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Brand Name : Zoli
Model Number : Al6061
Certification : CE ISO
Place of Origin : China
MOQ : 1kg
Payment Terms : L/C,T/T,Western Union
Supply Ability : 500ton per year
Delivery Time : within 30days
Packaging Details : vacuum,plastic and iron barrel
Uses : Additive in manufacturing of paints, coatings, and pigments; rocket fuel; fireworks; thermite reactions
Specific Heat Capacity : 0.897 J/g·K
Un Number : Al6061
Specific Surface Area : 1-3 m2/g
Melting Point : 660.3 °C
Chemical Formula : Al
Material : Aluminum
Powder Storage Conditions : Dry and cool environment
Appearance : Silver gray powder
Solubility In Water : Insoluble
Purity : 99.7%
Storage Condition : Store in a cool, dry place
Electrical Conductivity : 38.2 × 106 S/m
Powder Shape : Spherical
Hazard Statements : H228 - Flammable solid; H315 - Causes skin irritation; H319 - Causes serious eye irritation; H335 - May cause respiratory irritation
Al6061 is one of the most versatile and widely used wrought aluminum alloys in traditional manufacturing (e.g., extrusion, forging, CNC machining). However, its use in powder-based additive manufacturing (AM), particularly Laser Powder Bed Fusion (LPBF), is significantly more challenging and less common than casting alloys like AlSi10Mg or AlSi7Mg.
"High-Quality" Al6061 powder is engineered to overcome these challenges, aiming to replicate the excellent combination of strength, weldability, and corrosion resistance that makes the wrought form so popular. Successfully printing with Al6061 requires precise control of powder characteristics and advanced printing parameters.
The composition is key to its properties and aligns with standards like ASTM B928 or AMS 4417.
| Element | Content (%) | Role and Effect |
|---|---|---|
| Aluminum (Al) | Balance | Base metal. |
| Magnesium (Mg) | 0.8 - 1.2% | Primary strengthening element via solid solution strengthening and formation of Mg₂Si precipitates. |
| Silicon (Si) | 0.4 - 0.8% | Works with Magnesium to form the strengthening phase Mg₂Si. |
| Iron (Fe) | ≤ 0.7% | Impurity, controlled to prevent brittleness. |
| Copper (Cu) | 0.15 - 0.40% | Enhances strength through precipitation hardening but can slightly reduce corrosion resistance. |
| Chromium (Cr) | 0.04 - 0.35% | Acts as a grain refiner; controls recrystallization and improves toughness. |
| Manganese (Mn) | ≤ 0.15% | Impurity control. |
| Other Impurities | ≤ 0.05% each | Strictly controlled. |
For Al6061 to have any chance of successful printing, powder quality is paramount:
The Fundamental Problem: Unlike the near-eutectic AlSi10Mg, Al6061 solidifies over a wide temperature range. This leads to the formation of a long, vulnerable mushy zone where liquid films between dendrites are torn apart by thermal stresses, causing solidification cracks that render a part useless.
Strategies for Successful Printing:
Al6061 responds well to the standard T6 heat treatment, which is essential for achieving its full mechanical potential.
Due to the challenges, applications for LPBF-produced Al6061 are more niche but target components that traditionally use wrought 6061:
Advantages (When Successfully Printed & Treated):
Limitations:
| Feature | Al6061 (for AM) | AlSi10Mg (AM Benchmark) | AlSi7Mg (AM Alternative) |
|---|---|---|---|
| Primary Alloying | Mg & Si | Si | Si & Mg |
| Printability | Very Difficult | Excellent | Very Good |
| Key Strength | Ductility & Toughness | Printability & Strength | Strength-Ductility Balance |
| Typical Use | Niche, high-toughness parts | General purpose, fixtures, housings | Structural, dynamic loads |
| Status | Advanced/Developmental | Mature/Industrial Workhorse | Mature/High-Performance |


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High Quality Al6061 Aluminum Alloy Powder for Additive Manufacturing Images |