• Pre-Painted Galvanized Steel Sheet/Coil with Best Quality Red Color System 1
  • Pre-Painted Galvanized Steel Sheet/Coil with Best Quality Red Color System 2
  • Pre-Painted Galvanized Steel Sheet/Coil with Best Quality Red Color System 3
Pre-Painted Galvanized Steel Sheet/Coil with Best Quality Red Color

Pre-Painted Galvanized Steel Sheet/Coil with Best Quality Red Color

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
200 m.t.
Supply Capability:
10000 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

Pre-Painted Galvanized Steel Sheet/Coil with Best Quality Red Color

 

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

1. What’s the application of this product?

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

2. What’s the brand of the paint?

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

3. How to guarantee the quality of the products?

We have established the international advanced quality management system,every link from raw material to final product we have strict quality test;We resolutely put an end to unqualified products flowing into the market. At the same time, we will provide necessary follow-up service assurance.

4. How long can we receive the product after purchase?

Usually within thirty working days after receiving buyer’s advance payment or LC. We will arrange the factory manufacturing as soon as possible. The cargo readiness usually takes 15-25 days, but the shipment will depend on the vessel situation.

 

 

 

Q: Hi I was thinking about buying this knife, but i wasn't sure if it was good because it's stainless steel.
This isn't really a question for this section, but I'm still happy to help out since I'm a big cutlery nerd as well. One thing to look out for when buying a knife is a lack of specifics on what steel is being used. High Carbon Stainless Steel doesn't tell you what the steel is, just what it MIGHT be. Chances are it's something along the lines of 420HC or 440A, both of which are softer steels. They aren't the worst steels around, but they are very quick to dull. You'd be better off looking at the Balisongs of Benchmade. They'll cost more, but you'll know that you're getting something made with quality materials and that won't break on you. And if it does break for some odd reason, Benchmade's warranty and customer service are both fantastic. Although if a more questionable knife is okay with you as long as the price isn't too high, then at least 420HC and 440A aren't too brittle and will take a decent edge even though they'll dull quickly. As for whether stainless steel is good for a knife or not, that depends on the type of stainless steel and what you're going to use the knife for. Many stainless steels are more brittle than a carbon steel, so high carbon stainless steels are a bit more likely to rust but a little tougher as well. In a butterfly knife, a steel like that is a good way to go, although the steels used by Benchmade, as I mentioned, are of a much better quality.
Q: What is the difference between regular steel stainless steel? Why does steel rust but stainless wont? Is stainless some kind of alloy or something? Any knowledgeable input would be great. Thanx!
steel is also an alloy - principally of iron and carbon. The reason ordinary steels rust is that the iron oxide is not tightly bound to the surface, revealing fresh metal to be oxidised. Stainless (like aluminium and titanium, both very reactive metals) forms a tough coat of oxide that protects the bulk.
Q: The guy at this one pawn shop told me that stainless steel is better because it is just as strong and will not rust. The guy at the other pawn shop said that you need high carbon steel for a good sword because stainless steel breaks easily and that damascis is the best kind of steel for swords.
You are gonna want carbon steel. Most real swords are always made from carbon steel. The vast majority of cheap swords being sold online are made from stainless steel. While stainless steel is a great choice for knives, it starts becoming very brittle on anything longer than 12? and is NOT a suitable material for a functional sword, no matter what some marketers might claim?. Stainless steel when it comes to a functioning weapon, is a joke. It's not made to cut and it's not made to last.
Q: How do steel coils contribute to the construction sector?
Steel coils contribute to the construction sector in several ways. Firstly, they are used to manufacture structural components such as beams, columns, and steel frames, which provide strength and support to buildings and infrastructure. Secondly, steel coils are used to produce reinforcement bars that are embedded in concrete, enhancing its tensile strength and durability. Additionally, steel coils are utilized in the construction of bridges, pipelines, and other large-scale projects that require robust and long-lasting materials. Overall, steel coils play a vital role in the construction sector by providing the necessary materials for sturdy and resilient structures.
Q: How are steel coils used in the manufacturing of body reinforcements?
Steel coils are used in the manufacturing of body reinforcements by being shaped and molded into various components such as beams, pillars, and supports. These reinforcements provide structural strength and rigidity to the body of vehicles, ensuring safety and protection for occupants in the event of a collision.
Q: How are steel coils used in the production of heating systems?
The production of heating systems relies on the utilization of steel coils in various ways. One primary application of steel coils in heating systems involves their incorporation in the construction of heat exchangers. Heat exchangers serve a vital purpose in the transfer of heat from one medium to another within the heating system. Typically, the steel coils are shaped into tubes or fins, which maximize the surface area for optimal heat transfer. In a typical heating system setup, the steel coils allow hot gases or liquids to pass through them, while another medium, such as air or water, flows over or through the coils. This arrangement facilitates the efficient transfer of heat energy from the hotter medium to the cooler one, effectively heating the air or water for distribution throughout the heating system. Steel coils are also employed in the production of radiant heating panels or floor heating systems in heating applications. In these instances, the steel coils are usually embedded within a panel or positioned beneath the flooring. When electricity or hot water passes through the coils, they heat up and emit heat to the surrounding environment. This particular heating system type boasts high efficiency and ensures a comfortable and evenly distributed heat output. Moreover, steel coils are integral components of heating systems such as boilers, furnaces, and heat pumps. These heating system units often require the use of steel coils due to their excellent heat transfer capabilities and durability. The integration of steel coils into the design of these units guarantees efficient and reliable heat generation and distribution. In summary, steel coils play a critical role in the production of heating systems as they enable efficient heat transfer, provide durability, and facilitate the generation and distribution of heat.
