• Color Aluminum Sheets with Better Stocks Price in Warehouse System 1
  • Color Aluminum Sheets with Better Stocks Price in Warehouse System 2
  • Color Aluminum Sheets with Better Stocks Price in Warehouse System 3
Color Aluminum Sheets with Better Stocks Price in Warehouse

Color Aluminum Sheets with Better Stocks Price in Warehouse

Ref Price:
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Loading Port:
Qingdao
Payment Terms:
TT OR LC
Min Order Qty:
4 m.t
Supply Capability:
200 m.t/month

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Specification

Grade:
1000 Series,5000 Series,6000 Series,2000 Series
Surface Treatment:
Oxidized,Holographic Impression
Shape:
Angle,Square,Rectangular,Oval
Temper:
T3-T8,O-H112,Half Hard,Hard
Application:
Insulation Material
Technique:
Extruded

1.Structure of Product Description

aluminum sheet is widely used in the field of construction field and decoration field, etc.

There are many different grades, such as: 1000 series, 2000 series, 3000 series, 5000 series, 6000series, etc. The detailed grade are as follows: 1010, 1050,1060,1100, 2024, 3003, 3005, 3105, etc.

The temper is include H14, H22, H24, H44,H112,H114,etc.

2. Main features of the product

a.Competitive price

c. Shortest service.

3. Image.

Aluminium Plate And Sheet With Better Stocks Price In Warehouse


4. Product detailed sizes:

1000mm*2000mm,1500mm*3000mm,at random sizes,etc.

5. FAQ:

What is the quality standard?

---Usually our standard is GB3880-2006 or others.

What is the width range?

---It is from 100mm to 6000mm, etc.

What is the MOQ for your products yet?

---Normally it is around 15 tons/each size.

How many tons did you export in one year

USA,USA,CANADA,BANGLADESH,FIJI,ENGLISH, SINGAPORE, ETC.

What is your mainly products?

---Normally they are aluminum sheet,mirror finish aluminium sheet, aluminum casting coil, etc.

 

 

 

 

 

