Sheet Metal Brackets
Metal components used to support, fix and connect equipment or parts — function-driven, relatively simple in structure. Built for strength, precise mounting and standardized batch production.
- Strength first
- Highly standardized batch production
- Fast prototyping
What Are Sheet Metal Brackets?
Metal components used to support, fix and connect equipment or parts — function-driven, relatively simple in structure.
Bracket Types We Manufacture
L-type, U-type, Z-type and flat plates with holes. Strength first, moderate cosmetic requirements, highly standardized batch production.

L-Type
Right-angle bend for support, fixing and connection.

U-Type
Channel shape for holding and fixing components.

Z-Type
Offset bend for bridging and support mounting.

Flat Plate with Holes
Flat with holes for flexible assembly connection.
Materials & Thickness Options


Standard Thickness
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Standard Thickness
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Carbon Steel
Cost-effective and the most widely used option for brackets and supports.

Carbon Steel
Cost-effective and the most widely used option for brackets and supports.

Carbon Steel
Cost-effective and the most widely used option for brackets and supports.
Our Manufacturing Process
Laser Cutting / Punching → Bending → Welding Reinforcement Ribs (if required) → Surface Treatment → Deburring

Laser Cutting / Punching
Precise profiles and hole patterns

Laser Cutting / Punching
Precise profiles and hole patterns

Laser Cutting / Punching
Precise profiles and hole patterns

Laser Cutting / Punching
Precise profiles and hole patterns

Laser Cutting / Punching
Precise profiles and hole patterns
Built to Hold, Ready to Fit
Quality verified on every part — load capacity, hole accuracy, perpendicularity and weld strength.
Precision & Strength
Load-bearing capacity, precise hole alignment, controlled perpendicularity and reliable weld strength.
Structural Optimization
Less weight without losing strength — save material and simplify installation.
Fast Prototyping
Rapid samples to validate form, fit and function before full production.
Batch Consistency
Stable quality at scale, with pre-installed thread inserts and weld nuts ready to assemble.
FAQs
Our fiber laser cutting system handles maximum material thickness of 60mm with work area up to 10000mm × 2000mm. This applies across carbon steel, stainless steel, aluminum, copper, and brass—achievable thickness varies by material and cut quality requirements. Positioning accuracy: ±0.05mm. Typical cutting tolerance: ±0.1mm for thin plate, ±0.2mm for thick plate. Cut samples provided for your evaluation.
Following laser cutting, our CNC press brake bending handles carbon steel up to 20mm, stainless steel up to 16mm, and aluminum up to 16mm, with maximum bending length of 6000mm. Laser cutting and bending operate as integrated processes—cut profiles are optimized for smooth production. Minimum flange height and inside bend radius depend on material grade and thickness; we review all designs to ensure manufacturability before production.
Available finishes: powder coating, wet painting, electroplating (zinc, nickel, chrome), anodizing (aluminum), brushing, polishing, passivation. For visible parts, we implement protective handling, standardized lighting inspection, and protective film application before shipment. Standard RAL colors available; custom color matching supported.
Our standard process includes: (1) Design review for production feasibility;
(2) First-article sample with dimensional report for approval;
(3) In-process checks at each stage;
(4) Final inspection per drawing tolerances;
(5) Inspection report and material certificate included with shipment.
Samples available for all new designs. Typical lead time: 5–10 working days (sheet metal), 7–15 days (machined components), depending on complexity. We provide photo confirmation and dimensional report before mass production. Sample cost deducted from first production order.
Start Your Custom Sheet‑Metal & CNC Project
One‑stop manufacturing from prototyping to assembly. All drawing files kept confidential.
