• Aluminium Gutter Coil with Good Price and Good Quality System 1
  • Aluminium Gutter Coil with Good Price and Good Quality System 2
  • Aluminium Gutter Coil with Good Price and Good Quality System 3
  • Aluminium Gutter Coil with Good Price and Good Quality System 4
Aluminium Gutter Coil with Good Price and Good Quality

Aluminium Gutter Coil with Good Price and Good Quality

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
10 m.t.
Supply Capability:
100000 m.t./month

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 Aluminum Alloy Coil for Honeycomb-core Panel

1.Structure of Aluminum Alloy Coil for Honeycomb-core Panel

Aluminum Coils, Widely used in manufacturing of products as well as other industrial applications like:

- Products Materials: PP cap stock, the traffic sign, air-conditioner heat and exchangers, food container, household foil, pharmaceutical packing, cigarettes packing etc.

- Building Materials: aluminum curtain wall base plate, ACP, aluminum, ceilings, aluminum sheets, honeycomb panels and aluminum roofing, lighting decoration, household electrical appliances, food package (such as pop can cover & ring-pull), furniture ect.

- Others.

2.Main Features of the Aluminum Alloy Coil

- Wide range of color ,

- Good mechanical processing performance 
- Impact and weather resistance,
- Easy for processing and installation,

- Excellent torsion strength.

 3. Aluminum Alloy Coil Images

 Aluminium Gutter Coil with Good Price and Good Quality

Aluminium Gutter Coil with Good Price and Good Quality

Aluminium Gutter Coil with Good Price and Good Quality

 

 

4. Aluminum Alloy Coil Specification

Product

Aluminum Coil

Alloy

1100, 1145, 1050, 1060, 1070, 3003, 3013, 

3005, 3A21,4343,4045, 5052, 5082, 5083, 

5086,6061, 8011 etc.

Temper

H12.H14.H16.H18.H22.

H24.H26.H32.H34.H36.

H38.O etc.

Thickness

 0.2-7.0mm

Width

Until 2550

Coil Weight

At clients' request

Colors

All Standards Of  RAL

Package

Wooden Pallet (Customized Packing Ways Are Welcomed)

Remarks

The Special Dimensions Can Be Produced According Clients' Specification.

5.FAQ

We have organized several common questions for our clientsmay help you sincerely

①How to guarantee the quality of the products

We have established the international advanced quality management systemevery link from raw material to final product.

②What’s the Application for the products?Products are widely used in wide range transportation, packing & printing, mechanical manufacturing, electronic communication, hardware molding, architectural decoration and etc. 

     How long can we receive the product after purchase?

In the purchase of product within three working days, We will arrange the factory delivery as soon as possible. The specific time of receiving is related to the state and position of customers. Commonly 7 to 10 working days can be served.

 

 

