• Aluminum Coil Home Depot - Roll for Ceiling and Garage Doors System 1
  • Aluminum Coil Home Depot - Roll for Ceiling and Garage Doors System 2
  • Aluminum Coil Home Depot - Roll for Ceiling and Garage Doors System 3
Aluminum Coil Home Depot - Roll for Ceiling and Garage Doors

Aluminum Coil Home Depot - Roll for Ceiling and Garage Doors

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Loading Port:
Shanghai
Payment Terms:
TT or LC
Min Order Qty:
5 m.t.
Supply Capability:
9000 m.t./month

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Product Description

 

Alloy:  AA1050/1100/3003/3005/3105/5005/5052 etc

Thickness:0.03mm—4.0mm

Width:10mm—1600mm

Coating:PVDF, PE

Coatingthickness: Usually16-25 micron, could be 33-40 micron

Color : According to Ral K7

Usage/ApplicationsCoated Aluminum Coil/Sheet

Construction and decoration, electronicappliances, lighting decoration, air-condition air pipe, sandwich panels anddrainage, etc

 

Features:

1) Double Fold in top edge for letter face attached

2) Package in 50 meters coil and 100 meters per carton.

3) Apply to Channel Letter Benders.

4) Height: 60mm, 88mm,108mm,128mm

5) Thickness: 0.6mm

6) White, Black, Red, Yellow, Silver, Blue, Green,Brush Silver, Brush Gold, Mirror Silver.

7) The specification can be customized as you request.

ALUMINUM COIL,ROLL FOR CEILING AND GARAGE DOORS

Application:

Channel Letter Return for Shop signs, store signboard, office logo, company signage, home decoration. 

Widely used in indoor, outdoor, various letters, fixed decoration side for light box, fixed decoration for traditional light box, illuminated letter.

It is a special material for channel letter. You can run it with our channel letter fabrication machine.

We call it ‘special’because of his double fold block design along the top edge to which the letter face is attached. With this special design, no need extra trim cap covering.

This double fold design generates from a channel forming machine.

 

For a quick respond and quotation, kindly tell your quantity and capacity in your mail. 

Contact us for more details about Price, Packing, Shipping and Discount.

