• Color Coated Galvanized Steel Rolled/Color Steel Rolled/Cold steel rolled System 1
  • Color Coated Galvanized Steel Rolled/Color Steel Rolled/Cold steel rolled System 2
  • Color Coated Galvanized Steel Rolled/Color Steel Rolled/Cold steel rolled System 3
Color Coated Galvanized Steel Rolled/Color Steel Rolled/Cold steel rolled

Color Coated Galvanized Steel Rolled/Color Steel Rolled/Cold steel rolled

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
25 m.t.
Supply Capability:
18000 m.t./month

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Product Description

Product Name: China PPGI manufacturer/PPGI MILL
PPGI coils
PPGI steel coils
PPGI galvanized coils
PPGI zinc coated coils
Pre-painted galvanized steel coils
Color coated steel coils
Color coated steel coils
Red color/blue color steel coils
Color coated PPGI FOR metal roof
DX51D color coated corten steel coil(PPGI)
Prime prepainted galvanized steel coil
White color prepainted steel coils
Color steel coil for roofing material
Dx51d+z prepainted steel coil
Colorful galvanized steel coil

Specifications:
Grades: Q195-Q235 and SPCC, SPCD, SPCE, SGCC (DX51D+Z) and SGCD (DX52D+Z)
Thickness: 0.13 to 2.0mm
Width: 600 to 1200mm or customized
Coil inner diameter: 508 to 610mm
Coil weight: Customized
Color: RAL
Surface protection: PE, PVDF, SMP and HDP
Surface treatment: Chromate, oil/un-oil, bright finish, spangle and anti-finger print
Standards: JIS G3302, JIS G3312 and ASTM A653M/A924M 1998
Zinc coating weight: 60 to 275G/M

Features:

Nice corrosion-resistant: Zinc layer provides nice protection of pre-painted galvanized steel sheet
High heat resistant: Reflective surface of material aids in efficiently reflecting sunlight away and turn reducing amount of heat transmitted, thermal reflectivity converts into energy-saving.

Coating adhesive force of color-coated sheet is strong, which keeps color and luster novel for long.
Widely used in such field as architecture, electrical home appliances, furniture, communal facilities, communications and transportation.
PPGI prepainted sheets and coils
Product thickness: 0.135 to 2.0mm
Product width: 760 to 1250mm
Coil weight: 5 to 10 metric tons
Coil ID: 508mm
Coil OD: Max 1500mm
Coating type: PE
Standards: JIS G 3312, ASTM A755M, GB/T 12754, Q/CHG 2-2003, EN 10143, DIN 17162
Material: TDC51D, AZ150, SGCC, CGCC, SPCC195L, TSGCC, CCGI, Q195-Q235, SPCD, SPCE
Color: RAL
Zinc coating: 60 to 275G/M²
Application: Construction, hardware, home appliances, interior decoration and more.

NAME
 
PPGIGALVANIZED
 
GALVALUME/ALUZINC
 
CERTIFICATEISO9001:2008
 
 
STANDARD
 
EN10142
JIS G3302
GB/T-12754-2006
ASTM A653
JIS G3302
SGCC/SGCH
GB/T2518
European Standard
ASTM A792
JIS G3321
JIS G3317
 
 
 
 
GRADE
 
 
CGCC
CGCH
CGCD1-CGCD3
CGC340-CGC570
GRADE
 
 
SS GRADE33-80
SGCC
SGCH
SGCD1-SGCD3
SGC340-SGC570
SGCC
DX51D
GRADE33-80
SGLCC
SGLCD
SGLCDD
SGLC400-SGLC570
SZACC
SZACH
SZAC340R
MODEL NO0.16MM-1.5MM*1250MM OR UNDER(0.12-1.5)*1250MM OR UNDER0.16MM-1.5MM*1250MM OR UNDER
 
 
TYPE
 
 
 
