• APV 25 Aluminum Coil 1100 1200 O H14 H24 Mill Finish System 1
  • APV 25 Aluminum Coil 1100 1200 O H14 H24 Mill Finish System 2
APV 25 Aluminum Coil 1100 1200 O H14 H24 Mill Finish

APV 25 Aluminum Coil 1100 1200 O H14 H24 Mill Finish

Ref Price:
get latest price
Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
5 m.t.
Supply Capability:
6000 m.t./month

Add to My Favorites

Follow us:


OKorder Service Pledge

Quality Product, Order Online Tracking, Timely Delivery

OKorder Financial Service

Credit Rating, Credit Services, Credit Purchasing

Specification

Grade:
1000 Series,5000 Series,6000 Series,3000 Series
Surface Treatment:
Embossed,Anodized,Mill Finish,Color Coated,Enameled Wire
Shape:
Round,Flat
Temper:
O-H112,Half Hard,Hard
Application:
Decorations,Transportation Tools,Kitchen Use
Technique:
DC/CC
Thickness:
0.05-4.0mm
Width:
900--1500mm
Net Weight (kg):
2.5 ton
Packaging:
Wooden pallets
Application:
Contrustion
Surface Treatment:
Mill finished
Width:
1000/1220
Alloy:
1060/1050/3003/6061

1100 1200 O H14 H24 Mill Finish Aluminium Coil   


1050 1060 1070 1100 1235representative series aluminum plate is also known as pure aluminum, in the series in 1xxx series belongs to all the alumina quantity of a maximum number of series. Purity can achieve 99.00% above


3xxx series aluminum represents 3003 3004,3005, 3 A21 primarily. And can be called in the 3xxx series aluminum antirust aluminum production process more outstanding. The 3xxx series aluminum plate is by manganese as the main component. Content at 1.0-1.5 between. Is a rust-proof function better series. Conventional application in the air conditioning, the refrigerator, such as car in damp environment.


6xxx series represents 6061 mainly contain magnesium and silicon of two elements, so focused on the 4000 series and the advantages of the 5000 series 6061 is a cold treatment aluminum forging products, apply to fight against corrosion, oxidizing demanding applications.


Description


item

1050 1060 1100 3003 Aluminum coil

Standard

GB/T3190-2008,GB/T3880-2006,ASTM B209,JIS H4000-2006,etc

Material

1060,1050,1100

3003,3103,3004,3005,3105

5052, 5454,5754

Size

Thickness

0.5mm-3.5mm

Width

800-1500mm

Weight/Roll

About 1.5MT/3MT

Quality control

Mill Test Certificate is supplied with shipment, Third Part Inspection is acceptable.

Surface

Bright, polished, hair line, brush, checkered, embossed, etc

Trade terms

Price term

,FOB, CNF, CIF, etc

Payment Term

TT,L/C

MOQ

2MT

20 GP Capacity

About 20-25MT

Delivery time

1.The products will delivery immediately after receiving the payment.

2.According to the order quantity, prompt delivery.

Export to

Ireland,Singapore,Indonesia,Ukraine,Spain,Canada,USA,Brazil,Thailand,Korea,Iran,India,Egypt,Kuwait,

Oman,Viet Nam, South Africa, Dubai, Russia, etc

Package

Stick blue film→plastic film→waterproof paper→1~2 tons on a export standard pallet(corner protection)

Application

1)Further making utensil.2)Solar reflective film3)The appearance of the building4)Interior decorating:ceilings,walls,etc.5)Furniture cabinets6)Elevator decoraction7)Signs,nameplate,bags making.8)Decoration inside and outside the car9)Household appliances:refrigerators,microwave ovens,audio equipment,etc.10)The consumer electronics:mobile phones,digital cameras,MP3,etc.



