Precision Laser Cutting Services in Ontario

High-power fiber laser cutting for manufacturers across Ontario. From single prototypes to production runs—quality parts, on time.

CAD-led
Drawing review
Fiber
Laser process
B2B
Prototype to repeat work
SteelMaterial reviewed
StainlessMaterial reviewed
AluminumMaterial reviewed
DXF • STEPCommon files
Standard / RushSchedule confirmed
Drawing-ledScope confirmed

Is Laser Cutting Right for Your Project?

Laser cutting is the go-to process for precision flat parts. Here's who typically works with us and what makes laser cutting the right choice.

Manufacturers Needing Overflow Capacity

When an existing source cannot meet the required date, send the drawing package for a current capacity and process review.

  • Required date reviewed against current capacity
  • Same responsive contact every time
  • Standard and rush schedules confirmed per project

Engineers & Product Developers

Laser cutting can support drawing-led prototype and small-batch work before a design moves into repeat production.

  • Prototype and small-batch RFQs reviewed
  • Manufacturability review before release
  • Same process from prototype to production

Procurement Managers

You need a clear scope before issuing a PO. We review drawings, material, quantity, critical requirements, and the required date together.

  • Quoted operations and responsibilities identified
  • Inspection requirements confirmed per project
  • One contact for scope and schedule questions

What We Review Before Cutting

Process fit comes from the complete drawing package—not a universal thickness or tolerance promise.

Material Requirements
Grade, thickness, certification needs, and supplied or sourced stock
Drawing Requirements
Geometry, critical dimensions, edge condition, and finish allowances
Production Plan
Nesting, batch quantity, downstream operations, and required date
Bodor 6kW fiber laser cutting machine and material storage at Canadian Metal Fabricators facility in Mississauga

Fiber Laser Cutting Cell

Our Mississauga cutting cell supports drawing-led flat-part production. We confirm material fit, critical requirements, downstream operations, and schedule before release.

Steel, stainless, and aluminum RFQs
CAD-led nesting and part layout
Material and gauge reviewed per drawing
Cut parts prepared for downstream operations
Critical dimensions identified before release
Inspection requirements confirmed per project
Standard and rush schedules confirmed per project

Materials We Laser Cut

Send the grade, thickness, quantity, and any certification requirements. We confirm material availability and cutting fit in the quote.

Carbon Steel

Grade and gauge reviewed

Drawing, material specification, edge requirements, and downstream operations reviewed together.

Stainless Steel

Grade and finish reviewed

Specify alloy, surface condition, critical dimensions, and any handling requirements.

Aluminum

Alloy and temper reviewed

Provide the alloy, thickness, geometry, and required downstream forming or finishing.

Other Metals

Confirmed per project

For coated or specialty alloys, send the full specification so we can confirm process fit and sourcing.

Don't see your material? Contact us with the grade and thickness so we can confirm fit and sourcing options.

What We Laser Cut

From simple flat parts to complex geometries, laser cutting is ideal for any 2D shape. Here are some of the most common parts we produce.

Brackets & Mounts

Mounting brackets, L-brackets, motor mounts, sensor brackets—any flat bracket design.

Panels & Covers

Control panel faces, access covers, decorative panels, machine covers with cutouts.

Enclosure Blanks

Flat blanks for electrical enclosures, junction boxes, and equipment housings before forming.

Gaskets & Shims

Thin-gauge gaskets, spacer shims, and sealing plates reviewed against drawing-defined dimensions and acceptance criteria.

Base Plates

Machine base plates, equipment foundations, and mounting surfaces with precision holes.

Production Blanks

Repeat flat blanks prepared for forming, welding, hardware, or finishing operations.

Heat Shields

Automotive and industrial heat shields, exhaust guards, and thermal barriers.

Drawing-Defined Parts

Industrial flat parts with the geometry, material, and critical requirements identified in CAD.

Built for Buyers Like You

Why Procurement Managers Trust Us

We know what keeps you up at night. Here's how we solve the problems other shops create.

"My usual shop is backed up 6 weeks"

You need parts, not excuses about capacity.

Our process: We review your required date against current capacity and confirm a standard or rush schedule for the specific project.

"I send an RFQ and hear nothing for days"

Radio silence makes you look bad to your team.

Our process: A named contact reviews the drawing package and follows up with scope, pricing, schedule, or the questions needed to complete the RFQ.

"Every new supplier is a risk to MY reputation"

If they screw up, you take the heat.

Our process: Material, quantity, critical dimensions, downstream operations, and inspection requirements are captured before production release.

"I need it right the first time"

Rework kills your schedule and your margin.

Our process: Manufacturability concerns and critical dimensions are reviewed before production, with inspection requirements confirmed per project.

Laser Cutting FAQ

How much does laser cutting cost?

Costs depend on material, thickness, geometry, tolerances, and quantity. Send the drawing package and project requirements so we can review process fit, pricing, and schedule.

What's the turnaround time for laser cutting?

Standard and rush lead times are confirmed per project after we review the drawings, material, quantity, required date, and current production schedule.

What file formats do you accept?

We accept DXF, DWG, STEP, IGES, SolidWorks files, and PDF drawings with dimensions. DXF is preferred for 2D laser cutting because it imports directly into our nesting software. If you're not sure, send what you have—we can usually work with it.

Do you laser cut prototypes and small batches?

We review prototype, small-batch, and repeat-production RFQs. Send the drawings and quantity so we can confirm process fit and project scope.

What tolerances can laser cutting hold?

Achievable tolerances depend on material, thickness, geometry, and feature size. Identify critical dimensions in the drawing package so we can confirm tolerances and inspection requirements before release.

Can you do secondary operations after laser cutting?

Laser cutting can be coordinated with CNC bending, shop welding, deburring, sourcing, and partner-coordinated finishing. The quoted scope identifies which operations apply to your parts.

Laser cutting vs waterjet vs plasma—which should I use?

Laser cutting is commonly used for precise sheet-metal parts, while waterjet can suit zero-heat requirements and plasma can suit some heavier work. Material, thickness, geometry, edge requirements, and tolerance determine the right process.

What areas do you serve for laser cutting?

We review laser-cutting RFQs from our Mississauga facility and coordinate pickup, delivery, or shipping based on the project and destination.

What should I design for in terms of laser cutting tolerances?

Show critical dimensions, hole requirements, edge conditions, and finish allowances on your drawings. We review manufacturability and confirm achievable tolerances before production.

Do you provide material or should I supply it?

We can review either CMF-sourced or customer-supplied material. Grade, thickness, availability, certifications, and sourcing responsibility are confirmed in the quote.

Drawing-Based RFQs • Standard & Rush Schedules

Ready to Review Your Laser-Cut Parts?

Send your DXF, STEP, or PDF drawings with material, quantity, critical requirements, and required date. We will review the package and confirm scope, pricing, and schedule.

Standard and rush lead times are confirmed per project after file and material review.

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