• Aluminium Coil for ACP (Aluminum Composite Panel) System 1
  • Aluminium Coil for ACP (Aluminum Composite Panel) System 2
  • Aluminium Coil for ACP (Aluminum Composite Panel) System 3
Aluminium Coil for ACP (Aluminum Composite Panel)

Aluminium Coil for ACP (Aluminum Composite Panel)

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
1 m.t.
Supply Capability:
2000 m.t./month

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Item specifice

Grade:
2000 Series
Surface Treatment:
Mill Finish,Embossed
Shape:
Flat
Temper:
O-H112
Application:
Glass Wall,Door & Window,Transportation Tools,Food

Product Description:

The heat treatable alloys of 2000, 6000 and 7000 are such that when subjected to thermal temperatures, they again pronounced strengthening. Hence, tempers are indicated by "T". These alloys are also inventoried in clad form to increase corrosion resistance. All of the aluminum alloys are available in the annealed condition or commonly referred to as "O".

  • Aerospace - 2024, 6013, 6061, 7075

  • Construction - 3003, 5052, 6061

  • Electrical and Chemical Applications - 1100

  • General Machining Applications - 3003, 5052

Thickness from 0.18mm to more than 200mm are available for your needs.  Aluminum can process to your special requirements and support traceability with complete Mill Test Certificate(MTC) and the essential industry specifications. More details about Aluminum sheet coil for Beverage Cans, Food Cans & Closures as following

 

Aluminum coil for aluminum composite panel

 

Always present in the development of aluminum coil for the Beverage Cans Making Industry, LingFeng offers Aluminum Coils for Beverage Can Body Stock, Coated End Stock and Bare or Coated Tab Stock. Lingfeng rolling facilities include: Modern equipment that guarantees high efficiency in the can makers lines and possible light-weight. A state-of-the-art lacquering line suitable for the coating of easy open end and tabe. PVC-free, BADGE-free and Solvent-free (free-based) lacquering systems are applied.

 

Being able to produce according to detailed customer requirements, Lingfeng can provide tailor-made solutions.

 

Aluminum sheet coil for Food Cans

 

New lacquerng line is suitable for the coating of bodies, lids and tabs of rectangular or round Food Cans for aggressive food or fruit-juice products. BADGE-free and Solvent-free (water-based) lacquering systems are applied. The material can also be supplied degreased, chromium phosphated and DOS treated.

 

Aluminum sheet coil for Closures

 

Committed to continuous development and full customer satisfaction, Lingfeng offers Pre-treated and Pre-coated Coils or Straight-cut Sheets for the production of Pilfer-proof Caps. Lingfeng provides high quality non-earing material, suitable for both one and two step Drawn Caps. Rolling experience and new lacquering facilities ensure excellent service in terms of products range and J. I. T deliveries providing Closures in three different aluminum alloys and two alternative finishes, bare or coated. Lingfeng material is used for the production of Pilfer Caps for carbonated and non-carbonated beverages, alcoholic or non-alcoholic drinks and as closures for pharmaceutical products.



 

Aluminium Coil for ACP (Aluminum Composite Panel)

Aluminium Coil for ACP (Aluminum Composite Panel)








Aluminium Coil PPGL Specification:

Quality Certification

 

According to EN and GB/T standards or as per agreed customer specifications.

 

Aluminum Coil for Beverage Cans, Food Cans and Closures Specifications

 

Production Range (mm)
  Aluminum Sheets/Coils for Food Cans  Aluminum Sheets/Coils for Food Cans

 ThicknessWidth  ThicknessWidth Length 
 Body 0.250 min.2300 max. 0.18-0.25 500-1020 1045 max. 
 End 0.222 min. 2300 max. 0.20-0.30 100-1020 1045 max.
 Tab 0.235 min. 45 min. 45 min 29 min.Coils only 

 

Production Range (mm)
Beverage Cans- DimensionFood Cans-Coil Dimensions

Inside DiameterOutside DiameterInside DiameterOutside Diameter
Body400 or 5001850 max.400 or 5001800 max.
End400 or 5001850 max.300 or 400 or 5001800 max.
Tab4001850 max.300 or 5001800 max.

 

Closures-Dimension Range
Thickness0.20-0.3
Width500-1020
Length(Sheet)1045 max.
Inside Diameter300 or 400 or 500 on carton core
Outside Diameter1800 max

 

Finishes-Treatment

BeverageFoodClosures
Body:Pre-lubricated: According to customer requirement.Degreased, Chromium phosphate converted and DOS treated.Pre-treated: Degreased, Chromium phosphate converted and if requested DOS treated.
End:Pre-coated & Pre-maxed: According to customer requirements.Pre-treated: Degreased, Chromium phosphate converted and DOS treated. Coated: Pre-waxed and lacquered on public or product side of the can, or both.Coated: Lacquered on either or both sides.
Tab:Coated: Clear or coloured expoxy, or bare: degreased and DOS re-oiledCoated: Clear or coloured coated or bare: degreased and DOS re-oiled





FAQ of  Aluminium Coil for ACP (Aluminum Composite Panel):

1.Superior quality of raw material.
2.Reasonable and stable chemical composition. 
3.Accurate tolerance.
4.Goode mechanical property. 
5.We have the certificate of ISO9001.


