• Hot Rolled Steel U-Channel with Many Standard System 1
  • Hot Rolled Steel U-Channel with Many Standard System 2
  • Hot Rolled Steel U-Channel with Many Standard System 3
  • Hot Rolled Steel U-Channel with Many Standard System 4
Hot Rolled Steel U-Channel with Many Standard

Hot Rolled Steel U-Channel with Many Standard

Ref Price:
get latest price
Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
20 m.t.
Supply Capability:
1000 m.t./month

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Product Description:

OKorder is offering Hot Rolled Steel U-Channel at great prices with worldwide shipping. Our supplier is a world-class manufacturer of steel, with our products utilized the world over. OKorder annually supplies products to European, North American and Asian markets. We provide quotations within 24 hours of receiving an inquiry and guarantee competitive prices.

 

Product Applications:

Hot Rolled Steel U-Channel can be applied to construction of warehouses, workshops, sport stadiums and car parks etc.The hot rolled channel steel belongs to carbon structural steel which is applied to in the field of construction and machinery.In details, the hot rolled channel steel is usually used for arch-itechtural structure, and they could be welded in order to support or hang a vari-ety of facilities. They are also usually used in combination with I beam. Generally,the hot rolled channel steel we supply must possess perfect welding property, riveting property and mechanical property and so on.

 

Product Advantages:

OKorder's Hot Rolled Steel U-Channel are durable, strong, and resist corrosion.

 

Main Product Features:

·         Premium quality

·         Prompt delivery & seaworthy packing (30 days after receiving deposit)

·         Corrosion resistance

·         Can be recycled and reused

·         Mill test certification

·         Professional Service

·         Competitive pricing

 

Product Specifications:

We supply high quality MS Channel at reasonable price, including Chinese standard, Japanese standard and so on.

Standard

GB/JIS

Material Grade

Q235,SS400

Technique:

Hot Rolled

Sizes as per chinese standard:

50*37*4.5mm - 300*89*11.5mm

Sizes as per japanese standard:

50*25*3mm – 200*80*7.5mm

Length:

6meter, 9meter, 12meter

Note: 1.we are also competent to provide our customers other MS Channel based on other sizes according to customer’s requirements.

  2. The length of our ms channel could be cut into other meters as per customer’s requirements. For example, the channel in 6meters could be cut into 5.8meters in order to be fit in the 20ft container.


FAQ:

Q1: Why buy Materials & Equipment from OKorder.com?

A1: All products offered byOKorder.com are carefully selected from China's most reliable manufacturing enterprises. Through its ISO certifications, OKorder.com adheres to the highest standards and a commitment to supply chain safety and customer satisfaction.

Q2: How do we guarantee the quality of our products?

A2: We have established an advanced quality management system which conducts strict quality tests at every step, from raw materials to the final product. At the same time, we provide extensive follow-up service assurances as required.

Q3: How soon can we receive the product after purchase?

A3: Within three days of placing an order, we will begin production. The specific shipping date is dependent upon international and government factors, but is typically 7 to 10 workdays.


