• 0.05-4.0mm Thickness 125 Aluminum Sheets in Spfd Mo for Household System 1
  • 0.05-4.0mm Thickness 125 Aluminum Sheets in Spfd Mo for Household System 2
0.05-4.0mm Thickness 125 Aluminum Sheets in Spfd Mo for Household

0.05-4.0mm Thickness 125 Aluminum Sheets in Spfd Mo for Household

Ref Price:
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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
1 m.t.
Supply Capability:
6000 m.t./month

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Specification

Grade:
1000 Series,3000 Series
Surface Treatment:
Mill Finish
Shape:
Round,Flat
Temper:
O-H112,Half Hard,Soft
Application:
Decorations,Kitchen Use
Technique:
DC/CC
Thickness:
0.05-4.0mm
Width:
200mm---980mm
Packaging:
Wooden pallets
Application:
Cookware
Surface Treatment:
Mill finished
Width:
200-800mm
Alloy:
1060/1050

0.05-4.0mm Thickness Aluminum Circle For Household 


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 



0.05-4.0mm Thickness Aluminum Circle For Household


0.05-4.0mm Thickness Aluminum Circle For Household

Q: Is it possible to use aluminum sheets as a material for flooring?
<p>Yes, aluminum sheets can be used for flooring applications. They are known for their durability, resistance to corrosion, and ease of maintenance, making them suitable for various environments. Aluminum flooring is often used in commercial, industrial, and residential settings due to its strength and lightweight nature. It can be found in applications such as walkways, ramps, and as a covering for platforms. However, it's important to note that aluminum may not be the best choice for all flooring needs, especially where thermal insulation or a softer, warmer feel is desired.</p>
Q: Does anyone know how to polish aluminum on a motorcycle that isn't too expensive to do?
Get ahold of a polishing companys cataloge. The have all kinds of felt polishing wheels in all shaps and sizes.
Q: What are the different forming methods for aluminum sheets?
The different forming methods for aluminum sheets include rolling, stamping, deep drawing, bending, and stretch forming. Rolling involves passing the aluminum sheet through a series of rollers to reduce its thickness and increase its length. Stamping uses a die to shape the sheet by applying pressure. Deep drawing involves pulling the sheet into a die cavity to create a deep and complex shape. Bending is used to create curves and angles in the sheet by applying force. Stretch forming stretches the sheet over a die to create a contoured shape.
Q: Can aluminum sheets be anodized for aesthetic purposes?
Aluminum sheets have the ability to undergo anodization for the purpose of aesthetics. Anodization is an electrochemical procedure that forms a protective oxide layer on the surface of the aluminum. This layer has the potential to be colored in a variety of shades, thus offering a wide range of aesthetic possibilities. Anodized aluminum sheets are highly sought after in the field of architecture, particularly for constructing facades, due to their enduring and visually pleasing appearance. Furthermore, the anodized layer bolsters the aluminum's resistance to corrosion and wear, making it suitable for both indoor and outdoor applications. Moreover, anodized aluminum sheets can be subjected to additional processes like etching or laser engraving, enabling the creation of intricate designs and patterns.
Q: I am doing a project on Aluminum it has 13 protons just to make sure everyones on the same page. How much of it is left or exsits? Also how does it behave?
As Vincent noted, aluminium is an abundant element in the earth's crust. It occurs in all clay minerals. Its main ore, bauxite(a mixture of aluminium hydroxides) is still available in vast deposits; particularly in Australia and South America. Aluminium is a reactive element, and so is not found in nature in the elemental form. Aluminium is a metal, and an amphoteric substance; that is; it reacts with both acids and bases.
Q: Can aluminum sheet be used for chemical processing?
Aluminum sheet is indeed applicable for chemical processing. Its versatility and resistance to corrosion make it a sought-after material in various industries, including chemical processing. The remarkable attribute of aluminum is its ability to withstand numerous chemicals, such as acids, alkalis, and salts. Therefore, it is well-suited for situations where exposure to corrosive substances is prevalent. Moreover, aluminum possesses the advantages of being lightweight, long-lasting, and possessing excellent thermal conductivity. These qualities make it a prime choice for facilitating heat transfer and promoting energy-efficient procedures in chemical industries. However, it is crucial to assess the specific chemical environment and seek guidance from experts to guarantee the compatibility of aluminum with the particular chemicals and conditions involved in the process.
Q: Could ring-pull can be transformed as aluminum sheet?
Yes
Q: Can 101 aluminum sheets be anodized for outdoor architectural applications?
Indeed, it is possible to anodize 101 aluminum sheets for outdoor architectural purposes. Anodizing, a procedure that enhances aluminum's protective layer, grants it increased resistance against corrosion and deterioration. This technique is frequently employed in architectural applications to safeguard aluminum from outdoor elements. By subjecting the 101 aluminum sheets to anodization, they can be rendered sturdier and better suited for outdoor utilization, guaranteeing their long-lasting appearance and performance.
Q: Are 101 aluminum sheets resistant to UV radiation?
Yes, 101 aluminum sheets are generally resistant to UV radiation.
Q: (given the fact that specific gravity of aluminum is 2.7)1. What is its volume?2. The ingot is suspended from a rope and totally immersed in water. What is the tension in the rope (the apparent weight of the ingot in water)?
first find the volume of your aluminium. youll need this when analyzing the bouant force F(b). the sg of aluminum is 2.7 and the density of water is 1000 kg/m^3 so the density of aluminum is 2.7x1000=2700kg/m^3. the mass is 71N/g = 7.237512742 kg. so volume of our piece of aluminum = mass/density = 0.0026805603 m^3 now analyze the forces being applied to the system. There are three, the force of gravity F(g), the buoyant force F(b) and the tension T. Tension and buoyant force push up, gravity pulls down. the system will be at rest since the rope is holding it at rest. so T + F(b) - F(g) = 0 T + (Volume aluminum X density water X g) - (MAss of aluminum x g) = 0 T + (0.0026805603x1000x9.81) - (71 N (given in problem)) = 0 Solving for T, T = 44.70370346 N = 45 N using sig figs.

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