• Good hot-dip galvanized/ aluzinc steel from CNBM System 1
  • Good hot-dip galvanized/ aluzinc steel from CNBM System 2
  • Good hot-dip galvanized/ aluzinc steel from CNBM System 3
  • Good hot-dip galvanized/ aluzinc steel from CNBM System 4
  • Good hot-dip galvanized/ aluzinc steel from CNBM System 5
Good hot-dip galvanized/ aluzinc steel from CNBM

Good hot-dip galvanized/ aluzinc steel from CNBM

Ref Price:
get latest price
Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
100 m.t.
Supply Capability:
5000000 m.t./month

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Description:

 

Standard:

AISI,ASTM,BS,DIN,GB,JIS

Grade:

SGCC,DX51D/DX52D/S250,280GD

Thickness:

0.12-4.0 mm

Place  of Origin:

China  (Mainland)

Brand  Name:

N/M

Model  Number:

ssp-226

Type:

Steel  Coil

Technique:

Cold  Rolled

Surface  Treatment:

galvanized/  Galvalume/zinc coatting

Application:

strong  anti-corrosion ability,cold bending molded manufacturablity

Special  Use:

High-strength  Steel Plate

Width:

600-1250 mm

Length:

in  coil

product:

g40  prime/secordary hot-dip galvanized cold rolled steel coil/sheet

 

 

Packaging  & Delivery

 

 

 

 

 

Packaging  Detail:

standard  export package,Other types of packing can be customized as per client's  requirement.

Delivery  Detail:

as  per client's requirements

Service:

1,on time delivery
2,high quality with competitive price
3,good service
4,long-term cooperation
5, rely on honors

 

We can ensure that stable quality standards are maintained, strictly meeting both market requirements and customers’ expectations. Our products enjoy an excellent reputation and have been exported to Europe, South-America, the Middle-East, Southeast-Asia, Africa and Russia etc.. We sincerely hope to establish good and long-term business relationship with your esteemed company.

 

Q: What are the different types of steel processing techniques for coils?
There are several types of steel processing techniques for coils, including hot rolling, cold rolling, annealing, pickling, and galvanizing.
Q: What are the challenges in the production of steel coils?
The production of steel coils faces several challenges. Firstly, one of the major challenges is ensuring consistent quality throughout the production process. Steel coils need to have uniform thickness, width, and flatness. Achieving this consistently can be challenging due to variations in raw materials, equipment, and operating conditions. Another challenge is managing the high temperatures involved in the production process. Steel coils are produced by heating steel slabs or billets to extremely high temperatures and then rolling them into coils. Maintaining the required temperatures and ensuring proper cooling can be a complex task, as any deviations can lead to inconsistencies in the final product. Furthermore, the production of steel coils requires a significant amount of energy. The steel industry is one of the largest energy consumers globally. Reducing energy consumption while maintaining production efficiency is a constant challenge. Implementing energy-efficient technologies and optimizing processes are necessary to address this challenge. Moreover, the production of steel coils generates a considerable amount of waste and emissions. Steel manufacturing involves various chemical reactions and releases pollutants such as carbon dioxide, sulfur dioxide, and particulate matter. Managing and minimizing these emissions to comply with environmental regulations is a significant challenge for the industry. Additionally, steel coils are often produced in large quantities, requiring efficient logistics and transportation systems. Ensuring timely delivery and minimizing damage during transportation can be a challenge due to the weight and size of the coils. Lastly, the steel industry faces market challenges, including fluctuating prices of raw materials, competition from other materials, and global economic conditions. Adapting to market demands and maintaining competitiveness is crucial for the sustainable production of steel coils. Overall, the challenges in the production of steel coils include maintaining consistent quality, managing high temperatures, reducing energy consumption and emissions, optimizing logistics and transportation, and adapting to market dynamics. Addressing these challenges requires continuous innovation, technological advancements, and a focus on sustainability.
Q: I have been searching on pots and pans, how can I find out if it's really stainless steel, someone told me if a magnet sticks to it it's real stainless steel is this true?
Some types of stainless are magnetic and some are not. being magnetic isn't a reliable way to tell the difference. In fact, only the cheapest pots would be made out of grades of stainless that are magnetic. Stainless pots/pans are generally made of non-magnetic types, but then again, aluminum isn't magnetic either. Aluminum and stainless are superficially very similar.
Q: What are the dimensions of a typical steel coil?
The dimensions of a typical steel coil vary based on its intended use and manufacturer. However, a common range for the inner diameter is between 508 to 610 millimeters (20 to 24 inches), while the outer diameter can range from 1,200 to 2,000 millimeters (47 to 79 inches). The width of a steel coil can range from around 600 to 2,000 millimeters (24 to 79 inches), and the weight can vary from a few hundred kilograms to several metric tons.
Q: How are steel coils loaded onto trucks or containers?
Steel coils are typically loaded onto trucks or containers using specialized equipment such as cranes, forklifts, or coil trailers. The coils are lifted and secured onto the truck or container using straps, chains, or clamps to ensure safe transportation.
Q: What processes and materials are used in the production of chrome steel
Go to the process section and find point 6 (explains when alloys are added). Chrome is added at this point, usually in the form of ferrochrome alloy (FeCr). Many kinds of chrome steel also contain nickel. The strengthening effect on steel by forming stable carbide grains at the grain boundaries and the strong increase in corrosion resistance made chromium an important alloying material for steel. The high speed tool steels contain between 3 and 5% chromium.
Q: Does SA use its own iron ore to produce steel for construction or do we rely on imports?
SA got its own steel and iron production going that is one of our main exports They don't make Rail's for railway line any more we in port it
Q: Can steel coils be used in the automotive industry?
Yes, steel coils can be used in the automotive industry. Steel coils are commonly used in the manufacturing of various automotive parts and components, including body panels, chassis, frames, and suspension systems. The high strength and durability of steel make it an ideal material for ensuring the safety and structural integrity of vehicles. Additionally, steel coils can be easily shaped and formed to meet the specific design requirements of different automobile models, making them a versatile choice for the automotive industry.
Q: How do steel coils contribute to sustainability in manufacturing?
Steel coils contribute to sustainability in manufacturing in several ways. Firstly, steel is a highly recyclable material, meaning that steel coils can be easily recycled and reused, reducing the need for new steel production and conserving natural resources. Additionally, steel is known for its durability and strength, resulting in longer-lasting products and reduced waste. Steel coils also play a vital role in energy-efficient manufacturing processes, as they can be easily formed into various shapes and sizes, optimizing material usage and minimizing energy consumption. Furthermore, steel's versatility makes it suitable for a wide range of applications, allowing manufacturers to create more sustainable products across industries. Overall, steel coils contribute to sustainability by promoting resource conservation, waste reduction, energy efficiency, and the production of durable and eco-friendly products.
Q: How are steel coils processed for edge trimming or shearing?
Steel coils are processed for edge trimming or shearing through a series of steps. First, the coil is unwound and passed through a leveller to ensure a flat surface. Then, the edges are inspected for defects and marked for trimming. Next, the coil is fed into a shearing machine or a slitting line, where the excess material is cut off to achieve the desired width. Finally, the trimmed coil is rewound and prepared for further processing or shipment.

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