• Marine Grade 3mm 4mm 5mm Thickness Aluminum Plate System 1
  • Marine Grade 3mm 4mm 5mm Thickness Aluminum Plate System 2
Marine Grade 3mm 4mm 5mm Thickness Aluminum Plate

Marine Grade 3mm 4mm 5mm Thickness Aluminum Plate

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
5 m.t.
Supply Capability:
5000 m.t./month

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Item specifice

Grade:
1000 Series,5000 Series,7000 Series,3000 Series
Surface Treatment:
Coated,Mill Finish,Color Coated,Oxidized
Shape:
Round,Flat
Temper:
O-H112,Soft,Half Hard,Hard
Application:
Decorations,Door & Window,Transportation Tools,Glass Wall,Kitchen Use
Technique:
Cold Drawn
Thickness:
0.05-4.0mm
Width:
200mm---980mm
Net Weight (kg):
2.5 ton
Packaging:
Wooden pallets

Prime Quality 3003 Aluminium Coil , 3003 Aluminum Roll 


Packaging & Delivery

   Product Specification

Grade

1000 Series: 1050 1060 1100

3000 Series: 3003 3004 3105

5000 Series: 5052 5605,5083

6000 Series: 6061 6063

8000 Series: 8011 8021 8079

Thickness

0.20-8.00mm

Width

2400mm max.

Grade

1000,3000,5000,6000,8000series

Coil ID

75mm, 150mm, 200mm, 300mm, 400mm, 508mm or negotiable

Coil weight

1000-5000kgs

Coil OD

1700mm max.

Temper

O, H12, H14, H16, H111, H22 ,H24, H26, H28,T4, T6,etc.




Temper
Fprocessing state
Hstrain hardening state
Oannealing
Theat treatment state
H112pure state of strain hardening, adjustment has been made to degree of strain hardening and annealing
T4solid solution treatment and natural efficiency to achieve sufficient stability condition
T5artificial aging condition of the reentry after high temperature thermal cooling 
T6artificial aging state after solid solution treatment



Chemical Composition

GradeSiFeCuMnMgCrNiZnAl
10500.250.40.050.050.05--0.0599.5
10600.250.350.050.030.03--0.0599.6
10700.20.250.040.030.03--0.0499.7
1100Si+Fe:0.95
0.05-0.20.05--0.1-99
1200Si+Fe:1.00
0.050.05--0.10.0599
1235Si+Fe:0.65
0.050.050.05-0.10.0699.35
30030.60.70.05-0.21.0-1.5---0.1remains
30040.30.70.251.0-1.50.8-1.3--0.25remains
30050.60.70.251.0-1.50.20-0.60.1-0.25remains
31050.60.70.30.30-0.80.20-0.80.2-0.4remains
3A210.60.70.21.0-1.60.05--0.1remains
50050.30.70.20.20.50-1.10.1-0.25remains
50520.250.40.10.12.2-2.80.15-0.35-0.1remains
50830.40.40.10.40-1.04.0-4.90.05-0.25-0.25remains
51540.250.40.10.13.1-3.90.15-0.35-0.2remains
51820.20.350.150.20-0.504.0-5.00.1-0.25remains
52510.40.50.150.1-0.51.7-2.40.15-0.15remains
57540.40.40.10.52.6-3.60.3-0.2remains
60610.40-0.80.70.15-0.400.150.8-1.20.04-0.35-0.25remains
60630.20-0.60.350.10.10.45-0.90.1-0.1remains
60820.7-1.30.50.10.40-1.00.6-1.20.25-0.2remains
6A020.50-1.20.50.20-0.6Or Cr0.15-0.350.45-0.9--0.2remains
80110.50-0.90.6-1.00.10.20.050.05-0.1remains


