• Aluminium Alloy Plates/Coils series 1/3/5/6/8 System 1
  • Aluminium Alloy Plates/Coils series 1/3/5/6/8 System 2
  • Aluminium Alloy Plates/Coils series 1/3/5/6/8 System 3
Aluminium Alloy Plates/Coils series 1/3/5/6/8

Aluminium Alloy Plates/Coils series 1/3/5/6/8

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
5 m.t.
Supply Capability:
90000 m.t./month

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Item specifice

Grade:
1000 Series,5000 Series,6000 Series,3000 Series
Surface Treatment:
Coated,Embossed,Anodized,Polished,Mill Finish,Color Coated
Shape:
Round,Flat
Temper:
T3-T8,O-H112,T351-T651
Application:
Decorations

6083 t651 aluminium alloy plate/coil price   

 

Product Specification

 

Aluminium Alloy Plates/Coils series 1/3/5/6/8

Alloy Band6061, 6063, 6082
TemperO, T4, T6, T651 and other

Thickness 

≤170mm 

Width

≤2200mm
Longth≤12000mm 
Application

Automobile, Aviation, Electronics, Mold, Quenched plate, Pre-stretched plate, etc
StandardsASTM-B209. EN573-1, GB/T3880.1-2006
MOQ5 tons
Payment TermL/C; T/T.
Delivery TimeWithin 30 days after receipt of deposit.
Notice: We can according to customer requirement offer other different alloy band and state product

Aluminium Alloy Plates/Coils series 1/3/5/6/8

More products for you to choose

 We produces and offers a full range of aluminum plate in several alloys to service a multitude of industries. The non-heat treatable alloys of 1000, 3000, and 5000 series are all strengthened by various degrees of cold working, as denoted by the "H" tempers.

  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".