Q: Are the aluminum sheets suitable for manufacturing automotive parts?
Yes, aluminum sheets are suitable for manufacturing automotive parts. Aluminum is a lightweight and durable material that offers several advantages for automotive applications. It has a high strength-to-weight ratio, which makes it ideal for use in manufacturing parts that require strength without adding excessive weight to the vehicle. Aluminum sheets are commonly used in the production of automotive body panels, such as hoods, doors, and fenders. Their malleability allows for easy shaping and forming, enabling manufacturers to create complex designs and intricate details. Additionally, aluminum is highly corrosion-resistant, ensuring that the automotive parts made from it will have a longer lifespan and require less maintenance. Furthermore, aluminum's excellent thermal conductivity makes it suitable for components that require heat dissipation, such as radiators and heat exchangers. Its ability to conduct electricity also makes it useful for manufacturing electrical components in vehicles. Overall, the use of aluminum sheets in automotive manufacturing offers numerous benefits. Their lightweight nature helps improve fuel efficiency, while their strength and durability ensure the structural integrity of the vehicle. Additionally, aluminum's corrosion resistance and thermal conductivity make it a reliable choice for various automotive parts.
Q: im about to get a grinder online, and i dont know if i should get an aluminum one, or a non aluminum one. cuz i dont know what non aluminum grinders are made out of. thanks
they can be made outta plastic or wood, prboably something else..but i can't thnk of it. ive had a plastic 1 and it still worked great..even though it was the ch eapest grinder in the store. so..personal preference really. gl
Q: Okay, so i swallowed some aluminum foil like the size of a quarter from my fruit rollup wrapper, ha don't ask why? but my stomach KINDA hurts right now...like 2 minutes later.. Could this have done any damage to me.?
lol... You should be fine. But it may hurt a little coming out the other end? I don't know. One thing I do know: I swallowed a penny when I was a child and never had any trouble.
Q: Is it possible to utilize aluminum sheets for crafting distinctive architectural structures?
<p>Yes, aluminum sheets can be used to create unique architectural designs. Known for their strength, durability, and lightweight properties, aluminum sheets are ideal for various architectural applications. They can be easily shaped and cut to fit specific design requirements, offering flexibility in design and construction. Additionally, aluminum's resistance to corrosion and weathering makes it a sustainable choice for long-lasting structures. Architects often use aluminum for facades, roofing, and other exterior elements due to its modern aesthetic and low maintenance needs.</p>
Q: Explain the similarities and differences in the properties of aluminum metal, Al(s) and aluminum oxide (a salt) Al203(s) in terms of the particles and forces present.. thanks doods!
Aluminum metal is not found in nature, only aluminum oxide is in the mine or ground and they have to separate it from the oxidation to make a useful metal.
Q: What are the standards and certifications available for aluminum sheets?
There are several standards and certifications available for aluminum sheets, including the American Society for Testing and Materials (ASTM) standards, the Aluminum Association standards, and the ISO 9001 certification. These standards and certifications ensure the quality, durability, and performance of aluminum sheets, and help customers make informed decisions while selecting the appropriate product for their specific applications.
Q: What are the different types of patterns available for textured aluminum sheets?
There are several different types of patterns available for textured aluminum sheets, each offering a unique visual appeal and functionality. Some of the most common patterns include: 1. Diamond pattern: Also known as tread plate or checker plate, the diamond pattern features small raised diamonds on the surface of the sheet. This pattern offers excellent slip resistance, making it ideal for applications where traction is important, such as ramps, stairs, or industrial flooring. 2. Stucco pattern: The stucco pattern resembles a textured wall or ceiling finish, with raised ridges that create a rough and bumpy surface. This pattern is often used for decorative purposes, adding depth and visual interest to architectural elements like walls, ceilings, or furniture. 3. Hammered pattern: As the name suggests, the hammered pattern mimics the look of a surface that has been hammered by hand, creating a dimpled and uneven texture. This pattern is commonly used in architectural applications, such as wall panels, backsplashes, or decorative accents, to add a rustic and artistic touch. 4. Brushed pattern: The brushed pattern features long, uniform lines that are created by brushing the surface of the aluminum sheet with a wire brush. This pattern offers a sleek and modern appearance, making it popular for applications like kitchen appliances, signage, or interior design elements. 5. Perforated pattern: Unlike the previous patterns, the perforated pattern involves creating small holes across the surface of the aluminum sheet. This pattern is often used in applications that require ventilation, sound absorption, or decorative effects. It can be found in areas such as speaker grills, filters, or façades. These are just a few examples of the different types of patterns available for textured aluminum sheets. The choice of pattern will depend on the specific requirements of the project, including aesthetics, functionality, and durability.
Q: What are the common thicknesses of aluminum sheets used in aerospace applications?
In aerospace applications, aluminum sheets are commonly used due to their lightweight and high strength properties. The thickness of aluminum sheets used in aerospace applications can vary depending on the specific requirements of the component or structure being fabricated. Commonly used thicknesses for aluminum sheets in aerospace applications range from 0.016 inches (0.4 mm) to 0.25 inches (6.35 mm). These thicknesses are selected based on factors such as the desired strength-to-weight ratio, structural integrity, and the specific application or component being manufactured. Thinner aluminum sheets, such as those with a thickness of 0.016 to 0.040 inches, are often used for lightweight structures, interior components, and non-critical parts. These thinner sheets provide the necessary strength while minimizing weight. For more structural components, thicker aluminum sheets are employed. Thicknesses between 0.040 and 0.125 inches are commonly used for structural elements like floor panels, bulkheads, and wing ribs. These sheets offer increased strength and rigidity for supporting the aircraft's weight and managing the stresses experienced during flight. In certain cases, even thicker aluminum sheets may be used, ranging from 0.125 to 0.25 inches, for heavy-duty structural components or areas where additional strength is required. These thicker sheets are utilized in critical parts such as landing gear components, wing spars, and engine mounts to ensure the necessary structural integrity and load-bearing capability. It is important to note that these are general ranges, and the specific thickness requirements may vary depending on the aircraft type, design specifications, and the particular application within the aerospace industry.
Q: i know the 4100 is aluminum........im wondering if this one is also..
Yes, the whole thing is aluminum
Q: What are the different methods of surface passivation for aluminum sheets?
There are several different methods of surface passivation for aluminum sheets, each with its own advantages and applications. Some of the commonly used methods include anodizing, chromate conversion coating, and organic coating. 1. Anodizing: Anodizing is a widely used method that involves creating a thick protective oxide layer on the surface of the aluminum sheet. This is achieved by immersing the sheet in an electrolyte solution and passing a current through it. Anodizing provides excellent corrosion resistance, improves the surface hardness, and allows for various color options through dyeing. It is commonly used in architectural and decorative applications. 2. Chromate conversion coating: Chromate conversion coating, also known as chemical conversion coating or chromating, involves treating the aluminum surface with a solution containing chromate compounds. This method provides a thin, protective layer that improves corrosion resistance and enhances paint adhesion. It is widely used in aerospace, automotive, and electronics industries. 3. Organic coating: Organic coating refers to the application of a protective layer of organic material, such as paint or powder coating, onto the aluminum surface. This method provides exceptional corrosion resistance and can also offer aesthetic options. Organic coating is commonly used in industries where the aluminum sheets are exposed to harsh environments or require specific colors or finishes. 4. Plasma electrolytic oxidation (PEO): PEO is a relatively newer method that involves immersing the aluminum sheet in an electrolyte solution and passing high-voltage current through it. This process leads to the formation of a ceramic-like oxide layer on the surface, which enhances corrosion resistance, hardness, and wear resistance. PEO is commonly used in applications requiring high-performance coatings, such as aerospace and automotive industries. 5. Passivation with acids or chemicals: Passivation using acids or chemicals involves treating the aluminum surface with a solution that removes impurities and forms a protective layer. This method helps in reducing the reactivity of the surface and enhances corrosion resistance. It is commonly used in industrial applications where aluminum sheets are exposed to harsh chemicals or environments. Overall, the choice of surface passivation method for aluminum sheets depends on the specific requirements of the application, such as corrosion resistance, aesthetics, hardness, and environmental factors. It is important to consider factors such as cost, durability, and the desired performance characteristics when selecting the appropriate method.

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