Steel coil
Steel sheets/plates
Corrugated steel sheets/plates
 
Steel coil
Steel sheets/plates
Corrugated steel sheets/plates
Steel coil
Steel sheets/plates
Corrugated steel sheets/plates
 
 
TECHNIQUE
Hot rolled-cold rolled
-galvalume /galvanized
-PPGI/PPGL
Hot rolled-cold rolled
- galvanized
Hot rolled-cold rolled
-galvalume /Aluzinc
 
SURFACE
TREATMENT
Mini/regular/big/zero spangle,
Chromate treatment /chromate-free treatment /untreated unoile/oiled,
TENSION LEVELLERT SKIN PASS anti-fingerprint/un-anti-fingerprint,
Coating,color
Mini/regular/big/zero spangle,
Chromate treatment /chromate-free treatment /untreated unoile/oiled,
TENSION LEVELLERT SKIN PASS anti-fingerprint/un-anti-fingerprint,
Coating
 
APPLICATIONStructural use ,roofing, commercial use, household appliance, industry, family
SPECIAL
APPLICATION
Wear resistant steel, high- strength - steel plate

Q&A Acceptable price term    

ANSWER:  FOB  CNF  CIF  DDU  CPT 

Q: The stainless steel drinking fountain had a little acid on it and rusted. I need to restore it. Is this possible?
Nope, stainless steel is actually coated steel that can be removed by acid or scrubbing too much. it would need to be re dipped to go back to normal. would cost a fortune however.
Q: How are steel coils used in the production of electrical appliances?
Steel coils are used in the production of electrical appliances as the core material for transformers and motors. The coils are wound around an iron core to create electromagnetic fields that enable efficient energy transfer and power generation within these appliances.
Q: Is steel easier to weld?Which is more brittle/less flexible?
Yes you can, but you really dont want to. Aluminum conducts heat better than steel so the weld would not cool evenly and would be brittle. You would be better off using a bracket or bolt straight on.
Q: How are steel coils used in the production of metal roofing?
Steel coils are used in the production of metal roofing by being fed through a series of machines that shape, cut, and coat the steel to create the final roofing product. The coils are uncoiled and flattened, then formed into the desired profile using roll forming machines. The formed sheets are then cut into specific lengths and coated with protective layers to enhance durability and corrosion resistance. These coated steel sheets are then packaged and shipped to construction sites for installation as metal roofing.
Q: What are the common coil surface treatments?
The common coil surface treatments include galvanization, electroplating, painting, and powder coating.
Q: How do steel coils contribute to the manufacturing of oil and gas equipment?
Steel coils play a vital role in the production of oil and gas equipment, as they are an essential component. Typically, these coils are made from high-quality steel that is durable, strong, and resistant to corrosion. This makes them ideal for enduring the harsh environments and conditions encountered in the oil and gas industry. One of the primary uses of steel coils in oil and gas equipment manufacturing is in the creation of pressure vessels. These vessels are crucial for storing and transporting fluids and gases under high pressure. Steel coils are used to form the cylindrical shells of these vessels, providing the necessary strength and structural integrity to withstand the internal pressure. Steel coils are also utilized in the construction of oil and gas pipelines. These pipelines are responsible for transporting large quantities of oil and gas over long distances. Steel coils are used to manufacture the pipes that compose these pipelines, ensuring they have the necessary strength, durability, and resistance to corrosion. The coils are rolled and welded to create seamless or welded pipes, which are then coated or lined to prevent corrosion and increase their lifespan. Additionally, steel coils are instrumental in the production of drilling equipment used for extracting oil and gas. This equipment includes drill bits, casings, and wellheads, which are essential for drilling and completing wells. The coils are used to fabricate these components, ensuring they can withstand the demanding conditions encountered during drilling operations. Aside from their structural applications, steel coils are also used in the manufacturing of ancillary equipment like tanks, storage containers, and heat exchangers. These components play a crucial role in the processing, storage, and distribution of oil and gas. Steel coils provide the necessary strength and durability to handle the harsh conditions and corrosive substances encountered in these processes. In conclusion, steel coils are indispensable in the manufacturing of oil and gas equipment. Their strength, durability, and resistance to corrosion make them a preferred choice in the industry. By contributing to the fabrication of pressure vessels, pipelines, drilling equipment, and ancillary components, steel coils ensure the safe and efficient extraction, processing, and transportation of oil and gas.