Marine Grade 3mm 4mm 5mm Thickness Aluminum Plate


Marine Grade 3mm 4mm 5mm Thickness Aluminum Plate


Marine Grade 3mm 4mm 5mm Thickness Aluminum Plate


Q:What are the common surface defects found in aluminum coils?
Surface defects commonly found in aluminum coils include various issues such as scratches, dents, corrosion, streaking, oxide spots, oil stains, and roll marks. Scratches are visible lines or marks that can occur during handling, transportation, or processing, impacting both the appearance and functionality of the coil. Dents are depressions or deformations that can result from mishandling or impact during transportation or storage, affecting the coil's structural integrity and aesthetics. Corrosion, which can appear as pitting, discoloration, or roughness, is a concern in environments with high moisture levels or exposure to chemicals, weakening the coil and compromising performance. Streaking, thin lines or bands on the surface, may indicate uneven coating or surface contamination, potentially pointing to manufacturing issues. Oxide spots are small discolored areas caused by aluminum oxide formation during processing or storage, mainly affecting aesthetics. Oil stains are greasy or oily marks resulting from improper cleaning or handling, impacting coating adhesion and requiring additional cleaning or treatment. Roll marks, elongated depressions or raised lines caused by the rolling process, are generally unavoidable but excessive or severe instances can negatively affect appearance and quality. Implementing proper quality control measures, handling techniques, and storage practices can help minimize or prevent these surface defects in aluminum coils.
Q:4. a) The inner diameter of a steel ring is 2.0000 cm, and the diameter of an aluminumdisk is 2.0100 cm. Both are at 430C. At what common temperature will the disk fitprecisely into the hole in the steel ring?b) If after the aluminum disk is fitted precisely into the hole the two metals are thetemperature is changed to 200 C, what is the stress in the steel ring?
Depends on what you're using it for. For cooking, we've recently discovered old fashioned cast iron . . . and love it! If the choice is between steel and aluminum, however, I'd use stainless steel. But since your question is under home and garden, maybe you just want to carry something in a pan, in which case aluminum will accomplish the same thing and be a lot lighter.
Q:Are aluminum coils susceptible to warping or bending?
Aluminum coils are prone to warping or bending due to their susceptibility. Despite being lightweight and highly resistant to corrosion, aluminum is relatively soft when compared to materials such as steel. Consequently, it is more likely to bend or warp under specific circumstances. Contributing factors include excessive heat, heavy loads, or mishandling, which can result in deformation of the aluminum coils. To avoid any damage or distortion, it is crucial to handle and store the coils with caution. Furthermore, employing appropriate installation techniques and maintenance practices can effectively reduce the risk of warping or bending.
Q:How do aluminum coils perform in saltwater environments?
Aluminum coils perform exceptionally well in saltwater environments due to their natural resistance to corrosion. Unlike other metals, aluminum forms a protective oxide layer when exposed to saltwater, creating a barrier that prevents further corrosion. This oxide layer acts as a durable and long-lasting shield against the harsh effects of saltwater, ensuring the longevity and performance of aluminum coils in marine applications. Additionally, aluminum coils are lightweight and possess high thermal conductivity, making them popular choices for heat exchangers and condensers in saltwater-based cooling systems. Overall, aluminum coils are highly reliable and efficient in saltwater environments, making them a preferred choice for various marine applications.
Q:How do aluminum coils contribute to reduced carbon emissions?
There are several ways in which aluminum coils help reduce carbon emissions. To begin with, aluminum is a lightweight material, unlike other metals such as steel. This means that less energy is needed to transport and handle aluminum coils. The reduced weight leads to lower fuel consumption during transportation, ultimately resulting in decreased carbon emissions. Moreover, the production of aluminum coils requires significantly less energy compared to other metals. Aluminum is highly recyclable and can be melted down and reused without losing its original properties. This recycling process only requires a fraction of the energy needed to produce aluminum from raw materials, resulting in reduced greenhouse gas emissions. In addition, aluminum coils have excellent thermal conductivity. This allows for improved energy efficiency in various applications. For instance, aluminum coils are commonly used in HVAC systems, where they help transfer heat more effectively. This reduces the energy required for heating or cooling, ultimately leading to lower carbon emissions. In summary, the lightweight nature of aluminum coils, their recyclability, and their improved energy efficiency all contribute to reduced carbon emissions. By utilizing aluminum coils in different industries, we can minimize environmental impact, conserve energy resources, and mitigate climate change.
Q:Will aluminum foil go off in a metal detector
aluminum is undectable if you wrap your eay pass in it it wont register. i tried it. and a feriday cage wraped in tinfoil will block all signals to everything
Q:Can aluminum coils be used in the production of aircraft fuel tanks?
Yes, aluminum coils can be used in the production of aircraft fuel tanks. Aluminum is a commonly used material in the aerospace industry due to its lightweight, strong, and corrosion-resistant properties. It is an ideal choice for fuel tanks as it can effectively withstand the harsh conditions and requirements of aircraft operations.
Q:Can aluminum coils be embossed or textured?
Aluminum coils possess the capability to undergo embossing or texturing, thereby enabling the creation of patterns or designs on their surface. This can be achieved through mechanical or chemical processes. The resulting embossed or textured surface not only enhances the visual appeal but also improves the functionality of the aluminum coil, by augmenting its grip or minimizing glare. Consequently, these aluminum coils, with their embossed or textured features, have found widespread utilization across industries like construction, automotive, and packaging.
Q:What is the typical lifespan of an aluminum coil?
Factors such as usage, maintenance, and environmental conditions can cause the typical lifespan of an aluminum coil to vary. However, if an aluminum coil is properly cared for and regularly maintained, it can last for 20 to 30 years or even longer. It is possible to extend this lifespan by keeping the coil clean, ensuring proper ventilation to prevent moisture buildup, and promptly addressing any damages or issues. Moreover, the lifespan of an aluminum coil can also be affected by exposure to harsh weather conditions, chemicals, or corrosive environments. Therefore, it is important to seek guidance from manufacturers or industry professionals to obtain specific information about the expected lifespan of a particular aluminum coil in various applications.
Q:Suppose a cube of aluminum which is 1.00 cm on a side accumulates a net charge of +1.50 pC.(a) What percentage of the electrons originally in the cube was removed?(b) By what percentage has the mass of the cube decreased because of this removal?So for a you need to find total number of electrons removed (which gives it the +1.5 pC charge), and divide that by the number of total electrons in Aluminum right? 13 electrons in Aluminum..and i really don't know much else on this. I've been searching the internet for hours man
One approach to this can use the density of aluminum to find the mass of the1 cm? block. The density of aluminum is 2.70-g/cm? so your cube has a mas of 2.70-g. The number of aluminum atoms in this block is: 2.7-g Al x (1 mol Al / 27.0-g Al) x (6.023 X 10?? atoms Al / 1 mol Al) = 6.023 x 10?? atoms Al. Each Al, as you pointed out, contains 13 electrons so we have 6.023 x 10?? atoms Al x 13 electron/atom = 7.83 x 10?? electrons. 1 x 10?? pC = 1 C and 1 C = 6.24 x 10?? electrons=== 1.5 pC x (1C / 1 x 10?? pC) x ( 6.24 x 10?? electrons / 1 C) = 9.36 x 10? electrons a.) % removed = 9.36 x 10? / 7.83 x 10?? x 100% = 1.2 x 10??? % b.) Each electron has a mass of 9.11 x 10???-g , so the total mass removed =9.11 x 10???-g/elec x 9.36 x 10? electrons = 8.53 x 10???-g. Thus the % decrease is (8.53 x 10???-g/ 2.7-g) x 100% = 3.16 x 10??? %

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