• Prepainted Galvanized Steel Coil -JIS G3312 CGCC System 1
  • Prepainted Galvanized Steel Coil -JIS G3312 CGCC System 2
  • Prepainted Galvanized Steel Coil -JIS G3312 CGCC System 3
Prepainted Galvanized Steel Coil -JIS G3312 CGCC

Prepainted Galvanized Steel Coil -JIS G3312 CGCC

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Loading Port:
China main port
Payment Terms:
TT OR LC
Min Order Qty:
50 m.t.
Supply Capability:
10000 m.t./month

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Prepainted Galvanized Steel Coil -JIS G3312 CGCC

 

1. Structure of Prepainted Galvanized steel Coil :

•Prepainted galvanized steel qualified with excellent decorative ,formability ,corrosion resistance ,coating adhesion ,can keep for a long time as well as maintain fresh color .For color coated steel sheet  can obtain good economic benefit by steel belt wood ,efficient in construction and save energy ,prevent pollution etc.  

2.Main Features of Prepainted Galvanized steel Coil:

• Excellent process capability

• Workability, durability

• Excellent heat resistance performance

• High strength

• Good visual effect

 

3.Prepainted Galvanized steel Coil Images

Prepainted Galvanized Steel Coil -JIS G3312 CGCC

 

 

4.Prepainted Galvanized steel Coil Specification

Standard: ASTM, GB,JIS,JIS G3302 ASTM 755 EN10169

Grade: DX51D CGCC CS

Thickness: 0.18mm~1.2mm,

Width: 600-1250mm

Coil weight:3-12 MT

Coil ID:508/610mm 

 

 

 5.FAQ of Prepainted Galvanized steel Coil

1.How do you control your quality

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.

 

2.How long we will receive the goods ?

After receiving your deposit or workable lc ,our normal shipment date is 15-20days,and it takes around 28 days to reach your port of destination. But is up to different destination

 

 

