Connector tooling, lead-frame tooling, small conductive profiles, and fixtures.

Automotive Tooling

Stamping, forming, checking fixtures, prototypes, and maintenance components.

Repair and Legacy Parts

Low-volume replacement components made from drawings or engineering data.

Common questions

FAQ About Wire EDM Services

What is wire EDM?

Wire electrical discharge machining uses a continuously moving conductive wire and controlled electrical sparks to cut electrically conductive material without direct tool contact.

What materials can wire EDM cut?

Wire EDM can cut conductive materials including tool steel, stainless steel, alloy steel, aluminum, copper, brass, carbide, titanium, and nickel alloys, subject to drawing review.

Can wire EDM cut hardened steel?

Yes. Material hardness has less influence on the removal mechanism than in conventional cutting, making wire EDM suitable for many pre-hardened and heat-treated components.

Does wire EDM create cutting forces?

The process is non-contact, so it does not impose conventional milling or turning forces. Thermal effects and residual stress still require process planning.

Can wire EDM produce sharp internal corners?

It can produce small internal radii, but a perfectly sharp internal corner is not possible because the wire has a physical diameter and requires spark clearance.

Can you cut tapers with wire EDM?

Selected taper angles and variable profiles can be reviewed according to part thickness, geometry, machine travel, accuracy, and wire guidance.

What tolerances can wire EDM hold?

Achievable tolerance depends on material, thickness, profile, feature length, machine setup, thermal control, number of skim passes, and inspection method. Specify the required tolerance on the drawing.

What surface finish is available?

Surface finish depends on cut strategy and the number of trim or skim passes. State critical finish requirements on the drawing for quotation.

Is a start hole required?

Closed internal contours normally require a start hole unless the design allows threading from an open edge or another process route is agreed.

Do you support prototype and small-batch wire EDM?

Yes. We support one-off components, prototypes, tooling, repair parts, and repeat small batches.

Start your project

Get a Precision Wire EDM Quote

Upload your CAD model and controlled drawing with material, thickness, tolerances, surface-finish requirement, start-hole information, quantity, and inspection notes.