• Aluminium Strip And Strips And Sheet And Sheets System 1
  • Aluminium Strip And Strips And Sheet And Sheets System 2
  • Aluminium Strip And Strips And Sheet And Sheets System 3
  • Aluminium Strip And Strips And Sheet And Sheets System 4
Aluminium Strip And Strips And Sheet And Sheets

Aluminium Strip And Strips And Sheet And Sheets

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
10 m.t.
Supply Capability:
1000 m.t./month

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ALLOY: AA1***
      AA3***
      AA5***
TEMPER: H14 H16 H18 H22 H24 H26 H32 O/F
THICKNESS:0.03MM-3.0MM
WIDTH: 30MM-1700MM
COATING: PE(POLYESTER),PVDF,EPOXY
STANDARD: GB/T 17748-1999


Special specification is available on customer's requirement




SURFACE QUALITY: GOOD APPEARANCE WITH NO-CRACK AND WELL-DISTRIBUTE GRAIN.


BUILD UP: TIGHT SLIT EDGES FREE FROM CRACKS, LAYER TO LAYER SHIFT NOT MORE THAN 2MM.


PROFILE: -0/+1%


FLATNESS: MILL FLATNESS COIL HAVING EDGE WAVINESS RATHER THAN CENTER BUCKLES SHALL BE ACCEPTABLE.


ROLLING PERFORMANCE: RE-ROLLABLE TO THE FINAL DESIRES GAUGES


Aluminium foil (or aluminum foil) is aluminium prepared in thin metal leaves with a thickness less than 0.2 millimetres (8 mils); thinner gauges down to 6 micrometres (0.24 mils) are also commonly used.In the United States, foils are commonly gauged in thousandths of an inch or mils. Standard household foil is typically 0.016 mm (0.63 mils) thick, and heavy duty household foil is typically 0.024 mm (0.94 mils). Thefoil is pliable, and can be readily bent or wrapped around objects. Thin foils are fragile and are sometimeslaminated to other materials such as plastics or paper to make them more useful. Aluminium foil supplantedtin foil in the mid 20th century.


Annual production of aluminium foil was approximately 800,000 tonnes (880,000 tons) in Europe and 600,000 tonnes (660,000 tons) in the U.S. in 2003. Approximately 75% of aluminium foil is used for packaging offoods, cosmetics, and chemical products, and 25% used for industrial applications (e.g. thermal insulation, cables and electronics).


In North America, aluminium foil is known as aluminum foil. It was popularized by Reynolds Metals, the leading manufacturer in North America. In the United Kingdom and United States it is, informally, widely called tin foil, for historical reasons (similar to how aluminum cans are often still called "tin cans").Metallised films are sometimes mistaken for aluminium foil, but are actually polymer films coated with a thin layer of aluminium. In Australia, aluminium foil is widely called alfoil.


