• Aluminum Sheet 5052 for Building Construction System 1
  • Aluminum Sheet 5052 for Building Construction System 2
  • Aluminum Sheet 5052 for Building Construction System 3
Aluminum Sheet 5052 for Building Construction

Aluminum Sheet 5052 for Building Construction

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
5 m.t.
Supply Capability:
9000 m.t./month

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Item specifice

Grade:
1000 Series,3000 Series,4000 Series,5000 Series,6000 Series,7000 Series,2000 Series
Surface Treatment:
Coated,Embossed,Anodized,Polished,Mill Finish,Color Coated,Oxidized,Enameled Wire,Brushed,Printed,Composited,Holographic Impression,Sand Blasted,Powder Coating
Shape:
Angle,Square,T-Profile,Round,Flat,Rectangular,Oval,Hexagonal
Temper:
T3-T8,O-H112,T351-T651,T351-T851,Soft,Half Hard,Hard
Application:
Liner & Wad,Decorations,Door & Window,Heat Sink,Transportation Tools,Glass Wall,Food,Kitchen Use,Pharmaceutical,Seal & Closure,Insulation Material,Label & Tag

Product Description

5052 Aluminum sheet for building, construction, electronic

We supply a range of aluminum grades and temper with customized sizes.

1xxx:  1050 1060 1100 1200 1070 1235

2xxx:  2024

3xxx: 3003 3004 3005 3105

5xxx: 5005 5052 5454 5754 5456 5083 5182 5086 5251

6xxx: 6061 6063

7xxx: 7075

8xxx:  8011

Thickness: 0.2-300mm

Width: 200-2600mm

Surface: Mill finish, Anodized,Polished,Brushed

Coating: PVC/PE coated

Application:  construction, decoration, automobile, electronic, machinery,   boat

Standard: ASTM B209


Aluminum Sheet 5052 for Building Construction Electronic

 

Aplications

 

Building, Auto parts, Machinery,Roofing, Boat, Marine Service, Aircraft, Furniture, Ai rconditioning, Road signs, Containers etc.

 

Aluminum Sheet 5052 for Building Construction Electronic

 