Hot Rolled Steel U-Channel with Many Standard

Hot Rolled Steel U-Channel with Many Standard




Q:How do steel I-beams perform in terms of impact resistance?
Steel I-beams are known for their exceptional impact resistance. Due to their shape and composition, they can withstand high levels of force and distribute the impact energy efficiently, making them highly resistant to deformation or failure. This makes steel I-beams a reliable choice for applications that require structural stability and protection against impact, such as in construction, bridges, and heavy machinery.
Q:Can steel I-beams be used in historical preservation or restoration projects?
Yes, steel I-beams can be used in historical preservation or restoration projects. However, it is important to ensure that their use aligns with the historical significance and aesthetic of the building or structure being preserved. In some cases, steel I-beams can be concealed or integrated in a way that maintains the architectural integrity of the historical structure.
Q:Can steel I-beams be used for hospitals and healthcare facilities?
Hospitals and healthcare facilities can indeed utilize steel I-beams. Their strength, durability, and load-bearing capabilities make them a popular choice in construction. The aforementioned characteristics render them suitable for supporting large structures like hospitals and healthcare facilities. Furthermore, steel possesses fire, pest, and rot resistance, which is essential in upholding a safe and hygienic environment within healthcare facilities. Additionally, steel I-beams can be easily fabricated and tailored to meet the specific requirements of hospital designs, including the accommodation of heavy medical equipment and provision of structural stability. In summary, steel I-beams are a dependable and widely employed option for the construction of hospitals and healthcare facilities.
Q:The steel structure of the web and flange how to distinguish?
The web and flange are the names of the components of the cross section of the member. There is no web and flange in the structure. It is only possible to compare the cross sections of the structure to the cross sections of the members.
Q:How long do steel I-beams typically last before needing replacement or maintenance?
Steel I-beams possess a reputation for their durability and longevity, making them a favored selection for construction and engineering undertakings. The lifespan of these steel I-beams primarily relies on diverse factors including the caliber of the steel employed, the level of maintenance they receive, and the environmental conditions to which they are exposed. As a general rule, steel I-beams are engineered to endure for numerous decades without necessitating replacement or significant maintenance. With proper care and maintenance, they can easily persist for 50 years or longer. However, it is vital to bear in mind that specific factors can notably influence their lifespan. One pivotal factor is the quality of the steel and the manufacturing processes utilized. I-beams fashioned from high-quality steel and manufactured by reputable producers have a tendency to possess a lengthier lifespan in contrast to those derived from lower-grade materials. Rigorous inspections and quality control during the manufacturing procedure can also contribute to the durability of the I-beams. Another critical factor is the level of maintenance administered to the I-beams. Regular inspections, cleansing, and addressing any indications of damage or corrosion can aid in extending their lifespan. The application of protective coatings or rust inhibitors can likewise aid in preventing corrosion and deterioration. Environmental conditions can also impact the lifespan of steel I-beams. Exposure to severe weather conditions, extreme temperatures, excessive moisture, or corrosive substances can expedite the deterioration process. In such instances, supplementary maintenance and protective measures may be required to ensure the longevity of the I-beams. Ultimately, while steel I-beams are engineered to persist for numerous decades, it is crucial to conduct regular inspections and maintenance to guarantee their structural integrity. By adhering to recommended maintenance practices and promptly addressing any issues, steel I-beams can provide enduring support and stability for various structures.
Q:Can steel I-beams be used for bridges and overpasses?
Yes, steel I-beams are commonly used for bridges and overpasses due to their high strength-to-weight ratio, durability, and ability to span long distances.
Q:Standard for welding quality of I-beam
The standard joint of the I-beam butt joint is inclined with a front angle of 30 degrees and two butt joint, and a plate is added on both sides during the safe period. welding technologyThe flanges of H steel are all of equal thickness, there is a rolling cross section, and there is a combined section composed of 3 plates welded together. Ordinary I-beam is a rolling section, due to poor production process, flange inside the edge of the 1:10 slope. H type steel rolling is different from ordinary I-beam with only one set of horizontal roll, because of its wide flange and no inclination (or inclination is to be very small), a group of vertical roll and roll, therefore, the rolling process and equipment than the conventional mill complex. The maximum rolled H steel produced in China can be 800mm high and can only be welded composite sections.
Q:How do steel I-beams compare to reinforced concrete beams in terms of cost and performance?
When it comes to cost and performance, steel I-beams and reinforced concrete beams each have their own advantages and disadvantages. In terms of cost, steel I-beams generally have a higher upfront expense compared to reinforced concrete beams. This is due to the higher cost of steel fabrication and installation, which includes factors like labor, transportation, and specialized equipment. On the other hand, reinforced concrete beams are typically more cost-effective initially because the materials used are relatively inexpensive and easily accessible. However, it is important to consider that the long-term maintenance and repair costs for reinforced concrete beams can be higher. Concrete may require regular inspections and potential repairs due to cracks or deterioration. In terms of performance, both steel I-beams and reinforced concrete beams have their own strengths. Steel I-beams are known for their high tensile strength, allowing them to withstand heavy loads and provide excellent structural support. They also offer more flexibility and can be easily modified or adjusted if necessary. On the other hand, reinforced concrete beams are known for their durability, fire resistance, and ability to withstand extreme weather conditions. They have good compressive strength and can handle high loads as well, but their tensile strength is relatively lower. Ultimately, the choice between steel I-beams and reinforced concrete beams depends on various factors, such as the specific project requirements, design considerations, budget constraints, and local building codes. It is crucial to consult with structural engineers and professionals to determine the most cost-effective and performance-oriented solution for a particular construction project.
Q:How do steel I-beams compare to concrete beams?
Steel I-beams and concrete beams are both popular choices for structural support in construction projects. Here's a comparison of the two: Strength: Steel I-beams are known for their high strength-to-weight ratio, making them incredibly strong and able to handle heavy loads. Concrete beams, on the other hand, are also strong but have a lower strength-to-weight ratio. Flexibility: Steel I-beams are highly flexible, allowing for various design possibilities and accommodating different architectural requirements. Concrete beams, while not as flexible, can still be molded into different shapes. Construction time: Steel I-beams are generally faster to install as they come prefabricated and can be easily bolted or welded together. Concrete beams, on the other hand, require more time for construction as they need to be poured and cured on-site. Cost: Steel I-beams are often more expensive than concrete beams due to the cost of the raw material and the manufacturing process. Concrete beams, on the other hand, are generally less expensive, especially when using locally sourced materials. Fire resistance: Steel I-beams have good fire resistance as they do not burn, but they can lose their strength when exposed to high temperatures. Concrete beams, on the other hand, have excellent fire resistance and can withstand high temperatures without significant loss of strength. Maintenance: Steel I-beams require regular maintenance to prevent rusting and corrosion, which can affect their structural integrity over time. Concrete beams, on the other hand, require minimal maintenance and are more resistant to environmental factors. Environmental impact: Steel I-beams have a higher carbon footprint due to the energy-intensive production process and the extraction of raw materials. Concrete beams, while also contributing to carbon emissions during production, can be more environmentally friendly when using recycled materials or incorporating supplementary cementitious materials. In summary, steel I-beams are stronger, more flexible, and quicker to install, but they are generally more expensive and require more maintenance. Concrete beams are cost-effective, have excellent fire resistance, and require minimal maintenance, but they have a lower strength-to-weight ratio and take longer to construct. Ultimately, the choice between steel I-beams and concrete beams depends on the specific needs of the construction project.
Q:Are steel I-beams resistant to fire?
Steel I-beams are known for their resistance to fire. Being a non-combustible material, steel does not burn or aid in the propagation of fire. Construction projects often utilize steel I-beams due to their exceptional strength and durability, capable of withstanding high temperatures without compromising their structural integrity. Nonetheless, it should be mentioned that prolonged exposure to extreme heat can gradually weaken steel, potentially impacting the stability of the beams. Consequently, fire-resistant coatings or insulation are frequently employed as additional safeguards to enhance the fire resistance of steel I-beams in buildings and structures.

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