Q:Can aluminum coils be used in high-pressure applications?
No, aluminum coils are not typically used in high-pressure applications due to their lower strength and less resistance to deformation compared to other materials such as steel.
Q:Can aluminum coils be used in HVAC heat exchangers?
Yes, aluminum coils can be used in HVAC heat exchangers. Aluminum is a commonly used material in heat exchangers due to its excellent thermal conductivity, lightweight nature, and resistance to corrosion. It allows for efficient heat transfer and is often preferred over other materials like copper in certain HVAC applications.
Q:Can aluminum coils withstand extreme temperatures?
Yes, aluminum coils can generally withstand extreme temperatures. Aluminum has a high melting point of around 660 degrees Celsius (1220 degrees Fahrenheit) and excellent heat conductivity, making it suitable for various high-temperature applications.
Q:What advantages does 0.1*100cm aluminum coil have? Is it suitable for the roof tiling? How is the anti-oxidation and anti-corrosion performance?
It is seldom used as roof tiling because its performance is not as good as color steel panel and its cost is not cheaper than others.
Q:I live around Minneapolis, MN. Is there a place that you can recycle crushed aluminum cans for money around here?
Recycling aluminum benefits the economy, the community and the environment and can make you money. Aluminum can be recycled over and over again. Recycled aluminum will make it back to the product market within 60 days after recycling. Any type of aluminum is recyclable. Schools, organizations and sport teams commonly use this as a method to raise money. There is no out-of-pocket expense. You will simply need to set up a designated area for receiving the aluminum and then transport it to the recycling station OR Put crushed aluminum cans in the recycling bin.They are processed the same way. I used to have a can-crusher, a little hand operated press that flattened cans out for easy keeping and storage. You could get a lot more of them into a box and they still were worth the nickel if you lived in CA or other states that refunded on cans. :)
Q:I was wondering if you could mold clay into a sphere then fill it with aluminum. Then put it over a fire and wait until the aluminum melts then put it in a freezer and it would come out as a sturdy, aluminum sphere. Thanks!
Do not try this at home! Seriously, this is exactly the kind of process that is used for casting metals. However, you need to have very strong molds with no cracks in them. Also, aluminum presents special problems. Solid aluminum does not corrode the way iron does, because it very quickly forms a protective tough layer of aluminum oxide. But molten aluminum can catch fire, with devastating consequences.
Q:What is the maximum coil width available?
The maximum available coil width is contingent upon various factors, including the manufacturing capabilities of the supplier or manufacturer in question. In broad terms, coil widths can span from a few millimeters to several meters. The utmost width is typically dictated by the machinery employed in coil production and the constraints imposed by the size of the raw materials being handled. It is advisable to engage in consultation with specific suppliers or manufacturers to ascertain the maximum coil width feasible for a given product or application.
Q:Are there any specific guidelines for the storage of aluminum coils?
Yes, there are specific guidelines for the storage of aluminum coils. Aluminum coils should be stored in a dry, well-ventilated area to prevent moisture buildup and corrosion. They should be stacked horizontally on a level surface, with proper support to avoid deformation. Additionally, it is recommended to cover the coils with a protective material, such as plastic or cloth, to prevent dust, dirt, or other contaminants from accumulating on the surface.
Q:Are there any limitations on the coil flatness of aluminum coils?
Aluminum coils, like other metal coils, have limitations on their flatness. The flatness of a coil refers to the extent to which its surface deviates from being completely flat. The American Society for Testing and Materials (ASTM) has set standards for measuring and evaluating the flatness of metal coils, including aluminum coils. These standards provide guidance for manufacturers, suppliers, and customers in determining the acceptable level of flatness for a particular application. The acceptable flatness of aluminum coils can vary depending on factors such as coil thickness, aluminum grade, and intended use. Thinner coils generally have stricter flatness requirements than thicker ones due to their greater susceptibility to distortion and waviness. Coil manufacturers employ various techniques, such as tension leveling, roller leveling, and corrective leveling, to control and improve flatness. These processes help to minimize or eliminate any deviations in flatness that may occur during coil manufacturing or processing. It is important to understand that achieving perfect flatness in aluminum coils is not always possible due to the inherent properties of the metal. Aluminum tends to exhibit some degree of natural springback, which can result in slight variations in flatness. However, these variations typically fall within acceptable tolerances for most applications. Ultimately, the limitations on the flatness of aluminum coils depend on the specific requirements of the customer or industry. Effective communication and clear establishment of flatness specifications between manufacturers and suppliers are crucial to ensuring that the coils meet the desired quality standards.
Q:How are aluminum coils used in the production of beverage cans?
Aluminum coils play a crucial role in the production of beverage cans. These coils are essentially flat, thin sheets of aluminum that are wound into a coil shape. Firstly, the aluminum coils are unwound and fed into a machine that coats them with a thin layer of a protective material, usually a polymer. This coating helps prevent the aluminum from reacting with the beverage and affecting its taste or quality. Next, the coated aluminum coils are passed through a series of rollers that gradually shape them into a cylindrical form. This process is known as cupping, where the flat coil is transformed into a cup-like shape. This cup will eventually become the body of the beverage can. Once the cups are formed, they are trimmed to the correct height and diameter. The excess aluminum is recycled to minimize waste. The cups are then cleaned and rinsed to remove any contaminants. After cleaning, the cups are passed through another machine that applies a liquid compound to their inner surface. This compound acts as a barrier between the aluminum and the beverage, preventing any potential reactions or contamination. Following this, the cups are shaped into the final can body by being pressed between a top and bottom mold. The molds are designed to give the cans their characteristic shape and ridges. Any excess aluminum is trimmed off, and the cans are once again cleaned to ensure their purity. Finally, the cans are sent for filling with the desired beverage, sealing, and labeling processes before being packaged and shipped for distribution. In summary, aluminum coils are used in the production of beverage cans by providing the raw material from which the cans are made. Through a series of processes including coating, cupping, shaping, and cleaning, the aluminum coils are transformed into the final can bodies. These cans are then filled, sealed, and labeled before they are ready for consumption.

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