If you are searching for a highly formable, corrosion-resistant aluminum material that supports precision fabrication, GNEE supplies 1050 aluminum plate deep-processing and custom products tailored to drawings, specifications, and application demands across multiple industries.
1050 aluminum plate belongs to the 1xxx series of commercially pure aluminum, offering excellent ductility, stability, and consistency-making it an ideal base material for secondary processing and value-added manufacturing.
1050 Aluminum Plate Dimensional Tolerance Standards
1050 Aluminum Plate Thickness Tolerance Standard (General Grade, Width ≤ 1000mm)
| Thickness Range (mm) | Permissible Tolerance (±mm) |
| ≤ 0.4 | ±0.02 |
| 0.4 < t ≤ 0.6 | ±0.03 |
| 0.6 < t ≤ 1.0 | ±0.04 |
| 1.0 < t ≤ 1.5 | ±0.05 |
1050 Aluminum Plate Width Tolerance Standard (General Grade)
| Width Range (mm) | Permissible Tolerance (+mm) |
| ≤ 2000 | +6.0 |
| > 2000 | +12.0 |
1050 Aluminum Plate Length Tolerance Standard (General Grade)
| Length Range (mm) | Permissible Tolerance (+mm or %) |
| ≤ 2000 | +6.0 |
| 2000 < L ≤ 3000 | +12.0 |
| > 3000 | +0.15% × L |
1050 Aluminum Plate Flatness Tolerance Standard
| Thickness Range (mm) | Max Flatness Deviation (mm/m) |
| 0.2 – 0.5 | ≤ 15 |
| 0.5 – 3.0 | ≤ 10 |
| 3.0 – 6.0 | ≤ 8 |
1050 Aluminum Plate Chemical Composition
| Element | % Present |
| Manganese (Mn) | 0.0 - 0.05 |
| Iron (Fe) | 0.0 - 0.40 |
| Copper (Cu) | 0.0 - 0.05 |
| Magnesium (Mg) | 0.0 - 0.05 |
| Silicon (Si) | 0.0 - 0.25 |
| Zinc (Zn) | 0.0 - 0.07 |
| Titanium (Ti) | 0.0 - 0.05 |
| Aluminium (Al) | Balance |
Mechanical Properties of 1050 Aluminum Sheet
| Alloy Temper | Specified | Tensile strength | Yield strength | Elongation |
| Thickness (mm) | (MPa) | (MPa) | (%) | |
| 1050-O/1050-H111 | 0.2-0.5 | 65-95 | Min20 | Min20 |
| 0.5-1.5 | Min22 | |||
| 1.5-3.0 | Min26 | |||
| 3.0-6.0 | Min29 | |||
| 6.0-12.5 | Min35 | |||
| 12.5-80.0 | ||||
| 1050-H112 | 6.0-12.5 | Min75 | Min30 | Min20 |
| 12.5-80.0 | Min70 | Min25 | ||
| 1050-H12 | 0.2-0.5 | 85-125 | Min65 | Min2 |
| 0.5-1.5 | Min4 | |||
| 1.5-3.0 | Min5 | |||
| 3.0-6.0 | Min7 | |||
| 6.0-12.5 | Min9 | |||
| 12.5-40.0 | ||||
| 1050-H14 | 0.2-1.5 | 105-145 | Min85 | Min2 |
| 1.5-3.0 | Min4 | |||
| 3.0-6.0 | Min5 | |||
| 6.0-12.5 | Min6 | |||
| 12.5-25 | ||||
| 1050-H16 | 0.2-0.5 | 120-160 | Min100 | Min1 |
| 0.5-1.5 | Min2 | |||
| 1.5-4.0 | Min3 | |||
| 1050-H18 | 0.2-0.5 | Min135 | Min120 | Min1 |
| 0.5-1.5 | Min140 | Min2 | ||
| 1.5-3.0 | Min2 | |||
| 1050-H19 | 0.2-0.5 | Min155 | Min140 | Min1 |
| 0.5-1.5 | Min150 | Min130 | ||
| 1.5-3.0 | ||||
| 1050-H22 | 0.2-0.5 | 85-125 | Min55 | Min4 |
| 0.5-1.5 | Min5 | |||
| 1.5-3.0 | Min6 | |||
| 3.0-6.0 | Min11 | |||
| 6.0-12.5 | Min12 | |||
| 1050-H24 | 0.2-0.5 | 105-145 | Min75 | Min3 |
| 0.5-1.5 | Min4 | |||
| 1.5-3.0 | Min5 | |||
| 3.0-6.0 | Min8 | |||
| 6.0-12.5 | ||||
| 1050-H26 | 0.2-0.5 | 120-160 | Min90 | Min2 |
| 0.5-1.5 | Min3 | |||
| 1.5-4.0 | Min4 | |||
| 1050-H28 | 0.2-0.5 | Min140 | Min110 | Min2 |
| 0.5-1.5 | ||||
| 1.5-3.0 | Min3 |
1050 Aluminum Plate General Physical Properties
| Physical Property | Value |
| Density | 2.71 g/cm³ |
| Melting Point | 650 °C |
| Thermal Expansion | 24 x 10-6/K |
| Modulus of Elasticity | 71 GPa |
| Thermal Conductivity | 222 W/m.K |
| Electrical Resistivity | 0.0282 x 10-6 Ω .m |
1050 Aluminum Plate Slitting Strip Customization
1050 aluminum plate slitting strips are produced through precision longitudinal cutting, with width, thickness, and edge condition customized according to customer requirements.
