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Laser beam welding services for precision sheet metal parts
Welding & Fabrication
Laser Beam Welding // OEM Metal Fabrication China

Laser Beam Welding Services for Precision Sheet Metal & Low-Distortion Welded Parts

Feiyu provides laser beam welding support for thin sheet metal parts, precision welded assemblies, stainless steel components, aluminum parts, enclosures and OEM metal products requiring low heat input and clean weld appearance.

Thin Sheet Metal
Low Distortion
Clean Weld Appearance
Fixture-Controlled Welding
Inspection Reports
Capability Overview

Laser Beam Welding Capability Overview

Feiyu supports overseas OEM customers with laser beam welding services, sheet metal fabrication, laser cutting, forming, welding, surface finishing and assembly from one manufacturing workflow.

Low distortion laser welded assemblies in OEM welding workshop

As a laser welding manufacturer and OEM metal fabrication China supplier, Feiyu focuses on precision laser welded parts that require stable fit-up, clean visible welds, low distortion welding and repeatable inspection control.

laser beam welding servicesprecision laser welded partsthin sheet metal weldinglow distortion welding
Best-Fit Applications

When Laser Beam Welding Is the Right Choice

Thin Sheet Metal Welding

Suitable for thin metal parts requiring controlled heat input.

Helps reduce burn-through and deformation risks.

Low-Distortion Welded Parts

Smaller heat affected zone compared with many traditional welding processes.

Useful for precision sheet metal components.

Clean Visible Welds

Suitable for parts where weld appearance matters.

Reduces post-weld grinding and finishing workload.

Precision Welded Assemblies

Suitable for covers, housings, brackets and small precision assemblies.

Supports stable repeat production when fixture design is confirmed.

Materials

Materials for Laser Beam Welding

Material, thickness, joint access and strength requirements are reviewed before confirming whether laser beam welding is the best welding route.

Stainless Steel

precision covers

enclosures

visible weld components

Carbon Steel

thin brackets

sheet metal assemblies

equipment components

Aluminum

lightweight components

small assemblies

appearance-sensitive parts

Galvanized Steel

cabinet components

outdoor sheet metal parts

corrosion-resistant assemblies

Typical Parts

Typical Laser Welded Parts We Support

Laser welding for stainless steel enclosures and precision welded assemblies

Precision Sheet Metal Enclosures

Material

Stainless steel / aluminum / coated steel

Welding Requirement

Clean seams, controlled distortion and stable assembly fit

Application Industry

Electrical, industrial equipment

Stainless Steel Covers

Material

304 / 316 stainless steel

Welding Requirement

Visible weld appearance and reduced finishing workload

Application Industry

Medical tooling, equipment covers

Thin Metal Brackets

Material

Carbon steel / galvanized steel

Welding Requirement

Low heat input and repeatable fixture positioning

Application Industry

Automotive, outdoor equipment

Electrical Cabinet Components

Material

Galvanized steel / stainless steel

Welding Requirement

Appearance control, enclosure fit and surface treatment compatibility

Application Industry

Electrical enclosures, cabinets

Automotive Sheet Metal Parts

Material

Carbon steel / stainless steel

Welding Requirement

Repeatable welding and dimensional control

Application Industry

Automotive & mobility

Aluminum Assemblies

Material

Selected aluminum alloys

Welding Requirement

Lightweight assembly and appearance-sensitive welding review

Application Industry

Equipment, mobility, outdoor products

Small Precision Welded Parts

Material

Stainless steel / carbon steel

Welding Requirement

Small joint control and weld appearance inspection

Application Industry

Automation, machinery

Custom OEM Laser Welded Assemblies

Material

Drawing-specified metal materials

Welding Requirement

OEM fit-up, inspection and packaging requirements

Application Industry

Custom OEM programs

Manufacturing Workflow

Laser Beam Welding Manufacturing Workflow

Many laser welded assemblies require more than welding. Feiyu can coordinate cutting, forming, fixture review, welding, inspection, finishing and export packaging.

01

Drawing Review

Engineering reviews 2D and 3D files, weld areas, tolerances, visible surfaces and assembly requirements.

02

Material & Thickness Review

Material grade, sheet thickness, joint type and heat sensitivity are checked before confirming the welding route.

03

Laser Cutting / Forming

Sheet metal blanks can be laser cut, bent or formed before welding when the project requires a complete fabrication route.

04

Fixture Design & Positioning

Fixture and positioning needs are reviewed to improve repeatability and reduce deformation risk.

05

Laser Beam Welding

Welding is carried out with controlled parameters based on material, joint access, appearance and strength requirements.