Q: What are the different types of steel coil coatings available?
There are several different types of steel coil coatings available, including polyester, polyurethane, siliconized polyester, fluorocarbon, and plastisol coatings. Each type of coating offers specific properties and benefits, such as durability, corrosion resistance, weatherability, and aesthetics, making them suitable for various applications in industries such as construction, automotive, and appliances.
Q: Should I stick with the all steel kit over the acrylic tapers and steel plugs? or would the acrylic be ok? I keep hearing that steel is the best and acrylic can cause problems. I just want to do it correctly and take my time with it, no rushing.thanks
Steel is much better because acrylic can't be sterilized. If you have the option, titanium is much better because steel can cause nickle allergies, which can get pretty irritating.
Q: I have one and wonder how much force this can take since it does seem like you can bend it(Sure it's impossible with hands), but I don't want to try that cause i don't want to break it. Many people say that it's really hard and can handle a hammer smash? is that true and can it even make it through more force. Cause steel is harder than iron and iron is pretty hard... So how much can i trust this locks security, i mean if i put at at a door would some thiefes be able to break it, if they had the right tools??
It's hard to give you a quantitative answer. There are different grades of testing standards for padlocks. It comes under the ASTM F883. You need to be more specific. The link only gives a picture and no details about the lock. But in general, stainless steel locks are pretty darn strong. Also, you are under the wrong impression about steel vs iron. Iron is a component of steel. Pure iron is very ductile and is softer than steel. Cast iron, is very hard, but is also very brittle and has limited uses. In general, mild steel is realitively soft and ductile. But, there are many different alloys of steel and some have hardnesses and strengths higher than cast iron. Stainless steel is typically more ductile that mild steel because of the smaller amount of iron in the recipe. There are exceptions to that as well. The 400 series of stainless steels have higher amounts of iron and can be heat treated to hardnesses equaling the better steel alloys.
Q: All of my friends say that if a car made of mostly carbon fiber would crash into a full steel car, or vice versa, the steel car would be DESTROYED and the carbon fiber would drive away, if not, easily repairable.
Ok, your friend is wrong. Carbon fiber can outperform steel in many applications. It is lighter and stronger in tension. Compression, however, is not a property carbon fiber composites do well under. The strength of carbon fiber composites comes from the design, or layup, of the fibers. When the layers are properly orientated the composite can do very well. But, it can’t handle stress from any direction, only the directions it’s designed to be used in. Now, back to the car crash… A crash is a situation involving high amounts of crushing forces and shockwaves that would travel around the vehicle. If the impact itself didn’t crush the composite, the shock waves could cause hidden damage, such as delimitation, in areas that may not even be close to the impact area. As for it being easy to fix, well that is also dead wrong. Unlike steel, carbon fiber composites can’t be welded, straightened, or bent into place. Once a composite has sustained damage it usually needs to be replaced. Closing thoughts… Keep this in mind, it’s not the fibers themselves that are so weak, it’s the glue holding them together. As of today, the only way to make these strong light weight components is to glue them together. They do a good job doing what they are designed to do, but fail easily with impact and compression loading.
Q: I need a machine which can produce steel pipes, but I don't know where to look...If you want me to state dimensions etc. just say...Thanks :)
Gary, Indiana. There's lots of old, unused steel forming equipment just laying around.
Q: How do steel coils contribute to the energy infrastructure sector?
The energy infrastructure sector heavily relies on steel coils, which are essential for constructing and maintaining various energy-related structures and equipment. To begin, steel coils are extensively employed in manufacturing pipelines, the lifelines of the energy industry. These pipelines transport oil, natural gas, and other energy resources across long distances, guaranteeing a consistent supply to power plants and other energy facilities. The use of steel coils in producing seamless and welded pipes ensures high strength, durability, and resistance to corrosion, making them well-suited for handling the challenging conditions of energy transportation. Apart from pipelines, steel coils are also used in the production of storage tanks for oil, natural gas, and other fuels. These tanks play a crucial role in storing large quantities of energy resources, ensuring an uninterrupted supply even during periods of high demand. By utilizing steel coils to fabricate the tank shells, the necessary strength and structural integrity are achieved, enabling them to withstand the pressure and environmental factors associated with energy storage. Moreover, steel coils play a vital role in the construction of power plants and other energy infrastructure facilities. They are utilized in manufacturing structural components like beams, columns, and supports, which provide the foundation and stability required for the safe operation of these facilities. Additionally, steel coils contribute to the production of equipment such as turbines, generators, and transformers, which are essential for converting energy into usable forms and distributing it to end-users. Furthermore, steel coils are employed in the construction of transmission towers and electrical grids. These structures and networks are responsible for transmitting electricity from power plants to residential, commercial, and industrial consumers. By using steel coils to manufacture the towers and poles that support high-voltage transmission lines, their stability and reliability in transmitting electricity over long distances are ensured. In conclusion, steel coils are irreplaceable in the energy infrastructure sector, providing the necessary materials for constructing, maintaining, and operating pipelines, storage tanks, power plants, transmission towers, and electrical grids. Their strength, durability, and resistance to corrosion make them the ideal choice for withstanding the demanding conditions of the energy industry, thereby ensuring a reliable and efficient energy supply to meet the growing needs of society.
Q: What are the common coil coating methods?
The common coil coating methods include roll coating, curtain coating, and spray coating.
Q: How are steel coils used in the production of industrial machinery?
Steel coils are used in the production of industrial machinery as they provide a strong and durable material for various components. These coils are often shaped and cut to specific sizes to create parts such as gears, shafts, and frames, which are essential for the functioning of machinery. The high strength and flexibility of steel coils make them ideal for withstanding heavy loads and harsh operating conditions, ensuring the reliability and longevity of industrial machinery.
Q: is red steel any good??????? not sure im really impressed but im not really into fighting games but it looks cool.... so whats your views guys???????anyone bored of smooth moves yet?anyone think the new sonic is bit cra ppy !!!!!!!!!!! darn them any new goooood games coming oput on the wii??
Trauma center is awesome. Red steel isn't bad. Same as any other FPS except with a pointer... It's no half life, but its not terrible. Multiplayer is highly entertaining though. Especially if you can get four people playing mystery mode. Trust me, its worth the effort of getting them together. Like the other guy said, rent it. I wouldn't buy it.
Q: How are steel coils used in the manufacturing of tools?
Steel coils are used in the manufacturing of tools as they provide a strong and durable material for the construction of various tool components. The coils are processed and shaped into specific forms, such as blades or handles, through cutting, shaping, and heat treatment processes. The resulting steel tool parts exhibit excellent strength, toughness, and resistance, making them suitable for a wide range of applications in industries like construction, automotive, and manufacturing.

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