• High quality of prepainted steel coil from north of China System 1
  • High quality of prepainted steel coil from north of China System 2
  • High quality of prepainted steel coil from north of China System 3
High quality of prepainted steel coil from north of China

High quality of prepainted steel coil from north of China

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
50 m.t.
Supply Capability:
100000 m.t./month

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1. Pre-Painted Galvanized/Aluzinc Steel Coil Description

With GI as base material, after pretreatment (degrease and chemical treatment ) and liquid dope with several layers of color, then after firing and cooling, finally the plate steel is called pre-painted galvanized (aluzinc) steel. Pre-painted galvanized steel is good capable of decoration, molding, corrosion resistance. It generally displays superior workability, durability and weather resistance.

2.Main Features of the Pre-Painted Galvanized/Aluzinc Steel Coil

• Excellent process capability

• Smooth and flat surface

• Workability, durability

• Excellent heat resistance performance

• High strength

• Good formability

• Good visual effect

 

3.Pre-Painted Galvanized/Aluzinc Steel Coil Images

High quality of prepainted steel coil from north of China

 

4.Pre-Painted Galvanized/Aluzinc Steel Coil Specification

Standard: AISI, ASTM, BS, DIN, GB, JIS

Grade: DX51D, DX52D

Thickness: 0.17-2.0mm

Brand Name: KMRLON

Model Number: coil

Type: Steel Coil

Technique: Cold Rolled

Surface Treatment: Coated

Application: Boiler Plate

Special Use: High-strength Steel Plate

Width: 20-1250mm

Length: customized

commoidty: pre-painted galvanized steel coil

Thickness: 0.13-4.0mm

width: 20-1250mm

zinc coating: 40-180g/m2

printing thickness: top side: 20+/-5 microns, back side: 5-7 microns

color: all RAL color

surface treatment: color coated

coil weight: 4-7 tons

coil ID: 508/610mm

packaging: standard seaworthy packing

5.FAQ of Pre-Painted Galvanized/Aluzinc Steel Coil

What’s the application of this product?

Roof, roof structure, surface sheet of balcony, frame of window, etc.

What’s the brand of the paint?

We use the best brand of all of the word—AKZO.

 

