• 5052 Aluminium Coils System 1
  • 5052 Aluminium Coils System 2
  • 5052 Aluminium Coils System 3
5052 Aluminium Coils

5052 Aluminium Coils

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Loading Port:
China Main Port
Payment Terms:
TT or L/C
Min Order Qty:
3 Tons m.t.
Supply Capability:
10000 Tons Per Month m.t./month

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1. Specifications of 5052 Aluminium Coils

Alloy

AA5052

Temper:

H12, H14, H16, H18, H22, H24, H26, H32,HO, F

Thickness:

0.10-500mm

Width:

10mm- 2200mm

Standard:

GB/T3880-2006, ASTM, ISO, EU standard

Special Specification is available on customer’s requirement

 5052 Aluminium Coils-1

2. Applications of 5052 Aluminium Coils

5052 Aluminium Coils have good shaping property, high corrosion resistance, weldability and fatigue strength, medium static strength. They are widely used to make airplane oil tank, oil pipe, metal sheet and instrument for vehicle and vessel, street lamp post and riveted wire.

3. Package & Delivery of 5052 Aluminium Coils

Seaworthy package, water-proof paper wrapped inside, carton wrapped outside in wooden pallets by 20FCL or 40GP.

 5052 Aluminium Coils-2

4. Production Flow of 5052 Aluminium Coils

The main producingprocedure includes the following steps:

Rolling--Annealing--Slitting--Sawing, Cut-To-Length, Shearing

 

