• Premium Corrugated  Galvanized Steel Sheet System 1
  • Premium Corrugated  Galvanized Steel Sheet System 2
  • Premium Corrugated  Galvanized Steel Sheet System 3
Premium Corrugated  Galvanized Steel Sheet

Premium Corrugated Galvanized Steel Sheet

Ref Price:
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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
25 m.t.
Supply Capability:
5000 m.t./month

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Item specifice

Standard:
AISI,JIS,GB,BS,DIN,API,EN,ASTM
Technique:
Hot Rolled,Cold Rolled
Shape:
Square,Rectangular
Surface Treatment:
Galvanized,Coated
Steel Grade:
Q195,Q215,Q235,Q215B,Q235B,RHB335,HRB400,200 Series,300 Series,400 Series,600 Series,SS400-SS490,10#,20#,A53(A,B)
Certification:
ISO,SGS,BV,RoHS,UL
Thickness:
0.5
Length:
1000
Net Weight:
1MT

 

Product Brief Introduction

 

 Premium Corrugated Galvanized Steel Sheet

Galvanized Corrugated Steel Roofing Sheet is formed by cold roll machine, using galvanized steel sheet or aluminum steel as the base material .Galvanized corrugated steel roofing sheet is featured with easy installation ,high  strength ,more economic .( low cost )

 

Product Features

 .Outlook Beautiful and novel, rich colors, flexible combination, can be used in different buildingto express special original architectural styles in life.

.Surface have been treated as galvanized and color coated.so it can anti-rain,anti- fire,anti-quake,So it has a long term life as 20-30 year and color just not fade.

. Light weight: easy to transport the material,short the time to finish the building,reduce  worker's hard work,save much time and energy for human beings.

 .Smooth surface treatment,the dust will be easy taken off by the rain.

. Environmental material,can be used many times,will do no hard to the our environment.

 

Product Specification 

 Premium Corrugated GI Galvanized Steel Sheet

 

Packing Information (For 27.5 Tons heavy 20’Fcl)

 . water proof paper packing in side

. plastic film Packing in middle

. steel sheet Packing out side

.several steel strip packing to fix the packing

 

Production Line & Package 

 

 

FAQ

 

1.    how many wave for per pcs

—— some wave is 8 ,same wave is 9 ,save wave is 11 ,it is up to your request

2.    What is the MOQ for this products ?

—— Normally the MOQ is 25mt per size and per color .

 

