• Hot Dipped Galvanized Steel Coils /hot steel coil System 1
  • Hot Dipped Galvanized Steel Coils /hot steel coil System 2
  • Hot Dipped Galvanized Steel Coils /hot steel coil System 3
  • Hot Dipped Galvanized Steel Coils /hot steel coil System 4
Hot Dipped Galvanized Steel Coils /hot steel coil

Hot Dipped Galvanized Steel Coils /hot steel coil

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
50 m.t.
Supply Capability:
60000 m.t./month

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Quick Details

Place of Origin:

Shandong China (Mainland)

Brand Name: CNBM LTD.Model Number:

0.13-0.6mm*750-1250mm

Material:

SGCH SGCC SPCC DX51D

application:

construction,automobile,household appliance,etc.

surface:

galvanized,chromated,dry,skin pass...

skin pass:

chromated

technique:

cold rolled

spangle:

zero/big/regular/minimum

tempering:

bright annealed or full hard

grade:

prime

zinc coating:

50-220gsm

coil weight:

3-5mt

coil id:

508mm/610mm

Packaging & Delivery

Packaging Detail:mill's standard packing,sea worthy packing,steel pallets
Delivery Detail:within 15-30 days after received the deposit or the LC at sight

Specifications

hot dipped galvanized steel coils
1.FOB:650-1000SUSD/TON
2.size:0.13-0.6mm*750-1250mm*C
3.zinc coating:50-220gsm
4.chromate

hot dipped galvanized steel coils

 

NAME

 

PPGI

 

GALVANIZED

 

 

GALVALUME/ALUZINC

 

CERTIFICATE

ISO9001:2008

 

 

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 NO

0.16MM-0.8MM*1250MM OR UNDER

(0.127-1.2*1250MM OR UNDER

0.12MM-2MM*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

 

Ccold rolled

-galvalume /galvanized

-PPGI/PPGL

Cold rolled

- galvanized

 

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

 

APPLICATION

Structural use ,roofing, commercial use, household appliance, industry, family

 

 

SPECIAL

APPLICATION

Wear resistant steel, high- strength - steel plate

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

company

 

 

 

 

 

