• Color Coated Galvanized Corrugated Iron Sheets System 1
  • Color Coated Galvanized Corrugated Iron Sheets System 2
  • Color Coated Galvanized Corrugated Iron Sheets System 3
Color Coated Galvanized Corrugated Iron Sheets

Color Coated Galvanized Corrugated Iron Sheets

Ref Price:
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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
100 m.t.
Supply Capability:
1000345 m.t./month

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Item specifice

Standard:
AISI
Technique:
Hot Rolled
Shape:
U Channel
Surface Treatment:
Galvanized
Steel Grade:
Q195
Certification:
ISO
Thickness:
2
Length:
2
Net Weight:
2

Description of Corrugated Iron Sheet:

In light industries it can be used as appliances shell, civil chimney, kitchenware, etc. Farming fisheries mainly used as food storage, the seafood frozen processing equipment of meat. Business mainly used as materials of storage, packing equipments, etc

 

Specifications of Corrugated Iron Sheet:

Material

Steel

Color

All RAL color

Thickness

0.23-1.0MM

Width

600mm to1200mm

Zinc coating

80 to 275g m2

Certificate

ISO 9001:2000

Minimum Order Quantity:

300 Square Meter/Square Meters

Packaging Details:

plastic film and in bundles

Delivery Time:

within 15 days

Supply Ability:

30,000 Square Meter/Square Meters per day

 

Features of Corrugated Iron Sheet:

1. more than 10 years experiences in steel business

2. good quality

3. competitive price

4. meet your needs via reprocessing

5. excellent service

6. short delivery time

7. long mutual beneficial business cooperation

8. certificate: ISO9001 

 

Images of Corrugated Iron Sheet:

Color Coated Galvanized Corrugated Iron Sheets

FAQ:  

1. What's the Delivery port?

The main ports are Qingdao and Tianjin, we also can deliver to other ports to meet your requirements

2. How long is the lead time?

Delivery time: 45 days after order confirmed.

3. What payment term do you accept?

Payment: T/T or L/C at sight.  

