• Hot Rolled Aluminium Coils for Cars Buidling AA5052 System 1
  • Hot Rolled Aluminium Coils for Cars Buidling AA5052 System 2
  • Hot Rolled Aluminium Coils for Cars Buidling AA5052 System 3
Hot Rolled Aluminium Coils for Cars Buidling AA5052

Hot Rolled Aluminium Coils for Cars Buidling AA5052

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
5 m.t.
Supply Capability:
50000 m.t./month

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Item specifice

Grade:
5000 Series
Surface Treatment:
Mill Finish
Shape:
Flat
Temper:
O-H112
Application:
Transportation Tools

1.Structure of Hot Rolled Aluminium Coils for Cars Buidling AA5052


Hot Rolled Aluminium Coils for Cars Buidling AA5052 is one semi-finished aluminium material. This strip can be rolled down to aluminium coil,sheet,circle ect.  The alloy AA1050 is widly used in building, industry ect. Its weight is much lower than steel. So many customers choosed aluminium material instead of steel.


2. Main features of Hot Rolled Aluminium Coils for Cars Buidling AA5052

a.Competitive price---We have our own mills and can produce mill finished aluminium coils, so we can control the production cost better.

b.Professional after-sale service---We have more than 15 years exportation experience and you need not worry about the exporation problems.

c.Fast delivery time---We can control the delivery time within 35 days.


3. Image of Hot Rolled Aluminium Coils for Cars Buidling AA5052


 

 

Hot Rolled Aluminium Coils for Cars Buidling AA5052

Hot Rolled Aluminium Coils for Cars Buidling AA5052

Hot Rolled Aluminium Coils for Cars Buidling AA5052




4. Product Specification


AlloyTemperThicknessWidthWeight
AA5052H140.2MM-3MM1000MM-1800MM2 TONS


5.FAQ:


What is the quality standard?

---Usually our standard is GB3880-2006

What is the largest width?

---It is 2300mm

What is the MOQ?

---Usually we can accept 80 tons.