Q: Hey Guys, I'm planning on purchasing a bmx bike and I have been recommended by many people the Kink Launch 2012. I'm thinking of getting it but the frame is made from High Tensile steel and I know the chromoly is stronger and more expensive, but I plan to use my bmx just to chill, ride with friends and some times go through dirt trails at my park, I would like to know, how strong Hi Tensile steel is and can it handle jumps not massive jumps but like jumps where you get like 3 feet high (1m) just for fun, I might go to the skate park but I'm not gonna do tail whips and massive jumps, I just want it as a mobile piece of transportation. I don't want to buy a mtb because I already had 3 of them and they are not practical to take with you on holidays.So, do you think the Kink Launch 2012 is good enough or should I cough up an extra $80 and get the gap ($500 AU)? As I said I ain't gonna do huge jumps.
High tensile steel could mean almost anything. SAE 4130 Chrome-Moly steel is the de-facto standard for steel bikes frames. High tensile steel could actually mean the same thing since chrome-moly is classified as high strength steel. The strength of the frame depends as much on the quality of the welds and on the size/thickness of the tubing as much as anything else. I'd say what kind of steel you use makes only a minor difference. One reason you want to buy bikes from reputable name-brand companies is they tend to have strict quality controls, this is particularly important when it comes to welds. Welds are always the weakest part of any bike frame, don't let anyone tell you different. 99% of the time if something in the frame breaks, it'll be at the welds. hope this helps.
Q: How are steel coils used in the manufacturing of heat shields?
Steel coils are used in the manufacturing of heat shields by being formed and shaped into the desired size and shape, providing a strong and durable base. The coils are then typically coated with heat-resistant materials and layered to create an effective barrier against heat transfer, making them essential components in the production of heat shields.
Q: 1943 steel pennies
if you collect coins, you need to learn that they must never be cleaned. cleaning, while it might make them look pretty, ruins their value as a collectable. ask your coin dealer.
Q: What are the different methods of edge trimming for steel coils?
There are several methods of edge trimming for steel coils, depending on the specific requirements and application. Some of the common methods include: 1. Slitting: This is one of the most common methods used to trim the edges of steel coils. It involves passing the coil through a set of circular knives that cut the edges into narrower strips. Slitting can be done in-line during the manufacturing process or as a separate operation. 2. Shearing: Shearing is another popular method used for edge trimming. It involves using a set of blades to cut the edges of the coil in a straight line. Shearing is often used when precise and clean cuts are required, and it can be done manually or with the help of automated machinery. 3. Laser cutting: Laser cutting is a more advanced method that uses a high-powered laser to trim the edges of steel coils. This method provides precise and smooth cuts, and it is often used when high accuracy and quality are essential. Laser cutting can be incorporated into the production line or performed as a standalone process. 4. Grinding: Grinding is a method that involves using abrasive wheels or belts to remove material from the edges of steel coils. It is commonly used to remove burrs, rough edges, or surface imperfections. Grinding can be done manually or with the help of automated machines, depending on the scale and complexity of the trimming process. 5. Waterjet cutting: Waterjet cutting is a method that utilizes a high-pressure jet of water mixed with abrasive particles to trim the edges of steel coils. This method is known for its versatility and ability to cut through a wide range of materials and thicknesses. Waterjet cutting is typically used when complex shapes or intricate designs need to be achieved. Overall, the choice of edge trimming method for steel coils depends on factors such as the desired accuracy, speed, complexity of the edges, and the specific requirements of the application. Different methods offer varying levels of precision, efficiency, and cost-effectiveness, allowing manufacturers to select the most suitable technique for their specific needs.

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