Second Most Utilized Metal Globally: After iron, aluminum is the world's most widely used non-ferrous metal Exceptional Properties: Lightweight (2.7 g/cm³), high strength-to-weight ratio, excellent electrical and thermal conductivity, superior corrosion resistance Recyclability: Infinitely recyclable without property degradation; recycled aluminum requires 95% less energy than primary production Versatility: Suitable for applications spanning aerospace to packaging, construction to consumer electronics Sustainability Focus: Growing emphasis on secondary aluminum (recycled) ingots aligns with global ESG commitments
| Chemical Composition | Aluminium (Al): 99.5% – 99.9% (depending on grade) |
| Crystal Structure | Face-Centered Cubic (FCC) crystal structure enabling excellent ductility, formability, and conductivity |
| Appearance | Silvery-white metallic solid with smooth and uniform surface finish |
| Density | 2.70 g/cm³ (lightweight metal with excellent strength-to-weight ratio) |
| Thermal Conductivity | 205 W/m·K (high heat transfer efficiency suitable for thermal applications) |
| Electrical Conductivity | Approximately 61% IACS (International Annealed Copper Standard), widely used in electrical applications |
| Coefficient of Thermal Expansion | 23.1 × 10⁻⁶ /°C (moderate dimensional expansion under temperature variations) |
| Melting Point | 660.3°C (relatively low melting temperature supporting efficient casting and remelting processes) |
| Corrosion Resistance | Forms natural aluminum oxide protective layer preventing environmental corrosion and oxidation |
| Mechanical Strength (Typical Range) | Tensile Strength: 70 – 150 MPa Yield Strength: 30 – 120 MPa |
| Recyclability | 100% recyclable without loss of properties, supporting sustainable and circular industrial applications |
Aluminum recovered from scrap, waste, and end-of-life aluminum products, refined and recast into ingots for remanufacturing. Represents the circular economy solution to aluminum demand.


Direct Chill casting produces high-purity aluminum ingots using controlled water-cooled solidification, ensuring minimal defects and superior quality for premium industrial applications.
Continuous casting produces aluminum ingots by continuously feeding molten metal onto a moving cooling system, enabling high-speed, cost-effective, and consistent production ideal for large-scale manufacturing.
Smelting and semi-continuous casting is a traditional aluminum production method where molten metal is cooled in stationary molds and naturally solidified. It produces reliable ingots suitable for standard and non-critical industrial applications.
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ASTM B26 (Aluminum Ingot Specifications), ISO 385 (Aluminum Metal Quality)

AS9100 (Aerospace), AMS (Aerospace Material Specifications), EN standards (European)

ISO 9001 (Quality Management), ISO 14001 (Environmental Management)

Full composition analysis, mechanical property testing, traceability documentation
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