• Aluminium /Aluminio /Alumina Sheet 1050 1060 1100 3003 3105 5005 5052 5754 5083 6061 6082 System 1
  • Aluminium /Aluminio /Alumina Sheet 1050 1060 1100 3003 3105 5005 5052 5754 5083 6061 6082 System 2
Aluminium /Aluminio /Alumina Sheet 1050 1060 1100 3003 3105 5005 5052 5754 5083 6061 6082

Aluminium /Aluminio /Alumina Sheet 1050 1060 1100 3003 3105 5005 5052 5754 5083 6061 6082

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
5 m.t.
Supply Capability:
10000 m.t./month

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Item specifice

Grade:
1000 Series,3000 Series,4000 Series,5000 Series,6000 Series,7000 Series,2000 Series
Surface Treatment:
Coated,Embossed,Anodized,Polished,Mill Finish,Color Coated,Oxidized,Enameled Wire,Brushed,Printed,Composited,Holographic Impression,Sand Blasted,Powder Coating
Shape:
Angle,Square,T-Profile,Round,Flat,Rectangular,Oval,Hexagonal
Temper:
T3-T8,O-H112,Soft,Hard
Application:
Decorations,Door & Window,Heat Sink,Transportation Tools,Glass Wall,Food,Kitchen Use,Pharmaceutical,Seal & Closure,Insulation Material,Label & Tag,Liner & Wad
Technique:
Extruded

1.Structure of Aluminum Sheet Description:

Construction material with good ductility, polishing ability and corrosion resistance, good electrolytic oxidation, suitable for welding. Have good plasticity qualities in an annealed state suitable when hardened.


2.Main Features of Aluminum Sheet:

Good Ductility

Polishing Ability and Corrosion Resistance

High Quality 

Competitive Price

3. Aluminum Sheet Images:

Aluminium /Aluminio /Alumina Sheet 1050 1060 1100 3003 3105 5005 5052 5754 5083 6061 6082

Aluminium /Aluminio /Alumina Sheet 1050 1060 1100 3003 3105 5005 5052 5754 5083 6061 6082

Aluminium /Aluminio /Alumina Sheet 1050 1060 1100 3003 3105 5005 5052 5754 5083 6061 6082

4. Aluminum Sheet Specification:

Aluminium AlloyThickness       (mm)Width   (mm)Length (mm)Temper
A1050,A1060,A1070,A11000.15-20020-262020-8000O,H12,H14,H16,H18,H22,H24,H26 
A3003,A3004,A31050.15-20020-262020-8000O,H12,H14,H16,H18,H22,H24,H26 
A5052,A5005,A5083,A57540.15-20020-262020-8000O,H12,H14,H34,H32,H36,H111,H112
A6061,A6082,A60630.15-20020-262020-8000T4,T6,T651
A80110.15-20020-262020-8000O,H12,H14,H16,H18,H22,H24,H26 
Material processCC AND DC 
Customerize sizeSize can  be produced as per clients requirement
SurfaceMill finish ,Color coated(PVDF& PE),Stucco Embossed ,Bright Polish,Anodizing
Mirror,Brush,Perforated,Tread plate ,Corrugated etc
Quality StandardASTM B209,EN573-1
MOQ per size2 tons
Payment TermsTT OR LC OR DP at sight 
Delivery timeWithin 25 days after receipt the lc or deposit 
Material QualityTension levelled ,flat ,Free of defects like oil stain,Roll Marks,Waves,Dents
scratches etc ,A+++ quality, production process passed sgs and bv inspection 
ApplicationConstruction ,Building,Decoration ,Curtain Wall ,Roofing,Mould,Lighting,
curtain wall, ship building,Aircraft,Oil Tank ,Truck Body etc 
PackingStandard export worthy wooden pallets,and standard packing is about 2 tons/pallet
Pallet weight also can be as per client's requirement

5.FAQ

Q1.How long have you been in this product?

A1:More than 10 years.

 

Q2. What's the minium quantity(MOQ)?

A2. 5 Metric tons

 

Q3. How long is shipping time?

A3. 7 (ready-made products)-25 days(OEM)

 

Q4. How do you guarantee the quality?

A4. 1. Cooperating and Exchaning experience with sevral quoted aluminum companies

    2. Japanese and Swiss production line and skilled works (regular training and testing)

    3. more than 10 years production experience.

