• Hot Rolled IPE and IPEAA Beams Grade Q235 Steel I-Beams System 1
  • Hot Rolled IPE and IPEAA Beams Grade Q235 Steel I-Beams System 2
  • Hot Rolled IPE and IPEAA Beams Grade Q235 Steel I-Beams System 3
Hot Rolled IPE and IPEAA Beams Grade Q235 Steel I-Beams

Hot Rolled IPE and IPEAA Beams Grade Q235 Steel I-Beams

Ref Price:
$360.00 - 380.00 / m.t. get latest price
Loading Port:
Tianjin
Payment Terms:
TT or LC
Min Order Qty:
25 m.t.
Supply Capability:
10000 m.t./month

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OKorder is offering high quality Hot Rolled Steel I-Beams 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 I-Beams 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:

Manufacture: Hot rolled

Grade: Q195 – 235

Certificates: ISO, SGS, BV, CIQ

Length: 6m – 12m, as per customer request

Packaging: Export packing, nude packing, bundled

Chinese Standard (H*W*T)

Weight (Kg/m)

6m (pcs/ton)

Light I (H*W*T)

Weight (Kg/m)

6m (pcs/ton)

Light II (H*W*T)

Weight (Kg/m)

6M

100*68*4.5

11.261

14.8

100*66*4.3

10.13

16.4

100*64*4

8.45

19.7

120*74*5.0

13.987

11.9

120*72*4.8

12.59

13.2

120*70*4.5

10.49

15.8

140*80*5.5

16.89

9.8

140*78*5.3

15.2

10.9

140*76*5

12.67

13.1

160*88*6

20.513

8.1

160*86*5.8

18.46

9

160*84*5.5

15.38

10.8

180*94*6.5

24.143

6.9

180*92*6.3

21.73

7.6

180*90*6

18.11

9.2

200*100*7

27.929

5.9

200*98*6.8

25.14

6.6

200*96*6.5

20.95

7.9

220*110*7.5

33.07

5

220*108*7.3

29.76

5.6

220*106*7

24.8

6.7

250*116*8

38.105

4.3

250*114*7.8

34.29

4.8

250*112*7.5

28.58

5.8

280*122*8.5

43.492

3.8

280*120*8.2

39.14

4.2

280*120*8

36.97

4.5

300*126*9

48.084

3.4

300*124*9.2

43.28

3.8

300*124*8.5

40.87

4

320*130*9.5

52.717

3.1

320*127*9.2

48.5

3.4

360*136*10

60.037

2.7

360*132*9.5

55.23

3

 

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 we can delivery the goods ?

A3: We have a mill with 20000mts of  capacity per month. We can delivery the goods within in one month ,as long as your order quantity less than 20000mts .

 

Images:

