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1199 Aluminium Coil

Products Description 1199 Aluminium Coil Chemical Composition 1199 Aluminium Coil Physical Properties The 1199 Aluminium Coil also demonstrates remarkable reflectivity properties. Its highly polished surface can reflect a significant amount of light and electromagnetic radiation. This...

Description
Products Description

 

 

1199 Aluminium Coil Chemical Composition

 

Element Content (%)
Aluminum, Al 99.99 min
Silicon, Si 0.006 max
Magnesium, Mg 0.006 max
Zinc, Zn 0.006 max
Iron, Fe 0.006 max
Copper, Cu 0.006 max
Gallium, Ga 0.005 max
Vanadium, Va 0.005 max
Manganese, Mn 0.002 max
Remainder (each) 0.002 (each)

1199 Aluminium Coil Physical Properties

 

Properties Metric Imperial
Density 2.70 g/cm³ 0.0975 lb/in³
Melting point 660°C 1220°F

 

The 1199 Aluminium Coil also demonstrates remarkable reflectivity properties. Its highly polished surface can reflect a significant amount of light and electromagnetic radiation. This characteristic is exploited in various optical and solar energy applications. For instance, in the field of solar reflectors, the 1199 Aluminium Coil can be used to enhance the efficiency of concentrating solar power systems by redirecting and concentrating sunlight onto the absorber. In optical instruments, it helps to control and manipulate light paths, contributing to improved imaging and sensing capabilities.

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Another advantage of the 1199 Aluminium Coil is its recyclability. Aluminium is a highly recyclable material, and the 1199 alloy is no exception. The ability to recycle this coil not only reduces the demand for virgin aluminium production but also minimizes the environmental impact associated with mining and refining processes. Recycled 1199 Aluminium Coil can be remelted and reprocessed into new coils or other aluminium products with relatively little loss in quality, making it an environmentally sustainable choice for long-term applications.

 

When it comes to joining methods, the 1199 Aluminium Coil can be welded, brazed, or soldered, although special techniques and fluxes may be required due to its high purity. These joining processes allow for the fabrication of more complex assemblies and structures, expanding its range of potential applications. For example, in the construction of lightweight and high-performance frames for aerospace or automotive components, the ability to join the 1199 Aluminium Coil precisely and securely is crucial.

 

In the food and beverage industry, the non-toxic and corrosion-resistant nature of the 1199 Aluminium Coil makes it suitable for packaging applications. It can be used to manufacture cans and foil wraps that protect the contents from spoilage and maintain product freshness. The coil's formability also enables the creation of unique packaging designs that enhance brand visibility and consumer appeal.

 

Despite its relatively high cost compared to some lower-purity aluminium coils, the 1199 Aluminium Coil's superior performance and versatility justify its use in critical applications where quality and specific material properties are non-negotiable. Its continued development and innovation in manufacturing techniques will likely lead to even broader utilization in the future.

 

 

 

 

 

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