 

Q5. Do you have after sale service?

A5. Yes. Any quality problem occurs within one year, pls take photoes,we will be responsible.


Q:What are the common surface defects found in aluminum coils?
Surface defects commonly found in aluminum coils include various issues such as scratches, dents, corrosion, streaking, oxide spots, oil stains, and roll marks. Scratches are visible lines or marks that can occur during handling, transportation, or processing, impacting both the appearance and functionality of the coil. Dents are depressions or deformations that can result from mishandling or impact during transportation or storage, affecting the coil's structural integrity and aesthetics. Corrosion, which can appear as pitting, discoloration, or roughness, is a concern in environments with high moisture levels or exposure to chemicals, weakening the coil and compromising performance. Streaking, thin lines or bands on the surface, may indicate uneven coating or surface contamination, potentially pointing to manufacturing issues. Oxide spots are small discolored areas caused by aluminum oxide formation during processing or storage, mainly affecting aesthetics. Oil stains are greasy or oily marks resulting from improper cleaning or handling, impacting coating adhesion and requiring additional cleaning or treatment. Roll marks, elongated depressions or raised lines caused by the rolling process, are generally unavoidable but excessive or severe instances can negatively affect appearance and quality. Implementing proper quality control measures, handling techniques, and storage practices can help minimize or prevent these surface defects in aluminum coils.
Q:Can aluminum coils be used for solar panel applications?
Solar panel applications can utilize aluminum coils, which are lightweight and durable materials commonly employed in solar panel construction. Aluminum, an excellent conductor of electricity, is ideal for capturing and conducting solar energy. These coils can serve as backing materials for solar panels, offering structural support and aiding in heat dissipation. Furthermore, aluminum possesses good corrosion resistance, a crucial characteristic for solar panels exposed to diverse weather conditions. Ultimately, the strength, conductivity, and corrosion resistance of aluminum coils render them a favored choice for solar panel applications.
Q:Can aluminum coils be used in the production of air conditioning systems?
Indeed, air conditioning systems can utilize aluminum coils. The reason behind the widespread usage of aluminum coils in air conditioning systems lies in their remarkable heat transfer properties and ability to resist corrosion. Not only are they lightweight and long-lasting, but they also exhibit high efficiency when it comes to transferring heat between the refrigerant and the air. Moreover, aluminum coils outshine traditional copper coils in terms of environmental friendliness, as they necessitate less energy during the manufacturing process and can be completely recycled. All in all, the performance, durability, and eco-friendliness of aluminum coils make them a favored option for air conditioning systems.
Q:This is not for around the house. It is for my lab. I am pretty sure these one wires are Aluminum, but I need the connector they were made with and the power cable is copper. Would it be okay to still try to join the two.
The main problem with aluminum wiring is cold creep. When aluminum wiring warms up, it expands. When it cools down, it contracts. Unlike copper, when aluminum goes through a number of warm/cool cycles it loses a bit of tightness each time. To make it worse, aluminum oxidizes, or corrodes when in contact with certain types of metal, so the resistance of the connection goes up. Which causes it to heat up and corrode/oxidize still more. Eventually the wire starts getting very hot, the insulation melts or it damages the fixture it's attached to, and possibly even cause a fire. Anything attached to aluminum wiring should be rated for it. It will be stamped with Al/Cu or CO/ALR. Wires should be properly connected (at least 3/4 way around the screw in a clockwise direction). Connections should be very tight. Any connections using push-in terminals should be redone with the proper screw connections. Connections between aluminum and copper wire need to be handled specially. The NEC requires that the wire be connected together using special crimp devices, with a special anti-oxidant grease. The tools and materials for this are expensive - not practical to do it yourself unless you can borrow the tool. Good luck.
Q:What are the potential health risks associated with working with aluminum coils?
Working with aluminum coils can pose certain health risks to individuals. One of the primary concerns is the potential for exposure to aluminum dust or fumes. Inhalation of aluminum dust or fumes may lead to respiratory issues such as coughing, shortness of breath, and asthma-like symptoms. Prolonged or excessive exposure to aluminum dust may also result in a condition known as aluminum pneumoconiosis, which can cause lung scarring and impair respiratory function. Additionally, aluminum is a neurotoxic substance, and prolonged exposure to high levels of aluminum may lead to neurological disorders. Studies have suggested a possible link between aluminum exposure and conditions like Alzheimer's disease, although further research is needed to establish a definitive causal relationship. Another potential health risk associated with working