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Corugated steel sheets

Corugated steel sheets

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1) AVAILABLE DESIGNATION OF (Prepainted galvanized steel coils) printed PPGI coils

Quality Q/BQB 440-2003 JIS G3312-1994 EN 10326-2004 ASTM A653-02a

EN 10327-2004 (BASE PLATE)

(BASE PLATE)  

Commercial Steel TDC51D CGCC DX51D+Z/AZ CS Type A/B/C

Forming Steel (TSt01,TSt02,TSt03) CGCD1 FS Type A, Type B

Drawing TDC52D /TDC53D - DX52D+Z/AZ DDS TYPE A/C

Steel DX53D+Z/AZ

Structural TS280GD(TStE28) CGC400 S280D+Z/AZ SS275

Steel TS350GD(TStE34) CGC440 S350D+Z/AZ SS340 Class1

2) OUR SPECIFICATION OF (Prepainted galvanized steel coils) printed PPGI coils

Available Size:

Manufacturer Thickness Width Length of plate Inner diameter of coil

JIANGSU HUIYE STEEL SHEET CO.,LTD 0.2-1.2mm 800/914/1000/1200/1219/1250mm 1000-6000mm 508mm/610mm

Coated Mass OF (Prepainted galvanized steel coils) printed PPGI coils:

Base plate Available Coated Mass(g/m^2)

Galvanized Steel 80, 100, 120, 160, 180

Galvalume Steel 50, 70, 150

Available Painting OF (Prepainted galvanized steel coils) printed PPGI coils:

Category of Painting Item Code

Polyester PE

High-durability polyester HDP

Silicon modified polyesters SMP

Polyvinylidene fluoride PVDF

Easy-Cleaning —

Painting Thickness Top side: 20+5microns;

Bottom side: 5~7microns.

Color System Produce according to RAL Color System or as per buyer’s color sample.

