• Aluminium Plain Sheet/Coil 3003 3105 5052 System 1
  • Aluminium Plain Sheet/Coil 3003 3105 5052 System 2
Aluminium Plain Sheet/Coil 3003 3105 5052

Aluminium Plain Sheet/Coil 3003 3105 5052

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
5 m.t
Supply Capability:
5000 m.t/month

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1.Tolerance: thickness tolerance +/-1.5%, width tolerance +/-1mm

 

2.Application and Usage:

Building Material , Insulation, Shoes &Tents Eyes,Corner Beads,Automotive Industrial, POP Can Bottle and Cap,Deep-Proceeding Case,light industry, TV back board,Street Sign, PP caps, Cell mask and so on.

 

3.Surfact Quality :

 Be free from Oil Stain, Dent, Inclusion, Scratches, Stain, Oxide Dicoloration, Breaks, Corrosion, Roll Marks, Dirt Streaks and other defect which will interfere with use,

 

4.Mechenical Property:

Chemical Composite and Mechanical Property could meet the requirements of GB/T, ASTM, ENAW, JIS Standard

 

5.Packing:First, plastic cloth with drying agent inside; Second, Pearl Wool ; Third, wooden cases with dry agent , fumigation wooden pallets, aluminum surface could cover blue PVC film

 

6.Certificate:  ISO9001:2008, SGS and ROHS(if client request, paid by client), MTC(plant provided), Certificate of Origin(FORM A, FORM E, CO),  Bureau Veritas and SGS (if client request, paid by client), CIQS certificate

 

7.Month Capacity: 5000MT/Month

 

8.Trade Terms: EXW,FOB,CIF,CNF

 

9.Payment: T/T or L/C at sight

  

 Aluminium Plain Sheet/Coil 3003 3105 5052Aluminium Plain Sheet/Coil 3003 3105 5052

 

