• IPEAA 100 stainless  steel I-Beam for construction EN10025 System 1
  • IPEAA 100 stainless  steel I-Beam for construction EN10025 System 2
  • IPEAA 100 stainless  steel I-Beam for construction EN10025 System 3
IPEAA 100 stainless  steel I-Beam for construction EN10025

IPEAA 100 stainless steel I-Beam for construction EN10025

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Loading Port:
Tianjin
Payment Terms:
TT or LC
Min Order Qty:
25 m.t.
Supply Capability:
100000 m.t./month

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Product Description:

OKorder is offering IPEAA 100 stainless  steel I-Beam for construction EN10025 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:

IPEAA 100 stainless  steel I-Beam  are ideal for structural applications and are widely used in the construction of buildings and bridges, and the manufacturing, petrochemical, and transportation industries.

 

Product Advantages:

OKorder's Steel I-Beams 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:

 

Specifications

1. Invoicing on theoretical weight or actual weight as customer request

2. Standard: EN10025, GB Standard, ASTM

3. Grade: Q235B, Q345B, SS400, ASTM A36, S235JR, S275JR

4. Length: 5.8M, 6M, 9M, 12M as following table

5. Sizes: 80mm-270mm

 

Appications

1. Supporting members, most commonly in the house raising industry to strengthen timber bears under houses. Transmission line towers, etc

2. Prefabricated structure

3. Medium scale bridges

4. It is widely used in various building structures and engineering structures such as roof beams, bridges, transmission towers, hoisting machinery and transport machinery, ships, industrial furnaces, reaction tower, container frame and warehouse etc.

 

Package & Delivery

1. Packing: it is nude packed in bundles by steel wire rod

2. Bundle weight: not more than 3.5MT for bulk vessel; less than 3 MT for container load

3. Marks: Color marking: There will be color marking on both end of the bundle for the cargo delivered by bulk vessel. That makes it easily to distinguish at the destination port.

4. Tag mark: there will be tag mark tied up on the bundles. The information usually including supplier logo and name, product name, made in China, shipping marks and other information request by the customer.

If loading by container the marking is not needed, but we will prepare it as customer request.

5. Transportation: the goods are delivered by truck from mill to loading port, the maximum quantity can be loaded is around 40MTs by each truck. If the order quantity cannot reach the full truck loaded, the transportation cost per ton will be little higher than full load.

6. Delivery of IPE Beam: 30 days after getting L/C Original at sight or T/T in advance

 

Production flow

Material prepare (billet) —heat up—rough rolling—precision rolling—cooling—packing—storage and transportation

 

IPEAA 100 stainless  steel I-Beam for construction EN10025

IPEAA 100 stainless  steel I-Beam for construction EN10025

IPEAA 100 stainless  steel I-Beam for construction EN10025

 

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.

 