Our Services

1. Customized sizes 

2. Manufactuering price

3.Large stocks

4.Fast delivery

5.Quick reply within 12 hours

6.Samples for free

7. Mill Test Certificate provided before shipment. 


Aluminum Sheet 5052 for Building Construction Electronic


Q:Are the aluminum sheets suitable for manufacturing automotive chassis?
Yes, aluminum sheets are suitable for manufacturing automotive chassis. Aluminum is a lightweight and strong material, making it an ideal choice for constructing automotive chassis. It offers several advantages such as improved fuel efficiency, better handling, and increased structural rigidity. Aluminum's ability to absorb and dissipate impact energy also enhances passenger safety. Additionally, aluminum is corrosion-resistant, which helps prolong the lifespan of the chassis. Overall, using aluminum sheets in the manufacturing process of automotive chassis provides numerous benefits and is a suitable choice for this application.
Q:How does the reflective film stick to the aluminum plate?
Put the plate clean, dry, reflective film a head from the aluminum back 2CM at the beginning attached to the aluminum plate, wrapping, pull to the front, back and side brush paper hanging tear reflective film side with the hanging brush to the aluminum paste, try to avoid bubbles.
Q:How do you prevent warping of aluminum sheets during machining?
There are several measures that can be taken to prevent warping of aluminum sheets during machining: 1. Proper material selection is crucial in minimizing warping. Opt for aluminum alloys with lower levels of thermal expansion, like 6061 or 7075, as they are less prone to warping. 2. It is recommended to stabilize the material before machining by annealing or stress-relieving the aluminum sheets. This process reduces internal stresses and decreases the likelihood of warping. 3. Ensure the use of appropriate cutting tools. Opt for tools with sharp edges and proper geometry to minimize heat generation and facilitate efficient chip removal. Carbide or diamond-coated tools are often preferred for their high heat resistance when machining aluminum. 4. Minimize heat generation during machining, as excessive heat can cause warping. Implement the use of coolant or lubricants to reduce friction and dissipate heat. Continuous cooling helps maintain a stable temperature and prevents warping. 5. Properly control cutting parameters such as cutting speed, feed rate, and depth of cut to prevent warping. High cutting speeds or excessive material removal rates generate excessive heat, which leads to warping. Experimentation and experience should determine the optimal parameters. 6. Use appropriate fixturing during machining to minimize the chances of warping. Securely clamp the aluminum sheets using suitable fixtures or jigs to maintain stability and prevent movement. 7. Consider employing machining techniques like climb milling or ramping, which reduce vibrations and ensure a smoother cutting process, thereby reducing the risk of warping. 8. After machining, it is advisable to stress-relieve the aluminum sheets again. This step further reduces any residual stress that may have developed during the machining process. By adhering to these steps, the chances of warping during the machining of aluminum sheets can be significantly reduced, resulting in high-quality finished products.
Q:Are aluminum sheets suitable for electronic components?
Yes, aluminum sheets are suitable for electronic components. Aluminum is a lightweight and durable metal that has excellent electrical conductivity. It is commonly used in the construction of electronic housings, heat sinks, and circuit boards. Aluminum sheets can be easily machined, formed, and welded, making them versatile for various electronic applications. Additionally, aluminum has good thermal conductivity, allowing it to dissipate heat effectively, which is crucial for preventing overheating in electronic devices.
Q:What are the different methods of surface finishing for aluminum sheet?
There are several different methods of surface finishing for aluminum sheets, each with its own unique characteristics and advantages. Some of the most common methods include anodizing, painting, powder coating, polishing, and brushing. Anodizing is a widely used method that involves creating a protective oxide layer on the surface of the aluminum. This process not only enhances the appearance of the sheet but also improves its corrosion resistance and durability. Anodized aluminum sheets are often available in a variety of colors and finishes, making them suitable for a range of applications. Painting is another common method, where a layer of paint is applied to the aluminum sheet to provide a decorative and protective coating. This method allows for a wide range of colors and finishes, enabling customization and versatility in design. Additionally, painting can also help enhance the sheet's resistance to weathering and scratching. Powder coating is a technique that involves applying a dry, powdered coating to the aluminum sheet. The coated sheet is then heated, causing the powder to melt and form a durable and uniform layer. Powder coating offers an excellent level of protection against corrosion, chemicals, and UV rays, making it ideal for applications that require high durability and weather resistance. Polishing is a surface finishing method that involves using abrasive materials to create a smooth and shiny surface on the aluminum sheet. This technique is often used to enhance the aesthetic appeal of the sheet by removing any imperfections or scratches. Polished aluminum sheets are commonly used in decorative applications where a reflective and lustrous surface is desired. Brushing is a process that creates a textured surface on the aluminum sheet by using abrasive brushes or pads. This method produces parallel lines or patterns on the sheet, giving it a distinctive and attractive appearance. Brushed aluminum sheets are commonly used in architectural and interior design applications, as well as in the manufacturing of household appliances and automotive components. In conclusion, the different methods of surface finishing for aluminum sheets offer a range of options to enhance their appearance, durability, and functionality. Whether it be anodizing, painting, powder coating, polishing, or brushing, each method provides unique benefits that can be tailored to specific applications and design requirements.
Q:I have a specific design I'd like to cut out of thin sheet metal (aluminum or tin) and I'm wondering how to make it more sturdy. The sheet metal is a bit flimsy. Can I strengthen it by heating it up (butane torch) and cooling it quickly?
This Site Might Help You. RE: Can you temper aluminum or tin? I have a specific design I'd like to cut out of thin sheet metal (aluminum or tin) and I'm wondering how to make it more sturdy. The sheet metal is a bit flimsy. Can I strengthen it by heating it up (butane torch) and cooling it quickly?
Q:How do aluminum sheets perform in terms of wear resistance?
Aluminum sheets have good wear resistance due to their natural ability to form a protective oxide layer on their surface. This oxide layer helps to prevent corrosion and wear, making aluminum sheets suitable for various applications requiring durability and resistance to wear.
Q:I'm making a project for class and I bought a 10 Inch long 5mm thick aluminum/metal, How do you cut it WITHOUT large machinery? is there any power tools adapters or tools that can do this job without a problem?Here is what I have to do:*Cut the metal into ~1x1 and 2X2inch squares*Somehow shave a circle about 2mm deep without going trough the 5mm aluminum (Shaded gray)*Drill a hole right through the 5mm (right in the center)*Drill screw holes on each cornerI provided a really basic pic of what I'm trying to dohttp://img204.imageshack.us/img204/487/77845398.pngRED=backgroundGRAY=drilled 2mm deep WITHOUT GOING THROUGHRED HOLES=screw holes with threadsPlz help need to finish this by friday!PS: Screw holes, and other sizes don't matter right now I'm just trying to figure out what tools/tool adapters I need thanks!
A rotary tool may do the trick. You would have to have a steady hand and also be able to hold the aluminum securely in place.
Q:Are aluminum sheets suitable for signage applications?
Indeed, signage applications can benefit from the use of aluminum sheets. Due to its lightweight nature and durability, aluminum proves to be an ideal material for outdoor signs that must endure diverse weather conditions. Its resistance to rust and corrosion guarantees the sign's longevity. Moreover, aluminum sheets can be effortlessly customized and shaped into various sizes, enabling the creation of versatile and imaginative signage options. Furthermore, aluminum serves as an exceptional material for digital printing, producing top-notch graphics and images. All in all, aluminum sheets present remarkable durability, versatility, and aesthetic allure, cementing their status as a favored choice for signage applications.
Q:How does the alloy composition affect the mechanical properties of aluminum sheet?
The alloy composition of aluminum sheet plays a significant role in determining its mechanical properties. The inclusion of different elements in the alloy can influence its strength, hardness, ductility, and other characteristics. For instance, adding small amounts of copper or manganese can enhance the strength of aluminum, while magnesium can improve its corrosion resistance. Additionally, the size and distribution of alloying elements within the sheet can also impact its mechanical properties. Therefore, careful selection of alloy composition is crucial to achieve the desired mechanical performance of aluminum sheet.

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