Q:What are the different types of steel coil storage methods?
There are several types of steel coil storage methods, including stacking coils vertically, using coil cradles or saddles, utilizing coil racks or frames, employing coil lifters or C-hooks, and implementing automated coil storage systems. Each method is designed to accommodate different storage requirements and ensure the safety and efficient handling of steel coils.
Q:What are the different types of steel coil edge conditions?
There are several different types of steel coil edge conditions, each designed to meet specific requirements and applications. The most common types include: 1. Mill Edge: Mill edge is the default edge condition for hot-rolled steel coils, where the edges are left as they come out of the rolling process. This edge condition is characterized by a slightly rough and uneven surface. 2. Slit Edge: Slit edge is created by cutting the coil along its width to achieve narrower strips. This edge condition is typically smoother and more uniform than mill edge, making it suitable for applications where a clean and precise edge is required. 3. Trimmed Edge: Trimmed edge is achieved by removing irregularities and imperfections from the edges of the coil. This process results in a straight and smooth edge, making it suitable for applications where a precise and uniform surface is necessary. 4. Deburred Edge: Deburred edge is created by removing burrs or sharp edges from the coil. This edge condition is commonly used in applications where safety is a concern, as it eliminates any potential hazards associated with sharp edges. 5. Round Edge: Round edge is achieved by rounding the corners of the coil. This edge condition is often employed in applications where the material needs to be easily handled or when there is a need to prevent damage to other materials or surfaces. 6. Slit and Deburred Edge: Slit and deburred edge combines the benefits of both slit edge and deburred edge conditions. It involves cutting the coil to achieve narrower strips and then removing any burrs or sharp edges, resulting in a clean and safe edge. Each of these edge conditions serves a specific purpose and is chosen based on the requirements of the application. By understanding the different types of steel coil edge conditions, one can select the most suitable option to ensure optimal performance and safety.
Q:where can i find information online about steel residential homes that use solar energy?
Steel okorder
Q:is a 1962 steel penny worth anything?
I don't think they made steel pennies in 1962, did they?
Q:Nickel is ferro magnetic in nature. But when it is added with stainless steel, it makes stainless steel non-magnetic. What is the structural changes happened with the presence of nickel?
Steel is magnetic because of the alignment of the spin in the electrons of the atoms in the crystaline matrix of the steel. Nickel atoms are not the same size as Iron atoms and Chromium atoms. by having several different sizes of atoms in the alloy, it prevents a uniform crystaline matrix from being formed. If you imagine a box of marbles that are all the same size, they will all settle into a regular pattern in the box. But a bunch of mismatched marbles will be jumbled together in irregular patterns. This prevents the magnetic properties of either element from asserting itself.
Q:I have heard that heating the steel and applying oil will help with corrosion, and will give that aged look. I would like to know finishes available without painting. thanks
No, I don't think the oil will do what you want. I have heated and quenched metal in oil several times (to harden it) and it did not give a finish to steel. I have heard of heating steel to a high temperature (red) and putting powdered sulfur on it, it will make a black finish. BUT, sulfur stinks and you would not do this indoors. And I don't know what the results would be like for indoor use. At the hardware store, you can find something like POR (paint on rust), a brand name of rust neutralizer. There are others. You spray it on (or paint) and it will turn rust into a glossy black material. Other than that, I think paint is your best option. Check out the new finishes they have now, if you haven't checked, they have come a long way. If you let them dry completely (in the sun) the spray can finishes are very durable. Good luck! Ooops, I forgot about gun finishes. Yes, some are blue, you might be thinking of that, but that is only if you put several coats on. One coat might do it. Plus, there are other colors, such as black (see the parkerizing link on the list). Here is a good company, they can be lots of help, too.
Q:How are steel coils used in the manufacturing of electrical wiring?
Steel coils are used in the manufacturing of electrical wiring as a core material for cable reinforcement. The coils provide structural strength and support to the wires, ensuring durability and resistance to external forces. Additionally, the steel coils help in maintaining proper electrical conductivity and minimize electrical losses, ensuring efficient power transmission and distribution.
Q:What are the different types of steel coil surface treatment options?
There are several different types of steel coil surface treatment options available, each serving a specific purpose and providing various benefits. Some of the common surface treatment options include: 1. Hot-dip galvanizing: This process involves immersing the steel coil in a bath of molten zinc, which forms a protective zinc coating on the surface. Galvanizing provides excellent corrosion resistance and helps in extending the lifespan of the steel coil. 2. Electro-galvanizing: Similar to hot-dip galvanizing, but instead of immersing the coil in molten zinc, an electric current is used to deposit a thin layer of zinc onto the steel surface. Electro-galvanizing provides a smoother and thinner zinc coating, making it suitable for applications that require a more aesthetic finish. 3. Pre-painted or coated: Steel coils can be coated with a layer of paint or other protective coatings before they are formed into various products. This type of treatment provides additional protection against corrosion and enhances the aesthetic appearance of the steel coil. 4. Organic coating: Organic coatings are typically applied to steel coils to provide protection against corrosion and improve the overall durability of the product. These coatings can be in the form of epoxy, polyurethane, or other types of polymer-based materials. 5. Pickling: Pickling is a surface treatment process that involves removing impurities and scale from the steel coil by immersing it in an acid solution. This treatment helps in improving the adhesion of subsequent coatings and prepares the surface for further processing or finishing. 6. Oil coating: Steel coils can be coated with a thin layer of oil to protect the surface from oxidation and rust during storage or transportation. This coating is typically used as a temporary measure and is usually removed before further processing. 7. Shot blasting: Shot blasting involves propelling small metal particles at high velocity onto the steel coil surface. This process helps in removing rust, scale, and other contaminants, providing a clean and roughened surface for better adhesion of subsequent coatings. These are some of the commonly used steel coil surface treatment options. The choice of treatment depends on the specific requirements of the application, such as corrosion resistance, aesthetic appearance, or improved adhesion.
Q:How would you calculate the maximum plastic deformation (expansion) a steel pipe can handle before it actually fails?
You can calculate the maximum reversible strain, for elastic loading as follows: You need to look up the yield strength (for that particular type of steel). Divide this yield strength by the elastic modulus of steel (also called Young's modulus). That gives you the strain at the onset of yielding, the maximum you can strain the steel fibers before crossing the point of no return. If you are interested in the strain until failure, you need to take tensile test measurements. Seldom do people document an equation to model the non-elastic portion of the stress-strain curve of the specimen, because seldom do we design systems to operate with materials which yield. We want systems which only deform reversibly and elastically. This means you need to perform an experiment to find what you are actually desiring to know.
Q:This is my first time buying new strings for my violin and I’ve narrowed it down to two choice based on reviews and cost. The only difference I can see between the strings is that one has a solid steel core and the other has a synthetic core. What are the pros and cons of each type of core?
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