• PPGI Color Coated Galvanized Steel Coil in High Quality Green Color System 1
  • PPGI Color Coated Galvanized Steel Coil in High Quality Green Color System 2
  • PPGI Color Coated Galvanized Steel Coil in High Quality Green Color System 3
PPGI Color Coated Galvanized Steel Coil in High Quality Green Color

PPGI Color Coated Galvanized Steel Coil in High Quality Green Color

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
100 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

PPGI Color Coated Galvanized Steel Coil in High Quality Green 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.

4. 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.

5. 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:hey therejust wondering about changing nylon strings to steel strings...i have an acoustic guitar and it has nylon strings, but i was thinking about switching to steel strings, as i think it sounds better.this might sound really stupid... but is that possible? i mean they call it a steel stringed GUITAR and nylon stringed GUITAR, so if i wanted to switch would i have to get a whole new guitar? please help, im reaaally confused!thanks
I asked my guitar teach this and the thing with changing from nylon strings to steel strings is that the nylon tuning forks are accustomed to nylon and tend to slip. But, in say that you can do it, but, you would have to wait awhile for them to start sticking. If i have helped the Your welcome and Thanks! =]
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.
Q:What is the standard diameter of steel coils?
The standard diameter of steel coils can vary depending on the industry and specific application, but it is typically between 24 to 72 inches.
Q:basically a builder told us steel is good but when we got MFI, BQ they only have acrylic
Acrylic or fiberglass is best, the contractor probably told you steel because it may be cheaper. Acrylic can be repaired and or painted if you decide to change colors at a later date. Steel is the older cheaper technology and cast iron is way too heavy to mess with now.
Q:Are steel coils used in the packaging industry?
Yes, steel coils are commonly used in the packaging industry for various applications such as strapping, bundling, and securing heavy loads.
Q:The length of a steel beam increases by 0.78 mm when its temperature is raised from 22 degrees C to 35 degrees C. What is the length of the beam at 22 degrees C (in meters)?I used: L = (0.78 mm)/[(9/5)(.00000645 F)(13)] = 5.17 meters but Mastering Physics said Not quite. Check through your calculations; you may have made a rounding error or used the wrong number of significant figures. I'm confused because this is how we learned this kind of problem in class, so if anybody knows what I did wrong, feel free to correct my errors! Thanks
It seems you are trying to convert celsius to Fahrenheit, Why? There is no need. Delta L= alpha (initial length) (delta celcius) what you need is an alpha, it should be given in degrees celsius to the negative first (steel's alpha happens to be 0.000036 1/celsius). You also need the length of the beam at 35 degrees C. This answer (delta L) needs to be added (if heat is rising) or subtracted (if heat is dropping) to the original length.
Q:doesnt steel rust?
Iron mixed with other metals:
Q:My company want to welding stainless steel, do not know to use what welding machine?
They actually make a stainless rod now that can be used with most arc welders
Q:How are steel coils used in the production of construction components?
Steel coils serve various purposes in the production of construction components. One way they are commonly used is in the manufacturing of steel beams and columns, which are integral to the structure of buildings and other large constructions. The steel coils are processed and molded into the desired dimensions, then cut and welded to create the beams and columns. In addition, steel coils are employed in the production of roofing and wall cladding materials for construction purposes. These coils are often coated with protective layers to enhance their durability and resistance to corrosion. Subsequently, the coils are shaped and formed into roofing sheets, wall panels, or siding materials that not only add aesthetic appeal, but also provide functional protection for the building. Another significant application of steel coils in construction is for the production of reinforcing bars, commonly referred to as rebar. Rebar is used to reinforce and stabilize concrete structures, such as foundations, slabs, and walls. The steel coils are processed and cut into specific lengths, then shaped and twisted to form the required reinforcement bars, which are subsequently embedded within the concrete during construction. Moreover, steel coils can be utilized in the production of various other construction components, including pipes, tubes, and profiles. These components serve purposes such as plumbing, heating, ventilation, and other structural applications. The steel coils undergo different manufacturing processes, such as rolling, welding, and shaping, to achieve the desired dimensions and properties of these components. In conclusion, the significance of steel coils in the production of construction components cannot be overstated. They are crucial in the manufacture of steel beams, columns, roofing and wall cladding materials, reinforcing bars, pipes, tubes, and profiles. These components are indispensable to the construction industry, as they provide strength, durability, and functionality to buildings and other structures.
Q:How do steel coils withstand extreme temperatures?
Steel coils are able to withstand extreme temperatures due to their unique composition and manufacturing process. Steel, the primary material used in coils, is an alloy of iron and carbon that possesses excellent thermal properties. Its high melting point, which can reach up to 2,500 degrees Fahrenheit (1,370 degrees Celsius), allows it to remain structurally stable under intense heat. Furthermore, steel coils are often subjected to a process called annealing, which involves heating the steel to a specific temperature and then slowly cooling it down. This annealing process helps relieve internal stresses within the steel, making it more resistant to thermal expansion and contraction. By reducing the presence of internal defects, annealing also enhances the steel's overall strength and durability, allowing it to better withstand extreme temperatures. Moreover, steel coils are often coated with protective layers to provide additional resistance against temperature variations. These coatings, such as galvanized or zinc coatings, act as a barrier between the steel and the external environment. They help prevent oxidation, corrosion, and other forms of degradation that can occur when exposed to extreme heat or cold. In summary, steel coils are able to withstand extreme temperatures due to the inherent properties of steel, the annealing process that relieves internal stresses, and the protective coatings that provide an extra layer of resistance. These factors work together to ensure that steel coils remain structurally stable and maintain their performance even in the harshest temperature conditions.

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