Aluminium Alloy Plates/Coils series 1/3/5/6/8

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.
Example Problem Statement: An aluminum wing on a passenger jet is 29 m long when its temperature is 29°C. At what temperature would the wing be 7 cm (0.07 m) shorter? Step 1: Write down what you know in symbolic form: The wing is made of aluminum, therefore: α = 25 x 10-6 /oC Length: l = 29 m Temperature: T1 = 29 oC Change in length: Δl = -7 cm (-0.07 m) Step 2: Write down what you don't know in symbolic form: Temperature: T2 = ? oC Step 3: Find an equation that contains what you know and what you don't know: Δl = αlΔT = αl(T2 - T1) Step 4: Solve the equation for what you don't know: Δl = αl(T2 - T1); divide both sides by αl Δl/ αl = (αl/ αl )(T2 - T1) = T2 - T1; add T1 to both sides Δl/αl + T1 = T2 - T1 + T1 = T2 Δl/ αl + T1 = T2 Step 5: Plug in (substitute) what you know and you will find out what you don't know: Δl/ αl + T1 = T2 = (-0.07 m)/( 25 x 10-6 /oC x 29 m) + 29 oC = -96.551 oC + 29 oC = -67.551 oC = -67.6 oC rounded off.
Q:What are the potential applications of coil-stucco aluminum coils?
Coil-stucco aluminum coils possess distinctive properties and characteristics, resulting in a broad range of potential applications. Some of these applications include: 1. Building and construction: Within the construction industry, coil-stucco aluminum coils find widespread use for various purposes. They offer durability, versatility, and aesthetic appeal when employed in roofing, cladding, and siding applications. The stucco finish on the coils adds texture and enhances the overall appearance of buildings. 2. Transportation industry: The transportation industry also utilizes coil-stucco aluminum coils for the manufacturing of trailers, truck bodies, and other vehicles. Aluminum, being lightweight yet strong, proves to be an ideal material for reducing vehicle weight and increasing fuel efficiency. The stucco finish on the coils adds strength and resistance against scratches and abrasions. 3. Appliances and electronics: Coil-stucco aluminum coils are suitable for the manufacturing of appliances and electronics due to their corrosion resistance and thermal conductivity. Commonly found in refrigerators, air conditioning units, and other household appliances, aluminum coils are highly valued. The stucco finish provides an extra layer of protection against wear and tear. 4. Signage and advertising: The signage and advertising industry extensively employs coil-stucco aluminum coils for creating outdoor signs, billboards, and displays. The stucco finish reduces glare and reflections, enhancing the visibility of the signs. Moreover, aluminum's weather-resistant nature makes it an appropriate choice for outdoor applications. 5. Packaging industry: The packaging industry also finds applications for coil-stucco aluminum coils. Aluminum, being non-toxic and non-reactive, proves to be a suitable material for packaging food and beverages. The stucco finish adds an appealing texture to the packaging material, making it visually attractive. 6. Industrial applications: Coil-stucco aluminum coils are used in various industrial applications, including the manufacturing of equipment, storage tanks, and processing systems. Aluminum coils are preferred in industries where excellent corrosion resistance, high thermal conductivity, and strength are crucial. In conclusion, coil-stucco aluminum coils possess diverse and extensive potential applications. The unique properties of aluminum, combined with the stucco finish, make these coils suitable for a wide range of industries, including construction, transportation, appliances, signage, packaging, and industrial applications.
Q:Will the aluminum braking surface dissipate heat evenly allowing for fast stops from fast descents or will I have to still pulsate braking to reduce heat build up in the tires and tubes?
Another vote for aluminum. Wheels with a basalt brake layer are overpriced.
Q:what is the hardness number of aluminium.....? what is the hardness number of aluminium-Sic composite material...?
I don't believe that Aluminum (US spelling)/ Aluminium (UK spelling) has a Mohs Hardness rating. The Hardness of a material, as measured by the Mohs Hardness scale, is a criterion of its resistance to crushing. [Perry's Chemical Engineering Handbook]. Since aluminum is a metal, and would deform under a crushing-type stress, rather than shatter, it would not have a Mohs Hardness rating. Perhaps you meant **aluminA**, rather than aluminum. Alumina (Al2O3) has a Modified Mohs Hardness of 12. Silicon Carbide (carborundum) has a Modified Mohs Hardness of 13. There's no value listed for the combination, but it should be pretty hard stuff -- likely in the 12-13 range, but potentially even harder. Hope that helps.
Q:What are the common maintenance practices for aluminum coils?
Some common maintenance practices for aluminum coils include regular cleaning to remove dirt and debris, checking for any signs of corrosion or damage, ensuring proper airflow and ventilation around the coils, and regular inspections to identify and address any potential issues. Additionally, it is important to follow manufacturer guidelines and recommendations for maintenance and to schedule professional servicing when necessary.
Q:Can aluminum coils be used in automotive heat shields?
Yes, aluminum coils can be used in automotive heat shields. Aluminum is a commonly used material in the manufacturing of heat shields due to its excellent heat resistance and lightweight properties. Aluminum coils can be formed and shaped into the desired design, allowing for easy installation and customization in automotive applications. Additionally, aluminum has high thermal conductivity, which helps to dissipate heat effectively, making it an ideal choice for heat shields in vehicles.
Q:How are aluminum coils used in the production of aircraft components?
Aluminum coils play a crucial role in the production of aircraft components. These coils are typically made from high-quality aluminum alloys that offer a combination of strength, durability, and lightness, making them ideal for aircraft manufacturing. One primary use of aluminum coils in aircraft production is in the fabrication of sheet metal parts. These coils are processed through various techniques such as rolling, stretching, and bending to form flat sheets of aluminum. These sheets are then cut and shaped to create various aircraft components, including wings, fuselage panels, and tail surfaces. The lightweight nature of aluminum makes it a preferred material for aircraft construction as it helps reduce the overall weight of the aircraft, enhancing fuel efficiency and performance. By using aluminum coils, manufacturers can easily produce thin and lightweight parts, which contribute to the aircraft's overall weight reduction. Moreover, aluminum coils are also used in the production of structural components such as frames and beams. These coils are formed into extrusions, which are then cut and joined to create structural elements of the aircraft. Aluminum's high strength-to-weight ratio makes it an excellent choice for these components, as it provides the required strength while keeping the weight of the aircraft low. In addition to its structural applications, aluminum coils are also used in the production of various aircraft systems. For instance, these coils are utilized in the construction of heat exchangers, air conditioning units, and fuel tanks. The excellent thermal conductivity of aluminum allows for efficient heat transfer, which is crucial for maintaining optimal operating conditions within the aircraft. Overall, aluminum coils are extensively used in the production of aircraft components due to their lightweight, high strength, and excellent thermal properties. Their versatility and ability to be processed into various shapes and sizes make them a preferred material for manufacturing crucial aircraft parts, ensuring the safety, performance, and efficiency of modern aircraft.
Q:Can aluminum coils be used in the production of railway tracks?
No, aluminum coils cannot be used in the production of railway tracks. Railway tracks are typically made of steel for several reasons. Steel is a strong and durable material that can withstand the heavy loads and constant wear and tear of train traffic. It also has good heat resistance and can maintain its structural integrity under high temperatures, which is important for tracks that are exposed to friction and heat generated by moving trains. Aluminum, on the other hand, is a lighter metal with lower strength and poorer heat resistance compared to steel. While aluminum may be used in other components of railway infrastructure, such as electrical wires or certain parts of trains, it is not suitable for the production of railway tracks themselves.
Q:What are the different pre-treatment methods for aluminum coils?
Some of the different pre-treatment methods for aluminum coils include cleaning, degreasing, etching, and phosphating. Cleaning removes dirt, dust, and other impurities from the surface of the coil. Degreasing eliminates oils and greases that may be present. Etching creates a rough surface on the aluminum, which helps in improving adhesion for subsequent coatings. Phosphating involves applying a phosphate coating to enhance corrosion resistance and improve paint adhesion. These pre-treatment methods ensure that the aluminum coils are properly prepared before any further processing or coating.
Q:What are the different protective coatings available for aluminum coils?
There are several different protective coatings available for aluminum coils. Some common options include: 1. Polyester Coating: This is a versatile coating that provides excellent weather resistance and color retention. It is commonly used in outdoor applications where the aluminum coils may be exposed to harsh weather conditions. 2. Polyvinylidene Fluoride (PVDF) Coating: PVDF coatings are known for their exceptional durability and resistance to fading, chalking, and chemical exposure. They are often used in architectural applications where a long-lasting and high-performance finish is required. 3. Epoxy Coating: Epoxy coatings offer excellent adhesion and corrosion resistance. They are frequently used in industrial settings, such as in the manufacturing of appliances or automotive parts. 4. Acrylic Coating: Acrylic coatings provide good weatherability and UV resistance. They are commonly used in interior applications or in environments with mild outdoor exposure. 5. Polyurethane Coating: Polyurethane coatings offer a high level of impact resistance and flexibility. They are often used in applications where the aluminum coils may be subject to physical stress or deformation. 6. Ceramic Coating: Ceramic coatings provide superior heat resistance and thermal stability. They are commonly used in automotive applications or in environments with high-temperature exposure. Overall, the choice of protective coating for aluminum coils depends on the specific application requirements, such as weather resistance, durability, or chemical resistance. It is important to consider the environmental conditions and performance expectations when selecting the appropriate coating for aluminum coils.

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