Q: i need flint and steel. are there common household items i can get the flint and the steel from????
no common flint and steel in the house === you need to buy a Boy Scout - flint and steel fire starter kit === or a BIC lighter ... the other thing is a small jar filled with water [[ capped and water level near the top.]] hold the water-jar over some
Q: I have two guitars, a nylon stringed classical, and a steel stringed acoustic, I find the nylon strings easier to play, but doesn't have as good of sound as the steel stringed, and when I play with the steel strings, it really hurts my fingers, and if I play just a little bit, it feels like the high e string is going to cut my finger. Are the strings too high? What can I do to make the steel strings easier to play?
find an online tuner and tune the strings to the tuning you want. trust me, guitar hurts your fingers after a while. but your skin gets used to it's, it's what ever.
Q: What are the potential dangers of handling steel coils?
There are numerous hazards that come with handling steel coils. To begin with, improper handling of steel coils can result in physical injuries. If not handled correctly, the weight of the coils can cause strains, sprains, or even more severe injuries. This is particularly true when using manual lifting equipment or when attempting to move the coils without proper training or assistance. Moreover, steel coils often have sharp edges or protruding parts that can lead to cuts or puncture wounds if not handled with caution. These sharp edges can be especially dangerous when manipulating or positioning the coils during transportation or storage. It is vital to wear suitable personal protective equipment, such as gloves, to minimize the risk of injury. Additionally, steel coils can become unstable if not adequately secured or balanced. Poor stacking or storage practices can result in the coils shifting or falling, potentially causing serious harm or damage. It is imperative to adhere to proper stacking and storage procedures, including the use of appropriate equipment and supports, to ensure stability and prevent accidents. Furthermore, steel coils are often stored in areas with limited space or uneven surfaces, increasing the risk of trips, falls, or collisions. It is essential to maintain clear and well-organized storage areas, free of obstacles or hazards, to reduce the likelihood of accidents. Lastly, steel coils can be susceptible to corrosion or rust, which can weaken the metal and compromise their structural integrity. This can heighten the risk of the coils collapsing or breaking during handling, potentially causing injuries or property damage. Regular inspections and maintenance of the coils, as well as proper storage in dry and well-ventilated areas, can help mitigate this risk. Overall, the potential dangers associated with handling steel coils encompass physical injuries from their weight and sharp edges, instability during transportation or storage, accidents due to limited space or uneven surfaces, and the risk of structural failure due to corrosion or rust. It is crucial to adhere to proper safety protocols, receive adequate training, and utilize the necessary equipment to minimize these risks and ensure the safe handling of steel coils.
Q: What are the different types of steel coil surface finish treatments?
There are numerous options for treating the surface finish of steel coils, each serving a distinct purpose and offering unique qualities. Several common types include: 1. Hot Rolling: This is a fundamental and widely-used treatment method for steel coil surface finish. It involves heating the steel above its recrystallization temperature and then rolling it to achieve the desired thickness. This process yields a rough surface texture. 2. Cold Rolling: In contrast to hot rolling, cold rolling involves rolling the steel coil at room temperature. This treatment produces a smoother surface finish with improved dimensional accuracy and tighter tolerances. 3. Galvanization: Galvanization is a process in which a protective zinc coating is applied to the surface of the steel coil. This treatment not only enhances the appearance, but also provides excellent corrosion resistance, making it suitable for outdoor applications. 4. Electro-Galvanization: Similar to galvanized steel, electro-galvanized steel coil is coated with a layer of zinc. However, this coating is applied through an electroplating process, resulting in a thinner and more controlled coating. 5. Pre-Painting: Pre-painting involves applying a layer of paint or protective coating to the steel coil before it is delivered to the customer. This treatment enhances the appearance and provides additional protection against corrosion. 6. Stainless Steel: The surface finish treatment for stainless steel coils involves passivating the steel to remove any impurities or contaminants on the surface. This process improves corrosion resistance and gives the steel a clean and smooth appearance. 7. Embossing: Embossing is a treatment where a pattern or design is pressed into the surface of the steel coil. This treatment enhances the aesthetic appeal and can provide added grip or texture, depending on the specific design. 8. Brushing: Brushing is a treatment that involves using a fine abrasive material to create a brushed pattern on the surface of the steel coil. This finish provides a unique texture and can help conceal scratches or imperfections. These are just a few examples of the different surface finish treatments available for steel coils. The choice of treatment depends on the specific requirements of the application, such as appearance, corrosion resistance, or functionality. It is crucial to select the most suitable treatment to ensure the desired outcome.

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