 Hot Rolled IPE and IPEAA Beams Grade Q235 Steel I-Beams

Hot Rolled IPE and IPEAA Beams Grade Q235 Steel I-Beams

Q:Can steel I-beams be used for stadiums and arenas?
Yes, steel I-beams can definitely be used for the construction of stadiums and arenas. In fact, steel I-beams are widely used in the construction industry due to their exceptional strength and durability. These beams are capable of supporting heavy loads and can span long distances, making them ideal for large-scale structures like stadiums and arenas. Steel I-beams offer several advantages when used in the construction of stadiums and arenas. Firstly, they have a high strength-to-weight ratio, meaning they can support heavy loads while also being relatively lightweight. This allows for the construction of expansive and open spaces without the need for excessive support columns or walls, providing unobstructed views for the audience. Additionally, steel I-beams are highly resistant to fire, corrosion, and pests, ensuring the structural integrity of the stadium or arena over time. They can also withstand extreme weather conditions, such as strong winds and earthquakes, which is crucial for ensuring the safety of the spectators. Moreover, steel I-beams can be easily fabricated and assembled, making the construction process more efficient and cost-effective. They can be customized to fit the specific design requirements of the stadium or arena, allowing for flexibility in architectural design. Overall, steel I-beams are an ideal choice for the construction of stadiums and arenas due to their strength, durability, resistance to various elements, and versatility in design. Their use in such structures ensures the safety and comfort of the spectators while providing a solid and reliable framework for these architectural marvels.
Q:How do steel I-beams perform in areas with high levels of chemical exposure?
Due to their inherent resistance to corrosion, steel I-beams are well-suited for areas exposed to high levels of chemicals. These I-beams are typically coated with protective layers, such as galvanized coatings or epoxy paint, creating barriers against chemical substances. This effectively prevents the steel from reacting with or being damaged by corrosive elements in the environment. In addition, the structural design of I-beams, with their sturdy shape and cross-sectional properties, enhances their ability to withstand chemical exposure. The I-shaped profile provides exceptional strength and load-bearing capacity, making them ideal for heavy industrial applications, including chemical processing plants, refineries, and wastewater treatment facilities. However, it is important to recognize that not all chemicals have the same impact on steel I-beams. Some highly acidic or alkaline substances, as well as certain solvents or aggressive chemicals, may still cause corrosion or deterioration of the protective coatings over time. Therefore, it is vital to carefully choose the appropriate steel type, protective coatings, and maintenance practices based on the specific chemicals present in the area. This ensures the long-term performance and durability of steel I-beams in such environments. Regular inspections, maintenance, and prompt repair of any coating damages or signs of corrosion are also recommended to prolong the lifespan of the I-beams and maintain their structural integrity.
Q:12 cm GB steel I-beam 5 meters long, how much weight can loft?
I-beam is also called steel girder (English name Universal Beam). It is a strip of steel with an I-shaped section. I-beam is divided into ordinary I-beam and light I-beam, H steel three. It is a section steel whose shape is trough.
Q:What are the different load configurations that Steel I-Beams can support?
Steel I-Beams can support various load configurations, including but not limited to, uniform loads, point loads, distributed loads, and concentrated loads. These load configurations can be applied vertically or horizontally, depending on the specific structural design requirements.
Q:Can Steel I-Beams be used for automotive manufacturing facilities?
Yes, Steel I-Beams can certainly be used for automotive manufacturing facilities. Steel I-Beams are widely used in construction and industrial settings due to their strength and durability. In automotive manufacturing facilities, Steel I-Beams can be employed for various purposes such as supporting overhead cranes, providing structural support for heavy equipment and machinery, constructing mezzanine floors, and creating strong and stable framework for large-scale operations. Additionally, Steel I-Beams are known for their ability to bear heavy loads and withstand extreme conditions, making them an ideal choice for automotive manufacturing facilities where the production process involves the handling and assembly of heavy components and machinery. Overall, Steel I-Beams offer the required strength, stability, and longevity necessary for the demanding environment of automotive manufacturing facilities.
Q:What is the maximum span that steel I-beams can support without additional support?
The maximum span that steel I-beams can support without additional support varies depending on several factors such as the beam's dimensions, the material strength, and the load it needs to carry. However, I-beams are known for their excellent load-bearing capacity and are commonly used in construction projects for their ability to span long distances. To determine the maximum span, engineers typically use structural analysis techniques and consider the beam's moment of inertia, section modulus, and the load it needs to support. Consulting engineering manuals and codes, such as those provided by the American Institute of Steel Construction (AISC), can also provide guidelines and formulas for calculating maximum spans based on specific design criteria. It is important to note that while I-beams have impressive span capabilities, they may still require additional support or reinforcement depending on the specific application and load requirements. For instance, excessive loads, including heavy equipment or concentrated weights, may necessitate the use of additional beams, columns, or other structural elements to ensure safety and structural integrity. Ultimately, consulting with a structural engineer or a professional familiar with steel beam design is essential to accurately determine the maximum span a steel I-beam can support without additional support in a given application.
Q:How do you calculate the moment due to axial load in a steel I-beam?
To calculate the moment due to axial load in a steel I-beam, you need to multiply the axial load by the distance from the centroid of the section to the point where the moment is being measured. This product gives you the moment caused by the axial load.
Q:Can steel I-beams be used for railway or subway station platforms?
Yes, steel I-beams can be used for railway or subway station platforms. Steel I-beams are commonly used in construction due to their strength and durability, making them suitable for supporting heavy loads and providing a stable platform for railway or subway stations. Additionally, steel I-beams can be fabricated and customized based on the specific requirements of the platform, such as length, width, and height, allowing for flexibility in design. The use of steel I-beams in railway or subway station platforms ensures the safety and stability of the structure, making them a reliable choice for such applications.
Q:Can steel I-beams be used for hurricane-resistant structures?
Yes, steel I-beams can be used for hurricane-resistant structures. Steel is known for its high strength and durability, making it a suitable material for withstanding hurricane-force winds. I-beams, specifically, are designed to offer excellent load-bearing capabilities and structural integrity. In hurricane-prone areas, it is crucial to construct buildings that can withstand the extreme forces and potential impact of debris. Steel I-beams provide the necessary strength and rigidity to withstand these conditions. They are capable of distributing the load and transferring it to the foundation, ensuring the overall stability of the structure. Steel I-beams also have the advantage of being lightweight compared to other building materials, which allows for faster construction and flexibility in design. Additionally, they are resistant to rot, termites, and other pests, making them a long-lasting and low-maintenance choice. However, it is important to note that the overall hurricane resistance of a structure is not solely dependent on the material used. Proper design, installation, and adherence to building codes and regulations are equally vital. Consulting with structural engineers and following guidelines specific to hurricane-prone regions is imperative to ensure the safety and resilience of the structure.
Q:I took 20 overhanging scaffolding difficult to take the highest. How many meters height
I-steel whether ordinary or light, because the section size are relatively high and narrow, so the moment of inertia of section two of the spindle is larger, so it only can be directly used in the web plane bending member or the composition of lattice stress components. It is not suitable for the axial compression member or the bent member perpendicular to the web plane, which has great limitations in its application.

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