Q:What is the maximum size of the steel sheets available?
The maximum size of the steel sheets available can vary depending on the supplier and specific requirements, but it typically ranges from several feet in length and width to several meters.
Q:How do steel sheets handle thermal expansion?
Thermal expansion is managed by steel sheets through their ability to expand and contract in response to temperature fluctuations. When steel is heated, it expands, and when it is cooled, it contracts, just like any other material. However, steel has a relatively low coefficient of thermal expansion compared to other materials, meaning it expands and contracts less for a given change in temperature. This characteristic makes steel sheets more resistant to warping or buckling caused by thermal expansion. Moreover, steel is a robust and long-lasting material, enabling it to withstand the stresses resulting from thermal expansion without significant damage. To further address the effects of thermal expansion, engineers often incorporate expansion joints into structures or employ techniques such as pre-stressing and anchoring to accommodate the expansion and prevent harm. As a result of these properties and design considerations, steel sheets are able to effectively manage thermal expansion.
Q:What are the different joining methods for steel sheets?
There exist several methods for joining steel sheets, each with its own benefits and applications. 1. Welding, a widely used method, involves melting and fusing the sheet edges together with heat. Various welding techniques, such as arc, MIG, TIG, and spot welding, are available. Welding ensures robust and durable joints but demands skilled operators and can be time-consuming. 2. Bolting, another method, employs bolts or screws to connect steel sheets. This method is commonly preferred when disassembly or maintenance is necessary. Bolting guarantees strong and reliable joints, and it is relatively simple and quick. However, it may involve drilling holes and result in a less visually appealing appearance compared to welding. 3. Riveting, a method utilizing metal pins or rivets, effectively joins steel sheets. Rivets are inserted through pre-drilled holes and then deformed or expanded to secure them in place. Riveting ensures strong and secure joints, commonly used in applications requiring high shear strength. Nevertheless, it can be time-consuming and necessitates specialized tools and skills. 4. Adhesive bonding involves using specialized adhesives or bonding agents to join steel sheets. The adhesive is applied between the sheets and forms a strong bond as it cures. Adhesive bonding provides excellent aesthetics, leaving no visible joints, and evenly distributes stress across the joint. It finds common use in industries where welding or other methods are unsuitable, such as automotive and aerospace sectors. 5. Clinching utilizes mechanical force to join steel sheets. It entails deforming the sheet edges to interlock them and create a strong joint. Clinching is cost-effective as it does not require additional materials like fasteners or adhesives. However, it may not be suitable for applications requiring high load-bearing capacity. Ultimately, the choice of joining method for steel sheets depends on factors such as the application, desired strength, aesthetics, time constraints, and cost considerations. Each method possesses its own advantages and limitations, necessitating the selection of the most appropriate method for the specific project requirements.
Q:How do steel sheets compare to plastic sheets?
Steel sheets are generally stronger, more durable, and have a higher heat resistance compared to plastic sheets. They are better suited for heavy-duty applications, such as construction and industrial uses, where strength and durability are crucial. Plastic sheets, on the other hand, are lightweight, flexible, and cost-effective. They are commonly used for applications where weight and cost are important factors, such as packaging, signage, and some consumer goods. Ultimately, the choice between steel and plastic sheets depends on the specific requirements and intended use of the sheets.
Q:What does "rolled steel" mean?.
Rolling is a rolling process, the plate is kind of calendering material, not only some specific material, it can contain stainless steel and carbon steel materials, stainless steel with thickness of steel production for example, now the tolerance basic law, but in order to achieve a certain thickness
Q:Definition and application of steel sheet pile
The steel sheet pile is a kind of edge with linkage device, and the linkage device can be freely assembled so as to make the linkageA steel structure forming a continuous tight retaining or retaining wall
Q:What are the different sheet metal folding techniques for steel sheets?
There are several sheet metal folding techniques that can be used for steel sheets. These techniques are commonly employed in various industries, such as automotive, aerospace, and construction, to create complex shapes and structures. Some of the most common sheet metal folding techniques for steel sheets include: 1. Box and Pan Folding: This technique involves bending the sheet metal along multiple parallel edges to create a box-like shape. It is commonly used to create enclosures, cabinets, and trays. 2. Hemming: Hemming is a technique used to fold the edges of a sheet metal component to increase its rigidity and eliminate sharp edges. It is often used in the automotive industry for creating panels and body parts. 3. Brake Press Folding: A brake press is a machine tool that utilizes a hydraulic or mechanical press to bend the sheet metal. It allows for precise and accurate folding by adjusting the angle and depth of the bend. Brake press folding is one of the most commonly used techniques in sheet metal fabrication. 4. Roll Forming: Roll forming is a continuous bending process where the sheet metal is passed through a series of rollers to gradually shape it into a desired profile. It is suitable for creating long and continuous shapes, such as tubes and channels. 5. Rotary Folding: In rotary folding, a rotating tool is used to fold the sheet metal along a curved or circular path. This technique is often used to create rounded edges, curves, and cylindrical shapes. 6. Folding Machines: Folding machines are specifically designed to fold sheet metal by applying pressure along a predetermined line. These machines can be programmed to perform various folding operations, including simple bends, complex shapes, and multiple folds. Each of these sheet metal folding techniques has its advantages and limitations, and the choice of technique depends on factors such as the complexity of the design, required precision, and production volume. Skilled craftsmen and specialized machinery are often employed to ensure accurate and efficient folding of steel sheets.
Q:Can steel sheets be used in the energy sector?
Yes, steel sheets can be used in the energy sector for various applications such as in construction of power plants, transmission towers, wind turbines, and oil and gas pipelines. Steel sheets are known for their strength, durability, and ability to withstand harsh environments, making them suitable for use in the energy industry.
Q:Are steel sheets suitable for modular construction?
Yes, steel sheets are suitable for modular construction. They are lightweight, durable, and have high strength-to-weight ratio, making them ideal for constructing modular buildings. Steel sheets can be easily fabricated and assembled into modular components, providing flexibility and ease of construction. Additionally, steel is resistant to fire, pests, and weathering, ensuring longevity and safety in modular structures.
Q:What are the common applications of steel sheets?
Steel sheets have numerous common applications in various industries. They are commonly used for construction purposes, such as in the fabrication of roofs, walls, and structural components. Steel sheets are also used in the automotive industry for manufacturing car bodies, frames, and panels. Additionally, they find application in the manufacturing of appliances, furniture, storage tanks, and agricultural equipment. Moreover, steel sheets are extensively used in the aerospace and defense sectors for producing aircraft parts, missiles, and armored vehicles. The versatility, strength, and durability of steel sheets make them a popular choice in these applications and many others.

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