• 1050 Aluminium Sheet And Aluminum Plates System 1
  • 1050 Aluminium Sheet And Aluminum Plates System 2
  • 1050 Aluminium Sheet And Aluminum Plates System 3
1050 Aluminium Sheet And Aluminum Plates

1050 Aluminium Sheet And Aluminum Plates

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
8 m.t
Supply Capability:
3000 m.t/month

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1.Structure of Product Description

aluminum sheet, cold rolled, hot rolled, alumium coil, aluminum checkered sheet, aluminum mirror finish sheet are all our standard productions, etc.

which are widely used in the field of construction and decoration field, etc.

 

2. Main features of the product

a.Competitive price

b.Frist-Class Service.

c. Shortest service.

3. Image.

 

1050 Aluminium Sheet And Aluminum Plates

4. Product detailed sizes:

1000mm*2000mm,etc.

5. FAQ:

What is the quality standard?

---Usually our standard is GB3880-2006 or others.

What is the length range:

---It is from 2000mm to 6000mm, etc.

what is your MOQ noramlly?

---normally it is around 5 tons/each size.

how many tons did you export in each year?

---normally it is around 8000 tons totally.

which countries did you export before?

----normlaly is is all over the world, etc.





 

Q:Can the aluminum sheets be used in marine environments?
Yes, aluminum sheets can be used in marine environments. Aluminum is highly resistant to corrosion and has excellent marine-grade properties, making it a suitable material for various marine applications such as boat hulls, decks, and structures.
Q:What are the different alloys used in aluminum sheets?
Aluminum sheets utilize a variety of alloys, each possessing its own distinct properties and characteristics. Some commonly employed alloys include: 1. Alloy 1100: Renowned for its exceptional corrosion resistance and superior electrical conductivity, this alloy finds extensive utilization in applications necessitating high formability and weldability. Examples include food packaging and electrical conductors. 2. Alloy 3003: Esteemed for its formidable formability, moderate strength, and outstanding corrosion resistance, this alloy enjoys widespread application in cooking utensils, chemical equipment, and general sheet metal work. 3. Alloy 5052: Recognized for its robust strength and commendable corrosion resistance, this alloy frequently finds application in marine settings, as well as aircraft fuel tanks and automotive components. 4. Alloy 6061: One of the most versatile and frequently employed aluminum alloys, this variant boasts excellent corrosion resistance, satisfactory weldability, and moderate strength. It is commonly utilized in structural components like frames and railings, as well as automotive and aerospace applications. 5. Alloy 7075: Distinguished by its impressive strength-to-weight ratio and exceptional fatigue resistance, this alloy is often chosen for applications necessitating formidable strength, such as aircraft and aerospace components, as well as high-performance sporting goods. These examples merely scratch the surface of the numerous alloys employed in aluminum sheets. The selection of a particular alloy hinges on the specific requirements of the application, encompassing factors such as strength, corrosion resistance, formability, and weldability.
Q:What are the typical thicknesses of aluminum sheets?
The specific application and industry requirements can cause variations in the typical thicknesses of aluminum sheets. Nevertheless, there are several standard thicknesses commonly used, including 0.025", 0.032", 0.040", 0.050", 0.063", 0.080", 0.090", 0.100", 0.125", and 0.190" inches. These thicknesses find application in diverse industries like construction, automotive, aerospace, and manufacturing. It is worth mentioning that aluminum sheets can be tailored to meet precise thickness specifications for specialized applications.
Q:The diameter of a hole drilled through aluminum at 22°C is 7.50 mm. Find the diameter and the area of the hole at 89°C.
Aluminum okorder / So 7.50 * 22.2 * 10-6 * 89 = 0.0111555 mm diameter increase (should only report 3 sig figs, so 7.51 mm). The area is then pi / 4 * d^2 = 44.31017 (so 44.3) mm^2
Q:How is an aluminum sheet manufactured?
The process called rolling is used to manufacture an aluminum sheet. Initially, a large aluminum ingot is heated to a specific temperature in a furnace. Once the ingot reaches the desired temperature, it is transferred to a rolling mill. Within the rolling mill, the heated aluminum ingot is passed between a series of rolling stands. These stands consist of two steel rollers that apply pressure on the aluminum, steadily decreasing its thickness. As the ingot moves through each stand, the distance between the rollers is altered to achieve the desired thickness. Throughout the rolling process, the aluminum sheet is continuously cooled using water to prevent overheating. This cooling process also enhances the strength and hardness of the sheet. The specific cooling method may vary depending on the alloy and desired properties of the sheet. Once the desired thickness is achieved, the aluminum sheet undergoes further processing to improve its surface finish. This may involve techniques like annealing, where the sheet is heated and gradually cooled to relieve internal stresses and enhance workability. Finally, the aluminum sheet is cut into the desired sizes and shapes using shearing or sawing techniques. It can also undergo additional treatments such as coating, painting, or polishing, depending on its intended application. In summary, the manufacturing of an aluminum sheet involves heating the ingot, rolling it between sets of steel rollers to reduce its thickness, cooling it, and then further processing to achieve the desired surface finish and size. This process guarantees the production of top-quality aluminum sheets suitable for various industries, including construction, automotive, aerospace, and more.
