• Rebar Number 5 Deformed Steel Bar Quality Guaranteed Thermo Mechanically System 1
  • Rebar Number 5 Deformed Steel Bar Quality Guaranteed Thermo Mechanically System 2
  • Rebar Number 5 Deformed Steel Bar Quality Guaranteed Thermo Mechanically System 3
Rebar Number 5 Deformed Steel Bar Quality Guaranteed Thermo Mechanically

Rebar Number 5 Deformed Steel Bar Quality Guaranteed Thermo Mechanically

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
28 m.t.
Supply Capability:
20000 m.t./month

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Product  Description

 

Deformed Reinforcing Steel Bar

 

  • Standard: AISI,ASTM,BS,DIN,BS,GB,JIS

  • Grade: HRB400/ HRB400E/ HRB500/ HRB500E/ Gr.40/ Gr.60/ B460B/ B500B

  • Diameter: 6mm-40mm

  • 6mm,8mm rebar must be packaging in coil, ~2MT/coil

  • Length: 12m or 9m

  • Place of Origin: Hebei, China (Mainland)

  • Brand Name: Mammoth

  • Application: construction of houses, bridges, roads and other civil works,making Concrete

Packaging & Delivery

Packaging Details:

In bulk or Container according to the customer's require.

Delivery Detail:

15-30 days after L/C or prepayment.

 

 

 

THEORETICAL WEIGHT INDEX
SIZE(mm)CUT AREA(CM2)THEORETICAL WEIGHT(KG/M)
80.5030.395
90.6360.5
100.790.62
121.130.89
141.541.21
162.011.58
182.552
203.142.47
223.82.98
254.913.85
286.164.83
328.046.31

♣ Mechanics Performance According to HRB335

 

Grade

Technical data of the original chemical composition(%) 

C

Mn

Si

S

P

B

HRB335

≤0.25

≤1.60

0.80 

0.045 

0.045 

>0.0008

Physics capability

Yield Strength(N/cm2)

Tensile Strength(N/cm2)

Elongation (%)

 

335

≥490

16

 

 

♣ Mechanics Performance According to HRB400

 

Grade

Technical data of the original chemical composition(%) 

C

Mn

Si

S

P

V

HRB400

≤0.25

≤1.60

0.80

0.045

0.045

0.04-0.12

Physics capability

Yield Strength(N/cm2)

Tensile Strength(N/cm2)

Elongation (%)

 

400

≥570

14

 

If you are interested in these kinds of products, please feel free to let me know, our best quotation will be sent for your information. Except steel bar, we also deal with steel pipe, deformed steel bar, angle steel, H and I beam, and channel.  You are welcomed to visit our website www.tsruixiang.com.cn to know more about us.

 

And our products are mainly exported to Mild-east, South American, African, so please make assure of our quality and reputation. We sincerely hope we can cooperate in the near future.

 

Your any reply will be highly appreciated.


