• Aluminum Sheets for Printing - Checkered/Embossed Aluminum Sheet System 1
  • Aluminum Sheets for Printing - Checkered/Embossed Aluminum Sheet System 2
  • Aluminum Sheets for Printing - Checkered/Embossed Aluminum Sheet System 3
Aluminum Sheets for Printing - Checkered/Embossed Aluminum Sheet

Aluminum Sheets for Printing - Checkered/Embossed Aluminum Sheet

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
5 m.t.
Supply Capability:
10000 m.t./month

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Description

 

Aluminum sheet checkered /Aluminum sheet embossing sheet

Material

1000 series: 1050. 1070. 1100
2000 series: 2011. 2014. 2017. 2018. 2024.

2025. 2117. 2218. 2618.
3000 series: 3003. 3004.
4000 series: 4032. 4043. 4543.
5000 series: 5005. 5050. 5052. 5056. 5083.5086. 5154. 5205. 5252. 5254. 5356. 5357.5454. 5456. 5457. 5652. 5657.

6000 series: 6005. 6011. 6053. 6351. 6061.

6101. 6151. 6201. 6261. 6262. 6063. 6463. 6066.6070

7000series: 7001. 7005. 7072. 7075. 7076. 

7175. 7178. 7079

8000 series:8011,8021,8079 etc

StandardGB/T17748-2008
CertificationISO9001,ISO14001, ISO9001:2000
Temper

T4,T5,T6,H111,H112

Surface treatmentPolished,Mill Finished,anodized  or power sprayed  
FeaturesHigh weather resistance anti scratch anticorrosion and good weather resistance subtle edges and elegant appearance and easy processing and installation high brightness and hardness
Resolution2%-98%
Advantages

1)Excellent machining properties
Easy to weld

2)Suited to marine and low temp applications
3)Very good for anodic reaction
Particularly suited to structural applications Aerial aluminum

NoteIf you have any other questin,welcome for your consultation


Products details:

1)Chemical compositions&mechanical property&Size

Alloy

Si

Fe

Cu

Mn

Mg

Cr

Zn

Ti

Al

5005

0.30

0.70

0.20

0.20

0.50-1.10

0.10

0.25

-

spare

5052

0.25

0.40

0.10

0.10

2.2-2.8

0.15-0.35

0.10

spare

5083

0.40

0.40

0.10

0.40-1.0

4.0-4.9

0.05-0.25

0.25

0.15

spare

6060

0.30

-0.6

0.10

-0.30

≤0.10

≤0.10

0.35~0.6

≤0.05

≤0.15

≤0.10

spare

 

Alloy

Thickness

(mm)

Width

(mm)

Length

(mm)

Temper

DC or CC

1050,1060,

1070,1100,

1235

1)0.2-3.0;

2)3.0-150

300-1850;

900-1900

1000-8000

1)O,H12,H22,

H14,H24,H26,

H18,H32,

2)H112,H111;

1)DC,CC

2)DC

3003,3004,

3105,3005

1)0.2-3.0;

2)3.0-150

30-1850

900-1900

1000-8000

1)O,H12,H22,

H14,H24,H26,

H18,H32,

2)H112,H111;

1)DC,CC

2)DC

5052,5083,

5754,5005

1)0.2-3.0

2)3.0-150

300-1850

900-1900

1000-8000

1)O,H12,H22,

H14,H24,H26,

H18,H32,

2)H112,H111;

1)DC

2)DC

6061,6063

0.5-3.0

300-1500

1000-6000

T6,T321          

DC

6060

0.2-100

200-1500

≤12000mm

T4,T5,T6, 

H111,H112         

DC


Application

1) Home Lighting Lighting Network;

2)Solar reflective pieces;

3)architectural appearance;

4)Indoor decoration: ceiling, metope, etc

5)drying cabinet;

6)elevator;

7)scutcheon, luggage etc;

8)The car inside and outside decoration;

9) Indoor decorations, such as picture frames;

10) Household appliances: refrigerators microwave audio equipment, etc

11)Aerospace and military aspects, such as China's large aircraft manufacturing, the shenzhou spacecraft series, satellites, etc

12)Precision Parts Processing;

13)mould making;

14)Chemical/thermal insulation pipe coating etc

 

Packaging & Shipping

  3)Package and shipment:

Package: Standard seaworthy packing or as per request

Transports:Containler sizes:

20ft GP:5898mm(Length)x2352mm(Width)x2393mm(High)

40ft GP:12032mm(Length)x2352mm(Width)x2393mm(High)

40ft HC:12032mm(Lengh)x2352mm(Width)x2698mm(High)

20feet container load 25tons pipe whose length is under5.8m

 40feet container load 25tons pipe whose length is under11.8m

 

 

Our Services

1 Customer and reputation first

2 Timely feedback

3 Low MOQ
4Timely delivery
5 Competitive price
6Different size can be supplyed as your request
7 Professional service of technical and shipping support
8More than 30 years experience in the cold and hot rolled sheet/coil/stri experience  