1100 1200 O H14 H24 Mill Finish Aluminium Coil

1100 1200 O H14 H24 Mill Finish Aluminium Coil

1100 1200 O H14 H24 Mill Finish Aluminium Coil

1100 1200 O H14 H24 Mill Finish Aluminium Coil

1100 1200 O H14 H24 Mill Finish Aluminium Coil



Q: What are aluminum coils used for?
Aluminum coils are commonly used in various industries, such as construction, automotive, and HVAC, for their excellent thermal conductivity and corrosion resistance properties. They are primarily used for manufacturing heat exchangers, air conditioning systems, refrigeration units, and other heat transfer applications.
Q: What is the typical tensile strength of aluminum coils?
The specific grade and temper of aluminum being used can cause variations in the typical tensile strength of aluminum coils. In general, the tensile strength of aluminum coils falls between 30,000 and 75,000 pounds per square inch (psi). Nevertheless, it is worth mentioning that the intended application and the specific alloy being used can influence whether this range is narrower or wider. Moreover, the thickness and width of the coil may also have an impact on the tensile strength.
Q: What are the factors that affect the cost of aluminum coils?
There are several factors that can affect the cost of aluminum coils. 1. Raw material costs: The cost of aluminum, which is the primary material used in manufacturing coils, can fluctuate based on global supply and demand as well as market conditions. Changes in the price of aluminum can have a direct impact on the cost of aluminum coils. 2. Manufacturing process: The production process involved in making aluminum coils can also impact their cost. Various techniques such as casting, rolling, and annealing are used, and each method has its own associated costs. The complexity and efficiency of the manufacturing process can influence the final price of the coils. 3. Size and specifications: The size, thickness, and specifications of the aluminum coils can affect their cost. Larger coils or coils with specific dimensions may require additional raw materials, processing time, or specialized equipment, which can contribute to higher costs. 4. Surface finish: The type of surface finish applied to the aluminum coils can also impact their cost. Coils with a higher-quality finish, such as brushed or coated surfaces, may be more expensive due to the additional processing and materials required. 5. Quantity and order volume: The volume of aluminum coils ordered can often impact the cost. Larger order quantities may lead to economies of scale, resulting in lower unit costs. Conversely, smaller orders or customized specifications may incur additional setup costs or higher per-unit prices. 6. Market competition: The level of competition in the aluminum coil industry can affect pricing. If there are numerous manufacturers offering similar products, prices may be more competitive as companies strive to attract customers. On the other hand, if there are limited suppliers or unique product offerings, prices may be higher due to reduced competition. 7. Transportation and logistics: The cost of transporting aluminum coils can also influence their overall price. Factors such as distance, mode of transportation, and fuel prices can impact shipping costs, which in turn can be passed on to customers. It is important to note that these factors are not exhaustive and can vary depending on the specific circumstances and market dynamics. Additionally, other external factors such as taxes, tariffs, and government regulations can also affect the cost of aluminum coils.
Q: How are aluminum coils protected against galvanic corrosion?
To protect aluminum coils from galvanic corrosion, a combination of surface treatments and protective coatings is employed. An effective method involves applying anodization, which entails treating the aluminum with an acid solution through electrolysis. This process forms a protective oxide layer on the surface, acting as a barrier against direct contact with other metals that could cause galvanic corrosion. Alternatively, a protective coating such as a polymer or paint can be used on the aluminum coils. These coatings create a physical barrier, shielding the metal from corrosive elements in the environment. Careful consideration is given to selecting coatings that adhere well to the aluminum surface and exhibit excellent resistance to corrosion. Aside from surface treatments and coatings, proper design and material selection are crucial in safeguarding aluminum coils against galvanic corrosion. Avoiding direct contact between dissimilar metals and opting for compatible materials helps minimize the risk of corrosion. Isolation materials, such as gaskets or insulating tapes, can be utilized to separate the aluminum coil from other metals in contact. Regular maintenance and cleaning also contribute to protection against galvanic corrosion. It is essential to regularly remove accumulated dirt, debris, and corrosive substances from the aluminum coils to prevent the formation of localized corrosion cells. In conclusion, a combination of surface treatments, protective coatings, proper design, and regular maintenance is vital in preserving the longevity and performance of aluminum coils in various applications.
Q: The choice between Vinyl and Aluminum? By Mastercraft Exteriors
Vinyl. Aluminum dents, and the paint can be scratched off. Vinyl pops back, and the color goes all the way through.
Q: Is it possible to use aluminum coil for creating a sculpture?
<p>Yes, you can use aluminum coil to make a sculpture. Aluminum is a versatile material known for its strength, lightweight, and malleability, which makes it suitable for sculpting. It can be bent, twisted, and shaped into various forms. When working with aluminum coil, you can use tools like pliers, wire cutters, and a metal bender to manipulate the coil into the desired sculpture shape. Ensure you take safety precautions, such as wearing gloves and eye protection, due to the sharp edges and the risk of injury from handling metal.</p>
