• Colored Aluminum Sheets Minnesota - PVDF Coated Aluminum Coils for Outer Decoration System 1
  • Colored Aluminum Sheets Minnesota - PVDF Coated Aluminum Coils for Outer Decoration System 2
  • Colored Aluminum Sheets Minnesota - PVDF Coated Aluminum Coils for Outer Decoration System 3
Colored Aluminum Sheets Minnesota - PVDF Coated Aluminum Coils for Outer Decoration

Colored Aluminum Sheets Minnesota - PVDF Coated Aluminum Coils for Outer Decoration

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
5 m.t.
Supply Capability:
20000 m.t./month

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Specification

Grade:
1000 Series
Surface Treatment:
Coated
Shape:
Flat
Temper:
O-H112
Application:
Decorations

1.Structure of PVDF Coated Aluminium Coils for Outer Decoration

PVDF  Coated aluminium coils for Outer Decoration are widly used in decoration field. For the painting, it depends on the using evironment.  If you use in the open air, we recommend the PVDF coated aluminium coils. This kind of painting can last 15-20 years.  If you use in the room, we recommend PE coated aluminium coils. The price is much more competitive.


2. Main features of PVDF Coated Aluminium Coils for Outer Decoration

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

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PVDF Coated Aluminium Coils for Outer Decoration

PVDF Coated Aluminium Coils for Outer Decoration



4. Product Specification

AlloyTemperCoating ThicknessThicknessWidth
AA1100H1420-25 MICRONS0.2MM-2MM1000MM-1500MM