Photos

Aluminum Sheet Checkered /Aluminum Sheet Embossing Sheet

Aluminum Sheet Checkered /Aluminum Sheet Embossing Sheet

Aluminum Sheet Checkered /Aluminum Sheet Embossing Sheet

Aluminum Sheet Checkered /Aluminum Sheet Embossing Sheet

Q: Are aluminum sheets suitable for welding?
Aluminum sheets are indeed suitable for welding, being widely used in various industries for their lightweight, corrosion resistance, and excellent thermal conductivity. However, welding aluminum presents challenges due to its high thermal conductivity and the formation of an oxide layer on its surface. Nevertheless, successful welding of aluminum sheets can be achieved with proper techniques and equipment. Tungsten Inert Gas (TIG) welding and Metal Inert Gas (MIG) welding are commonly employed for aluminum welding. These processes allow for precise heat control and the use of shielding gases to protect the weld pool from oxidation. In addition, achieving strong and reliable welds requires proper surface preparation, cleaning, and the use of specialized aluminum welding wires or rods. Overall, while specific techniques and equipment may be necessary, welding aluminum is feasible and widely practiced in various industries.
Q: Is it possible to utilize aluminum sheets in the interior design of vehicles?
<p>Yes, aluminum sheets can be used for car interiors. They are lightweight, durable, and resistant to corrosion, making them suitable for various interior applications such as door panels, dashboards, and trim. Aluminum's malleability allows for easy shaping into complex designs, and it can be finished in various ways to match the aesthetic of the vehicle's interior. Additionally, its strength-to-weight ratio contributes to fuel efficiency and performance. However, it's important to consider the specific alloy and treatment of the aluminum to ensure it meets safety and comfort standards.</p>
Q: How do you prevent distortion of aluminum sheets during welding?
Distortion of aluminum sheets during welding can be prevented by implementing several measures. Firstly, utilizing proper welding techniques such as using appropriate heat input, controlling the welding speed, and using a suitable welding process can minimize distortion. Additionally, employing proper fixturing and clamping techniques to secure the sheets in place during welding can help maintain their shape. Pre-heating or post-weld heat treatment can also be employed to alleviate residual stresses and minimize distortion. Lastly, selecting the right filler material and adjusting its composition can aid in reducing distortion during the welding process.
Q: Can aluminum sheets be an alternative to wood in certain applications?
Certainly, aluminum sheets can serve as a viable substitute for wood in specific applications. Aluminum boasts numerous advantages over wood, rendering it a favored choice across various industries. Primarily, aluminum exhibits exceptional durability and longevity due to its resistance to corrosion, rot, and pests. Consequently, it proves ideal for outdoor usage or areas with high moisture levels. Moreover, aluminum sheets are lightweight, facilitating easier handling and transportation in comparison to wood. Additionally, they possess a commendable strength-to-weight ratio, enabling them to withstand heavy loads while maintaining their structural integrity. Moreover, aluminum stands as a sustainable material, capable of indefinite recycling without compromising its properties. Conversely, wood necessitates the felling of trees, thereby carrying environmental implications. Aluminum sheets also offer a high degree of design flexibility, readily assuming complex structures through shaping, bending, and forming. This adaptability allows for innovative and creative applications. Furthermore, aluminum exhibits excellent thermal and electrical conductivity, rendering it suitable for scenarios where heat dissipation or electrical conductivity plays a crucial role. Nonetheless, it is crucial to acknowledge that wood retains its unique characteristics and benefits in certain applications. Wood imparts a warm and natural aesthetic that aluminum fails to replicate, making it a preferred choice in interior design or furniture manufacturing. Additionally, wood qualifies as a renewable resource and exhibits excellent insulation properties, proving advantageous in construction or insulation applications. Consequently, while aluminum sheets can serve as a fantastic substitute for wood in numerous instances, the ultimate choice hinges upon the specific requirements and desired outcomes of the application at hand.
Q: I had this mandarin orange can. I filled the can with water. Four days later, there are quarter inch thick rust cakes on the inside of the can. Since I assume the can is aluminum, are these cakes aluminum oxide? If so, is it flammable and/or dangerous?
Aluminum oxide is white and powdery in texture. It also takes a bit longer for aluminum to oxidize than iron, so I don't think you could have cakes of aluminum oxide in 4 days. If the cakes you are describing are reddish in color, then no, it is NOT aluminum oxide. It is good old fashioned ferric oxide- rust from iron.
Q: Can aluminum sheet be used for food packaging?
Yes, aluminum sheet can be used for food packaging. Aluminum is a popular choice for food packaging due to its unique properties. It is lightweight, flexible, and has excellent barrier properties that protect the food from moisture, oxygen, and light. This helps to extend the shelf life of the products and maintain their freshness. Aluminum sheet is commonly used for packaging various food items such as beverages, snacks, dairy products, and ready-to-eat meals. Additionally, aluminum is non-toxic and does not react with food, making it safe for direct contact with consumables. Its ability to be easily formed into different shapes and sizes also makes it suitable for various packaging requirements. Overall, aluminum sheet is a reliable and widely used material for food packaging due to its durability, protective properties, and safety standards.
