• 5000 Series Mill Finish Aluminum Circle Panel with Aluminum Oxide Sandpaper Sheets System 1
  • 5000 Series Mill Finish Aluminum Circle Panel with Aluminum Oxide Sandpaper Sheets System 2
  • 5000 Series Mill Finish Aluminum Circle Panel with Aluminum Oxide Sandpaper Sheets System 3
  • 5000 Series Mill Finish Aluminum Circle Panel with Aluminum Oxide Sandpaper Sheets System 4
5000 Series Mill Finish Aluminum Circle Panel with Aluminum Oxide Sandpaper Sheets

5000 Series Mill Finish Aluminum Circle Panel with Aluminum Oxide Sandpaper Sheets

Ref Price:
get latest price
Loading Port:
China main port
Payment Terms:
TT OR LC
Min Order Qty:
5 m.t.
Supply Capability:
360 m.t./month

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Specification

Grade:
1000 Series,5000 Series,3000 Series
Surface Treatment:
Anodized,Mill Finish
Shape:
Square,Flat
Temper:
O-H112,Half Hard,Hard
Application:
Decorations,Door & Window,Food,Kitchen Use
Technique:
C/C,D/C
Thickness:
0.08-8mm
Width:
150-700mm
Outer Diameter:
700mm
Net Weight (kg):
1800KG
Packaging:
Wooden pallet

     5000 Series Mill Finish Aluminum Circle Panel  


Hot rolled aluminum circle deep drawing quality for cookware  is mainly used for general commercial and industrial uses, like the capacitor case, toothpaste case, medical tubes, kitchen ware, spray bottle, cosmetic case. With high quality casting and rolling coils or hot-rolled coils as raw meterials, it goes through different cold rolling deformation, slitting, annealing and finally stamping into an aluminum disc, then packaging for delivery.


l  Specification

 

Certificate

ISO9001:2008  ISO 14001:2004  OHSAS 18001:2007

Product Name

1050   Aluminum circle price for cookware

Hardness state

H14, H16, H18, H22,H24, H26, H22 ,H32,H34   and “O”. 

Product Size

Thickness: 0.3-68.0mm, Diameter:  20-1030mm

Surface Treatment

mill finished

Processed

Deep drawings 

Min order quantity

5 tons

Short lead time

20 days

Application

Cookware, Electrical Appliances

Month Capacity

5000 tons


Chemical Composition (WT.%)

Alloy

Min.AL

Si

Fe

Cu

Mn

Mg

Cr

Ni

Zn

Ca

1050

99.5

0.25

0.4

0.05

0.05

0.05

---

---

0.05

---

1060

99.6

0.25

0.35

0.05

0.03

0.03

---

---

0.05

---

1070

99.7

0.25

0.25

0.04

0.03

0.03

--

---

0.04

---

1100

99

0.95

0.95

0.05-0.2

0.05

---

--

---

0.1

---

Mechanical Properties

TEMPER

THICKNESS(mm)

TENSILE STRENGTH

ELONGATION%

HO

0.55-5.50

60-100

≥ 20

H12

0.55-5.50

70-120

≥ 4

H14

0.55-5.50

85-120

≥ 2














 




5000 Series Mill Finish Aluminum Circle Panel





FAQ

 

1. How can I get some samples?                        

We are honored to offer you samples. New clients are expected to pay for the courier cost. The samples are free for you.

 2 Do you have any certificates?             

Our products passed inspection of SGS, FDA, and CE Quality is priority! Every worker keeps the QC from the very beginning to the very end, Quality control department especially responsible for quality checking in each process.

 3 Can your factory print or emboss my logo on the goods?

  Yes, we can print or emboss the logo on the goods or their packing box.

 4 What information should I let you know if I want to get a quotation?

1) The specification of products (length x width x thickness);

2) The temper and alloy.

3) The final product you will use to be made

4 It will be better if you can show us the pictures or design sketch. Samples will be best for clarifying. If not, we will recommend relevant products with details for reference.We usually produce goods based on customers 

Samples or based on customers’ picture, logo, sizes etc.