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: (1) Aluminum is malleable. (2) Aluminum reacts with sulfuric acid.(3) Aluminum conducts an electric current.(4)Aluminum has a density of 2.698 g/cm3 at STP.Explain why.
The answer is choice 2. Why? It's the only one that describes a chemical interaction. The other three describe physical properties of aluminum, that is properties that do not involve a change in the chemical identity of aluminum metal. In choices 1, 3, and 4, the aluminum metal remains as aluminum metal. However, in choice 2, the metal reacts and becomes aluminum ion.
Q: This question asks for a list of various coatings that can be applied to aluminum sheets for different purposes.
<p>Aluminum sheets can be coated with a variety of materials to enhance their properties such as durability, appearance, and corrosion resistance. Some common types of coatings include: 1. Anodizing: Creates a protective oxide layer on the aluminum surface. 2. Powder Coating: A dry coating that is electrostatically applied and then cured at high temperatures. 3. PVDF (Polyvinylidene Fluoride) Coating: Known for its excellent resistance to UV, chemicals, and weathering. 4. Epoxy Coating: Provides a hard, durable finish that is resistant to chemicals and corrosion. 5. Polyester Coating: Offers good adhesion and is often used for outdoor applications. 6. Fluorocarbon Coating: Provides a high level of durability and resistance to weathering. 7. Ceramic Coating: A newer type of coating that offers excellent heat resistance and a smooth finish. These coatings are chosen based on the specific requirements of the application, such as architectural, automotive, or aerospace uses.</p>
Q: What are the different methods of surface patterning aluminum sheets?
There are several methods available for surface patterning aluminum sheets, each with its own advantages and applications. Some of the commonly used methods include: 1. Mechanical Etching: This method involves the use of abrasive materials, such as sandpaper or wire brushes, to create patterns on the surface of the aluminum sheet. By applying varying pressure and movement, desired patterns can be achieved. Mechanical etching is a cost-effective and versatile method, suitable for creating simple to complex patterns. 2. Chemical Etching: Also known as chemical milling, this method uses chemicals to selectively remove material from the aluminum surface, creating patterns. The aluminum sheet is coated with a resist and then immersed in an etchant solution that dissolves the exposed areas, leaving behind the desired pattern. Chemical etching allows for precise and intricate designs but requires careful control of the etching process. 3. Laser Engraving: This method utilizes a high-power laser beam to remove material from the aluminum surface and create patterns. The laser beam is controlled by computer software, allowing for precise and detailed designs. Laser engraving is suitable for both small and large-scale production and offers high accuracy and repeatability. 4. Embossing: In this method, the aluminum sheet is pressed between two dies that have raised patterns, creating a three-dimensional design on the surface. Embossing can be done through mechanical or hydraulic presses and is commonly used to add texture and aesthetic appeal to aluminum sheets, such as for decorative purposes or branding. 5. Printing: Various printing techniques can be used to apply patterns onto aluminum sheets. These include screen printing, where ink is forced through a mesh screen onto the aluminum surface, and digital printing, which uses inkjet technology for high-resolution patterns. Printing methods allow for a wide range of colors and designs, making them suitable for decorative applications. The choice of surface patterning method depends on factors such as the desired pattern complexity, production volume, cost considerations, and the intended end-use of the aluminum sheets. Each method offers unique advantages and limitations, and manufacturers can select the most appropriate technique based on their specific requirements.
Q: Can the aluminum sheets be used for manufacturing automotive radiators?
Yes, aluminum sheets can be used for manufacturing automotive radiators. Aluminum is preferred in radiator manufacturing due to its excellent heat transfer properties, lightweight nature, and corrosion resistance.
Q: The radius of an atom of aluminum is 143pm and there are 10^12 in a meter. The aluminum is a 3x3cm square. The density is 2.70 g/cm^3. I found the mass to be 0.03g. I found the volume to be 0.09cm^3
Good quality standard aluminum foil such as Reynolds brand is 0.007 inches thick. If aluminum atoms are indeed 143 picometers in radius then the foil would be 2,486,713 atoms thick. Of course, the thickness is not controlled to a tolerance of one atom. (Cheaper brands are about 0.0060 to 0.0065 inches thick.) The ionic radius of aluminum is commonly accepted to be 72 pm, and as of 2008 a covalent radius of 121 pm. . .
Q: How does aluminum sheet compare to other metals in terms of weight?
Aluminum sheet is exceptionally lightweight compared to most other metals. It has a lower density, making it a popular choice for applications where weight reduction is a priority.
Q: Can aluminum sheets be used for roofing?
Indeed, roofing can be done using aluminum sheets. The preference for aluminum in roofing material selection is attributed to its sturdy composition, low weight, and resistance to rusting. Aluminum roofing sheets have gained recognition for their impressive lifespan, capable of enduring for many years without requiring replacement. Furthermore, aluminum possesses exceptional reflective capabilities, aiding in reducing energy expenses by maintaining a cooler temperature within the structure in hot weather. Furthermore, aluminum is effortless to install, rendering it an appealing option for roofing ventures. In summary, aluminum sheets are a dependable and pragmatic alternative for roofing purposes.
Q: What is the maximum temperature aluminum sheets can withstand?
The maximum temperature that aluminum sheets can withstand depends on several factors, including the alloy composition and thickness of the sheet, as well as the specific application and environment in which it is being used. Generally, pure aluminum has a melting point of around 660 degrees Celsius (1220 degrees Fahrenheit), but it begins to lose strength and stiffness at much lower temperatures. Most commercial aluminum alloys have higher melting points and can withstand higher temperatures. For example, 6061 aluminum alloy has a melting point of around 580 degrees Celsius (1076 degrees Fahrenheit), while 7075 aluminum alloy has a slightly higher melting point of around 640 degrees Celsius (1184 degrees Fahrenheit). However, it is important to note that the maximum temperature a sheet of aluminum can withstand without significant deformation or structural damage may be lower than its melting point. This is because aluminum's strength and mechanical properties degrade at elevated temperatures. In applications where aluminum sheets are subjected to high temperatures, it is crucial to consider the specific alloy and its thermal properties, as well as any potential changes in strength, hardness, or other relevant characteristics that may occur at elevated temperatures. Consulting material specifications, engineering guidelines, or seeking professional advice from metallurgical experts can provide more accurate and specific information regarding the maximum temperature capabilities of aluminum sheets for a particular application.
Q: Are aluminum sheets suitable for decorative screens?
Yes, aluminum sheets are suitable for decorative screens. They are lightweight, durable, and can be easily customized into various shapes and designs. Additionally, aluminum's corrosion resistance makes it suitable for both indoor and outdoor applications, making it a popular choice for decorative screens.
Q: Can aluminum sheets be etched or engraved?
Yes, aluminum sheets can be etched or engraved.

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