• 6061 Aluminum Thick Plate for mold production System 1
  • 6061 Aluminum Thick Plate for mold production System 2
  • 6061 Aluminum Thick Plate for mold production System 3
6061 Aluminum Thick Plate for mold production

6061 Aluminum Thick Plate for mold production

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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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Item specifice

Grade:
5000 Series,6000 Series
Surface Treatment:
Mill Finish
Shape:
Flat
Temper:
O-H112
Application:
Transportation Tools,Decorations,Heat Sink

1.Structure of Aluminum Thick Plate for mold production

The alloy 6061 has very good welding characteristics and may be welded by all of the common welding techniques. Gas tungsten arc welding is generally used for thin sections and gas metal arc welding is used for heavier sections.Commonly used in the manufacture of heavy-duty structures requiring good corrosion resistance, truck and marine components, railroad cars, furniture, tank fittings, general structural and high pressure applications, wire products, and in pipelines.

 

 6061 Aluminum Thick Plate for mold production

2.Main Features of Aluminum Thick Plate for for Boat and Lighting

Good mechanical properties.

Easy processing, wearability.

Corrosion resistance 

Resistance to oxidation.


3. Aluminum Thick Plate Images:


6061 Aluminum Thick Plate for mold production



 

6061 Aluminum Thick Plate for mold production

6061 Aluminum Thick Plate for mold production





4. Aluminum Thick Plate for for Boat and Lighting Specification:

Chemical Composition Limits for Aluminum Alloys

Composition in percent by weight according to The Aluminum Association. The values associates maximum limits unless shown as a range or a minumum.

AlloySiFeCuMnMgCrZnTiOthers EachOthers TotalAl. Min.
60610.40-
0.8
0.70.15-
0.40
0.150.8-
1.2
0.04-
0.35
0.250.150.050.15Rem.
70750.400.501.2-2.00.302.1-
2.9
0.18-
0.28
5.1-
6.1
0.200.050.15Rem.
20240.500.503.8-4.90.30-0.91.2-
1.8
0.100.250.150.050.15Rem.


5.FAQ

Q1.How long have you been in this product?
A1:More than 10 years.
 
Q2. What's the minium quantity(MOQ)?
A2. 5 Metric tons
 
Q3. How long is shipping time?
A3. 7 (ready-made products)-25 days(OEM)
 
Q4. How do you guarantee the quality?
A4. 1. Cooperating and Exchanging experience with several quoted aluminum companies
    2. Japanese and Swiss production line and skilled works (regular training and testing)
    3. more than 10 years production experience.
 
Q5. Do you have after sale service?
A5. Yes. Any quality problem occurs within one year, pls take photoes and video,we will be responsible.