 Premium Corrugated  Galvanized Steel Sheet

Q:How do steel strips compare to other metal strips?
Steel strips are highly regarded for their exceptional strength, durability, and versatility compared to other metal strips. With their superior hardness and resistance to corrosion, steel strips offer enhanced performance and longevity in various applications. Additionally, steel strips exhibit excellent formability and weldability, making them easier to shape and join compared to other metals. Overall, steel strips stand out as a reliable and efficient choice among different metal strips.
Q:How do steel strips respond to different forming processes?
Various factors, such as the composition and properties of the steel, the type of forming process utilized, and the desired shape and characteristics of the final product, influence the response of steel strips to different forming processes. One widely employed forming process for steel strips is cold rolling. This method involves passing the steel strip through a sequence of rollers to decrease its thickness and enhance its surface finish. Cold rolling can augment the strength and hardness of the steel, rendering it suitable for applications that demand high strength and durability. Furthermore, cold rolling can improve the dimensional accuracy and flatness of the steel strip. Another commonly employed forming process is hot rolling. In this process, the steel strip is heated above its recrystallization temperature and passed through a series of rollers. Hot rolling enhances the formability of the steel strip, enabling it to be shaped into intricate forms. Moreover, it improves the grain structure of the steel, resulting in enhanced mechanical properties. Steel strips can also undergo other forming processes, including bending, deep drawing, and stamping. Bending involves applying force to the steel strip to achieve the desired shape. Deep drawing, on the other hand, involves forming a flat steel strip into a three-dimensional shape using a die and punch. Stamping involves pressing a steel strip into a die to create intricate shapes and patterns. In conclusion, steel strips possess versatility and respond favorably to various forming processes. The specific response of a steel strip to a particular forming process relies on factors such as the steel's composition, thickness, and the parameters employed during the process. By selecting the appropriate forming process, manufacturers can achieve the desired shape, mechanical properties, and surface finish for the steel strip.
Q:How do steel strips respond to different surface painting processes?
Steel strips respond differently to different surface painting processes depending on the specific method used. The surface painting processes commonly used on steel strips include electroplating, powder coating, and liquid paint application. Electroplating is a process where a layer of metal is deposited onto the steel strip surface using an electric current. This method provides excellent corrosion resistance, as the metal layer acts as a protective barrier. However, it may not be suitable for all applications as it can impact the mechanical properties of the steel strip. Powder coating involves applying a dry powder to the steel strip surface, which is then heated to create a chemical reaction that forms a durable and protective coating. This process is known for providing excellent adhesion, resistance to chipping, scratching, and fading. It also offers a wide range of colors and finishes, making it popular in various industries. Liquid paint application involves the use of a liquid paint that is applied to the steel strip surface using different techniques such as spraying, brushing, or dipping. This method allows for a high level of customization in terms of colors, finishes, and textures. However, it may not provide the same level of durability and resistance as powder coating. Overall, the response of steel strips to different surface painting processes depends on factors such as the intended application, desired appearance, and required level of protection. It is essential to consider these factors and consult with professionals in the field to determine the most suitable painting process for steel strips in a specific application.
Q:How do steel strips resist corrosion?
Steel strips resist corrosion through a process known as passivation, where a thin layer of oxide forms on the surface, creating a protective barrier that prevents further oxidation and corrosion. Additionally, steel strips can be coated with corrosion-resistant materials such as zinc or paint, further enhancing their ability to resist corrosion.
Q:How do steel strips perform in terms of machinability?
Steel strips generally have good machinability. They can be easily shaped, cut, drilled, and formed into various components and parts. The machinability of steel strips depends on factors such as the composition of the steel, heat treatment, and the type of machining process. However, overall, steel strips are known for their excellent machinability, making them a popular choice in many industries.
Q:What are the health hazards associated with handling steel strips?
There are several health hazards associated with handling steel strips. One of the main hazards is the risk of physical injury. Steel strips are heavy and can cause strains, sprains, or even fractures if not handled properly. It is important to use proper lifting techniques and equipment to minimize the risk of these injuries. Another health hazard is the potential for cuts or punctures. Steel strips can have sharp edges or burrs, which can cause injuries if not handled with care. It is important to wear appropriate protective gloves and use tools specifically designed for handling steel to minimize the risk of cuts or punctures. In addition, steel strips can pose a risk of exposure to hazardous substances. Some steel strips may contain coatings or treatments that contain harmful substances such as lead, chromium, or other toxic materials. If these substances are released or come into contact with the skin or are inhaled, they can cause serious health issues. It is important to wear appropriate personal protective equipment such as gloves, masks, or respirators when handling steel strips that may contain hazardous substances. Lastly, prolonged exposure to vibrations caused by handling steel strips can lead to musculoskeletal disorders. Vibrations can cause damage to the nerves, blood vessels, and muscles, leading to conditions such as hand-arm vibration syndrome or whole-body vibration syndrome. It is important to take regular breaks, use vibration-damping tools, and maintain good posture to minimize the risk of these disorders. Overall, the health hazards associated with handling steel strips include physical injuries, cuts or punctures, exposure to hazardous substances, and musculoskeletal disorders. It is essential to follow proper safety procedures, use appropriate protective equipment, and take necessary precautions to minimize these risks and ensure the well-being of individuals handling steel strips.
Q:Can steel strips be used for making springs?
Yes, steel strips can be used for making springs. Steel strips are commonly used in the manufacturing of springs due to their high strength and durability. The strips can be cut into the desired size and shape to create various types of springs, such as compression springs, tension springs, and torsion springs. Steel strips offer excellent resistance to deformation, allowing the springs to maintain their shape and functionality even under heavy loads or repetitive use. Additionally, steel strips can be heat-treated to further enhance their mechanical properties, making them suitable for a wide range of applications where springs are required.
Q:Can steel strips be welded or soldered?
Steel strips can indeed be welded or soldered. Welding requires the application of high temperatures and a filler material to melt the steel strips and create a robust connection. Conversely, soldering employs a lower temperature and a filler metal with a lower melting point to unite the steel strips. Both techniques offer secure ways to join steel strips, depending on the unique demands and applications.
Q:How are steel strips used in the manufacturing of railway tracks?
Steel strips are used in the manufacturing of railway tracks as they provide strength, durability, and stability required to support heavy trains. These strips are shaped and welded together to form the rails, creating a continuous and robust track structure. The steel composition ensures resistance to wear, corrosion, and extreme weather conditions, making them ideal for long-lasting and reliable railway infrastructure.
Q:Are steel strips suitable for making cutlery?
Steel strips are indeed appropriate for creating cutlery. Given its exceptional strength, durability, and resistance to corrosion, steel has become a popular choice for cutlery production. It is effortless to mold steel strips into different utensils such as knives, forks, and spoons. Moreover, the hardness of the steel can be adjusted according to one's preference for cutting ability and edge retention. Furthermore, steel does not react with food, ensuring its safety in the kitchen. All in all, steel strips are a versatile, long-lasting, and food-safe material for crafting cutlery.

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