Q:Are the aluminum sheets suitable for welding?
Aluminum sheets can indeed be welded. Welding aluminum is a popular choice because of its lightweight nature, high strength-to-weight ratio, and resistance to corrosion. Nevertheless, it is crucial to acknowledge that welding aluminum necessitates specific techniques and considerations that differ from those used with other metals. Aluminum possesses a lower melting point and higher thermal conductivity, making it more challenging to weld when compared to steel or other metals. For this reason, specialized welding processes like Tungsten Inert Gas (TIG) welding or Metal Inert Gas (MIG) welding with a spool gun are frequently employed for aluminum welding. Moreover, proper cleaning and preparation of the aluminum surface, along with the utilization of appropriate filler materials, are essential for achieving strong and enduring welds. In conclusion, by utilizing the appropriate equipment, techniques, and expertise, it is possible to successfully weld aluminum sheets and create various structures and components.
Q:How do you store aluminum sheets?
When storing aluminum sheets, it is crucial to take into account their size, weight, and overall condition. Below are some guidelines to follow: 1. Find an appropriate location: Locate a dry and well-ventilated area indoors with stable temperatures. This will prevent moisture and humidity from causing corrosion or harm to the aluminum sheets. 2. Guard against moisture: Wrap each aluminum sheet individually with plastic or moisture-resistant sheets. This will create a barrier against moisture and prevent potential corrosion. Avoid using materials that may react with aluminum, such as acidic or alkaline substances. 3. Arrange and stack: If you have multiple aluminum sheets, consider organizing them based on size, thickness, or other relevant factors. This will make it easier to access specific sheets without disturbing the entire stack. Place larger and heavier sheets at the bottom to prevent any potential damage. 4. Utilize racks or pallets: For a larger quantity of aluminum sheets, using racks or pallets can provide additional support and stability. Ensure that the racks or pallets are strong enough to handle the weight and designed to prevent deformation or bending of the sheets. 5. Label and document: Label each sheet with relevant information such as size, thickness, or specific details. Additionally, maintain a detailed inventory or catalog of your aluminum sheets to easily locate and retrieve specific ones when needed. 6. Regularly inspect: Periodically inspect your stored aluminum sheets to ensure they remain in good condition. Look for signs of corrosion, damage, or any other issues that may require immediate attention. By following these steps, you can effectively store aluminum sheets, safeguarding them from damage and ensuring their longevity.
Q:Can the aluminum sheets be used for manufacturing food packaging?
Yes, aluminum sheets can be used for manufacturing food packaging. Aluminum is a popular choice for food packaging due to its non-reactive nature, resistance to corrosion, and ability to maintain the freshness and quality of food products.
Q:Can aluminum sheets be anodized with custom designs?
Indeed, custom designs can be incorporated into aluminum sheets through anodization. Anodization, an electrochemical procedure, fortifies the inherent oxide layer on aluminum surfaces, rendering them sturdier and more resistant to corrosion. Throughout this process, diverse patterns and designs can be introduced onto the aluminum sheet by masking specific areas and exposing others to the anodizing solution. This grants the opportunity for personalized designs to be etched or dyed onto the surface, resulting in distinctive and individualized finishes. Anodized aluminum sheets with custom designs find widespread application across various industries, including architecture, automotive, and electronics, in order to fulfill both aesthetic and functional prerequisites.
Q:Can aluminum sheets be used for decorative ceiling panels?
Yes, aluminum sheets can be used for decorative ceiling panels. Aluminum is a versatile material that can be easily shaped, colored, and textured, making it ideal for creating visually appealing and modern ceiling designs. Additionally, aluminum is lightweight, durable, and resistant to corrosion, making it a practical choice for long-lasting decorative ceiling panels.

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