• Prepainted aluminum coil with PVC Film AA3105/3003 System 1
  • Prepainted aluminum coil with PVC Film AA3105/3003 System 2
Prepainted aluminum coil with PVC Film AA3105/3003

Prepainted aluminum coil with PVC Film AA3105/3003

Ref Price:
$2,600.00 / m.t. get latest price
Loading Port:
Shanghai
Payment Terms:
TT or LC
Min Order Qty:
5 m.t.
Supply Capability:
100000 m.t./month

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1.Structure of Prepainted aluminum coil with PVC Film AA3105/3003

Prepainted aluminum coil with PVC Film AA3105/3003 is designed for aluminum composite panel ACP . Prepainted aluminum coil with PVC Film AA3105/3003 is hard and everlasting under the blazing sun. You can choose the alloys as your habitation and we will do our best to meet your requests.

2.Main Features of the Prepainted aluminum coil with PVC Film AA3105/3003

• Smooth surface

• High manufacturing accuracy

• High strength of extension and yield

• High color accuracy

• Well packaged

3. Prepainted aluminum coil with PVC Film AA3105/3003

Prepainted aluminum coil with PVC Film AA3105/3003

 

 Prepainted aluminum coil with PVC Film AA3105/3003

 

 

4.Prepainted aluminum coil with PVC Film AA3105/3003

       

 Prepainted aluminum coil with PVC Film AA3105/3003

                    

5.FAQ

We have organized several common questions for our clients,may help you sincerely:

① How about your company

A world class manufacturer & supplier of aluminum coil and alloy blanks. Aluminum production base is comprised of 18 aluminum annealers, 10 coil and foil mills, 4 continuous production lines, 2 hot rolling production line and 3 prepainted lines.

Export  5000 tons per month to Asia, America and Middle East. Always do the best for our clients.

②Can you guarantee the quality of the products?

We are responsible for the quality of materials to get a long-term cooperation with clients in a reasonable period of time and we are glad to arrange and coordinate any third party inspection for you.

③What is the delivery time after purchase?

35 day after receiving client’s deposit or correct LC

 