Q:How are steel rebars used in the construction of wastewater treatment plants?
Steel rebars are used in the construction of wastewater treatment plants to reinforce the concrete structures, such as tanks and basins, that are essential for storing and treating wastewater. The rebars provide strength and stability to these structures, ensuring they can withstand the weight of the water and the various chemicals used in the treatment process. Additionally, the rebars help to prevent cracking and structural failure, ensuring the longevity and reliability of the wastewater treatment plant.
Q:Can steel rebars be cut on-site during construction?
Steel rebars can indeed be cut on-site during construction. They are frequently utilized in reinforced concrete structures to enhance their durability and stability. To meet the design specifications, it may be necessary to trim the rebars to certain lengths or shapes. This task can be accomplished with a range of tools including rebar cutters, angle grinders, or oxy-fuel cutting torches. Nevertheless, it is crucial to adhere to safety protocols and employ suitable protective equipment while cutting rebars on-site in order to avert any mishaps or harm.
Q:Can steel rebars be used in structures with high vibrations?
Yes, steel rebars can be used in structures with high vibrations. Steel rebars are commonly used in construction due to their high tensile strength and ability to withstand various forces, including vibrations. However, it is important to consider the specific requirements and design parameters of the structure to ensure that the rebars are properly anchored and reinforced to withstand the anticipated vibrations.
Q:Can steel rebars be used in solar power plant construction?
Yes, steel rebars can be used in solar power plant construction. Steel rebars are commonly used as reinforcement in concrete structures, including the foundations and structural components of solar power plants. They provide strength, durability, and stability to the construction, ensuring the long-term performance and safety of the solar power plant.
Q:How are steel rebars protected against electromagnetic interference?
Steel rebars are typically protected against electromagnetic interference through the use of concrete cover. The concrete acts as a shield, preventing electromagnetic waves from interfering with the steel rebars. Additionally, proper grounding and bonding techniques are employed to further enhance protection against electromagnetic interference.
Q:Can steel rebars be used in reinforced masonry structures?
Yes, steel rebars can be used in reinforced masonry structures. They are commonly used to provide additional strength and reinforcement to masonry walls and structures, helping to resist tensile forces and improve overall structural integrity.
Q:Can steel rebars be used in structures with limited construction space?
Yes, steel rebars can be used in structures with limited construction space. Steel rebars are commonly used in reinforced concrete structures to provide tensile strength and reinforce the overall structural integrity. Due to their small size and flexibility, steel rebars can be easily maneuvered and installed in tight spaces. They can be bent, cut, or shaped to fit the specific requirements of the construction project. Additionally, steel rebars can be prefabricated off-site and transported to the construction site, which further facilitates their use in limited construction spaces. Overall, steel rebars are a versatile and practical choice for reinforcing structures with limited construction space.
Q:What is the lifespan of steel rebars in different environments?
The lifespan of steel rebars can vary depending on the environment in which they are employed. Typically, steel rebars are highly durable and can last for a considerable period. Nevertheless, the longevity of these materials can be affected by different environmental conditions. In a dry and non-corrosive setting, such as indoors or in a well-maintained building, steel rebars can endure for several decades or even longer. The absence of moisture and corrosive substances aids in maintaining the steel's integrity, minimizing the risk of deterioration. In a marine or coastal environment, where continual exposure to saltwater and high humidity occurs, the lifespan of steel rebars may be reduced. The corrosive properties of saltwater can expedite the corrosion process, potentially shortening the rebars' lifespan. In such scenarios, special coatings or treatments can be applied to the steel rebars to enhance their resistance to corrosion and prolong their lifespan. Similarly, steel rebars employed in areas with elevated levels of air pollution or industrial emissions may also experience accelerated corrosion. Airborne pollutants, such as sulfur dioxide or sulfuric acid, can interact with the steel and result in rust formation. Regular maintenance and cleaning of the rebars can help mitigate the impact of these corrosive substances and extend their lifespan. It is crucial to note that the quality of the steel rebars and construction practices also significantly influence their lifespan. The use of high-quality rebars that meet industry standards and adherence to proper installation techniques can greatly enhance their durability and longevity. In conclusion, while steel rebars generally have a long lifespan, the specific environment in which they are utilized will determine how effectively they serve their purpose. By considering environmental factors and implementing appropriate corrosion prevention measures, the lifespan of steel rebars can be maximized, ensuring the safety and durability of the structures in which they are incorporated.
Q:How are steel rebars used in flat slabs and beams?
Steel rebars are used in flat slabs and beams to enhance the structural integrity and strength of concrete. They are embedded within the concrete to provide reinforcement and prevent cracking or failure due to tensile forces. Rebars help distribute the load evenly across the structure, increasing its load-bearing capacity and improving overall durability.
Q:What is the effect of overloading on steel rebars?
Overloading on steel rebars can have a detrimental effect on their structural integrity. It can lead to deformation, bending, or even fracture of the rebars, compromising the overall strength and stability of the reinforced structure. Additionally, overloading can accelerate corrosion processes, reducing the rebars' lifespan and potentially causing structural failure. Therefore, it is essential to ensure that steel rebars are not subjected to excessive loads to maintain their performance and prevent potential hazards.

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