06

Weld Appearance Inspection

Visible welds are checked for consistency, appearance, surface marks and defects according to project expectations.

07

Dimensional Inspection

Key dimensions, flatness, assembly fit and distortion-sensitive features are inspected after welding.

08

Surface Treatment

Parts can move to powder coating, plating, painting, brushing, polishing or other specified finishing routes.

09

Packaging & Shipment

Final checks, packaging protection and export shipment preparation help reduce receiving risk for overseas buyers.

Laser cutting before precision sheet metal laser welding Fixture positioning and weld preparation for OEM sheet metal assembly Laser welding quality inspection for OEM metal parts
Quality Control

Quality Control for Laser Welded Parts

Laser welded parts are often used in visible assemblies, cabinets and precision sheet metal products, so fit-up, heat input, appearance and final dimensions must be controlled.

Laser welding quality inspection for OEM metal parts
Joint Fit-Up Review
Fixture Positioning Verification
Laser Welding Parameter Control
Heat Input Control
Weld Appearance Inspection
Distortion Control
Dimensional Inspection
Surface Finish Review
Final Assembly Inspection
Packaging Inspection

Available Quality Documents

Material Certificate
First Article Inspection Report
Dimensional Inspection Report
CMM Report
Surface Treatment Report
Final Inspection Report
Welding Route Selection

Laser Welding vs TIG Welding vs Spot Welding

ProcessBest ForAdvantagesTypical Use
Laser Beam WeldingThin sheet metal and precision partsLow heat input, small heat affected zone, clean weld appearanceLow-distortion assemblies
TIG WeldingAluminum and stainless steel visible weldsGood heat control and precision manual weldingComplex visible weld areas
Spot WeldingOverlapping thin sheet metal jointsFast cycle time and repeatabilityBrackets, clips, cabinet parts and enclosures

Laser beam welding is often preferred for precision sheet metal parts requiring low distortion and clean appearance. TIG welding may be better for manual precision welds, while spot welding is more suitable for overlapping sheet metal joints.

Applications

Laser Beam Welding Applications

Automotive & Mobility

Laser welded parts for OEM production, assembly fit and controlled appearance requirements.

Electrical Enclosures

Laser welded parts for OEM production, assembly fit and controlled appearance requirements.

Cabinet Manufacturing

Laser welded parts for OEM production, assembly fit and controlled appearance requirements.

Industrial Equipment

Laser welded parts for OEM production, assembly fit and controlled appearance requirements.

Precision Sheet Metal Products

Laser welded parts for OEM production, assembly fit and controlled appearance requirements.

Outdoor Equipment

Laser welded parts for OEM production, assembly fit and controlled appearance requirements.

Aluminum Components

Laser welded parts for OEM production, assembly fit and controlled appearance requirements.

Custom OEM Assemblies

Laser welded parts for OEM production, assembly fit and controlled appearance requirements.

Internal Links

Related Capabilities

Laser beam welding is often part of a larger manufacturing route. These related capabilities help buyers evaluate Feiyu as a complete custom metal fabrication supplier China partner.

Buyer Questions

Laser Beam Welding FAQs

Is laser beam welding suitable for thin sheet metal?+

Yes. Laser beam welding is commonly used for thin sheet metal parts that require controlled heat input, clean weld appearance and reduced distortion.

What materials can be laser welded?+

Laser beam welding can be used for selected stainless steel, carbon steel, aluminum and galvanized steel parts depending on material thickness, joint design and strength requirements.

Is laser welding better than TIG welding?+

Laser welding is often better for thin sheet metal, low-distortion assemblies and clean visible welds. TIG welding may be more suitable for manual precision welding, aluminum parts and complex visible weld areas.

Is laser welding suitable for OEM production?+

Yes. Laser beam welding can support repeat OEM production when part design, fixture positioning and welding parameters are confirmed.

How do you control distortion in laser welded parts?+

Feiyu controls distortion through joint design review, fixture positioning, laser welding parameter control, heat input control and dimensional inspection.

Can laser welded parts be powder coated or plated?+

Yes. Laser welded parts can be powder coated, plated, painted, brushed, polished or finished according to project requirements.

What drawings are needed for a laser welding quote?+

STEP, STP, DWG, DXF, PDF and IGES files are commonly accepted. Please include material, thickness, quantity, welding area, tolerance and surface treatment requirements.

Project Review

Send Your Laser Welding Drawings for Review

OEM buyers, engineers and purchasing teams can send drawings, material, thickness, quantity, welding area, tolerance, appearance and surface treatment requirements. Feiyu will review the welding route, fixture needs, inspection points and production feasibility.