• POLISHED ALUMINIUM PLATES FOR MOLD PRODUCTION System 1
  • POLISHED ALUMINIUM PLATES FOR MOLD PRODUCTION System 2
  • POLISHED ALUMINIUM PLATES FOR MOLD PRODUCTION System 3
POLISHED ALUMINIUM PLATES FOR MOLD PRODUCTION

POLISHED ALUMINIUM PLATES FOR MOLD PRODUCTION

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Loading Port:
Shanghai
Payment Terms:
TT or LC
Min Order Qty:
3 m.t.
Supply Capability:
4000 m.t./month

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1.Structure of Product Description:Polished aluminium sheets 6061 for mold production

 

2. Our Strength:

a.Competitive price

b.Frist-Class Service.

c. Shortest service.

 

3. Image:

 

Aluminium Sheet And Aluminum Plate Stocks And Aluminum Slabs

 

4. Common Specification

 

1000mm*2000mm, 1500*3000mm, etc.

 

5. FAQ:

 

 

What is the quality standard?

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

What is the width range?

---It is from 1000mm to 2500mm, etc.

What is the length range:

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

What is the MOQ for your products yet?

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

What is your mainly products?

---Normally they are aluminum sheet, checkered sheet,

mirror finish aluminium sheet, aluminum casting coil, etc.

 

 

Q:I want to use one aluminum bottle, rather than several plastic ones. And this may sound stupid, but will an aluminum water bottle be safe to put in the fridge?
Water Bottle Fridge
Q:Are aluminum sheets suitable for aerospace fuel tanks?
Yes, aluminum sheets are suitable for aerospace fuel tanks. Aluminum is a commonly used material in the aerospace industry due to its lightweight yet durable properties. It offers a good strength-to-weight ratio, making it ideal for fuel tanks that need to be strong enough to withstand the forces of flight while keeping the overall weight of the aircraft as low as possible. Additionally, aluminum is resistant to corrosion, which is crucial for aerospace fuel tanks as they are exposed to various fuels and environmental conditions. The ease of fabrication and availability of aluminum also make it a cost-effective choice for aerospace applications. Overall, aluminum sheets are a suitable material for aerospace fuel tanks due to their strength, lightweight nature, corrosion resistance, and cost-effectiveness.
Q:Can aluminum sheets be used for food packaging?
Yes, aluminum sheets can be used for food packaging. Aluminum is a safe and widely used material in the food industry due to its excellent barrier properties, resistance to moisture, and ability to maintain product freshness.
Q:Can aluminum sheets be embossed or engraved?
Yes, aluminum sheets can be embossed or engraved. Embossing involves creating a raised design or pattern on the surface of the aluminum sheet, while engraving involves cutting or etching a design into the surface. Both techniques can be used to add decorative or functional elements to aluminum sheets. Embossed or engraved aluminum sheets are commonly used in various industries including automotive, aerospace, signage, and architectural applications. The process of embossing or engraving aluminum sheets typically involves using specialized machinery or tools to create the desired design.
Q:What are the different types of surface treatments available for powder-coated aluminum sheets?
Some different types of surface treatments available for powder-coated aluminum sheets include anodizing, chemical etching, mechanical polishing, and electroplating. Each treatment offers unique benefits and can enhance the appearance, durability, and corrosion resistance of the aluminum sheets.
Q:Can 101 aluminum sheets be used in the production of musical instruments?
Certainly, the utilization of 101 aluminum sheets is feasible in the manufacturing of musical instruments. Aluminum, being a lightweight and durable metal, finds wide application in the production of diverse musical instruments. Its resonating properties are commendable, ensuring the generation of a vibrant and distinct sound. Furthermore, the exceptional malleability of aluminum facilitates effortless shaping and molding into various musical instrument components like bodies, frames, or keys. Thus, the incorporation of 101 aluminum sheets unquestionably enhances the overall quality and performance of musical instruments.
Q:What is the tensile strength of aluminum?
The tensile strength of aluminum varies depending on the specific alloy and temper, as well as the manufacturing process. However, on average, the tensile strength of aluminum ranges from around 70 to 700 MPa (megapascals). This makes aluminum a relatively strong material compared to other non-ferrous metals. It is important to note that the tensile strength can also be influenced by factors such as the thickness and shape of the aluminum component, as well as any heat treatment it has undergone. Therefore, it is always recommended to consult specific data sheets or engineering references for accurate and precise information regarding the tensile strength of a particular aluminum alloy.
Q:Are the aluminum sheets suitable for manufacturing architectural ceiling panels?
Yes, aluminum sheets are suitable for manufacturing architectural ceiling panels due to their lightweight properties, durability, and corrosion resistance. Additionally, aluminum sheets can be easily formed, cut, and fabricated into various shapes and designs, making them a popular choice for ceiling panels in architectural applications.
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:How do aluminum sheets perform in terms of thermal insulation?
When it comes to thermal insulation, aluminum sheets are not efficient. Their high thermal conductivity allows heat to easily pass through them, making them ineffective in blocking or resisting heat transfer. As a result, their thermal insulation properties are poor. If your main concern is thermal insulation, it would be more appropriate to consider other materials like fiberglass, foam, or mineral wool as they would be better suited for the task.

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