These strips ensure dimensional accuracy and clean edges, supporting efficient downstream processing and assembly.
Typical Applications
- Industrial component manufacturing
- Packaging materials
- Electrical and electronic parts
- Lightweight formed products

1050 Aluminum Plate Blanks for Forming & Drawing
1050 aluminum plate blanks are cut to size based on customer drawings or technical specifications. The material features uniform thickness, smooth surfaces, and stable mechanical performance.
Due to its excellent ductility, 1050 aluminum plate blanks are widely used as base materials for forming operations.
Common Uses
Cookware and kitchen utensils
Lighting components
Decorative aluminum products
Spinning and deep-drawing applications
1050 Aluminum Plate Stamping Parts Manufacturing
1050 aluminum plate stamping parts are manufactured according to customer-provided designs, ensuring tight tolerances and consistent forming quality.
The alloy's soft texture and high elongation allow it to meet high-precision stamping requirements without cracking.
Typical Applications
Electronic enclosures
Appliance panels
Precision industrial components
Thin-wall formed products
1050 Aluminum Plate Cutting Sheets Processing
1050 aluminum plate cutting sheets are processed into specific sizes and shapes using precision cutting methods. The sheets maintain flatness, uniform thickness, and good surface quality, supporting efficient fabrication.
Application Fields
Industrial manufacturing
Architectural decoration
Electronics processing
General sheet metal fabrication
Key Advantages of 1050 Aluminum Plate
| Advantage | Description |
|---|---|
| Excellent Formability | Soft texture and high ductility ensure stable performance during bending, spinning, drawing, and stamping |
| Strong Corrosion Resistance | High aluminum purity forms a dense natural oxide layer, resisting oxidation in atmospheric and freshwater environments |
| High Electrical & Thermal Conductivity | Ideal for applications requiring efficient heat transfer or electrical conduction |
| Superior Weldability | Suitable for gas welding, arc welding, and resistance welding with low cracking risk |
1050 Aluminum Plate Fabrication Characteristics
1050 aluminum plate is widely favored for fabrication due to its stable processing behavior and cost efficiency.
Processing Performance Overview
Cold workability: Excellent
Heat treatability: Not heat-treatable
Strength adjustment: Cold working or annealing only
Machinability: Poor (soft material)
Weldability: Excellent
Welding Recommendations for 1050 Aluminum Plate
To ensure optimal welding quality, appropriate filler materials should be selected based on the base alloy combination.
| Welding Combination | Recommended Filler |
|---|---|
| 1050 with similar alloys | 1100 |
| 1050 with 5083 / 5086 / 7xxx | 5356 |
| General mixed alloys | 4043 |
1050 Aluminum Plate Processing Capability Ratings
| Process | Performance Rating |
|---|---|
| Cold Workability | Excellent |
| Machinability | Poor |
| Gas Welding | Excellent |
| Arc Welding | Excellent |
| Resistance Welding | Excellent |
| Brazing | Excellent |
| Soldering | Excellent |
Core Features of 1050 Aluminum Plate Material
High Purity: Minimum 99.5% aluminum content ensures chemical stability
Excellent Corrosion Resistance: Suitable for chemical, marine-adjacent, and humid environments
Outstanding Formability: Supports extrusion, stamping, bending, and deep drawing
Good Thermal & Electrical Conductivity: Suitable for conductors and heat-exchange components
Non-Heat-Treatable Alloy: Strength enhanced only through work hardening
Moderate Strength: Lower than high-strength alloys, but sufficient for non-structural applications
Why Choose GNEE 1050 Aluminum Plate Solutions
With mature production processes, flexible customization capabilities, and strict quality control, GNEE provides reliable 1050 aluminum plate deep-processing solutions for industrial manufacturing, electronics, decoration, and precision forming applications.
Contact GNEE today to discuss your drawings, tolerances, and processing requirements-and receive professional support for your next 1050 aluminum plate project.