Q: This question is asking about the potential negative effects or hazards associated with the use of aluminum coils.
<p>The use of aluminum coils can pose certain risks and dangers, primarily due to their high thermal conductivity and reactivity. When used in cooking or heating applications, aluminum coils can cause uneven heat distribution, which may lead to burning or melting of food. Additionally, aluminum can react with acidic or alkaline foods, potentially leaching aluminum into the food and causing health concerns such as neurological disorders and bone diseases. Moreover, aluminum coils can corrode over time, especially when exposed to moisture or certain chemicals, which can weaken their structure and pose a risk of breakage or injury. It's important to use aluminum coils appropriately and to monitor their condition regularly to minimize these risks.</p>
Q: The export aluminum volume is CIF. If there is no insurance policy, how will the customs premium be collected?
The customs will not charge your premium the premium you can write but if you are a refund if there will be some impact because of the tax rebate minus the freight and insurance premium so you consider the premium but you can write less Never mind if you need shipping or shipping insurance declaration business can contact me oh
Q: How are aluminum coils used in the packaging industry?
Aluminum coils play a vital role in the packaging industry due to their excellent properties and versatility. These coils are used extensively in the packaging industry to create a wide variety of packaging materials. One of the primary uses of aluminum coils in the packaging industry is in the production of aluminum foil. Aluminum foil is a thin sheet of aluminum that is used for various packaging applications. It is flexible, lightweight, and has excellent barrier properties, making it ideal for preserving the freshness, taste, and quality of food products. Aluminum foil is commonly used for wrapping food items such as sandwiches, snacks, and leftovers. It is also used for packaging pharmaceutical products, cosmetics, and other consumer goods. Furthermore, aluminum coils are used to create aluminum cans, which are widely used for packaging beverages, such as soda, beer, and energy drinks. Aluminum cans are lightweight, durable, and provide excellent protection against light, oxygen, and moisture. They also have a longer shelf life compared to other packaging materials, ensuring the preservation of the product's taste and quality. In addition to aluminum foil and cans, aluminum coils are used in the production of blister packs, which are commonly used in the pharmaceutical industry. Blister packs consist of a plastic sheet with individual compartments that hold medications or capsules. The aluminum coil is laminated onto the plastic sheet, providing a barrier against light, moisture, and oxygen, ensuring the stability and integrity of the medications. Moreover, aluminum coils are utilized in the production of flexible packaging materials, such as pouches, sachets, and bags. These packaging materials are widely used for various products, including snacks, pet food, coffee, and personal care items. Aluminum coils are laminated onto plastic films to create a barrier against moisture, oxygen, and light, thereby extending the shelf life of the packaged products. Overall, aluminum coils are indispensable in the packaging industry, offering an array of benefits such as lightweight, durability, barrier properties, and versatility. From aluminum foil to cans, blister packs to flexible packaging materials, these coils are vital in preserving the freshness, taste, and quality of various products.
Q: How are aluminum coils tested for thickness and flatness?
Aluminum coils are tested for thickness and flatness using various methods to ensure they meet the required specifications. One common method is the non-destructive eddy current testing, which involves passing an alternating current through a coil and measuring the changes in the magnetic field caused by eddy currents induced in the aluminum. These changes can be used to determine the thickness of the coil. In addition to eddy current testing, ultrasonic testing is also employed to measure the thickness of aluminum coils. Ultrasonic waves are sent through the coil, and the time it takes for the waves to bounce back is measured to determine the thickness. This method is highly accurate and can identify any variations in thickness across the entire coil. To assess the flatness of aluminum coils, a straight edge or a laser beam is often used. The coil is placed on a flat surface, and the straight edge or laser beam is placed across the surface of the coil. Any deviations from a perfectly flat surface can be easily identified by observing the gaps or irregularities between the coil and the straight edge or laser beam. In some cases, advanced technologies like laser profilometry can be used to create a three-dimensional map of the surface of the coil, allowing for a comprehensive analysis of its flatness. This method provides highly detailed information about any variations in flatness across the coil's surface. Overall, aluminum coils undergo rigorous testing procedures to ensure their thickness and flatness meet the required standards. These tests are vital in maintaining the quality and reliability of aluminum coils, especially in applications where precision and consistency are of utmost importance.
Q: i have some questions about aluminum can recycling??:how much can you get from doing that??where can i take them in indianapolis, in???and what else could i recycle??its good for the earth and i need some money!! :) :D thanks!!! :)
They are worth about $0.01 per can. You can take them to any scrap metal yard.
Q: I live around Minneapolis, MN. Is there a place that you can recycle crushed aluminum cans for money around here?
there are lots of benefits you must google it
Q: if air goes throught a lot of tiny aluminum will cause cooling? Why am i asking this because when you see inside the computer desktop has heatsink fan, and some of the heatsink are made by aluminum.
Sorry, but copper is just the opposite of aluminum. It soaks up heat like a sponge and doesn't dissipate it quickly. Try heating a piece of copper tubing and see how long it takes before you can touch it.
Q: What is the typical yield strength-to-density ratio for aluminum coils?
The typical yield strength-to-density ratio for aluminum coils can vary depending on the specific grade of aluminum being used. However, in general, aluminum has a relatively high strength-to-density ratio compared to many other metals. This means that it can provide good mechanical properties while still being lightweight. For example, the most commonly used grade of aluminum for coils, 3003 aluminum, typically has a yield strength-to-density ratio of around 0.53 MPa•m^3/kg. This means that for every unit of density (mass per unit volume), the material can withstand approximately 0.53 megapascals (MPa) of stress before it starts to deform permanently. Other high-strength aluminum alloys, such as 5052 or 6061, can have even higher yield strength-to-density ratios, reaching up to 0.6 MPa•m^3/kg or more. These alloys are often used in applications where higher strength and durability are required, such as in aerospace or automotive industries. Overall, the yield strength-to-density ratio of aluminum coils is typically quite favorable, making aluminum a popular choice for a wide range of applications that require both strength and lightweight properties.
Q: Are aluminum coils compatible with other materials?
Yes, aluminum coils are compatible with various materials, including steel, copper, and other non-ferrous metals. They can be used in conjunction with different materials to enhance their performance and provide various industrial applications.
Q: Hi i need to know what will happen to the impact strength of aluminum 2024 reinforced with Silicon carbide is treated to cryogenic temperature (nearly -200C). Will impact strength increase or decrease. Also will the impact strength vary with respect to the percentage of Silicon carbide.
Aluminum 2024 doesn't have a transition temperature, it absorbs about 18n-m impact strength (via charpy tests I ran three weeks ago at my College course). This was constant between -150?C to +150°C (liquid nitrogen to a furnace). This excerpt from wiki: Cutting tools In 1982 at the Oak Ridge National Laboratories, George Wei, Terry Tiegs, and Paul Becher discovered a composite of aluminium oxide and silicon carbide whiskers. This material proved to be exceptionally strong. Development of this laboratory-produced composite to a commercial product took only three years. In 1985, the first commercial cutting tools made from this alumina and silicon carbide whisker-reinforced composite were introduced by the Advanced Composite Materials Corporation (ACMC) and Greenleaf Corporation. Leads me to believe it depends on how you mix the material in would make a difference. Silicon Carbide and aluminum make very strong tools, but would make it more brittle. The ceramic in a metallic crystal lattice (metal is a crystalline structure) would allow more voids to coalesce leading to a brittle fracture, but the initial strength would be improved because of substitution dislocations in the crystal structure (it would be more rigid, stronger, but more prone to sudden failure). Silicon carbide has low thermal expansion coefficient compared to aluminum also so when it gets really cold the aluminum would contract around the particles increasing the strength, but again, reducing ductility and causing fractures to occur more rapidly. Anyways, very interesting, you should do a bit of research on your own after this as I gave you some good places to work from (and I'm sure plenty of words to look up ;D )

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