Q:Are aluminum sheets suitable for marine vessel construction?
Yes, aluminum sheets are suitable for marine vessel construction. Aluminum is lightweight, strong, and resistant to corrosion, making it an ideal material for building boats and ships. It also offers good thermal conductivity and is easily weldable, making it a popular choice in the marine industry.
Q:Can aluminum sheets be bent or formed into different shapes?
Yes, aluminum sheets can be bent or formed into different shapes. Aluminum is a highly malleable metal, which means it can be easily shaped or formed without breaking or cracking. This property makes it highly versatile for various industries and applications. Aluminum sheets can be bent, rolled, or pressed to create different shapes or forms, such as cylinders, cones, or complex geometric structures. The ability to bend or form aluminum sheets opens up a wide range of possibilities for manufacturing, construction, automotive, aerospace, and many other industries.
Q:How are aluminum sheets measured and specified?
When it comes to aluminum sheets, their thickness, width, and length are typically used for measurement and specification. The gauge, which is the thickness of the sheet, is commonly measured in inches or millimeters. The width and length, also measured in inches or millimeters, are also specified. To determine the thickness of an aluminum sheet, a gauge is utilized. This gauge serves as a standardized tool for measuring the sheet's thickness. The lower the gauge number, the thicker the sheet. For instance, a 10-gauge aluminum sheet is thicker compared to a 16-gauge sheet. In terms of the width and length of an aluminum sheet, they are usually measured in inches or millimeters. The width pertains to the horizontal measurement of the sheet, while the length refers to the vertical measurement. These dimensions play a crucial role in determining the size of the sheet and its suitability for specific applications. Aside from the gauge, width, and length, aluminum sheets can also be specified based on their alloy composition or temper. The alloy composition indicates the specific combination of metals present in the sheet, such as aluminum-magnesium, aluminum-zinc, or aluminum-copper alloys. The temper, on the other hand, refers to the heat treatment process that the sheet has undergone, which affects its mechanical properties, including hardness and flexibility. In conclusion, the measurement and specification of aluminum sheets primarily involve their thickness (gauge), width, and length. These measurements, along with additional specifications like alloy composition and temper, are essential in ensuring the appropriate selection and use of aluminum sheets for various applications in industries such as construction, automotive, aerospace, and more.
Q:What's the difference between laser cutting aluminum plate and stainless steel plate?
The aluminum plate is higher than the stainless steel reflectivity, the focal point, the power, the speed are not the same, the general carbon dioxide laser does not have the anti - reflection lens, then had better not cut the aluminum plate, easy to burn the laser internal lens.
Q:Are aluminum sheets suitable for structural applications?
Yes, aluminum sheets are suitable for structural applications. They are lightweight, yet strong and durable, making them ideal for various structural uses such as building facades, roofs, and transportation vehicles. Additionally, aluminum sheets have excellent corrosion resistance, which further enhances their suitability for structural applications.
Q:Can the aluminum sheets be used for manufacturing food storage containers?
Yes, aluminum sheets can be used for manufacturing food storage containers. Aluminum is a highly suitable material for food storage due to its non-toxic properties, excellent heat conductivity, and resistance to corrosion.
Q:What are the different methods of surface coating for aluminum sheets?
There are various methods of surface coating available for aluminum sheets, each offering unique benefits and applications. Some of the most commonly used methods include: 1. Anodizing: This process involves creating a protective oxide layer on the surface of the aluminum by immersing it in an electrolytic solution. Anodizing provides enhanced corrosion resistance, improved durability, and can also be used to achieve decorative finishes. 2. Powder coating: Powder coating involves applying a dry powder onto the surface of the aluminum and then curing it through a heating process. This method provides a durable and attractive finish, with excellent resistance to abrasion, chemicals, and UV rays. 3. Painting: Aluminum sheets can be coated with conventional liquid paints to achieve various colors and finishes. This method allows for customization and offers good corrosion protection, but may not be as durable as other methods. 4. Cladding: Cladding involves bonding a protective layer, such as stainless steel or other metals, onto the surface of the aluminum sheet. This method provides superior protection against corrosion, impact, and extreme weather conditions. 5. Laminating: Laminating involves applying a thin layer of protective material, such as PVC or PET film, onto the surface of the aluminum sheet. This method enhances the sheet's resistance to scratching, staining, and fading, making it suitable for applications requiring long-term durability. 6. Chemical conversion coating: This method involves treating the aluminum surface with a chemical solution to create a thin, protective layer. Chromate conversion coating, for example, enhances corrosion resistance and improves paint adhesion. 7. Electrophoretic deposition (EPD): EPD involves immersing the aluminum sheet in a water-based paint solution and applying an electric current to deposit the paint particles onto the surface. This method provides uniform coating thickness and excellent corrosion resistance. Each of these surface coating methods offers specific advantages and is suited for different applications. Choosing the appropriate method depends on the desired properties, aesthetics, and the intended use of the aluminum sheets.
Q:What is the density of aluminum plate?
The density of aluminum plate is: 2.7 * 10^3Aluminium plate is usually divided according to the following two kinds:1., according to the alloy composition is divided into:High pure aluminium plate (rolled by high purity aluminium with more than 99.9 content)Pure aluminium plate (basically rolled from pure aluminium)Aluminum alloy (composed by aluminum and alloy auxiliary usually aluminum copper, aluminum manganese, silicon aluminum, aluminum and magnesium, etc.)Composite aluminum brazing sheet (or special purpose aluminum material composite material through a variety of means)Aluminum aluminum (aluminum coated outside the thin aluminum sheet used for special purposes)
Q:Are aluminum sheets suitable for wastewater treatment applications?
Indeed, aluminum sheets prove to be suitable for wastewater treatment applications. With its versatility, aluminum presents several advantages when utilized in wastewater treatment processes. Firstly, aluminum sheets exhibit a high resistance to corrosion, a crucial feature given the harsh and corrosive environment of wastewater treatment plants. This resistance ensures that the aluminum sheets remain intact and unaffected by the chemicals present in the wastewater, thereby preserving their structural integrity. Moreover, aluminum sheets possess exceptional thermal conductivity properties, enabling efficient heat transfer in processes such as wastewater disinfection. This thermal conductivity facilitates the effective elimination of harmful bacteria and contaminants from the wastewater, thereby enhancing the overall treatment process. Furthermore, aluminum sheets are not only lightweight but also durable, making them easy to handle and install in wastewater treatment systems. This characteristic also contributes to their cost-effectiveness, as they require less maintenance and are less susceptible to damage compared to alternative materials. Additionally, aluminum is a sustainable material that can be recycled, thus reducing the environmental impact of wastewater treatment applications. Recycling aluminum sheets aids in the conservation of natural resources and minimizes energy consumption, making it an environmentally friendly choice. In conclusion, aluminum sheets offer a multitude of advantages for wastewater treatment applications. Their corrosion resistance, thermal conductivity, lightweight nature, and recyclability render them a suitable and efficient material for use in wastewater treatment processes.
Q:How do aluminum sheets perform in extreme temperatures?
Aluminum sheets are known for their excellent performance in extreme temperatures. Aluminum has a high melting point, around 660 degrees Celsius, which makes it capable of withstanding high temperatures without deforming or melting. In extreme heat, aluminum sheets have a low thermal expansion rate, meaning they will not expand or contract significantly, ensuring dimensional stability. This makes them ideal for applications in industries such as aerospace, automotive, and construction, where extreme temperatures are common. Similarly, in extremely cold temperatures, aluminum sheets retain their strength and durability, unlike some other metals that become brittle and prone to cracking. Additionally, aluminum has excellent thermal conductivity, allowing it to distribute heat evenly, which is beneficial in applications where heat dissipation is crucial. Overall, aluminum sheets perform exceptionally well in extreme temperatures, making them a reliable choice for various industries.

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