Q:Can aluminum sheets be used for insulation jackets?
Indeed, insulation jackets can indeed employ aluminum sheets. Aluminum possesses exceptional thermal conductivity characteristics, enabling it to proficiently deflect heat and hinder the transmission of thermal energy. Consequently, it becomes the perfect substance for insulation jackets, as it aids in preserving temperature regulation and reducing heat loss or gain. Furthermore, aluminum sheets are lightweight, long-lasting, and impervious to corrosion, rendering them a pragmatic option for insulation applications.
Q:I am doing some exam review and do not know how to do these...Calculate the number of Nitrate ions in 3.99 g or aluminum nitrate.
OK - first you need the ENTIRE mass of the aluminum nitrate (gram formula mass). You need the correct formula for aluminum nitrate, then add up the atomic masses from the periodic chart. Then, you need to convert 3.99 g of aluminum nitrate to moles of aluminum nitrate. (grams/formula mass = moles) Then, you need to take into account how many moles of nitrate ions are in a mole (look at the correct formula for aluminum nitrate). Then multiply by the number of moles you calculated (moles of ions per molecule x #moles). This would be moles of ions. You need individual ions you would the multiply by 6.02 x 10^23 ions/mole. SO: grams of sample divided by formula mass x #nitrate ions per molecule x (6.023 x 10^23 ions per mole) = # ions
Q:What are the different types of surface treatments available for marine-grade aluminum sheets?
There are several different types of surface treatments available for marine-grade aluminum sheets, each offering unique benefits and characteristics suited for various applications. 1. Anodizing: This process involves creating a protective oxide layer on the surface of the aluminum sheet through electrolysis. Anodized aluminum sheets offer excellent corrosion resistance, improved durability, and can be colored or dyed to enhance aesthetics. 2. Powder Coating: Powder coating involves applying a dry powder onto the aluminum sheet, which is then cured through heat to create a tough and durable coating. Powder-coated aluminum sheets provide excellent resistance to corrosion, abrasion, and fading, while also offering a wide range of color options. 3. Polishing: Polishing removes any imperfections on the surface of the aluminum sheet, resulting in a smooth and shiny finish. This surface treatment is often used for decorative purposes, enhancing the visual appeal of marine-grade aluminum sheets. 4. Brushing: Brushing involves creating a textured surface on the aluminum sheet using abrasive pads or brushes. This treatment is commonly used to hide scratches or imperfections and can provide a unique aesthetic appearance. 5. Chemical Conversion Coating: This treatment involves applying a chemical solution onto the aluminum sheet, which reacts with the surface to form a protective coating. Chemical conversion coatings enhance the corrosion resistance of the aluminum and can also serve as a base for further surface treatments, such as painting. 6. Clear Coating: Clear coating involves applying a transparent protective layer onto the aluminum sheet. This treatment helps to prevent corrosion and oxidation, while also maintaining the natural appearance of the aluminum surface. It is important to consider the specific requirements and intended use of the marine-grade aluminum sheets when choosing a surface treatment. Each type of treatment offers different characteristics in terms of corrosion resistance, durability, aesthetics, and cost, allowing for customization based on the specific needs of the application.
Q:What is the tensile strength of 101 aluminum sheets?
The tensile strength of 101 aluminum sheets varies depending on the thickness and manufacturing process, but it typically ranges from 20,000 to 30,000 pounds per square inch (PSI).
Q:Can 101 aluminum sheets be painted or coated?
Certainly! Aluminum sheets offer the possibility of being painted or coated. This adaptable material lends itself to receiving a range of finishes, including paint or protective coating, which can both elevate its visual appeal and safeguard it against corrosion. Whether it pertains to 101 aluminum sheets or any other aluminum variant, diverse techniques like spray painting, powder coating, or anodizing can be employed to paint or coat them. The selection of the appropriate paint or coating shall be contingent upon the desired aesthetics, performance criteria, and the precise utilization of the aluminum sheets.
Q:Are 101 aluminum sheets suitable for chemical processing equipment?
101 aluminum sheets are not suitable for chemical processing equipment. While aluminum is a versatile and widely used material, it is not recommended for applications involving strong acids or bases. Aluminum is susceptible to corrosion when exposed to certain chemicals, and this can compromise the integrity of the equipment and potentially lead to leaks or other safety hazards. For chemical processing equipment, it is advisable to choose materials that are specifically designed and manufactured to withstand the corrosive effects of the chemicals being used.
Q:The corrosion of the aluminum sheet that I request is friction during operation, not the surface of the container after the passivation of the surface of the container containing sulfuric acid. I'd like to use the evaporating plate, the evaporator fin and so on for the cooling in the quick freezing equipment. The ice of ice making machine is attached to the aluminum plate after anodic oxidation or passivation. When it is peeled off, it will cause friction to the surface of the aluminum plate and block the passivation layer, which will make the aluminum plate easier to corrode.
Directly on the surface coating H2SO4Because the AL and H2SO4 react to produce a dense oxide film that prevents corrosion again, the barrel containing sulfuric acid can be made from AL
Q:Can aluminum sheets be used for heat sinks in LED lighting?
Indeed, heat sinks in LED lighting can utilize aluminum sheets. Aluminum possesses remarkable heat conductivity, which renders it a perfect substance for dispersing the heat emitted by LED lights. By employing aluminum sheets as heat sinks, the heat generated by the LED chips is effectively transferred away, thereby averting overheating and extending the lifespan of the LED lighting system. Furthermore, aluminum's lightweight nature, resistance to corrosion, and affordability further contribute to its widespread adoption as a heat sink material in LED lighting.
Q:Can aluminum sheets be used in construction?
Construction can indeed utilize aluminum sheets. Aluminum, a versatile and lightweight material, possesses numerous advantageous properties for construction purposes. Its corrosion resistance allows for both indoor and outdoor applications. Moreover, aluminum sheets exhibit a high strength-to-weight ratio, granting them durability and strength while remaining relatively lightweight. This characteristic proves advantageous in construction projects where weight is a consideration. Furthermore, aluminum is non-toxic and highly recyclable, making it an environmentally conscious option. When combined with its aesthetic appeal and ease of fabrication, aluminum sheets become a favored choice for a variety of construction applications such as roofing, cladding, wall panels, window frames, and more.
Q:What are the different methods of surface laminating aluminum sheets?
There are several methods of surface laminating aluminum sheets, each offering unique benefits and suitable for different applications. Some of the most common methods include: 1. Adhesive bonding: This involves applying an adhesive layer between the aluminum sheet and the desired surface material. The adhesive is typically cured through heat or pressure, forming a strong bond. This method is versatile and can be used with various surface materials like wood, plastic, or glass. 2. Roll bonding: Also known as cladding or cold roll bonding, this method involves sandwiching the aluminum sheet between two other metal sheets and applying high pressure to create a solid bond. Roll bonding is commonly used in the production of composite materials, such as aluminum-clad steel sheets. 3. Thermal spraying: This process involves melting or heating aluminum powder and spraying it onto the sheet surface using a thermal spray gun. The molten aluminum solidifies upon contact, forming a durable coating. Thermal spraying is often used for corrosion protection or as a base layer for subsequent surface treatments. 4. Powder coating: In this method, a dry powder paint is applied to the surface of the aluminum sheet electrostatically. The sheet is then heated, causing the powder to melt and form a smooth, protective coating. Powder coating provides excellent durability, resistance to impact, and a wide range of color options. 5. Anodizing: Anodization is an electrochemical process that enhances the natural oxide layer on the surface of aluminum sheets. By immersing the sheet in an electrolytic bath and applying an electric current, a controlled oxide layer is formed, providing corrosion resistance, improved adhesion for paint or adhesive, and aesthetic finishes. 6. Lamination with protective films: A protective film can be applied to the surface of the aluminum sheet to protect it during transportation, handling, or processing. These films are typically made of plastic and offer temporary protection against scratches, abrasions, and dirt. These are just a few of the many methods available for surface laminating aluminum sheets. The choice of method depends on factors such as the desired properties, intended use, and the specific requirements of the application.
We are a well-known enterprise specializing in the production and sales of aluminum sheets and coils. Since the establishment of us, we have been devoted to setting up a good CIS and completely implementing ISO9001 quality management system.

1. Manufacturer Overview

Location Henan,China
Year Established 2002
Annual Output Value Above US$200 Million
Main Markets Mid East;Eastern Europe;North America
Company Certifications ISO 9001:2000;ISO 14001:2004;OHSAS 18001

2. Manufacturer Certificates

a) Certification Name  
Range  
Reference  
Validity Period  

3. Manufacturer Capability

a)Trade Capacity  
Nearest Port Shanghai
Export Percentage 30%-50%
No.of Employees in Trade Department 21-50 People
Language Spoken: English;Chinese
b)Factory Information  
Factory Size: Above 100,000 square meters
No. of Production Lines Above 10
Contract Manufacturing OEM Service Offered;Design Service Offered
Product Price Range Average

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