Q:11 g of aluminum at 200 C and 19 g of copper are dropped into 55 cm^3 of ethyl alcohol at 15 C. The temperature quickly comes to 24 C. What was the initial temperature of the copper? (answer in C) Express your answer using two significant figures.
Quantity of heat given by aluminium = mc θ = 0.011* 913*(200 - 24) = 1767.6 J. . Quantity of heat given by copper = mc θ = 0.019* 385*(T - 24) = 7.315 T -175.56 J. . Mass of ethyl alcohol = volume * density = 0.000055 m^3 *789 = 0.043395 kg. Quantity of heat gained by ethyl = mc θ = 0.043395 * 2500*(24 - 15) = 976.3875 J heat lost.= Heat gained 1767.6 + 7.315 T -175.56 = 976.39 7.315 T = -615.65 T = -84.17 ?C This shows that copper also gains heat. ======================================...
Q:Can aluminum coils be used in electrical busbars?
Yes, aluminum coils can be used in electrical busbars. Aluminum is a commonly used material for busbars due to its high electrical conductivity, low cost, and lightweight properties. Aluminum coils can be easily formed into various shapes and sizes to fit specific busbar requirements. Additionally, aluminum has good thermal conductivity, which allows for efficient heat dissipation in high current applications. However, it is important to consider the current carrying capacity, mechanical strength, and corrosion resistance of aluminum coils when selecting them for busbar applications.
Q:The company wants to produce an aluminum coil production line, which is better for large aluminium smelting equipment?
Dongpu heat well, they have the qualification certificate issued by the state kiln construction, as far as I know, their melting furnace Aluminum Alloy 'plan is very good, and the operation is simple and safe, feel good, can be wiped off
Q:How are aluminum coils inspected for quality control?
To maintain quality control, aluminum coils undergo a thorough examination employing visual inspections and various non-destructive testing methods. These measures guarantee that the coils conform to the necessary specifications and are devoid of any flaws or defects. In order to identify surface defects, including scratches, dents, and irregularities in shape or size, trained personnel meticulously scrutinize the coils. Additionally, inspectors check for signs of contamination, oxidation, or discoloration. If any abnormalities are detected during this visual inspection, they are promptly noted and addressed. Apart from visual inspections, internal quality evaluation of the aluminum coils is conducted through non-destructive testing techniques. One commonly employed method is ultrasonic testing, which involves transmitting high-frequency sound waves through the coils. The reflected sound waves are then analyzed to detect internal defects such as voids, cracks, or delaminations. This technique allows for a comprehensive assessment of the coil's integrity without causing any harm to the material. Another non-destructive testing method used for quality control is eddy current testing. This technique induces electrical currents in the coils and measures the resulting magnetic fields. Any variations in the magnetic fields can indicate flaws or defects in the aluminum, such as cracks or inclusions. Eddy current testing is particularly effective in identifying surface defects and discontinuities. Furthermore, measurements of crucial physical properties such as thickness, width, and flatness are taken to ensure compliance with the required standards. Specialized instruments like micrometers, calipers, or laser scanners are typically employed for this purpose. In conclusion, the inspection process for aluminum coils encompasses a combination of visual inspections and non-destructive testing methods. This comprehensive approach guarantees that the coils are fault-free, meet the necessary specifications, and exhibit superior quality.
Q:How are aluminum coils used in the production of medical equipment?
The unique properties and versatility of aluminum coils make them widely used in the production of medical equipment. In the medical industry, aluminum coils are primarily utilized in manufacturing various medical devices including MRI machines, X-ray machines, and ultrasound equipment. The excellent conductivity of aluminum coils is the main reason for their utilization in medical equipment production. This property enables them to effectively conduct and dissipate heat, which is crucial for the proper functioning of medical devices. For example, MRI machines generate a significant amount of heat during operation, and aluminum coils help regulate and maintain the desired temperature for optimal performance and patient safety. Furthermore, the high malleability of aluminum coils allows them to be easily formed into different shapes and sizes. This makes them ideal for producing medical equipment with intricate designs and precise specifications. For instance, aluminum coils are used in constructing radiation shields, which protect medical personnel and patients from harmful radiation emitted by X-ray machines. Additionally, aluminum coils are lightweight yet durable, making them an excellent choice for portable or easily maneuverable medical equipment. This is particularly important for devices like portable ultrasound machines, where lightweight components are necessary for ease of use and transportation. Moreover, aluminum coils exhibit excellent corrosion resistance, a vital characteristic in the medical field where cleanliness and hygiene are of utmost importance. The resistance to corrosion prevents the accumulation of bacteria, germs, and other contaminants on the surface of medical equipment, ensuring a safe and sterile environment for patients and healthcare professionals. In conclusion, aluminum coils play a crucial role in the production of medical equipment, offering properties such as conductivity, malleability, lightweight, durability, and corrosion resistance. These properties enable the efficient and safe operation of medical devices, contributing to improved patient care and well-being.