Q: Is steel harder than iron or is iron harder than steel?Please explain... and help!Thanks
steel is harder than iron Iron is a chemical element. It is a strong, hard, heavy gray metal. It is found in meteorites. Iron is also found combined in many mineral compounds in the earth's crust. Iron rusts easily and can be magnetized and is strongly attracted to magnets. It is used to make many things such as gates and railings. Iron is also used to make steel, an even harder and tougher metal compound. Steel is formed by treating molten (melted) iron with intense heat and mixing it (alloying) with carbon. Steel is used to make machines, cars, tools, knives, and many other things.
Q: How are steel coils inspected for mechanical properties?
Steel coils are inspected for mechanical properties through a combination of destructive and non-destructive testing methods. Destructive methods involve conducting tensile, hardness, and impact tests on samples taken from the coils. Non-destructive methods, such as ultrasonic or magnetic particle testing, are also employed to detect surface and internal defects without damaging the coils. These inspections ensure that the steel coils meet the required mechanical specifications for their intended applications.
Q: How are steel coils used in the manufacturing of packaging materials?
Steel coils are often used in the manufacturing of packaging materials such as cans, drums, and metal sheets. These coils are unwound and processed through various machines to form the desired shape and size of the packaging material. The steel coils provide strength, durability, and a protective barrier, ensuring the safety and preservation of the packaged goods.
Q: What are the quality standards for steel coil production?
The quality standards for steel coil production typically include factors such as dimensional accuracy, surface finish, mechanical properties, chemical composition, and adherence to industry-specific standards and specifications. These standards ensure that the steel coils meet the required strength, durability, and performance criteria, and are suitable for various applications in industries like automotive, construction, and manufacturing.
Q: days. Use your knowledge of the corrosion of steel and aluminum to predict how they would look different after a week exposed to rainy weather. Explain your prediction.
I'd expect appearance of reddish dots or stains of rust on steel, while aluminium should stay virtually unchanged. Explanation: Both materials oxidize in natural environment because of atmospheric moist, but in very different ways. As for steel, oxidation begins as reddish dots of rust which grow and become stains. Oxidation then progresses in depth causing decay of material, compromising its strength and structural integrity.
Q: I know that mild steel is more brittle than cast iron....but that is all.......please help??Thank you in advance......Ruby:D
This Site Might Help You. RE: what is the diiferent in composition between mild steel and cast iron? I know that mild steel is more brittle than cast iron....but that is all.......please help? Thank you in advance......Ruby :D
Q: What is the accuracy of steel tape inspection?
This is the smallest scale brothers precision measuring tools, minimum scale steel tape is mm, mm is estimated to read out the data, such as steel tape measure length is 12.5 mm, which is 12 in the steel tape on the scale with the number of 0.5.It was read out. So the accuracy is millimeters.
Q: I moved into a house which has a steel front door.When I touch the door it feels very cold to the touch in the winter.There is a storm door also and the weather stripping looks good.Cold air from the door is entering the lower level.The house is about 20 yrs old.
Not all doors are created equal so maybe it has insulation but doubtful. 20yrs ago they didn't put insulation into doors and a solid steel door is not light and would rip the hinges off. They do not put solid steel doors into homes Your door is steel sheet metal thin and the door is hollow core air in between them that's why its cold A solid wood door with proper insulation around it and weather stripping under it is more efficient in preventing heat loss The only purpose of a steel door is security, harder to kick in a steal door, which is the reason why it was installed. The old owner probably got the house robbed and they kicked in the original flimsy door. So it was recommended that he use a steel door. Steel does not insulate against hot or cold it absorbs it. Hence why its cold, no amount of weather stripping will prevent heat loss the door itself absorbs heat and cold The cure is another door solid core wood door is strong and does not have the same properties as steel doors Hope that helps Lr
Q: How do steel coils contribute to the sustainability of construction projects?
Steel coils contribute to the sustainability of construction projects in several ways. Firstly, steel is a highly durable and long-lasting material. Steel coils are manufactured to withstand extreme weather conditions, corrosion, and other external factors, making them ideal for construction projects that require strength and longevity. This durability reduces the need for frequent repairs and replacements, thus minimizing waste and resource consumption over time. Additionally, steel coils are recyclable. At the end of their lifespan in a construction project, steel coils can be easily and efficiently recycled. This process requires less energy compared to the production of new steel, resulting in reduced carbon emissions and environmental impact. Moreover, the recycled steel can be used in various industries, including construction, further promoting sustainability and resource conservation. Furthermore, steel coils contribute to the sustainability of construction projects by offering design flexibility. Steel is a versatile material that can be easily shaped, cut, and molded into different forms and sizes. This allows for efficient construction practices, reducing material wastage and optimizing resource utilization. Additionally, the lightweight nature of steel coils allows for ease of transportation and installation, further reducing fuel consumption and associated greenhouse gas emissions. Lastly, steel coils contribute to the sustainability of construction projects through their energy efficiency. Steel is an excellent conductor of heat and electricity, making it ideal for energy-efficient buildings. Steel coils can be used in the construction of walls, roofs, and other components that help to insulate buildings and reduce energy consumption for heating and cooling. This results in lower energy bills for the occupants and reduces the overall carbon footprint of the construction project. In conclusion, steel coils contribute to the sustainability of construction projects through their durability, recyclability, design flexibility, and energy efficiency. By using steel coils, construction projects can reduce waste, conserve resources, minimize environmental impact, and optimize energy consumption, thus promoting a more sustainable and environmentally friendly approach to construction.
Q: Hey guys do you know anything about Steel Arch Building and how this structure really looks like?
i think a moment frame steel building with a parabolic arch from two corners with the top middle capstone looks pretty nice on four sides. on a plane view, the capstone forms a cross on roof top with a rectangular elevator shaft at middle and with several floors act as weight on the capstone. the four corners roof top floors have to have heavy columns reaching down to the foundation. then u draw a inverted V from the root of the arch to the capstone and filled the area between the arch and inverted V with trussed web members. this trussed arch can act as a wind bracing for the moment frame building. u have to investigate the proper angles for the trussed web members. if u set a vertical web member from the arch to the inverted V, that is at the largest gap and then build the truss web member from there. i would not only use one facade but double facade to increase the capacity of the building to resist vertical and lateral loads. however, the arch needs a tie beam to make sure the roots of the arch won't spread apart under compressive load and the load must be contain inside the arch. no one has build one like that yet.

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