• Prepainted galvanized rolled steel coil System 1
  • Prepainted galvanized rolled steel coil System 2
  • Prepainted galvanized rolled steel coil System 3
Prepainted galvanized rolled steel coil

Prepainted galvanized rolled steel coil

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
1 m.t.
Supply Capability:
30000 m.t./month

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Product namesteel coil,galvanized steel coil
MaterialDX51D, SGCC, SPCC, CGCC, DX51D
Normal thickness0.17-1.2mm
Normal width900mm,914mm, 1000mm, 1200mm, 1220mm, 1250mm
Coil weight3-12ns
CertificateBV, SGS and ISO
OriginalTianjin,China
Payment termsL/C or T/T
Delivery timewithin 10 ~ 25 days after 30% prepayment

 

 

Thickness: 0.12mm-1.5mm

Width: 762mm-1250mm

Zinc Coating: 60g-200 GSM

Coil ID: 508mm

Tolerance of thickness: ± 0.03mm

Tolerance of width: ± 0.03mm

Hardness: Full hard

Coil Weight: Normally 3-6 mt.

Supply ability: 300, 000Mt/year (MOQ: 50Mt)

Price terms: FOB, CFR, CIF

Payment terms: T/T or 30% T/T for deposit, rest to be paid by IRREVOCABLE L/C at Sigh

Deliver time: Within 30 days

Packing: Exporting package standard. Steel strip Water proof paper, metal covers

Furniture:Wardrobe, office equipment, cooking appliance

 

1.What grades and standards of steel are uesd? 

Our grades could meet most of customers demand ,such as ASTM, GB,JIS,EN,etc...specific grade includes commercial  quality,low carbon, high carbon,and high strengthen select low alloy   

2.what type of finishes is your product produced in?

 We produce steel products in a wide variety of finishes ,including hot-rolled black,hot-rolled pickled &oiled,cold-rolled,aluminized,and hot dipped galvanized.If you have a specific finish that is required, please contact us for additional information.

3.what is your order minimum?

as  an experienced steel materials manufacturer, we sell in one full container and combination container .Although the totalweight on an order will vary due to the type and size, a typical full container load or less container load order will be approximately 10~25 tons.

4. what could we get if we bulid up relationship with your company?

Frankly ,you get competitive price, good quality materials and considerable payment term. our experienced team will offer you full service from order confermation to goods arrival your warehouse. You have noting to worry about during the process.

 

5.where can I find more information about your steel materials?

For more information about our steel materials ,pls visit web: www.okorder.com

 