Q:How are steel I-beams installed in construction projects?
Due to their strength and stability, steel I-beams are a common choice in construction projects. The process of installing these beams involves several steps. To begin, the size and length of the required I-beam are determined by the structural engineer. These specifications are then used to place an order with a manufacturer. Once the I-beams are delivered to the construction site, a crane is typically employed to lift and position them. Skilled workers, including ironworkers, riggers, and crane operators, work together to maneuver the beams with precision. In many instances, the I-beams are affixed to the supporting columns or foundation using either bolts or welding. The choice between high-strength bolts or welding techniques depends on the project's specific design and requirements. Before the final installation, the I-beams are carefully aligned and leveled to ensure proper positioning. This is crucial for the structural integrity of the entire building. Throughout the installation process, safety measures are of utmost importance. Workers adhere to strict protocols and wear protective gear to prevent accidents and injuries. In summary, the installation of steel I-beams in construction projects involves meticulous planning, skilled labor, and the use of cranes. To establish a secure and stable connection, the beams are typically bolted or welded to the supporting structure. Safety is always prioritized to ensure a successful and safe installation.
Q:Can steel I-beams be customized to specific project requirements?
Yes, steel I-beams can be customized to specific project requirements. They can be fabricated and engineered to meet various dimensions, load capacities, and design specifications, ensuring they are suitable for the specific needs of a project.
Q:What are the common deflection limits for steel I-beams?
Determining the common deflection limits for steel I-beams is typically done according to industry standards and building codes. These limits ensure that the beam can withstand bending or sagging without compromising its structural integrity or causing any visual or functional problems. Several factors influence the deflection limits for steel I-beams, including the beam's size, span, and the type of load it will bear. These limits are usually expressed as the ratio of the beam's length to its deflection, known as the L/ (length/deflection) ratio. The deflection limits for steel I-beams can vary from L/240 to L/360, depending on the specific application and building codes in a given region. For instance, the commonly used deflection limit is L/360, which means that the beam's maximum deflection should not exceed 1/360th of its length. It's important to emphasize that these deflection limits are not only crucial for ensuring the beam's structural safety but also for maintaining the structure's aesthetics and functionality. Excessive deflection can lead to undesirable issues such as cracking, vibrations, or sagging of floors or ceilings in various applications. To determine the specific deflection limits for steel I-beams in a particular project, it is essential to consult the relevant building codes and engineering standards. It is also advisable to collaborate with a qualified structural engineer who can evaluate the project's design and load requirements to provide accurate deflection limits.
Q:Can steel I-beams be used in schools or educational facilities?
Yes, steel I-beams can be used in schools or educational facilities. Steel I-beams are commonly used in construction due to their strength and durability. They provide structural support and can be used to create open and spacious areas without the need for excessive columns or walls. Additionally, steel I-beams can withstand heavy loads and are fire-resistant, making them a suitable choice for ensuring the safety and longevity of educational buildings.
Q:What's the difference between I-beam and H section steel?
Flange type H steel is flat, no change in the thickness, and the flange steel is from the root to the edge gradually thinning, have a certain angle, it is significant to distinguish them. In addition, the model is Arabia digital I-beam with its waist high cm to said, met with the waist high the models in the A, B, C to distinguish, such as 20a, 20b, 32c, the former two waist height is 20cm, and the web, flange thickness and different width of flange;
Q:Can steel I-beams be used for column support?
Yes, steel I-beams can be used for column support.
Q:How do steel I-beams perform in terms of noise insulation?
The main purpose of steel I-beams is to provide structural strength and bear heavy loads, rather than to insulate against noise. As a result, steel I-beams are not very effective when it comes to noise insulation. Because of their rigid and dense nature, steel I-beams have a limited ability to absorb or dampen sound vibrations. When sound waves encounter a steel I-beam, they tend to either bounce off or easily pass through it, resulting in minimal reduction of noise transmission. Therefore, steel I-beams do not significantly contribute to reducing airborne noise or sound transmission between different areas or floors in a building. To enhance noise insulation, alternative materials such as acoustic insulation products, soundproofing panels, or resilient channels are commonly utilized. These materials are specifically designed to absorb, dampen, or block sound vibrations, thereby providing superior noise insulation performance.
Q:How long is a ton of 10# I-beam?
The weight of 10# I-beam is 11.261kg, (10.007 is the weight of 10# channel steel), with 1 tons or 1000kg divided by the meter weight, 11.261 is the length of one ton, or 88.802 meters. According to the length of 6 meters per foot, the count is 14.8, and the actual purchase is 15. Just need to pay attention to, when you buy is to buy or by weighing weight scale is to buy the root length, because the steel material m weight bias, the two price is not the same, if M is under heavy bias, so if the weighing weight to buy, so it is not the length of 88.802 meters, if according to the length of 88.802 meters to buy, so it is not a ton of weight. General specification and heavy steel when the meter deviation meets the national standard specifications, the main concern of the people is the length of it, so you have to make sure how much do you want to buy a good enough, but does not need to care about it a few tons.
Q:Can Steel I-Beams be used for healthcare facilities like hospitals?
Certainly! Steel I-Beams have proven to be a viable option for healthcare facilities such as hospitals. These I-Beams are frequently utilized in construction projects due to their exceptional strength and durability. They possess the capability to bear heavy loads and provide structural stability, thereby rendering them suitable for various types of buildings, including healthcare facilities. In the case of hospitals, it is often necessary to have large, open areas to accommodate medical equipment and allow for future renovations. By using Steel I-Beams, long distances can be spanned without the need for excessive vertical support, thereby affording more flexibility in the design of healthcare facilities. Moreover, steel exhibits resistance to fire, pests, and rot, thus making it an exceptionally reliable choice for healthcare establishments that prioritize safety and long-term viability.
Q:Can steel I-beams be used in water treatment or wastewater facilities?
Yes, steel I-beams can be used in water treatment or wastewater facilities. Steel I-beams are commonly used in the construction industry due to their strength, durability, and load-bearing capabilities. In water treatment or wastewater facilities, where heavy equipment and machinery are often installed, steel I-beams provide the necessary structural support. They can be utilized for suspending or attaching various components such as pumps, motors, and tanks. Additionally, steel I-beams can withstand the harsh and corrosive environments commonly found in water treatment or wastewater facilities, making them an ideal choice for such applications.

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