Q:How do aluminum coils perform in extreme temperature conditions?
Aluminum coils exhibit satisfactory performance in extreme temperature conditions. With a high melting point of approximately 660 degrees Celsius (1220 degrees Fahrenheit), aluminum is well-suited for handling high temperatures. Additionally, its exceptional thermal conductivity allows for efficient heat transfer and rapid cooling in extreme heat situations. This characteristic proves particularly advantageous in applications like air conditioning systems and refrigeration units, where aluminum coils are commonly utilized. Furthermore, aluminum is renowned for its corrosion resistance, a quality that is vital in extreme temperature settings. It resists oxidation and does not easily succumb to rust, ensuring the durability and longevity of the coils. This resistance to corrosion is especially significant in environments characterized by high humidity or exposure to salt, where alternative metals may rapidly corrode. Nevertheless, it is important to note that the performance of aluminum coils may be affected by extremely cold temperatures. In such conditions, aluminum contracts and becomes more brittle, potentially leading to reduced flexibility and even cracking. Consequently, it becomes crucial to provide proper insulation and protection to prevent any damage to the coils in extremely cold surroundings. Overall, aluminum coils can be relied upon and demonstrate commendable performance in extreme temperature conditions, particularly in applications involving high temperatures. Their high melting point, excellent thermal conductivity, and resistance to corrosion render them suitable for a wide range of industries and environments.
Q:What is the typical modulus of elasticity for aluminum coils?
The typical modulus of elasticity for aluminum coils is around 70 GPa (gigapascals).
Q:A nitrate is added with sodium hydroxide, then a piece of aluminum foil. After warming the mixture, ammonia gas is released.A source tells me that aluminum reduces nitrate ion into the ammonium ion. How is this done?
Aluminum is an active metal and wants to be ionized. Al -- Al(3+) + 3e(-) ?n basic media, tetrahydroxoaluminate complex will be formed: Al(3+) + 4OH(-) -- Al(OH)4(-) ======================================... Al + 4OH(-) -- Al(OH)4(-) + 3e(-) Nitrate is reduced to ammonia in basic media, ammonium in acidic media: N(5+) + 8e(-) -- N(3-) NO3(-) + 8e(-) + 10H(+) -- NH4(+) + 3H2O in basic media, we add base (OH-) to both sides: NO3(-) + 8e(-) + 11OH(-) + 10H(+) -- NH4(+) + 3H2O + 11OH(-) NO3(-) + 8e(-) + OH(-) + 10H2O --- NH3 + 4H2O + 10OH(-) ======================================... NO3(-) + 8e(-)+ 6H2O -- NH3 + 9OH(-) Now, to the balancing of these two redox half reactions: Al + 4OH(-) -- Al(OH)4(-) + 3e(-) NO3(-) + 8e(-)+ 6H2O -- NH3 + 9OH(-) ============================= 8Al + 32OH(-) -- 8Al(OH)4(-) + 24e(-) 3NO3(-) + 24e(-) + 18H2O -- 3NH3 + 27OH(-) ================================== 8Al + 3NO3(-) + 32OH(-) + 18H2O -- 8Al(OH)4(-) + 3NH3 + 27OH(-) //////////////////////////////////////... 8Al + 3NO3(-) + 5OH(-) + 18H2O -- 8Al(OH)4(-) + 3NH3 Hope this helps.
Q:Can aluminum coils be used for food processing equipment?
Food processing equipment can indeed utilize aluminum coils. The reason behind the popularity of aluminum in this context lies in its remarkable thermal conductivity, resistance to corrosion, and lightweight properties. The food industry heavily relies on aluminum for a variety of applications, including heat exchangers, evaporators, and condensers. Specifically engineered to effectively transfer heat and uphold a consistent temperature, aluminum coils prove to be ideal for food processing equipment that demands precise temperature control. Moreover, aluminum is a non-toxic material, guaranteeing that it does not contaminate the processed food. Consequently, aluminum coils establish themselves as a dependable and secure choice for food processing equipment.
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:Are aluminum coils resistant to UV radiation?
Yes, aluminum coils are generally resistant to UV radiation. Aluminum has a natural oxide layer that provides protection against UV rays, making it highly durable and suitable for outdoor applications.
Q:Can aluminum coils be welded or soldered?
Yes, aluminum coils can be welded or soldered. Welding and soldering are two common methods used to join aluminum coils together. Welding involves melting the aluminum material in the coils and fusing them together using heat and pressure. This process requires specialized equipment and skilled operators. On the other hand, soldering is a process that uses a lower melting point filler material, called solder, to join the aluminum coils. Soldering is typically used for lighter applications and requires less heat than welding. Both welding and soldering can effectively join aluminum coils, but the choice between the two methods depends on the specific requirements of the project, the equipment available, and the expertise of the operator.
Q:what language did Aluminum and Uranium originate from ? Who or what were they named for ?
The ancient Greeks and Romans used alumen (alum, potassium aluminium sulfate, K2Al6(OH)12(SO4)4) in medicine as an astringent, and as a mordant in dyeing. Alum was exported from ancient Greece and Italy. In 1761 the French chemist Louis-Bernard Guyton de Morveau (1737-1816) proposed the name alumine for the base in alum. Guyton de Morveau was instrumental in setting up a standardised system for chemical nomenclature and often collaborated with Antoine Lavoisier, who in 1787, suggested that alumine was the oxide of a previously undiscovered metal. In 1808, Sir Humphry Davy (1778-1829) did experiments for the decomposition of alumine, silex, zircone, and glucine. He failed to isolate the metals in these, as he reported in his paper for the Royal Society of London on 30 June 1808, but he suggested names for the metals (note) Cf. Silicium, Zirconium, and Beryllium (Glucium) Thus he proposed the name alumium for this still undiscovered metal and later agreed to change it to aluminum. Shortly thereafter the name aluminium was adopted to conform with the -ium ending of most elements. Uranium was named by its discoverer German chemist Martin Klaproth, after the last planet to have been discovered Uranus.
Q:I think the use of aluminum, at the lower levels, has really hurt US born players. To give a kid a piece of metal, and expect him to use wood when drafted........ I think US should go back to wood, whatever the costs (I know the aluminum is far cheaper). Thoughts....Cheers.
no, i have to disagree, wooden bats are extremly heavy for little league kids for one, and in high school its more enjoyable to see the ball sail with the metal bat, it might be a big adjustment, but if you wanna play in the bigs you wont let something like a wooden bat stand in the way =D
Q:Supposably water ozidies it what ever that means so how in the world do i clean an aluminum bike if i cant use water? i like to use water and soap on my carbon bike so what do i use on a aluminum?
You can use water and soap. Aluminum does not rust and will not be harmed by water. Happy washing

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