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!
In metallurgy, stainless steel is defined as a steel alloy with a minimum of 11.5% chromium content by mass. Stainless steel does not stain, corrode or rust as easily as ordinary steel (it stains less), but it is not stain-proof. It is also called corrosion resistant steel when the alloy type and grade are not detailed, particularly in the aviation industry. There are different grades and surface finishes of stainless steel to suit the environment to which the material will be subjected in its lifetime. Common uses of stainless steel are cutlery and watch straps. Stainless steel differs from carbon steel by amount of chromium present. Carbon steel rusts when exposed to air and moisture. This iron oxide film is active and accelerates corrosion by forming more iron oxide. Stainless steels have sufficient amount of chromium present so that a passive film of chromium oxide forms which prevents further corrosion
Q:for a roof spanning 14.4m x 8.4m on a residential house, is it better to use timber trusses or steel trusses? the priorities are; ease of construction, price, insulation (want to keep heat out, i am in a tropical country), durability, flexibility, minimal load on foundations.please help. thank you :-)
U will to find details on metal trussesin constructing materials AND development through BINDRA AND ARORA and u may additionally to find them in MCKAY(B.M.C).About steel doors and windows search the net u can search in google or yahoo u will to find it . Ok bye bye all of the exceptional.
Q:Which of the two are better for exhaust manifolds, im guessing the stainless steel right?
Cast iron. That's what OEMs use obviously it's better. Bring on the Thumbs Down from the peanut gallery.
Q:hello, I am trying to figure out what wok to get and came across a website that offers many woks out of different materials. what is the best, or considered original (traditional)? I have a couple of cast iron pots and pans - too heavy, so I am assuming it will take some time for a cast iron wok to heat up. what about carbon steel and stainless steel? Thanks
Carbon steel is definitely the way to go. This is the authentic wok. Of course, you must be aware that it can rust if not dried--but in use you will seldom wash it anyway. The correct practice is simply to wipe it out with a paper towel. In this way the wok keeps its natural non-stick qualities. Whenever it is washed it must be re-seasoned--by heating it very hot with salt. Stainless steel of course does not rust and makes a pretty picture hanging up--but its utility ends there. It does not have the heat conduction qualities that are needed. Still, there are other factors which go into wok cooking (such as degree of heat available) which have nothing to do with the wok. With that in view, a SS wok might be your choice, but from a cooking standpoint, carbon is better. One added factor you must consider is thickness of the steel. Cheap woks will flex readily if grasped by the handles. A quality wok is twice as thick. It is not too much to aim for 1/8 thickness, or nearly that. There is also the flat bottomed Shanghai wok which is about 1/4 thick and usually comes with a teflon finish. These are very inexpensive but useful because they can be heated up to a high temperature which it will hold to a certain extent. The bane of wok cookery is insufficient heat. (I have an electric stove right now which exhibits that defect).
Q:What are the quality standards for steel coil production?
The quality standards for steel coil production typically include factors such as dimensional accuracy, surface finish, mechanical properties, chemical composition, and adherence to industry-specific standards and specifications. These standards ensure that the steel coils meet the required strength, durability, and performance criteria, and are suitable for various applications in industries like automotive, construction, and manufacturing.
Q:What are the factors to consider when selecting steel coils for a specific application?
There are numerous factors to consider when choosing steel coils for a particular application. These factors encompass the type of application, the necessary strength and durability, the desired aesthetic appearance, the allocated budget, and any specific industry standards or regulations that must be met. Firstly, it is crucial to identify the type of application for which the steel coils will be utilized. Various applications may necessitate different steel types with varying properties. For instance, if the coils are intended for use in structural construction, high-strength steel with exceptional structural integrity may be necessary. Conversely, if the coils will be employed in automotive manufacturing, steel with good formability and weldability may be more appropriate. The required strength and durability represent another crucial factor to contemplate. This includes factors such as load-bearing capacity, resistance to corrosion, and the ability to withstand extreme temperatures or environmental conditions. The selected steel coils must be capable of enduring the specific stresses and strains inherent in the intended application. The desired aesthetic appearance is also significant, particularly in applications where the steel coils will be visible. Considerations may include the surface finish, color, and texture of the steel coils. This consideration is especially pertinent in industries such as architecture or interior design, where the visual appeal of the steel plays a pivotal role. Budgetary constraints should also be taken into account when selecting steel coils. The price of different steel grades and types can vary significantly. Striking a balance between desired properties and available budget is important. In some cases, compromising on certain factors may be necessary in order to adhere to financial limitations. Lastly, any specific industry standards or regulations must be considered during the selection process. Certain industries, such as aerospace or automotive, may impose strict requirements on the materials used in their products. It is essential to ensure that the chosen steel coils meet all necessary standards and regulations in such cases. In conclusion, when choosing steel coils for a specific application, careful consideration should be given to factors such as the type of application, required strength and durability, desired aesthetic appearance, budget, and industry standards or regulations. By taking these factors into account, an informed decision can be made to select the most suitable steel coils for the intended application.
Q:How are steel coils processed before being used in manufacturing?
Before steel coils are used in manufacturing, they undergo a series of processing steps. Initially, the steel coil is uncoiled from a large spool, a process that is typically carried out using a machine known as a decoiler. Once the coil is uncoiled, it is carefully inspected for any defects or damages. Following inspection, the steel coil is subjected to a process called leveling. This involves passing the coil through a set of rollers to eliminate any unevenness or waviness in the steel. By doing so, the leveling process guarantees that the coil has a uniform thickness and a flat surface, which is crucial for subsequent processing. The subsequent step involves thoroughly cleaning the steel coil to eliminate any impurities it may have, such as rust, oil, or dirt. Typically, this is accomplished by running the coil through a cleaning line, where it is treated with chemicals and water sprays. Through this cleaning process, the surface of the coil is thoroughly cleansed of any contaminants that could potentially compromise the quality of the final product. Once the cleaning process is complete, the steel coil may undergo additional processes tailored to the specific requirements of the manufacturing process. For instance, the coil may undergo annealing to enhance its ductility and reduce its hardness. Annealing entails heating the coil to a specific temperature and gradually cooling it. This process serves to alleviate internal stresses and enhance the mechanical properties of the steel. Upon completion of all necessary processing steps, the steel coil is now ready to be utilized in the manufacturing process. It can be further processed into various forms and shapes, such as sheets, plates, or strips, depending on the specific requirements of the manufacturing process. These processed steel coils find application in a wide array of industries, including automotive, construction, appliances, and machinery.
Q:What are the different grades of steel used for manufacturing coils?
The different grades of steel used for manufacturing coils include low carbon steel, medium carbon steel, high carbon steel, and stainless steel.
Q:What are the different types of steel coil edge conditioning methods?
There are several different types of steel coil edge conditioning methods, including slitting, cutting, shearing, and edge rolling. Slitting involves cutting the coil into narrower strips, while cutting involves separating the coil into smaller sections. Shearing is a process of cutting the edges of the coil to remove any irregularities or defects. Edge rolling is a method that involves rolling the edges of the coil to create a smoother and more uniform finish.
Q:What are the common welding methods used for steel coils?
The common welding methods used for steel coils include shielded metal arc welding (SMAW), gas metal arc welding (GMAW), flux-cored arc welding (FCAW), and submerged arc welding (SAW).

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