Q:Can aluminum coils be used in the production of cans?
Yes, aluminum coils can be used in the production of cans. Aluminum coils are commonly used in the manufacturing process of cans due to their lightweight, durability, and corrosion resistance. These coils are typically shaped into sheets that are then formed into cans, making them a popular choice for the production of beverage and food containers.
Q:How do aluminum coils compare to magnesium coils in terms of strength?
In comparison to magnesium coils, aluminum coils typically exhibit greater strength. Aluminum is renowned for its exceptional strength-to-weight ratio, thus rendering it a favored option across multiple industries. It boasts a higher tensile strength and superior resistance to deformation when subjected to stress, unlike magnesium. Moreover, aluminum possesses a higher yield strength, enabling it to withstand more substantial loads before succumbing to permanent deformation. Conversely, magnesium, despite its lighter nature, tends to possess inferior strength attributes. Although magnesium coils may prove beneficial in specific scenarios where weight plays a crucial role, aluminum coils are generally favored for their strength and longevity.
Q:Are aluminum coils suitable for curtain wall systems?
Curtain wall systems can greatly benefit from the use of aluminum coils. This lightweight and durable material offers a multitude of advantages. Firstly, aluminum coils possess excellent corrosion resistance, ensuring the long-lasting and sturdy nature of the curtain wall system. This makes them particularly well-suited for exterior applications, where exposure to various weather conditions is inevitable. Moreover, aluminum does not rust, setting it apart from materials like steel. In addition, aluminum coils can be easily extruded into a wide range of shapes and sizes, allowing for flexibility and creativity in the design of curtain walls. This grants architects and designers the opportunity to create visually appealing and distinctive structures. Another notable feature of aluminum is its high sustainability. It is completely recyclable, meaning that it can be reused without any loss in quality. This makes aluminum coils an environmentally friendly choice for curtain wall systems, aligning with the growing demand for sustainable building materials. Furthermore, aluminum possesses excellent thermal and electrical conductivity, which can contribute to energy efficiency in curtain wall systems. By incorporating thermal breaks and insulation, aluminum curtain walls can effectively regulate temperature and reduce energy consumption, resulting in long-term cost savings. In conclusion, aluminum coils are an outstanding option for curtain wall systems due to their resistance to corrosion, versatility, sustainability, and energy efficiency.
Q:How are aluminum coils different from steel coils?
Aluminum coils and steel coils differ in several aspects. Firstly, aluminum is a lighter metal than steel, which means that aluminum coils are significantly lighter than their steel counterparts. This makes aluminum coils easier to handle and transport, reducing the overall weight of the final product. Secondly, aluminum has a higher corrosion resistance compared to steel. Steel coils are prone to rust and corrosion over time, especially when exposed to moisture or harsh weather conditions. On the other hand, aluminum coils have a natural oxide layer that acts as a protective barrier against corrosion, making them more durable and long-lasting. Furthermore, aluminum has a higher thermal conductivity than steel. This means that aluminum coils can transfer heat more efficiently, making them ideal for applications that require excellent heat dissipation. Steel, being a poor conductor of heat, is less effective in dissipating heat and may retain heat for longer periods. Another significant difference is the aesthetic appeal. Aluminum coils have a natural silver-gray color, giving them a sleek and modern look. Steel coils, on the other hand, are typically coated or painted to enhance their appearance and protect them from corrosion. Lastly, the cost factor plays a role in distinguishing aluminum and steel coils. Aluminum is generally more expensive than steel, mainly due to the higher production costs associated with aluminum extraction and processing. However, the long-term benefits of using aluminum coils, such as lower maintenance and replacement costs due to its corrosion resistance, can offset the initial higher investment. In summary, aluminum coils differ from steel coils in terms of weight, corrosion resistance, thermal conductivity, aesthetics, and cost. These differences make aluminum coils a popular choice in various industries where lightness, durability, heat dissipation, and corrosion resistance are crucial factors.
Q:How much fluorocarbon and polyester paint should be used in production of aluminum coil and aluminum-plastic panel?
In theory, one kilogram paint can spray 6 square kilometers for your required thickness. Then you can calculate the total areas.
Q:1) From What does aluminium derive its name?2)From which ore is aluminium extracted?3)Which country produces more aluminium than any other?4)An American and French scientist both patented the current process used to produce aluminium, what were there names?5)Who is credited with having been first to produce metallic aluminium?
1) From What does aluminium derive its name? Ancient Greeks and Romans used aluminium salts as dyeing mordants and as astringents for dressing wounds; alum is still used as a styptic. In 1761 Guyton de Morveau suggested calling the base alum alumine. In 1808, Humphry Davy identified the existence of a metal base of alum, which he at first termed alumium and later aluminum . The earliest citation given in the Oxford English Dictionary for any word used as a name for this element is alumium, which British chemist and inventor Humphry Davy employed in 1808 for the metal he was trying to isolate electrolytically from the mineral alumina. 2)From which ore is aluminium extracted? Bauxite 3)Which country produces more aluminium than any other? China 4)An American and French scientist both patented the current process used to produce aluminium, what were there names? Hall and Héroult 5)Who is credited with having been first to produce metallic aluminium? Friedrich W?hler
Q:How are aluminum coils used in the production of furniture and fixtures?
Furniture and fixture production heavily relies on aluminum coils, which play a vital role in creating lightweight and long-lasting pieces. These coils are typically crafted from top-notch aluminum alloys, known for their exceptional strength-to-weight ratios and resistance to corrosion. One primary application of aluminum coils in furniture production involves constructing frames for chairs, tables, and other seating arrangements. Aluminum's lightweight nature simplifies handling and transportation, while still providing the necessary structural integrity. The coils can be easily molded, welded, and assembled into various frame designs, offering flexibility in creating different furniture styles. Furthermore, aluminum coils find frequent use in manufacturing fixtures like cabinets, shelves, and display racks. These coils can be cut, shaped, and bent to create customized components that perfectly suit specific design requirements. Aluminum's corrosion resistance ensures that these fixtures can endure exposure to moisture, making them suitable for both indoor and outdoor settings. Moreover, the utilization of aluminum coils in furniture and fixture manufacturing offers advantages that go beyond their physical properties. Aluminum is a highly recyclable material, making it an environmentally friendly choice. Its durability and low maintenance requirements also contribute to cost-effectiveness, reducing long-term expenses for manufacturers and consumers alike. To summarize, aluminum coils are indispensable in furniture and fixture production due to their lightweight, durable, and corrosion-resistant characteristics. Their versatility enables the creation of various designs, while their recyclability and cost-effectiveness make them a preferred choice in the industry.
Q:Are aluminum coils recyclable?
Indeed, recyclability applies to aluminum coils. As one of the most easily recyclable substances, aluminum can be recycled ceaselessly without compromising its integrity. The process of recycling aluminum coils entails melting them down to create fresh coils or alternative aluminum goods. This practice not only diminishes landfill waste but also conserves energy and resources necessary for manufacturing new aluminum from primary materials. Opting for the recycling of aluminum coils is an environmentally conscious decision that aids in the preservation of natural resources and the mitigation of greenhouse gas emissions.
Q:What do the two items (COIL:873347 HEAT: number) on the label of the raw material of aluminum coil stand for?
COIL means aluminum coil and HEAT means heating, so together they mean hot rolled coil.
Q:Can aluminum coils be used in the production of electrical conductors?
Yes, aluminum coils can be used in the production of electrical conductors. Aluminum is a highly conductive metal and is commonly used in various electrical applications due to its lightweight, cost-effectiveness, and excellent electrical conductivity.

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