• Aluminum 2mm Thick Aluminum Sheet Price 1060 System 1
  • Aluminum 2mm Thick Aluminum Sheet Price 1060 System 2
Aluminum 2mm Thick Aluminum Sheet Price 1060

Aluminum 2mm Thick Aluminum Sheet Price 1060

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
1 m.t.
Supply Capability:
5000 m.t./month

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Specification

Grade:
1000 Series,3000 Series
Surface Treatment:
Anodized,Mill Finish
Shape:
Round,Flat
Temper:
O-H112,Soft,Half Hard
Application:
Decorations,Transportation Tools,Kitchen Use,Pharmaceutical
Technique:
DC/CC
Thickness:
0.05-4.0mm
Width:
200mm---980mm
Packaging:
Wooden pallets
Application:
Cookware
Alloy:
1060/1050
Diameter:
200-800mm
Place of Origin:
China (Mainland)
Alloy Or Not:
Is Alloy
Temper:
O-H112
Surface Treatment:
Mill finished

Aluminum Sheet  2mm Thick Aluminum Sheet Price 1060


Packaging & Delivery

Packaging Details:25kg/carton-boxes(35*32*19CM) &Fumigation wooden-pallets (110*110*15cm)
20GP can loading 22 Ton,total 21 pallets,20 CBM.
Delivery Detail:within 25 days

Specifications

1).Excellent Surface Quality for lighting reflectors. 
2).Excellent deep drawing and spinning quality. 
3).Anodizing Quality

 Aluminium circle/Aluminium discs/disks for cooking utensils Cookware

  • Aluminum disc Surface Finish: Bright & smooth surface, without flow lines, slightly oiled to avoid White rusting.Smooth,Brightly ,No Zone of Fracture ,No Scratched ,No oil Sludge

  • We enjoy a good reputation among our customers for our aluminum circle with high quality and competitive price, win high appreciation from our clients with the excellent workman-ship and professional ability. The quality matches with ISO 9001 quality management system.

  • It is equipped with 5 hot tandem rolling line, 4 cold mill production lines, 4 annealing surface machines and a complete finishing equipment.



  • Specification:

  • Alloy

    Temper

    Specification

    Thickness

    Diameter

    1070,1050,3003,1100

    O,H12,H14,H16

    0.5-5.0mm

    100-1200mm


  • Aluminum disc chemical Properties(WT.%)


