Sheet Metal Fabrication
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- Skilled engineers with rich experience
- 100+ metals & plastics,50+ surface finishes
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- 0ne-stop customized service
- Tolerance levels as precise as ±0.0004" (0.01mm).
- Fast receiving in just 3-7 working days.
Sheet Metal Fabrication
Sheet metal fabrication is the use of metal plates to manufacture parts and structures. Common metal plate materials include different types of steel, aluminum, brass, copper, and other metals and alloys. Our technology includes cutting, bending, stamping, welding, and assembly.

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Our Sheet Metal Fabrication

Laser Cutting
Laser cutting shapes metal with precision using a CNC-controlled high-density light beam, making it ideal for crafting intricate custom metal components.

Plasma Cutting
Plasma cutting swiftly severs conductive materials using an accelerated hot plasma jet. Ideal for thick materials, it’s a fast, cost-effective method, particularly advantageous for large-scale industrial metal projects.

Waterjet Cutting
Waterjet cutting is a sheet metal manufacturing method that uses high-pressure water jets (mixed with abrasives) to cut metal, especially for cutting low-melting sheet metal.

Stamping
Sheet metal stamping (also known as sheet metal pressing and forming) is the process of pressing flat metal in coil form through dies to form parts of the desired shape.

Bending and Folding
Bending and folding sheet metal are fundamental practices in manufacturing. By applying external force, the metal sheet is shaped along a specific axis, a crucial step in achieving the desired geometry for manufacturing.

Welding
Sheet metal welding refers to the process of joining heated and melted sheet metal parts together to increase their strength or create a single integrated product.
Our Sheet Metal Fabrication Numbers
Sheet Metal Fabrication Materials
Aluminum
Aluminum with its lightweight yet robust nature, offers enhanced durability without excess weight. Its superior malleability allows precise shaping, ideal for intricate designs.
AL5052
AL5083
AL6061
AL6063
Copper
Copper’s advantages are clear: unparalleled electrical conductivity, thermal efficiency, and natural resistance to corrosion, ensuring longevity and performance in fabrications.
CU1020
CU1100
CU2100
CU2200
CU2300
CU2400
CU2600
Brass
Option for brass to ensure precise machining, a distinct appearance, and efficient heat conductivity, providing advantages for both practical and decorative applications.
C27400
C28000
Steel
With its robustness, versatility, and recyclability, steel is an excellent material choice, ensuring long-lasting performance and environmental sustainability.
Cold Rolled Steel Plate (SPCC)
Hot Rolled Steel Plate (SPHC)
Electrolytic Plate (SECC)
Galvanized Plate (SGCC)
Stainless Steel
Renowned for its durability and resistance to staining, stainless steel ensures longevity and maintains its appearance, even in harsh environments.
301
303
304
316
420
430
Our Capability
Materials | Color | Texture | Thickness | |
Anodizing | Aluminum | Clear, black, grey, red, blue, gold. | Smooth, matte finish. | A thin layer: 5-20 µm Hard anodic oxide film: 60-200 µm |
Bead Blasting | Aluminum, Brass, Stainless Steel, Steel | None | Matte | 0.3mm-6mm |
Electroplating | Aluminum, Brass, Stainless Steel, Steel | Varies | Smooth, glossy finish | 30-500 µin |
Polishing | Aluminum, Brass, Stainless Steel, Steel | N/A | Glossy | N/A |
Brushing | Aluminum, Brass, Stainless Steel, Steel | Varies | Satin | N/A |
Silkscreen Printing | Aluminum, Brass, Stainless Steel, Steel | Varies | N/A | < 1 µm |
Passivation | Stainless Steel | None | Unchanged | 5μm – 25μm |
Powder Coating | Aluminum, Brass, Stainless Steel, Steel | Black, any RAL code or Pantone number | Gloss or semi-gloss | 5052 Aluminum 0.063″-0.500” 6061 Aluminum 0.063″-0.500” 7075 Aluminum 0.125”-0.250″ Mild Steel 0.048″-0.500” 4130 Chromoly Steel 0.050″-0.250” Stainless Steel 0.048″-0.500” |
Process | Techniques | Precision | Applications | Material Thickness (MT) | Lead Time |
Cutting | Laser cutting, Plasma cutting | +/- 0.005 " +/- 0.1 mm | Stock material cutting, Cutting of external shapes, Secondary cutting, Cutting lines, Cutting irregular holes. | 6 mm (¼ inch) or less | 1-2 days |
Bending | Bending | Single bend: (+/- 0.005 " +/- 0.1 mm) Double bend: (+/- 0.008 " +/- 0.2 mm) More than two bends: ( +/- 0.01 " +/- 0.3 mm) | Forming, pressing lines, imprinting characters, riveting of electrostatic guide rails, pressing grounding symbols, hole punching, pressing flat, pressing triangular reinforcements, and more. | The smallest bend radius should be at least equal to the sheet thickness. | 1-2 days |
Welding | Tig Welding, MIG welding, MAG welding, CO2 welding | +/- 0.008 " +/- 0.2 mm | For aircraft fuselages and engine components. In car bodies, exhaust systems, and chassis. In creating components for power generation and distribution systems. | As low as 0.6 mm | 1-2 days |
Dimension Detail | Metric Units | Imperial Units |
Edge to edge, single surface | +/- 0.127 mm | +/- 0.005 in. |
Edge to hole, single surface | +/- 0.127 mm | +/- 0.005 in. |
Hole to hole, single surface | +/- 0.127 mm | +/- 0.005 in. |
Bend to edge / hole, single surface | +/- 0.254 mm | +/- 0.010 in. |
Edge to feature, multiple surface | +/- 0.762 mm | +/- 0.030 in. |
Over formed part, multiple surface | +/- 0.762 mm | +/- 0.030 in. |
Bend angle | +/- 1° |
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