Q:Can aluminum sheet withstand heavy loads?
Indeed, the durability of aluminum sheet is such that it can endure substantial loads. Renowned for its exceptional strength-to-weight ratio, aluminum proves to be an exceptional selection for endeavors necessitating both resilience and load-bearing capacities. Notably prevalent in sectors like aerospace, automotive, construction, and marine, aluminum sheets are frequently employed in scenarios involving weighty burdens. Moreover, the innate corrosion resistance of aluminum further fortifies its capacity to bear heavy loads for extensive durations. Nevertheless, it is crucial to take into account the precise grade and thickness of the aluminum sheet, as diverse alloys and thicknesses yield differing load capacities.
Q:Are aluminum sheets suitable for use in HVAC (heating, ventilation, and air conditioning) systems?
Yes, aluminum sheets are suitable for use in HVAC systems. Aluminum is a popular material choice for HVAC systems due to its various beneficial properties. Firstly, aluminum is lightweight yet strong, making it easy to handle and install in HVAC systems. Its low density also allows for cost-effective transportation and reduces the overall weight of the HVAC units. Secondly, aluminum has excellent corrosion resistance. HVAC systems often encounter moisture and condensation, especially in air conditioning units, and aluminum's resistance to corrosion ensures its durability and longevity in such environments. Additionally, aluminum sheets have good thermal conductivity, allowing for efficient heat transfer throughout the HVAC system. This property is particularly important in heating and cooling applications, as it helps to distribute the desired temperature effectively. Moreover, aluminum is a non-toxic material, making it safe for use in HVAC systems that circulate air throughout buildings. It does not release any harmful particles or gases into the air, ensuring the quality of indoor air. Lastly, aluminum is a highly recyclable material, making it environmentally friendly. The ability to recycle aluminum sheets reduces the carbon footprint associated with HVAC systems and aligns with sustainability goals. Considering all these advantages, aluminum sheets are indeed suitable for use in HVAC systems, providing an optimal balance of strength, corrosion resistance, thermal conductivity, safety, and environmental friendliness.
Q:What are the different types of alloys used for aluminum sheets?
Aluminum sheets can be made from different types of alloys, each with its own unique properties and uses. Here are some of the most commonly used ones: - The 1100 alloy is pure aluminum and has excellent resistance to corrosion and good formability. It is often utilized for general sheet metal work like roofing and siding. - The 3003 alloy is similar to 1100 but contains added manganese, which makes it slightly stronger. It is commonly employed for applications that require moderate strength and good resistance to corrosion, such as packaging and automotive parts. - The 5052 alloy is renowned for its exceptional corrosion resistance, particularly in marine environments. It is also highly formable and weldable, making it suitable for various applications like fuel tanks, marine components, and architectural panels. - The 6061 alloy is one of the most versatile and widely used aluminum alloys. It offers excellent strength, weldability, and resistance to corrosion. It is commonly found in structural applications like aircraft parts, bicycle frames, and automotive components. - The 7075 alloy is a high-strength alloy frequently utilized in aerospace and military applications. It exhibits excellent resistance to fatigue and is easily machinable. It is typically employed for aircraft structures, missile parts, and high-stress components. These examples illustrate the variety of aluminum alloys available for sheet production. The choice of a specific alloy depends on desired properties, such as strength, resistance to corrosion, formability, and cost, as well as the intended application.
Q:What is the reflectivity of aluminum sheets?
The reflectivity of aluminum sheets is quite high, typically ranging from 80% to 95%, which makes them excellent for various applications that require high levels of reflection, such as mirrors, solar panels, and decorative surfaces.
Q:Are the aluminum sheets suitable for manufacturing aircraft interiors?
Aluminum sheets are an excellent choice for producing aircraft interiors. Not only is aluminum lightweight, but it is also strong and durable, making it perfect for aerospace applications. Its high strength-to-weight ratio allows for the creation of fuel-efficient and lightweight aircraft. Moreover, aluminum sheets are highly resistant to corrosion, which is vital in the aerospace industry. Aircraft interiors are exposed to various environmental factors like humidity and temperature changes. The corrosion resistance of aluminum ensures that the aircraft interior components remain reliable and long-lasting, thereby reducing maintenance and replacement expenses. Additionally, aluminum sheets can be easily fabricated and shaped into different forms. This feature enables the production of intricate and customized aircraft interior components. Aluminum sheets can be effortlessly cut, bent, and welded, offering design flexibility and allowing manufacturers to create visually appealing interior designs. Apart from these technical advantages, aluminum is also an environmentally sustainable material. It is 100% recyclable, making it an eco-friendly option for aircraft interiors. Recycling aluminum requires significantly less energy compared to primary aluminum production, thereby reducing the carbon footprint associated with manufacturing. In conclusion, the combination of its lightweight nature, corrosion resistance, ease of fabrication, and sustainability makes aluminum sheets highly suitable for manufacturing aircraft interiors.
Q:Can aluminum sheet be anodized?
Indeed, it is possible to anodize aluminum sheet. Anodization, an electrochemical process, fortifies the natural oxide layer on the aluminum's surface, resulting in increased thickness, durability, and suitability for diverse applications. The procedure entails submerging the aluminum sheet into an electrolyte solution and passing an electric current through it. This prompts the release of oxygen ions from the electrolyte, which then combine with the aluminum, generating a fresh layer of aluminum oxide. Anodization allows for the creation of an array of colors on the aluminum sheet's surface, enhances its resistance to corrosion, and provides an improved surface for the adhesion of paints or coatings.
Q:What are the different surface treatments available for aluminum sheet?
Aluminum sheet offers a variety of surface treatments, each with its own benefits and purposes. Anodizing, painting, powder coating, and polishing are some of the most commonly used methods. Anodizing, for instance, involves an electrochemical process that develops a protective oxide layer on the aluminum sheet's surface. This treatment not only enhances its corrosion resistance but also adds an attractive finish. Anodized aluminum can be dyed in different colors, making it a popular choice for architectural and decorative uses. Painting, on the other hand, is a widely employed surface treatment for aluminum sheet. It entails applying a liquid paint coating to the surface, providing protection and aesthetic appeal. Painted aluminum sheets are frequently utilized in building facades, automotive parts, and other applications where a vibrant and long-lasting finish is desired. Powder coating, a dry finishing process, is also popular. It involves electrostatically applying a powder coating to the aluminum sheet and then curing it under heat. This treatment offers excellent corrosion resistance, durability, and a wide range of color options. Powder-coated aluminum sheets are often found in outdoor furniture, commercial signage, and architectural applications. For a smooth and shiny finish, polishing is a mechanical surface treatment that involves grinding or buffing the aluminum sheet. This treatment is commonly used for decorative purposes in jewelry, automotive trim, and upscale appliances. Choosing the right surface treatment for aluminum sheet depends on the intended application and desired appearance. Each treatment has unique properties and characteristics, so consulting with experts or professionals in the field is highly recommended to determine the most suitable option for specific requirements.
Q:Are 101 aluminum sheets suitable for radiator manufacturing?
Yes, 101 aluminum sheets are suitable for radiator manufacturing.
Q:I am looking to purchase a pressure cooker and the size that i want comes in aluminum while alot of the others are made from stainless steel. I am wondering if the metal makes a difference in the funtionality and if one doesn't stand up as well as the other.
This Site Might Help You. RE: Pressure cooker - aluminum vs. stainless steel? I am looking to purchase a pressure cooker and the size that i want comes in aluminum while alot of the others are made from stainless steel. I am wondering if the metal makes a difference in the funtionality and if one doesn't stand up as well as the other.
Q:How do you prevent oil or grease stains on aluminum sheets?
One effective way to prevent oil or grease stains on aluminum sheets is to apply a protective coating or finish. This can be done by using a specialized oil-resistant sealant, such as a clear lacquer or anodizing the aluminum. Additionally, maintaining a clean and dry surface, regularly wiping away any spills or residue, and using non-greasy or oil-free tools and equipment can help minimize the chances of stains occurring.

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