Painting structure Top surface Bottom surface  

Primer coating No coating 1/0

Primer coating Primer coating 1/1

Primer coating + Finish coating No coating 2/0

Primer coating + Finish coating Primer coating or single back coating 2/1

Primer coating + Finish coating Primer coating + Finish back coating 2/2

Q:What are the different types of surface finishes available for steel sheets?
There are several types of surface finishes available for steel sheets, each serving different purposes and providing distinct aesthetics. Some of the most common types include: 1. Hot rolled: This finish is achieved by heating the steel above its recrystallization temperature and then rolling it, resulting in a rough texture. It is commonly used for structural applications where aesthetics are not a primary concern. 2. Cold rolled: In contrast to hot rolled, cold rolled steel sheets are processed at room temperature, resulting in a smoother and more refined finish. This finish is often used for applications that require a higher level of precision or a more visually appealing surface. 3. Galvanized: Galvanization involves coating steel sheets with a layer of zinc, providing excellent corrosion resistance. This finish is commonly used in outdoor applications or environments with high levels of moisture. 4. Electro-galvanized: Similar to galvanized finish, electro-galvanized steel sheets are coated with a layer of zinc. However, this process involves the use of an electrical current to deposit the zinc, resulting in a thinner and more uniform coating. 5. Stainless steel: This finish is achieved by adding chromium to steel sheets, creating a protective layer that prevents corrosion and staining. Stainless steel is known for its high strength and resistance to a wide range of chemicals, making it suitable for various applications, including kitchen appliances and medical equipment. 6. Satin: This finish is characterized by a smooth and brushed appearance, achieved by using abrasive materials on the steel surface. Satin finish provides a low-reflective surface with a subtle sheen, making it commonly used for architectural and decorative purposes. 7. Mirror: As the name suggests, mirror finish steel sheets have a highly reflective surface that resembles a mirror. This finish is achieved by polishing the steel using progressively finer abrasives until a mirror-like surface is obtained. Mirror finish is often used in decorative applications, such as furniture, automotive trim, and decorative panels. 8. Painted: Steel sheets can also be coated with paint to enhance their appearance and provide additional protection against corrosion. This finish offers endless color options and customization possibilities, making it suitable for a wide range of applications. These are just a few examples of the various surface finishes available for steel sheets. The choice of finish will depend on the specific requirements of the application, including aesthetics, corrosion resistance, and functionality.
Q:Are the steel sheets resistant to scratching or abrasion?
Yes, steel sheets are highly resistant to scratching or abrasion. Steel is known for its exceptional durability and strength, making it resistant to various forms of damage, including scratches and abrasions. The smooth and hard surface of steel sheets makes them less susceptible to scratches caused by sharp objects or rough surfaces. Additionally, the strong molecular structure of steel prevents it from easily wearing down or getting scratched, ensuring its longevity even in high-traffic or demanding environments. Overall, steel sheets are an excellent choice when it comes to resistance against scratching or abrasion.
Q:Can steel sheets be easily cut?
Yes, steel sheets can be easily cut with the appropriate tools and techniques.
Q:What is the typical fatigue strength of a steel sheet?
The typical fatigue strength of a steel sheet can vary depending on factors such as material composition, thickness, surface condition, and loading conditions. However, for most common steel sheets, the fatigue strength usually falls within the range of 30 to 70 percent of the ultimate tensile strength of the material.
Q:Are steel sheets resistant to high-pressure environments?
Yes, steel sheets are generally resistant to high-pressure environments. Steel is known for its excellent strength and durability, allowing it to withstand high pressures without deformation or failure. It is often used in various industries, including construction, oil and gas, and aerospace, where it is exposed to extreme pressures. However, the specific resistance of steel sheets to high-pressure environments can vary depending on the grade and thickness of the steel.
Q:Are steel sheets suitable for architectural cladding?
Architectural cladding can indeed utilize steel sheets. Steel possesses durability and versatility, offering an array of advantages for cladding applications. Its strength and rigidity enable it to withstand harsh weather conditions, including strong winds, heavy rain, and snow. This durability ensures that the cladding will endure for many years without requiring frequent maintenance or replacement. Additionally, steel sheets provide a sleek and modern aesthetic to buildings. They can be finished in various ways, such as painting, powder coating, or applying a metallic finish, allowing for limitless design possibilities. Steel cladding can achieve a contemporary or industrial look, making it a favored choice for both commercial and residential structures. Steel sheets are also highly resistant to fire, pests, and rot, making them a safe and long-lasting option for cladding. Furthermore, they are relatively lightweight, which can reduce construction costs and simplify installation. Furthermore, steel is an environmentally friendly material. It is recyclable, making it a sustainable choice for cladding. Steel cladding can also enhance energy efficiency by providing better insulation and reducing heat transfer, resulting in reduced energy consumption for heating and cooling. In conclusion, steel sheets are a suitable choice for architectural cladding due to their durability, aesthetic appeal, safety features, sustainability, and energy efficiency benefits.
Q:How do steel sheets handle expansion and contraction?
Due to its unique properties, steel sheets are capable of managing expansion and contraction in a predictable and controlled manner. Steel is renowned for its remarkable strength and durability, enabling it to endure the forces exerted during expansion and contraction without compromising its structural integrity. When steel sheets are exposed to high temperatures, such as those experienced during welding or in extreme environmental conditions, expansion occurs. This expansion is a result of the accelerated movement of steel molecules due to heat, leading to an increase in size. However, steel possesses a relatively low coefficient of thermal expansion, causing it to expand less compared to materials like concrete or wood. This property makes steel an advantageous choice for applications where dimensional stability is crucial. To effectively manage expansion, steel sheets are often designed with expansion joints or gaps that allow for movement. These joints can be found in structures such as bridges, buildings, or pipelines. They are strategically placed to accommodate the anticipated expansion and contraction of steel sheets without causing damage or deformation. Furthermore, the ability of steel to contract is equally significant. When exposed to lower temperatures, steel sheets shrink or contract. Although this contraction is typically less noticeable than expansion, it still needs to be taken into consideration in engineering designs. Fortunately, the contraction of steel is generally within acceptable limits and does not compromise the material's structural integrity. Overall, steel sheets are engineered to effectively handle expansion and contraction. The combination of a low coefficient of thermal expansion and the presence of expansion joints allows steel to accommodate temperature fluctuations without inducing significant stress or deformation. This makes steel a reliable and versatile material for numerous industries, including construction, manufacturing, and infrastructure.
Q:Can steel sheets withstand extreme temperatures?
Yes, steel sheets can withstand extreme temperatures. Steel has a high melting point and is known for its excellent heat resistance, making it suitable for use in various industries that require materials to endure extreme temperatures.
Q:What is the maximum size available for steel sheets?
The maximum dimensions of steel sheets can differ based on the type and grade of steel used and the manufacturing capabilities of the supplier. Generally, steel sheets can be produced in sizes ranging from small sheets measuring a few inches in width and length, to large sheets measuring several feet or even meters in width and length. The transportation and handling restrictions can also affect the maximum size of steel sheets available, as larger sheets might be harder to transport and manipulate. To determine the maximum size of steel sheets that fit your specific needs, it is advisable to consult with a steel supplier.
Q:What is the weight of each steel sheet?
The dimensions and thickness of each steel sheet determine its weight. Steel sheets are available in different sizes and thicknesses, resulting in varying weights. To calculate the weight, it is necessary to have the length, width, and thickness measurements of the steel sheet. Once these measurements are obtained, a weight calculator or a steel weight chart can be utilized to determine the weight per square meter or per square foot of the steel sheet. By multiplying this weight by the surface area of the sheet, the total weight of each steel sheet can be obtained.

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