Q:Can aluminum sheets be used for boat hulls?
Yes, aluminum sheets can be used for boat hulls. Aluminum is a popular material for boat construction due to its lightweight, durability, and resistance to corrosion. It is commonly used in both commercial and recreational boats, providing strength and stability to the hull.
Q:What are the different methods of bending aluminum sheets?
There are several methods of bending aluminum sheets, including air bending, press brake bending, roll bending, and stretch forming.
Q:How do aluminum sheets perform in terms of impact resistance?
Aluminum sheets are renowned for their exceptional ability to withstand impacts. Their high strength-to-weight ratio ensures that they can endure significant forces without deformation or breakage, making them an optimal choice for industries like construction, automotive, and aerospace that require protection against impacts. The remarkable impact resistance of aluminum can be attributed to its inherent toughness. It possesses the capability to absorb and distribute energy from impacts, allowing it to withstand sudden forces and shocks. Moreover, aluminum's capacity to elastically deform enables it to absorb energy through bending and flexing, thereby minimizing the impact's impact on the material. Moreover, the impact resistance of aluminum sheets can be further enhanced through various techniques, including alloying and heat treatment. By alloying aluminum with elements like copper, manganese, or magnesium, its strength and impact resistance can be improved, resulting in a more robust alloy. Additionally, heat treatment processes like tempering or annealing can refine the microstructure of aluminum, thus enhancing its mechanical properties and impact resistance. In conclusion, aluminum sheets possess exceptional impact resistance due to their high strength-to-weight ratio, inherent toughness, and elastic deformability. Through advancements in alloying and heat treatment techniques, the impact resistance of aluminum sheets can be further enhanced to meet the specific requirements of diverse industries.
Q:Are aluminum sheets resistant to chemicals?
Yes, aluminum sheets are generally resistant to many chemicals. Aluminum has a natural oxide layer on its surface that provides a protective barrier against corrosion and chemical reactions. This oxide layer is stable and resists most acids, alkalis, and organic solvents. However, aluminum can be corroded by certain chemicals, such as strong acids or bases, and some halogenated compounds. Additionally, prolonged exposure to certain chemicals or extreme conditions may weaken the oxide layer and make aluminum more susceptible to corrosion. Therefore, while aluminum sheets are generally resistant to chemicals, it is important to consider the specific chemical environment and potential interactions before using aluminum in certain applications.
Q:What are the common applications of aluminum sheets?
Aluminum sheets find widespread use in various industries, offering a multitude of applications. Within the construction industry, they are highly utilized for roofing, siding, and facades due to their lightweight nature, resistance to corrosion, and durability. The transportation industry also heavily relies on aluminum sheets, particularly for the production of vehicles and aircraft. Their exceptional strength-to-weight ratio makes them perfect for constructing car bodies, truck beds, and airplane components. Moreover, aluminum sheets play a significant role in the packaging industry, where they are employed in the creation of cans, foils, and closures. The remarkable thermal and electrical conductivity of aluminum also positions it as a popular choice for heat sinks, electrical enclosures, and electronic parts. Additionally, the marine industry benefits from the use of aluminum sheets in boat building, while appliances like refrigerators and cookware also incorporate aluminum in their manufacturing process. Ultimately, the versatility and advantageous properties of aluminum sheets establish their indispensability across various sectors.
Q:Can aluminum sheets be coated with protective films?
Yes, aluminum sheets can be coated with protective films. These films are typically made of materials such as polyethylene or polypropylene and are designed to provide a barrier against scratches, abrasions, and other forms of damage. The protective film is applied to the surface of the aluminum sheet, creating a layer that shields it from potential harm during handling, transportation, or processing. This coating process helps to maintain the integrity and appearance of the aluminum sheet, ensuring that it remains in excellent condition until it is ready for use.
Q:Are aluminum sheets suitable for storage tanks?
Yes, aluminum sheets can be suitable for storage tanks depending on the specific requirements and purpose of the tank. Aluminum is a lightweight and corrosion-resistant material, making it an excellent choice for various storage applications. It offers good structural integrity and durability, with the ability to withstand harsh environments and weather conditions. Additionally, aluminum has a high strength-to-weight ratio, which means it can handle heavy loads while remaining relatively lightweight. However, it is important to consider the contents of the storage tank and consult with experts to ensure that aluminum is the appropriate material choice for the specific storage requirements.
Q:For my chem class that I just barely started taking, we're making bohr models. Even though my teacher explained it, I still dont get the concept of it all, like how the protons are lined up in their inner circle and the outer circles. I get everythign else about atoms except how they're actually made up lol. Maybe someone on here can explain it to me? I hope so because i have to make a model for it for friday.The element I'm asigned is aluminum btwYour help is greatly appreciated!
This Site Might Help You. RE: Bohr Model?! Aluminum? For my chem class that I just barely started taking, we're making bohr models. Even though my teacher explained it, I still dont get the concept of it all, like how the protons are lined up in their inner circle and the outer circles. I get everythign else about atoms except how they're...
Q:Can the aluminum sheets be used for manufacturing kitchen countertops?
Yes, aluminum sheets can be used for manufacturing kitchen countertops.
Q:How do you prevent distortion of aluminum sheets during welding?
To prevent distortion during the welding of aluminum sheets, there are several important steps that can be taken: 1. It is crucial to properly prepare the joint by cleaning and beveling the edges of the aluminum sheets. This will ensure a better fit-up and reduce the likelihood of distortion. 2. The use of appropriate fixtures and clamps to hold the aluminum sheets in place during welding can help distribute the heat evenly and prevent movement or buckling. This will minimize the risk of distortion caused by thermal expansion. 3. Tack welding can be done at regular intervals along the joint before performing a full weld. This temporarily secures the sheets and allows for controlled cooling, reducing distortion. 4. Following a proper welding sequence is also beneficial. Starting from the center and gradually moving towards the edges, alternating between sides, helps balance the heat input and allows for cooling between welds, minimizing distortion. 5. Preheating the material before welding can help reduce the temperature gradient and minimize distortion for thicker aluminum sheets. Post-weld heat treatment can also be applied to relieve residual stresses and promote dimensional stability. 6. Employing appropriate welding techniques, such as lowering the heat input and using a slower travel speed, can help minimize distortion. Using a smaller weld bead size and avoiding excessive weaving also control the heat input and reduce distortion. 7. It is crucial to ensure that the welding parameters, such as voltage, current, and wire feed speed, are correctly set and maintained. Using the appropriate parameters for the specific aluminum alloy being welded will result in a more controlled heat input, reducing distortion. By implementing these preventive measures, the risk of distortion during aluminum sheet welding can be significantly reduced, leading to improved weld quality and dimensional stability.

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