• High Lighted Alloy 1050 Aluminium Circle Sheet System 1
  • High Lighted Alloy 1050 Aluminium Circle Sheet System 2
  • High Lighted Alloy 1050 Aluminium Circle Sheet System 3
  • High Lighted Alloy 1050 Aluminium Circle Sheet System 4
High Lighted Alloy 1050 Aluminium Circle Sheet

High Lighted Alloy 1050 Aluminium Circle Sheet

Ref Price:
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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
5 m.t.
Supply Capability:
600 m.t./month

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Item specifice

Grade:
1000 Series,5000 Series,3000 Series
Surface Treatment:
Embossed,Anodized,Mill Finish
Shape:
Round,Flat
Temper:
O-H112,Half Hard,Hard
Application:
Decorations,Door & Window,Kitchen Use
Technique:
Cold Drawn
Thickness:
0.08-8mm
Width:
150-2000mm
Outer Diameter:
700mm
Packaging:
Wooden pallet

Aluminium Circle Sheet  


Professional aluminum product manufacturer

We have our own plant , Laboratory and engineer

Over 100 models can totaly satisfy your request

As powerful and stronger factory, our aluminum quality is very stable  and reliable

2 years warranty period

Specifications:


Thickness:0.5mm-6.0mm 

Width:100mm-900mm 

Surface:Bright & smooth surface, not defects like white rust, oil patch. 


  • Product Information : 


Product

Aluminum Circle

Alloy

1050 1060 1070 1100 1200




Temper

O, H12, H14, H18 and H24...

Thickness

0.5mm-6.0mm

Diameter

100mm-900mm

Lead Time

Within 30-45 days after receiving deposit

Packing

Standard Exporting wooden pallets or based on customer requirement

Material

Using high-tech machinery utilizing premium grade Aluminium Coil. Customized according to the needs and demands of the clients these can be availed at different technical specifications.

Surface:

Bright & smooth surface, free from defects like white rust, oil patch, edge damage.

Application

Aluminium Circles are used in Reflective Sign Boards, Road Furniture, Utensils, Sand witch Bottom, Cooker, Non-Stick etc.



