• Coated Aluminium Coil-AA1050 System 1
Coated Aluminium Coil-AA1050

Coated Aluminium Coil-AA1050

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1.General Information of Color Coated Aluminium Coil with Competitive Prices

Aluminum coil is between 0.1 mm and 500mm in thickness and has a wide variety of uses in the construction industry including aluminium siding and roofing. Sheet is also used widely in construction, decoration, transport applications and other various industrial filed, such as automobile body panels, airframes, curtain walls and the hulls of boats etc.

Alloy

AA1050,AA1060, AA1070, AA1100, AA3003, AA3004, AA3005, AA3105, AA5005, AA5052, AA5754, AA5083, AA8011

Temper:

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

Thickness:

0.10-4.0mm

Width:

10mm- 2000mm

Coating

PE(Polyester)

Painting Thickness

Standard 16-25 microns, max 40 microns

Color

Acording to Ral colors or customer’s samples

Standard:

GB/T17748-1999, ASTM, ISO, EU standard

Special Specification is available on customer’s requirement

PE(polyester) Coating

PE(polyester) coating:high molecular polymer as monomer and addition of alkyd, is an UV-resistant coating. It can be classified matt and glossy according to coating gloss. The compact molecule structure, makes paint surface luster and smooth,which assure good printing on the panel surface. With an warranty of 8-10 years for weather resistance, it is specially applied for internal decoration and sign board.

2 Usage/Applications of PE Coated Aluminum Coil/Sheet

Our company's PE Coated Aluminum Coil/Sheet have been widely used in the fields of construction and decoration(garage doors, ceiling etc.), electronic appliances, lighting decoration, air-condition air pipe, sanwich panels and drainage, etc.


Q:What are the different wall thickness options for aluminum pipes?
The wall thickness options for aluminum pipes can vary depending on the specific application and industry requirements. Generally, aluminum pipes are available in a range of wall thicknesses to accommodate different needs. The most common options for wall thicknesses in aluminum pipes include standard, schedule, and nominal sizes. Standard wall thicknesses are typically used in industrial applications where strength and durability are important. These pipes are manufactured with specific dimensions to meet industry standards and are often used in structural applications, such as construction or engineering projects. Schedule wall thicknesses, on the other hand, are primarily used in pressure applications, such as plumbing or fluid transfer systems. These pipes are designed to handle different levels of pressure and are identified by a schedule number, ranging from Schedule 5 to Schedule 160. Each schedule number corresponds to a specific wall thickness, with higher numbers indicating thicker walls capable of withstanding higher pressures. Nominal wall thicknesses refer to a range of wall thicknesses that fall within a certain tolerance level. These pipes are often used in general-purpose applications or where precise dimensions are not critical. The nominal size is a rounded value that corresponds to the approximate inside diameter of the pipe, while the wall thickness can vary within a certain range. It is important to note that the specific wall thickness options for aluminum pipes may vary depending on the manufacturer, industry standards, or custom requirements. Therefore, it is essential to consult the relevant specifications or consult with a supplier to determine the available options for a particular application.
Q:Why aluminum tubes can not be used as lightning rod materials?
It is not impossible, but uneconomical. The main reason is that the cost of aluminum pipe is higher than that of iron pipe.
Q:Why is copper pipe used instead of copper aluminum composite tube or aluminium pipe?
In the indoor and outdoor machine connecting pipe parts, according to the material with copper tube, aluminum tube, aluminum alloy pipe and so on.
Q:How do aluminum pipes handle water hammer effects?
Aluminum pipes have good resistance to water hammer effects. Water hammer occurs when there is a sudden change in the flow of water, causing a pressure surge that can lead to pipe damage or failure. Aluminum pipes are lightweight and flexible, which allows them to absorb and dampen the pressure surges caused by water hammer more effectively than rigid materials. The inherent elasticity of aluminum helps to reduce the impact of the sudden pressure changes and minimize the risk of pipe rupture. Additionally, aluminum pipes have a smooth interior surface, which promotes laminar flow and minimizes turbulence. This smooth flow reduces the chances of water hammer occurrence in the first place. Moreover, aluminum pipes have excellent corrosion resistance, including resistance to rust and scale buildup. Corrosion can contribute to water hammer effects by narrowing the pipe's interior diameter and causing flow disruptions. By resisting corrosion, aluminum pipes maintain their structural integrity and help to prevent water hammer from occurring. Overall, aluminum pipes are well-suited to handle water hammer effects due to their lightweight, flexible nature, smooth interior surface, and corrosion resistance. However, it is important to properly design and install the pipe system, including the use of appropriate valves and supports, to further mitigate the potential for water hammer damage.
Q:How do you usually process hollow aluminum tubes? I want to make aluminum tubes myself
What material to see? There are many kinds of aluminumAskI used it for unpowered delta wings. What type of aluminum is light, strong and cheap?. Domestic materialChasing the answerZL204
Q:Do I need special work permit for cutting aluminum tubes?
A special job job scope: 1, electrical operation 2, metal welding cutting operation 3, lifting machinery (including elevator), operating 4 motor vehicles in 5, driving high erection and high-altitude hanging industry 6, refrigeration task 7, boiler operation (including water quality test) 8, pressure vessel operation 9, blasting operations 10, mine operations (including gas inspection) 11.
Q:There's a small hole in the aluminum tube on the air conditioner. Can I use it?
Now the general air conditioner uses the copper tube to walk the refrigerant, you say the aluminum pipe does not know what position.
Q:aluminum tubes or iron pipes?Just bought oushennasi 62L small refrigerator (only a small box, frozen) to test what tube, took the magnet to the test, dry filter is iron, copper capillary, will also test where,Another: if it is iron, what does it matter?
Generally speaking, the refrigerator pipeline system is divided into high pressure section and low pressure section,From the compressor outlet to dry filter high pressure section, a condenser, a dew proof tube, filter composed of high pressure pipe, the high pressure section is from capillary tube; to press the return pipe low pressure, low pressure with capillary, evaporator, an air return pipe, capillary and return tube are used for copper pipe, evaporator aluminum and iron, but the economic crisis since the price of copper fell, some manufacturers in order to improve product quality and increase the selling point, but also the use of copper tube evaporator, refrigeration evaporator mounted in the installed freezer, said separating rack, plastic drawer on the shelf, you can try to remove Pakistan drawer, copper general refrigeration evaporator buried device in a cabinet, we cannot see.
Q:Is the air conditioner aluminum tube or copper tube?
Copper tubes, of course, will last long and will not corrode.
Q:Ask for advice,According to the type of aluminum alloy, Al-Si, Al-Mg, Al-Mg-Si, Al-Mn, Al-Cu, Al-Zn-Mg (T0-T8 heat treatment); if the steel type crystal like austenite, ferrite, Aluminum Alloy have similar crystal like heat treatment, whether similar to the regulation, for advice! Thank you
There is no phase change in the process of heating aluminum alloy, so there is no corresponding hard treatment by heat treatment. However, some aluminum parts which are extruded by cold can be softened by heat, but the softening process is more to eliminate the stress without phase change.

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