Q: What are the different coil slitting methods for aluminum coils?
There are various coil slitting methods employed for aluminum coils, each with its own advantages and suitability for different applications. Some of the common coil slitting methods for aluminum coils include: 1. Rotary Shear Slitting: This method involves the use of a rotating knife or shear blade to cut the aluminum coil into narrow strips. Rotary shear slitting is suitable for high-speed production lines and offers excellent accuracy and clean edges. 2. Looping Slit: In this method, the aluminum coil is looped and fed through a set of rotating circular blades. The blades cut the coil into desired widths, ensuring precise cuts. Looping slit is commonly used for thin aluminum coils and offers good accuracy and productivity. 3. Double Knife Slitting: Also known as duplex slitting, this method involves the use of two circular knives positioned on top and bottom of the aluminum coil. The knives move in opposite directions, cutting the coil into multiple strips simultaneously. Double knife slitting is suitable for high-volume production and provides excellent accuracy and efficiency. 4. Razor Slitting: This method utilizes razor-sharp blades mounted on a rotating shaft to cut the aluminum coil. Razor slitting is particularly suitable for thinner gauge coils and provides clean, burr-free edges. 5. Crush Slitting: Crush slitting involves compressing the aluminum coil between two rotating rolls with sharp edges. The pressure exerted by the rolls cuts the coil into desired widths. Crush slitting is commonly used for thicker gauge coils and offers good productivity and edge quality. 6. Laser Slitting: Laser slitting employs a high-powered laser beam to cut the aluminum coil. This method offers exceptional precision and accuracy, making it ideal for intricate and complex cutting requirements. The choice of coil slitting method depends on various factors such as coil thickness, desired strip widths, production volume, and edge quality requirements. Each method has its own advantages and limitations, so it is essential to evaluate these factors to select the most appropriate coil slitting method for a specific application.
Q: Can aluminum coils be used in food processing applications?
Yes, aluminum coils can be used in food processing applications. Aluminum is a highly versatile and commonly used material in the food industry because of its numerous benefits. Aluminum coils are lightweight, durable, and have excellent thermal conductivity, making them ideal for applications that require even and efficient heat transfer. In food processing, aluminum coils are often used in equipment such as heat exchangers, evaporators, and refrigeration units. They are used to cool, heat, or maintain the temperature of various food products during processing, storage, or transportation. The excellent thermal conductivity of aluminum ensures that heat is evenly distributed, helping to preserve the quality and taste of the food. Additionally, aluminum is a non-toxic and non-reactive metal, which means it does not affect the flavor or composition of the food being processed. It also has a natural resistance to corrosion, ensuring that the coils do not contaminate the food and are easy to clean and maintain. Furthermore, aluminum is a sustainable and recyclable material, aligning with the growing demand for environmentally friendly practices in the food industry. Its lightweight nature also contributes to energy efficiency and reduced transportation costs. Overall, aluminum coils are a safe, efficient, and reliable choice for food processing applications, meeting the stringent requirements of the industry while maintaining the quality and safety of the processed food.
Q: This question asks if aluminum coils are suitable for use in cold weather conditions.
<p>Yes, aluminum coils can be used in cold climates. Aluminum is a highly durable material that retains its strength and conductivity even in low temperatures. It does not rust or corrode, making it ideal for outdoor applications in cold weather. However, it's important to ensure that the aluminum coils are properly insulated and protected from extreme temperature fluctuations to prevent any potential damage. Additionally, the design and installation should consider the specific environmental conditions to maximize efficiency and longevity.</p>
Q: I am writing a science-fiction story, and I am planning on making Aluminum this ultra-valuable element (Which adds irony - Aluminum is the third most abundant element on Earth!) Even if ol' atomic no. 13 is as common throughout the universe as it is on Earth, I can bring up 'multiverse' to get away with it. I think it'd still be nice to know.
Interesting, the aluminum must flow? Aluminum is not as common as other elements. It is not readily produced in the cores of stars through the alpha-capture process (which produces things like carbon, oxygen, neon, magnesium, silicon, etc.). This means it is only produced via supernova explosions. The table in Wikipedia (see link below) will give you an idea of the relative abundance to other elements. (Notice that magnesium and silicon, which are before and after aluminum, are nearly 100 times more abundant). As a fellow, Sci-Fi enthusiast, I'd remind you to make you're story believable. If you decide that your universe won't have supernovae, remember that would mean there would be no iron, gold, uranium, etc. My answer has been long enough, but I'm sure you have an idea why aluminum is so abundant on the Earth's crust so I'll stop here.

Send your message to us

This is not what you are looking for? Post Buying Request

Similar products

Hot products


Hot Searches

Related keywords