Q:How do aluminum coils resist corrosion?
Aluminum coils are able to resist corrosion due to their unique chemical composition and protective oxide layer. Aluminum is a highly reactive metal, but it forms a thin layer of aluminum oxide on its surface when exposed to air. This oxide layer acts as a protective barrier, preventing further reaction with the environment. This layer is self-repairing and continues to form even when it gets damaged, providing long-lasting protection against corrosion. Additionally, aluminum coils can be further protected by applying coatings or treatments that enhance their resistance to corrosion. These coatings act as an additional layer of defense, shielding the coils from potential corrosive agents. Overall, the combination of the natural oxide layer and optional coatings makes aluminum coils highly resistant to corrosion, ensuring their durability and longevity in various applications.
Q:Are there any specific safety guidelines for installing aluminum coils?
Yes, there are specific safety guidelines for installing aluminum coils. It is important to follow manufacturer instructions and guidelines, wear appropriate personal protective equipment (PPE), and ensure proper handling and storage of the coils. Additionally, one should be cautious of sharp edges and edges of the coils to prevent injuries during installation.
Q:Are aluminum coils suitable for architectural façade systems?
Yes, aluminum coils are suitable for architectural façade systems. Aluminum is a highly versatile and durable material that can be easily shaped and manipulated to meet the specific design requirements of a building's façade. It is lightweight, corrosion-resistant, and can withstand harsh weather conditions, making it an ideal choice for long-lasting exterior applications. Additionally, aluminum coils can be coated with various finishes, such as paint or anodizing, to enhance their aesthetic appeal and provide additional protection against fading or chipping. The flexibility and versatility of aluminum coils make them an excellent option for architectural façade systems, allowing for creative and unique designs while maintaining durability and performance.
Q:I own a pistol with an aluminum frame. If I were to store it away for a long time, would I need to bother wiping oil over the aluminum surfaces in addition to the steel surfaces? If it helps, there is a dark grey sort of finish on the aluminum.
It matters! All metal corrodes! I don't care what others say because they don't know. Wipe down your gun good and put a good heavy oil or Break free CLP on them and place them in a good sock protector or sealed case in a cool climate controlled dry place with some moisture packs inside.
Q:What are the common safety precautions when working with aluminum coils?
When working with aluminum coils, it is important to follow several safety precautions to ensure the well-being of individuals and prevent accidents. Some common safety precautions when working with aluminum coils include: 1. Personal Protective Equipment (PPE): Always wear appropriate PPE such as safety goggles, gloves, and aprons when handling aluminum coils. This protective gear helps protect against potential injury from sharp edges, cuts, or burns. 2. Proper Handling Techniques: Use proper lifting techniques to avoid strain or injury. Aluminum coils can be heavy, so it is essential to lift with your legs, not your back, and use lifting aids or equipment if necessary. 3. Secure Storage: Store aluminum coils securely to prevent them from falling or rolling. Avoid stacking coils too high to prevent them from toppling over and causing injuries. 4. Proper Ventilation: Ensure that the work area has adequate ventilation to prevent the buildup of fumes or dust particles. Aluminum coils may release harmful particles or gases when cut or processed, so proper ventilation is crucial for maintaining a safe working environment. 5. Fire Safety: Aluminum is highly flammable, so it is vital to prevent sparks or open flames near aluminum coils. Use non-sparking tools and avoid smoking or using flammable materials in the vicinity. 6. Sharp Edges: Be cautious of sharp edges on aluminum coils, as they can cause cuts or lacerations. Handle coils with care and use appropriate tools to mitigate the risk of injury. 7. Training and Safety Guidelines: Ensure that all personnel working with aluminum coils are properly trained in handling procedures and safety guidelines. This includes understanding the correct use of equipment, emergency procedures, and knowledge of any specific hazards associated with aluminum coil handling. 8. Regular Maintenance: Maintain equipment and tools regularly to ensure they are in good working condition. This includes inspecting and repairing any damaged or worn-out parts that could pose a safety risk. 9. First Aid and Emergency Response: Keep a well-equipped first aid kit nearby and ensure that employees are aware of its location. In addition, establish clear emergency response protocols and train employees on what to do in case of an accident or injury. By adhering to these common safety precautions, individuals can minimize the risks associated with working with aluminum coils and create a safer working environment.

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