• Mill Finish Aluminum Sheets Florida AA1100 for Curtain Wall System 1
  • Mill Finish Aluminum Sheets Florida AA1100 for Curtain Wall System 2
Mill Finish Aluminum Sheets Florida AA1100 for Curtain Wall

Mill Finish Aluminum Sheets Florida AA1100 for Curtain Wall

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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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Specification

Grade:
1000 Series
Surface Treatment:
Mill Finish
Shape:
Square
Temper:
O-H112
Application:
Decorations

1.       Specification of Mill Finish Aluminium Sheet Alloy AA1100 for Curtain Wall

Alloy Number

AA1xxx 3xxx 5xxx

Temper

H12, H14, H16, H18, H22, H24, H26, H32, HO, F

Thickness

0.1mm – 500mm

Width

10mm- 2200mm

Standard

GB/T3880-2006, ASTM, ISO, EU standard

2.    Application of Mill Finish Aluminium Sheet Alloy AA1100 for Curtain Wall

(1).Interior: wall cladding, ceilings, bathrooms, kitchens and balconies, shutters, doors...

(2).Exterior: wall cladding, facades, roofing, canopies, tunnels,column covers , renovations...

(3).Advertisement: display platforms, signboards, fascia, shop fronts...

 

3.    Feature of Mill Finish Aluminium Sheet Alloy AA1100 for Curtain Wall

Surfact Quality :

 Be free from Oil Stain, Dent, Inclusion, Scratches, Stain, Oxide Dicoloration, Breaks, Corrosion, Roll Marks, Dirt Streaks and other defect which will interfere with use,

 

Mechenical Property:

Chemical Composite and Mechanical Property

 

4.    Certificate:

SGS and ROHS(if client request, paid by client), MTC(plant provided), Certificate of Origin(FORM A, FORM E, CO),  Bureau Veritas and SGS (if client request, paid by client), CIQS certificate

 

5.    Image of Mill Finish Aluminium Sheet Alloy AA1100 for Curtain Wall 

Mill Finish Aluminium Sheet Alloy AA1100 for Curtain Wall

Mill Finish Aluminium Sheet Alloy AA1100 for Curtain Wall

Mill Finish Aluminium Sheet Alloy AA1100 for Curtain Wall

Mill Finish Aluminium Sheet Alloy AA1100 for Curtain Wall

Mill Finish Aluminium Sheet Alloy AA1100 for Curtain Wall


6.    Package and shipping of Mill Finish Aluminium Sheet Alloy AA1100 for Curtain Wall

First, plastic cloth with drying agent inside; Second, Pearl Wool ; Third, wooden cases with dry agent , fumigation wooden pallets, aluminum surface could cover blue PVC film

 

7.    FAQ

1) What is the delivery time?

Dpends on actual order, around 20 to 35 days

2)What is the QC system:

We have QC staff of 20 persons and advanced equipment, each production is with MTC traced from Aluminum ingot lot.

3) What market do you mainly sell to?