Q: What specific criteria or conditions must be met when utilizing high-quality aluminum sheets in construction?
<p>High-quality aluminum sheets used in construction projects require adherence to specific standards. They must possess high strength, corrosion resistance, and durability to withstand environmental conditions. Compliance with industry standards such as ASTM or ISO is crucial. Additionally, the sheets should be compatible with other construction materials and meet safety regulations. Proper installation techniques and qualified personnel are also essential to ensure the integrity and longevity of the construction project.</p>
Q: What are the different methods of cutting aluminum sheet?
Various methods exist for cutting aluminum sheet, each offering unique advantages and applications. 1. Shearing: Employing a sharp blade, shearing provides a quick and efficient process for straightforward cuts. However, it may not be suitable for complex or intricate designs. 2. Laser cutting: By utilizing a high-powered laser beam, laser cutting achieves precise and clean cuts. This method is ideal for intricate designs, allowing for detailed and accurate cuts. Additionally, laser cutting can be automated, making it suitable for large-scale production. 3. Waterjet cutting: With a high-pressure stream of water mixed with abrasive materials, waterjet cutting is versatile and capable of handling various materials and thicknesses. It produces smooth and precise cuts without generating heat, making it suitable for heat-sensitive materials. 4. Plasma cutting: Plasma cutting involves using a plasma torch to heat and melt the aluminum sheet, resulting in a cut. It is a fast and cost-effective method, particularly for thicker sheets. However, the cut may not be as clean as laser or waterjet cutting. 5. CNC milling: By employing a rotating cutting tool, known as Computer Numerical Control (CNC) milling, material is removed from the aluminum sheet to create a cut. This method offers precision and the ability to produce complex shapes and designs. It is commonly used for prototypes or small production runs. When selecting the appropriate method for cutting aluminum sheet, factors to consider include desired cut quality, design complexity, material thickness, and production volume.
Q: How are aluminum sheets measured and specified?
Aluminum sheets are typically measured and specified based on their thickness, width, and length. The thickness is commonly referred to as the gauge, and it is measured in inches or millimeters. The sheet's width and length are also specified in either inches or millimeters. To measure the thickness of an aluminum sheet, a gauge is used. The gauge is a standardized measurement tool that determines the sheet's thickness. The lower the gauge number, the thicker the sheet. For example, a 10-gauge aluminum sheet is thicker than a 16-gauge sheet. The width and length of an aluminum sheet are typically measured in inches or millimeters. The width refers to the horizontal measurement of the sheet, while the length refers to the vertical measurement. These dimensions are crucial in determining the sheet's size and suitability for specific applications. In addition to the gauge, width, and length, aluminum sheets may also be specified based on their alloy composition or temper. The alloy composition indicates the specific combination of metals present in the sheet, such as aluminum-magnesium, aluminum-zinc, or aluminum-copper alloys. The temper refers to the heat treatment process the sheet has undergone, which affects its mechanical properties, such as hardness and flexibility. Overall, aluminum sheets are measured and specified by their thickness (gauge), width, and length. These measurements, along with additional specifications like alloy composition and temper, help ensure the appropriate selection and use of aluminum sheets for various applications in industries such as construction, automotive, aerospace, and more.
Q: What are the advantages of using aluminum sheets over other materials?
There are several advantages of using aluminum sheets over other materials. Firstly, aluminum is a lightweight material, making it easier to handle and transport compared to heavier materials such as steel. This makes it more convenient for various applications, especially in industries where weight reduction is important. Secondly, aluminum has a high strength-to-weight ratio. Despite its lightweight nature, aluminum sheets are incredibly strong and have the ability to withstand heavy loads and impacts. This makes it an ideal choice for construction, aerospace, and automotive industries, where durability and structural integrity are crucial. Additionally, aluminum is highly corrosion-resistant. It forms a protective oxide layer that prevents rust and corrosion, even in harsh environments. This makes it suitable for outdoor applications, such as building facades, roofing, and marine structures, where exposure to moisture and other corrosive elements is a concern. Moreover, aluminum is a highly malleable material, allowing it to be easily formed into various shapes and sizes. It can be rolled into thin sheets or extruded into complex profiles, offering design flexibility for different applications. This makes aluminum sheets versatile and adaptable in a wide range of industries, including manufacturing, architecture, and transportation. Furthermore, aluminum is a sustainable and recyclable material. It has a relatively low melting point, requiring less energy to recycle compared to other materials. This makes aluminum sheets a more sustainable choice, promoting environmental conservation and reducing the carbon footprint. In conclusion, the advantages of using aluminum sheets over other materials include its lightweight nature, high strength-to-weight ratio, corrosion resistance, malleability, and sustainability. These properties make aluminum sheets an excellent choice for a variety of applications, where performance, durability, and environmental considerations are essential.

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