Q: Can the aluminum sheets be used for solar panel frames?
Indeed, solar panel frames can indeed be constructed using aluminum sheets. The lightweight and robust characteristics of aluminum render it a favored material for solar panel frames. Its resistance to corrosion acts as a safeguard against rain, humidity, and UV rays, thereby shielding the frames from environmental elements. Furthermore, the recyclability of aluminum makes it an eco-friendly alternative for solar panel frames. Thanks to the adaptability and resilience of aluminum sheets, they are a fitting selection for supporting and safeguarding solar panels, guaranteeing their enduring functionality and efficiency.
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: What are the different methods of joining aluminum sheets without welding?
There are several methods of joining aluminum sheets without welding. 1. Adhesive bonding: This method involves using an adhesive to bond two aluminum sheets together. The adhesive creates a strong and durable bond, and it can be applied in various ways such as tapes, liquid adhesives, or films. Adhesive bonding is a popular choice as it provides a clean and aesthetically pleasing finish. 2. Mechanical fastening: This method involves using mechanical fasteners such as screws, rivets, or bolts to join aluminum sheets together. These fasteners provide a strong and reliable connection and are commonly used in industries where disassembly or repair is required. Mechanical fastening is also relatively easy to implement and does not require any additional equipment. 3. Clinching: Clinching is a cold-forming process that involves joining aluminum sheets by using a punch and die to create a strong interlock between them. This method is suitable for thin aluminum sheets and offers good mechanical strength. Clinching is a cost-effective alternative to welding, as it does not require any additional materials or heat. 4. Friction stir welding: Although not technically welding, friction stir welding is a solid-state joining process that uses a rotating tool to generate frictional heat between the aluminum sheets. As the tool moves along the joint, it creates a plasticized region that is then consolidated to form a strong bond. Friction stir welding is mainly used for joining thicker aluminum sheets and offers excellent mechanical properties. 5. Folded joints: This method involves folding the edges of two aluminum sheets together to create a joint. The folded joint can be secured by using adhesives, mechanical fasteners, or a combination of both. Folded joints provide good strength and stiffness, and they are commonly used in applications where a seamless appearance is desired. These methods offer various advantages and can be chosen based on the specific requirements of the project, including the desired strength, appearance, and ease of implementation.
Q: Can aluminum sheets be used for water tanks?
Water tanks can indeed utilize aluminum sheets. Thanks to its lightweight nature and resistance to corrosion, aluminum is an ideal material for water storage. Its durability and ability to fend off rust and corrosion have made it a popular choice in industries like aerospace and marine. Furthermore, aluminum tanks are simpler to transport and install in comparison to alternative materials, and they can endure high pressure and extreme temperatures. Nonetheless, it is crucial to guarantee that the aluminum sheets employed for water tanks are of exceptional quality and adhere to the required standards to uphold the tank's safety and longevity.
Q: What are the different types of alloys used for anodized aluminum sheets?
There are several different types of alloys that can be used for anodized aluminum sheets, each with its own unique properties and applications. Some of the commonly used alloys include: 1. 1000 series alloys: These alloys are primarily made of pure aluminum and are known for their excellent corrosion resistance. They are commonly used for anodized aluminum sheets in various industries, including architecture, automotive, and aerospace. 2. 5000 series alloys: These alloys contain magnesium as the primary alloying element, which provides enhanced strength and excellent weldability. They are often used for anodized aluminum sheets in applications that require high strength and resistance to atmospheric corrosion. 3. 6000 series alloys: This series of alloys is known for its excellent combination of strength, extrudability, and corrosion resistance. The most commonly used alloy in this series for anodized aluminum sheets is 6061, which is widely used in structural components, marine applications, and consumer electronics. 4. 7000 series alloys: These alloys are known for their exceptional strength and are typically used in applications that require high-performance materials. The most common alloy in this series for anodized aluminum sheets is 7075, which is widely used in aerospace and defense industries. 5. 2000 series alloys: These alloys are primarily used in applications that require high strength and excellent fatigue resistance. They are commonly used in the aerospace industry for anodized aluminum sheets. It's important to note that the choice of alloy for anodized aluminum sheets depends on the specific requirements of the application, including desired strength, corrosion resistance, and other mechanical properties.
Q: Can aluminum sheets be used for architectural applications?
Yes, aluminum sheets can be used for architectural applications. Aluminum is a versatile and lightweight material that offers excellent strength, durability, and corrosion resistance. It can be easily formed, shaped, and fabricated into various architectural elements such as façades, roofs, windows, doors, and cladding. Its aesthetic appeal, along with its ability to withstand harsh weather conditions, makes it a popular choice in contemporary architectural designs.
Q: Can aluminum sheets be used for pharmaceutical lab equipment?
Yes, aluminum sheets can be used for pharmaceutical lab equipment. Aluminum is a versatile material that offers various advantages for pharmaceutical applications. It is lightweight, corrosion-resistant, and has excellent thermal conductivity. These properties make aluminum an ideal choice for constructing lab equipment such as trays, shelves, and cabinets that are used for storage and transportation of pharmaceutical materials. Additionally, aluminum can be easily cleaned and sterilized, which is crucial for maintaining hygienic conditions in pharmaceutical laboratories. However, it is important to note that certain pharmaceutical processes may require specific materials that meet certain regulatory standards. Therefore, it is always advisable to consult with industry experts or regulatory bodies to ensure that the chosen aluminum sheets meet the necessary requirements for the intended use in pharmaceutical lab equipment.
Q: Are aluminum sheets suitable for chemical storage containers?
Chemical storage containers are usually not appropriate for aluminum sheets. Despite aluminum's reputation for being resistant to corrosion, it can still interact with certain chemicals, causing the container to deteriorate and potentially contaminate the substance being stored. In addition, aluminum is a relatively fragile metal and may not offer sufficient strength and durability for the long-term storage of hazardous chemicals. It is recommended to utilize materials that are explicitly designed for chemical storage, such as high-density polyethylene (HDPE), polypropylene (PP), or stainless steel, as they provide exceptional resistance to chemicals and structural stability.
Q: Can aluminum sheets be used for chemical reactors?
Certain applications allow for the use of aluminum sheets in chemical reactors. Aluminum possesses excellent corrosion resistance, rendering it appropriate for diverse chemical reactions. Nevertheless, it is crucial to take into account the nature of the chemicals employed and their potential reactivity with aluminum. In highly acidic or alkaline environments, aluminum's reactivity and susceptibility to corrosion should be duly recognized. Furthermore, specific gases or elevated temperatures may render aluminum unsuitable for reactions. In such instances, alternative materials such as stainless steel or glass-lined reactors might prove more fitting.
Q: Heating aluminum plate, heating scheme, urgent ~!
For aluminum heating silicon heating plate is a good choice. The four corners can be fixed by screws, Beijiao can. Installation is very convenient. I was in the goodway procurement. They are guaranteed for one year.

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