with aluminum coils is the risk of skin irritation. Aluminum is known to cause contact dermatitis in some individuals, resulting in redness, itching, and inflammation of the skin upon direct contact. It is important for workers to take necessary precautions such as wearing protective clothing and gloves to minimize skin exposure. Furthermore, working with aluminum coils may involve the use of chemicals such as lubricants, solvents, or cleaners, which can also pose health risks. These chemicals may have their own set of hazards, including skin irritation, respiratory irritation, and in some cases, long-term health effects such as organ damage or cancer. In conclusion, while working with aluminum coils offers numerous benefits, it is crucial to be aware of the potential health risks associated with this type of work. Employers and workers should take appropriate safety measures, such as wearing personal protective equipment, implementing proper ventilation systems, and following best practices to minimize exposure and mitigate any potential health hazards. Regular monitoring and medical check-ups may also be advisable for those regularly exposed to aluminum coils to ensure early detection and prevention of any adverse health effects.
Q:Can aluminum coils be used for magnetic purposes?
Aluminum coils, unfortunately, cannot serve magnetic purposes. Being a non-magnetic material, aluminum lacks any magnetic properties. To harness the magnetic potential of coils, one must resort to materials like iron or steel, which possess magnetic properties. These materials are capable of generating and conducting magnetic fields, unlike aluminum.
Q:How are aluminum coils joined together to form larger panels?
Aluminum coils are joined together to form larger panels through a process known as coil joining or coil-to-panel joining. This process typically involves the use of a coil joining machine, which is designed to connect multiple coils of aluminum together seamlessly. The first step in this process is to feed the individual coils into the machine. The machine then unwinds the coils and brings them together, aligning them side by side. The edges of the coils are typically overlapped slightly to ensure a secure and continuous connection. Once the coils are aligned, the machine uses various techniques to bond them together. One common method is through the use of heat and pressure. The machine applies heat to the overlapping edges of the coils, softening the aluminum and allowing it to fuse together. Simultaneously, pressure is applied to ensure a strong bond is formed. Another method of joining aluminum coils is through the use of mechanical fasteners. In this case, the machine will punch holes through the overlapping edges of the coils and insert fasteners, such as screws or rivets, to hold them together securely. After the coils are joined, the machine continues to feed the connected coils forward, allowing for continuous production of larger panels. The excess material from the overlapping edges is typically trimmed off, resulting in a smooth and seamless panel. Overall, the process of joining aluminum coils to form larger panels requires precision and specialized machinery. The resulting panels are durable, lightweight, and commonly used in various industries such as construction, automotive, and aerospace.
Q:What is the average lifespan of an aluminum coil?
The average lifespan of an aluminum coil can vary depending on various factors such as the quality of the aluminum, the environment it is exposed to, and the maintenance and care it receives. Generally, aluminum coils are known for their durability and long lifespan. In most cases, a well-maintained and properly installed aluminum coil can last anywhere between 15 to 30 years. However, it is important to note that this is just an average estimation, and some coils may last even longer with proper care. Factors that can affect the lifespan of an aluminum coil include exposure to harsh weather conditions, such as extreme heat, cold, or humidity, as well as exposure to corrosive substances or chemicals. Regular cleaning and maintenance, including removing debris and addressing any signs of damage or wear, can also help extend the lifespan of an aluminum coil. In summary, while the average lifespan of an aluminum coil is typically between 15 to 30 years, it is important to consider various factors that can influence its longevity. Regular maintenance and proper care can significantly extend the lifespan of an aluminum coil.
Q:Are aluminum coils suitable for gutter systems?
Indeed, gutter systems find aluminum coils to be quite suitable. Given its durability, lightweight composition, and exceptional resistance to rust and corrosion, aluminum stands as a favored selection for gutter systems. This cost-effective alternative can endure severe weather conditions while boasting an extensive lifespan. Furthermore, the installation and maintenance of aluminum coils prove to be effortless, rendering them an optimal choice for gutter systems.
Q:Are there any restrictions on the coil thickness of aluminum coils?
Yes, there are certain restrictions on the coil thickness of aluminum coils. The thickness of aluminum coils may vary depending on the specific application and manufacturing process. However, it is generally limited by practical constraints such as the equipment capabilities, handling and transportation considerations, and the desired properties of the final product.

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