Australia, America, Asia, Middle East, Western Europe, Africa etc


Q: What can I do to remove the paint from the painted aluminum sheet?
The aluminum need scraping, the car is not easy to enamel paint.Is the aluminum plate with a thickness of more than 0.2mm to 500mm, 200mm width, length less than 16m aluminum material called aluminum plate or aluminum sheet, aluminum is below 0.2mm, 200mm within the width of the row material or bar (of course, with the progress of the large equipment, the width can be 600mm row material also more).
Q: Can aluminum sheet be used for heat exchangers?
Indeed, aluminum sheet can be effectively utilized in heat exchangers. The utilization of aluminum as a material for heat exchangers is widespread owing to its remarkable thermal conductivity, lightweight nature, and resistance to corrosion. The remarkable thermal conductivity of aluminum facilitates the efficient transfer of heat between fluids, rendering it suitable for a multitude of heat exchange applications. Furthermore, aluminum is obtainable in diverse alloys and thicknesses, granting adaptability in design and customization to cater to specific heat exchanger prerequisites. On the whole, aluminum sheet emerges as a favored option for heat exchangers in industries encompassing automotive, HVAC, and aerospace.
Q: how to find 0.6mm waste strake of aluminum sheet?
Heating wire is mainly used for electrical heating, has large power consumption. But aluminum sheet’s cooling fin mainly uses steam or hot water to conduct Thermal dissipation, it needs hot water or steam boiler. Comparatively, Heating wire conducts Thermal dissipation quicker, but cools quicker after power outage. Aluminum sheet is in the opposite condition.
Q: Are aluminum sheets suitable for aerospace structural components?
Yes, aluminum sheets are suitable for aerospace structural components. Aluminum is a lightweight and durable material that has been widely used in the aerospace industry for many years. It possesses excellent strength-to-weight ratio, making it highly desirable for various applications in aircraft manufacturing. Aluminum sheets offer several advantages for aerospace structural components. Firstly, they are lightweight, which helps reduce the overall weight of the aircraft. This is crucial for improving fuel efficiency, increasing payload capacity, and enhancing the performance of the aircraft. Additionally, the lightweight nature of aluminum sheets allows for easier handling and assembly during the manufacturing process. Secondly, aluminum has excellent corrosion resistance properties. This is crucial for aerospace applications as the components are exposed to various environmental conditions, such as high humidity, extreme temperatures, and exposure to chemicals. The corrosion resistance of aluminum ensures the longevity and durability of the structural components, reducing the need for frequent maintenance and replacement. Furthermore, aluminum is a highly malleable material, allowing for easy shaping and forming into complex structures. It can be easily bent, cut, and fabricated to meet specific design requirements, making it versatile for various aerospace applications. The ability to form complex shapes with aluminum sheets enables engineers to design efficient and streamlined structures, optimizing aerodynamics and minimizing drag. Another advantage of aluminum sheets is their excellent thermal conductivity. This property allows for efficient heat dissipation, which is crucial in aerospace applications where components may be exposed to high temperatures generated during flight or engine operation. The thermal conductivity of aluminum helps prevent overheating and ensures the structural integrity of the components. In conclusion, aluminum sheets are highly suitable for aerospace structural components due to their lightweight, corrosion resistance, malleability, and thermal conductivity properties. These characteristics make aluminum an ideal material for various applications in the aerospace industry, contributing to the overall performance, efficiency, and safety of aircraft.
Q: Can aluminum sheet be used for architectural applications?
Aluminum sheet is indeed suitable for architectural purposes, thanks to its impressive strength, durability, and resistance to corrosion. It is widely utilized in the construction field for various architectural applications such as cladding, roofing, and facades. Architects and designers can select aluminum sheets in different thicknesses to meet their specific aesthetic and functional requirements. These sheets can be easily shaped, bent, and formed to create distinctive architectural elements like panels, screens, louvers, and decorative features. Moreover, aluminum sheets can be coated or finished to enhance their appearance and protect them from environmental factors. Techniques such as anodizing, powder coating, or painting can be employed to improve the material's resilience against weathering, UV radiation, and pollution. Due to its lightweight nature, aluminum is favored for architectural applications as it reduces the overall weight of the structure and facilitates convenient installation. Additionally, aluminum is an environmentally friendly option for architectural projects as it can be recycled infinitely, thus promoting sustainability. To summarize, aluminum sheets are a highly viable and popular choice for architectural purposes because of their strength, versatility, durability, and aesthetic appeal.
Q: Are aluminum sheets suitable for electrical applications?
Aluminum sheets are appropriate for electrical applications, as they possess numerous advantages. Primarily, aluminum is a highly conductive metal, which has led to its increasing popularity in electrical applications. Furthermore, its lightweight nature and exceptional heat dissipation properties make it an optimal choice for applications that necessitate efficient thermal management. This is particularly critical in electrical systems where heat generation occurs, including power transmission lines, electrical panels, and heat sinks. Moreover, aluminum sheets exhibit high resistance to corrosion. Unlike certain other metals, aluminum forms a protective oxide layer on its surface, preventing further oxidation and corrosion. This makes it a reliable option for electrical applications that are exposed to harsh environments or moisture. Additionally, aluminum is a cost-effective alternative compared to other metals frequently used in electrical applications, such as copper. It is easily obtainable and has a lower price point, making it appealing to both manufacturers and consumers. However, it is important to acknowledge that aluminum has lower electrical conductivity than copper. Consequently, for certain applications where high conductivity is essential, such as power transmission lines, copper may still be preferred. Nonetheless, advancements in technology and design have enabled aluminum to be effectively utilized in a wide range of electrical applications, encompassing wiring, connectors, bus bars, and transformers. In summary, aluminum sheets are indeed suitable for electrical applications, offering advantages like lightweight construction, exceptional thermal management, corrosion resistance, and cost-effectiveness. The ultimate determination of whether to employ aluminum or another material hinges on the specific requirements and limitations of the electrical application in question.
Q: What are the potential safety issues that may arise from the use of aluminum sheets?
<p>Aluminum sheets are generally safe to use in most applications. However, there are a few safety concerns to consider. First, aluminum can be a skin irritant for some individuals, so it's important to wear protective gloves when handling. Second, aluminum dust, when inhaled, can cause respiratory issues. Proper ventilation should be maintained during cutting or grinding operations. Lastly, aluminum can conduct electricity, so it should not be used in electrical applications without proper insulation. Always follow safety guidelines and use protective equipment when working with aluminum sheets to minimize these risks.</p>
Q: Can aluminum sheets be used in automotive applications?
Yes, aluminum sheets can be used in automotive applications. Aluminum is lightweight, corrosion-resistant, and has good strength-to-weight ratio, making it an ideal material for manufacturing automotive components such as body panels, engine parts, and structural components.
Q: This question asks for a list of various types of aluminum profiles that are typically used in conjunction with aluminum sheets.
<p>Aluminum profiles are extruded shapes commonly used with aluminum sheets for various applications. The different types include: 1. Angle profiles, which are used for corners and edges. 2. Channel profiles, suitable for creating channels or frames. 3. T-slot profiles, ideal for modular systems requiring adjustable components. 4. U-channel profiles, used for covering edges and creating frames. 5. H-profiles, often used in structural applications. 6. Flat bar profiles, used for simple straight edges. 7. Round and square tube profiles, used for structural support and design elements. 8. Special profiles, which are custom-made for specific applications. These profiles are chosen based on the structural needs and design requirements of the project.</p>
Q: I'd like to have the aluminum on the etching front white. Do any of the experts know that?
After anodizing, it turns white. If not, the aluminum plate should be white and spray polyester or fluorocarbon paint,

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