Laser Cutting Services

Precision laser cutting for sheet metal you can trust.

You design demanding sheet metal parts because performance matters. meviy turns your 3D CAD data into cleanly laser-cut components with consistent edge quality, tight tolerances, and predictable lead times.

You upload once. You receive instant feedback, pricing, and manufacturable results — without drawings or manual back-and-forth.

Built for engineers who care about edge quality, material integrity, and repeatable results.

Advantages of laser cutting with meviy

Clean, burr-free cut edges

meviy uses nitrogen or argon-assisted laser cutting to prevent oxidation at the cut edge, delivering smooth surfaces and reducing deburring before bending or finishing.

Preserved material properties

A controlled cutting process keeps the heat-affected zone to a minimum, which helps maintain strength, flatness, and consistency in materials such as stainless steel and titanium.

Higher bend accuracy downstream

Consistent edge quality improves part behaviour during bending and reduces angle deviations, misalignment, and assembly issues.

Faster transition from CAD to production

You upload your 3D CAD model and receive an instant, manufacturable quote without 2D drawings or manual clarification.

Reduced need for secondary operations

Clean cuts minimise the need for oxide removal or surface rework, helping you control costs that often appear late in traditional workflows.

Designed for real engineering workflows

meviy supports rapid prototyping, functional test parts, and low-to-medium volume production with predictable, repeatable laser cutting results.

Laser Cutting – Frequently Asked Questions (FAQ)

What materials does meviy laser cut?

meviy supports materials such as stainless steel, titanium, SPCC, and SPHC, using assist gases selected to protect surface quality and material behaviour.

Inert assist gases prevent oxide formation on the cut edge, delivering clean surface finishes and reducing the need for secondary processing.

meviy supports rapid prototyping, functional testing, and low-to-medium volume production where consistency and repeatability matter.

Yes. Clean edges and minimal distortion improve bend accuracy and overall assembly quality.

Choose laser cutting when you need intricate geometry, tight tolerances, or frequent design changes. It avoids tooling constraints and suits prototypes and small runs where you want speed from CAD to cut part.

Yes. Laser cutting suits stainless steel, aluminium, and carbon steel. Assist gas selection also helps protect edge quality and reduce oxidation depending on your requirement.