  • Alloy

    Si

    Fe

    Cu

    Mn

    Mg

    Cr

    Ni

    Zn

    Ca

    V

    Ti

    Other

    Min.A1

    1050

    0.25

    0.4

    0.05

    0.05

    0.05

    -

    -

    0.05

    -

    0.05

    0.03

    0.03

    99.5

    1070

    0.25

    0.25

    0.04

    0.03

    0.03

    -

    -

    0.04

    -

    0.05

    0.03

    0.03

    99.7

    3003

    0.6

    0.7

    0.05-0.2  

    1.0-1.5 

    -

    -

    -

    0.1

    -

    -

    -

    0.15

    96.95-96.75 



Aluminum Sheet  2mm Thick Aluminum Sheet Price 1060


Aluminum Sheet  2mm Thick Aluminum Sheet Price 1060






Q: This question asks for a comparison of the pros and cons of using aluminum sheets as a roofing material.
<p>Advantages of using aluminum sheets for roofing include their lightweight nature, which reduces structural load; corrosion resistance, making them suitable for coastal areas; and low maintenance requirements. They are also energy-efficient, reflecting heat and reducing cooling costs. Disadvantages include the potential for dents and damage from hail or heavy impacts, and they can be more expensive than some other roofing materials. Additionally, aluminum can be noisy during rain, and it may require more frequent replacement compared to some other materials due to its lighter gauge.</p>
Q: Explain the impact of aluminum on manufacturing processes in a few sentences.
<p>The use of aluminum significantly affects manufacturing processes by offering several advantages. It is lightweight, which reduces the weight of products and can lead to fuel efficiency in transportation sectors. Aluminum's high strength-to-weight ratio makes it ideal for structural components. Its excellent thermal and electrical conductivity allows for efficient heat dissipation and electrical transmission. Additionally, aluminum is non-magnetic and non-corrosive, which is beneficial for certain applications. The metal is also easily recyclable, contributing to sustainability in manufacturing. These properties make aluminum a popular choice in industries such as automotive, aerospace, construction, and electronics, enhancing the efficiency and performance of manufacturing processes.</p>
Q: What are the positive environmental impacts of utilizing recycled aluminum over newly produced aluminum?
<p>Using recycled aluminum has several environmental benefits. It conserves natural resources by reducing the need for bauxite mining, which is the primary source of aluminum. Recycling aluminum requires significantly less energy compared to producing new aluminum from raw materials, which can lead to a substantial reduction in greenhouse gas emissions. Additionally, recycling aluminum helps in reducing landfill waste, as it diverts used aluminum products from landfills. Moreover, it decreases the environmental impact associated with the production process, such as water pollution and habitat destruction. Overall, recycling aluminum is a more sustainable practice that contributes to a lower carbon footprint and a healthier environment.</p>
Q: Explain how the incorporation of titanium into aluminum alloys influences their properties and strength.
<p>Adding titanium to aluminum alloys significantly enhances their mechanical properties and strength. Titanium increases the alloy's strength, hardness, and resistance to corrosion. It also improves the alloy's creep resistance, which is crucial for high-temperature applications. The addition of titanium refines the grain structure, leading to better ductility and toughness. Moreover, titanium helps to reduce the likelihood of stress-corrosion cracking, making the alloy more reliable in aggressive environments. Overall, titanium-aluminum alloys are stronger, more durable, and have a wider range of applications than pure aluminum or simple aluminum alloys.</p>
Q: What is the reaction of aluminum with alkaline solutions and what products are formed?
<p>Aluminum reacts with alkaline solutions in a process known as an acid-base reaction. When aluminum comes into contact with an alkaline solution, such as sodium hydroxide (NaOH), it forms sodium aluminate (NaAlO2) and hydrogen gas (H2). The reaction can be represented by the following chemical equation: 2Al + 2NaOH + 6H2O 鈫?2NaAl(OH)4 + 3H2. In this reaction, aluminum acts as an acid, donating protons to the hydroxide ions (OH-) from the alkaline solution, resulting in the formation of a salt and hydrogen gas.</p>
Q: Is it possible to utilize aluminum in medical applications?
<p>Yes, aluminum is used in medicine, though not directly ingested or injected. It is utilized in the form of aluminum salts in vaccines as an adjuvant to enhance the body's immune response. Aluminum is also used in medical equipment, such as in the manufacturing of certain types of surgical tools and implants due to its lightweight and corrosion-resistant properties. However, its use is carefully regulated due to concerns about biocompatibility and potential toxicity.</p>
Q: What are the potential health advantages of minimizing contact with aluminum?
<p>Reducing exposure to aluminum may have health benefits, particularly in terms of neurological health. Aluminum has been linked to neurodegenerative diseases like Alzheimer's, although the evidence is not conclusive. Lowering exposure could potentially reduce the risk of cognitive decline. Additionally, aluminum may affect bone health and the immune system, so minimizing contact could support stronger bones and a more robust immune response. However, it's important to note that aluminum is naturally present in many foods and water sources, and moderate exposure is generally considered safe by health authorities.</p>
Q: Does aluminum have the ability to corrode or deteriorate over time?
<p>Yes, aluminum can corrode, but it typically forms a protective oxide layer on its surface when exposed to air, which prevents further corrosion. This layer of aluminum oxide is very thin but strong and stable, making aluminum highly resistant to corrosion. However, under certain conditions such as exposure to certain chemicals or in the absence of oxygen, aluminum can still corrode. Corrosion can also occur if the protective layer is damaged or compromised.</p>
Q: This question asks about the impact of adding zinc to aluminum alloys and how it changes their characteristics.
<p>Adding zinc to aluminum alloys significantly enhances their mechanical properties, particularly strength and hardness. Zinc increases the alloy's resistance to deformation, making it more suitable for applications requiring high strength-to-weight ratios. This addition also improves the alloy's resistance to corrosion, especially in marine environments. However, it's important to note that excessive amounts of zinc can lead to a decrease in ductility and increase the risk of cracking, especially during welding or heat treatment processes. The addition of zinc also affects the alloy's thermal conductivity and electrical conductivity, typically reducing both. Overall, the addition of zinc to aluminum alloys is a balancing act to achieve desired properties for specific applications.</p>
Q: This question asks for a comparison between aluminum and magnesium, two common metallic elements, highlighting their differences.
<p>Aluminum and magnesium are both lightweight metals with distinct properties. Aluminum is more abundant in the Earth's crust and is known for its high strength-to-weight ratio, making it ideal for construction and transportation. It is also a good conductor of heat and electricity. Magnesium, while also lightweight, is less dense and has a lower melting point than aluminum. It is highly reactive and is often used in alloys to increase strength and durability. Magnesium is also essential for biological processes and is commonly found in supplements. In terms of reactivity, magnesium is more reactive than aluminum, which makes it more prone to corrosion in certain environments.</p>

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