High Lighted Alloy 1050 Aluminium Circle Sheet


High Lighted Alloy 1050 Aluminium Circle Sheet

Q:Can aluminum sheets be painted?
Indeed, it is possible to paint aluminum sheets. However, in order to ensure that the paint adheres well and lasts, some preparation may be necessary. The first and most crucial step involves thoroughly cleaning the surface of the aluminum sheet to eliminate any dirt, grease, or corrosion. This can be accomplished by employing a mild detergent and water or a specialized aluminum cleaner. Once cleaned, the surface should be completely dried before proceeding with the painting process. For enhanced paint adhesion, it is recommended to apply a primer specifically designed for use on aluminum. This primer will establish a bond between the aluminum surface and the paint, resulting in better adhesion and a longer-lasting paint job. Once the primer has dried, an appropriate paint can be applied to the aluminum sheet. It is important to select a paint that is compatible with aluminum and provides excellent adhesion and resistance to weather elements. Acrylic or epoxy-based paints are commonly utilized when painting aluminum. Before fully committing to the painting process, it is advisable to test a small inconspicuous area to ensure that the paint adheres properly and achieves the desired finish. Additionally, it is imperative to adhere to the manufacturer's instructions for the specific paint and primer being used, including adhering to proper drying times and application techniques. In conclusion, while it is possible to paint aluminum sheets, it is crucial to adequately prepare the surface, utilize an appropriate primer and paint, and follow the recommended procedures in order to achieve a long-lasting and visually appealing paint finish.
Q:Are aluminum sheets suitable for food preparation surfaces?
Yes, aluminum sheets are suitable for food preparation surfaces. Aluminum is a lightweight and durable material that is commonly used in the food industry. It is non-toxic, non-reactive, and does not release any harmful chemicals when it comes into contact with food. Aluminum sheets are also easy to clean and maintain, making them a popular choice for food preparation surfaces in both commercial kitchens and home kitchens. Additionally, aluminum has excellent heat conductivity, allowing for even cooking and baking. However, it is important to note that aluminum can react with acidic or salty foods, causing a metallic taste. To prevent this, it is recommended to use a layer of parchment paper or silicone baking mat as a barrier between the aluminum sheet and the food.
Q:How is aluminum sheet made?
Aluminum sheet undergoes a rolling process to be manufactured, known as rolling. This process entails passing a preheated aluminum ingot through a succession of rolling mills. The initial step involves heating the ingot to a specific temperature to enhance its malleability. Once heated, the ingot is then fed through a sequence of rolling mills, wherein it is continuously pressed and stretched to reduce its thickness and increase its length. The rolling mills consist of a pair of rotating cylinders with grooves on their surfaces. As the ingot passes through these cylinders, it undergoes compression and elongation, resulting in a thinner and longer sheet. This process is repeated multiple times, with each pass further reducing the sheet's thickness. To maintain the desired thickness and dimensions, the sheet is periodically subjected to annealing. This process involves heating the sheet to a specific temperature and gradually cooling it. Annealing helps alleviate internal stresses and ensures the sheet retains its desired properties. Once the desired thickness is achieved, the aluminum sheet is cooled, trimmed, and either cut into specific lengths or rolled into coils for further processing or distribution. The final product is a flat, thin, and versatile sheet of aluminum that finds applications in various industries, including construction, automotive, packaging, and electrical appliances.
Q:How does the purity of aluminum affect its properties as a sheet?
The purity of aluminum greatly affects its properties as a sheet. Higher purity levels result in increased strength, improved corrosion resistance, and enhanced conductivity. Pure aluminum sheets are softer and more malleable, making them easier to form and shape. However, impurities can negatively impact these properties, reducing strength and increasing susceptibility to corrosion. Therefore, maintaining high purity levels is essential for achieving desired sheet properties and performance.
Q:Are aluminum sheets suitable for high-temperature applications?
No, aluminum sheets are not suitable for high-temperature applications as they have a low melting point and tend to lose their strength and become deformed at high temperatures.
Q:Which kind of solution should I use while welding aluminum sheet and copper pipe by tin soldering?
1, you must use over 350W soldering iron, 2,prepare some borax and tin soldering paster, you can’t use rosin to weld it, 3, polish the pipe to clean with fine abrasive paper and borax, 4, put the pipe and sheet into borax, use the soldering trip to rub on the weldment with some borax. 5, after the pipe and sheet become hot, use the soldering iron with the paster and tin to rub the pipe and sheet in borax, then it can be welded. 6, they can be welded together after welding.
Q:Which is better, a water bottle made out of steel or one made out of aluminum?
Aluminim is the way to go. I have an aluminum water bottle and so far it has been great. The bottle doesn't give the water any bad added flavor and it is lighter. Downside is that my water bottle has several dents in it but they just add character.
Q:What is the surface hardness of aluminum sheets?
The surface hardness of aluminum sheets can vary depending on the alloy and treatment process. Generally, aluminum sheets have a relatively low surface hardness compared to other metals such as steel or titanium. However, certain aluminum alloys can be heat-treated to improve their hardness. For example, 6061-T6 aluminum sheets have a surface hardness of around 95 Brinell, while 7075-T6 aluminum sheets have a surface hardness of approximately 150 Brinell. It is important to note that these values are approximate and can vary depending on the specific alloy, temper, and processing conditions.
Q:How does aluminum sheet perform in high-pressure applications?
Aluminum sheet performs exceptionally well in high-pressure applications due to its inherent properties. The strength-to-weight ratio of aluminum is impressive, making it a suitable choice for withstanding high-pressure environments. Additionally, aluminum has excellent corrosion resistance, which is crucial when dealing with high-pressure conditions that may involve exposure to moisture or aggressive chemicals. Furthermore, aluminum sheet is highly malleable, allowing it to be fabricated into various shapes and forms to meet the specific requirements of high-pressure applications. Its flexibility also enables it to withstand the forces and stresses exerted during high-pressure processes without compromising its structural integrity. Moreover, aluminum has good thermal conductivity, which aids in dissipating heat generated by high-pressure systems. This feature helps prevent overheating and ensures efficient operation. However, it is important to note that the performance of aluminum sheet in high-pressure applications can be influenced by factors such as the thickness and alloy composition of the sheet. Therefore, it is crucial to select the appropriate grade and thickness of aluminum sheet based on the specific requirements and operating conditions of the high-pressure application. Overall, aluminum sheet is a reliable and effective choice for high-pressure applications due to its strength, corrosion resistance, malleability, thermal conductivity, and overall performance under demanding conditions.
Q:My frame snapped and I want to fix it by welding it back together. In order to do that, I need to know what all is in the aluminum.
You can NOT weld back an aluminum frame unless you have the facilities to anneal and heat treat the frame again. Rewelding without the post treatments will result in a very soft area around the new weld causing sudden catastrophic failure... this means if you are riding it could fail at any time causing injury or death. EDIT: Wait just a durn minute. The 2100 and 2300 had carbon fiber tubes bonded to aluminum lugs and stays. If your bike failed then you ABSOLUTELY should not try to weld it. The heat from welding (even if you had post treatment facilities) would destroy the bond between the CF and aluminum. Fair warning- cut the frame apart and throw it away.

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