• Reinforced Steel - Deformed Steel Bar, Iron Rods for Construction/Concrete System 1
  • Reinforced Steel - Deformed Steel Bar, Iron Rods for Construction/Concrete System 2
  • Reinforced Steel - Deformed Steel Bar, Iron Rods for Construction/Concrete System 3
Reinforced Steel - Deformed Steel Bar, Iron Rods for Construction/Concrete

Reinforced Steel - Deformed Steel Bar, Iron Rods for Construction/Concrete

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
100 m.t.
Supply Capability:
1000 m.t./month

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Specifications

deformed steel bar grade 40 
material: HRB400, BS4449 GR460B 
size: 8-36mmx12m. 
short delivery time by bulk or container

  deformed steel bar grade 40

material: HRB400, BS4449 GR460B
size: 8-36mmx12m. 
short delivery time with bulk or container

packing: Mill standard export packing in bundles/coil,  around 2tons/bundle.

country of Origin: China

delivery Time: Within a 35 days

Shipment: by bulk vessel or by container

Leading goods: 

 

section steel:angles,channels,I-beam,H-beam;

 

coils:cold/hot rolled coils,PPGI,galvanized coils,plate,checkered plate,cutting steel plate,steel strip;

 

wire rod:steel wire,deformed wire,bar;

 

pipe:seamless pipe,rectangular pipe,welded pipe,spiral welded pipe,pipe fittings;

 

stainless steel:steel sheets,stainless steel strips,stainless bar,stainless tube;

 

special:weathering steel,shipbuilding steel;

 

construction steel:C-channel,Z-channel,T-bar,high-speed divider plate,corrugated steel plate,steel grating.

 

Advantage:

We are the spot supplier, Six huge warehouses which can hold 20,000 MT goods.

It makes the cost lower than others,we can provide the competitive price for you.

Delivery time:

Normal sizes can be provided in 7days, the others should be ready in 30---45 days.

Further treatment:

 We can offer cutting,painting,drilling holes,bending,threading, welding,galvanization,packing etc.

 Security interest: 

We have already passed the ISO9001, BV and SGS authentication which makes the quality secured.

If you have the interest in any of the products we can provided, pls don't hesitate to connect with me. Looking forward to cooperate with you.




FAQ of Steel Deformed Bar

1. More than 10 years experience in this industry
2. 100,000 tons exporting per month
3. Professional foreign trade tea
4. OEM&ODM capacity
5. High quality assured & competitive price
6. Try our best to meet your needs & save your budget
7. Very popular in Southeast Asia, Africa, Mid-East and South America etc.
8. VIP membership system, first time customers and long-term cooperation customers can get extra discount on some products.



Q:What are the common challenges in handling steel rebars during construction?
There are several common challenges in handling steel rebars during construction. One of the main challenges is the weight and size of the rebars. Steel rebars can be quite heavy and bulky, making them difficult to lift and maneuver on the construction site. This can pose a risk of injuries to the workers if proper lifting techniques and equipment are not used. Another challenge is the proper storage and organization of the rebars. Since rebars come in various lengths and sizes, it is important to have a well-organized storage area to keep them separated and easily accessible. Failure to do so can result in delays and inefficiencies during construction. Additionally, steel rebars are prone to rust and corrosion if not properly handled and stored. Exposure to moisture, rain, or even excessive humidity can cause the rebars to deteriorate, leading to weakened structures. Therefore, it is crucial to protect the rebars from these elements and store them in a dry and well-ventilated area. Furthermore, the placement and alignment of rebars within concrete structures can be challenging. It requires skilled labor and precision to ensure that rebars are correctly positioned according to the construction plans. Any errors in placement can compromise the structural integrity of the building, leading to safety concerns and costly repairs. Lastly, the transportation of rebars to the construction site can be a logistical challenge. Coordinating the delivery of rebars and ensuring they arrive on time and in the required quantities can be complex, especially in large-scale construction projects. Delays in receiving the rebars can cause project delays and additional costs. Overall, handling steel rebars during construction requires careful planning, proper storage, skilled labor, and adherence to safety protocols. By addressing these common challenges, construction projects can ensure the successful and efficient use of steel rebars.
Q:Can steel rebars be galvanized for added protection?
Yes, steel rebars can be galvanized for added protection. Galvanizing is a process where a thin layer of zinc is applied to the surface of the steel rebar. This zinc coating acts as a sacrificial layer that provides protection against corrosion. It forms a barrier between the steel and the environment, preventing moisture and other corrosive elements from reaching the surface of the rebar. Galvanized steel rebars are commonly used in construction projects, particularly in areas where corrosion is a concern, such as coastal regions or environments with high humidity. The galvanizing process enhances the longevity and durability of the steel rebar, making it resistant to rust and corrosion.
Q:Are steel rebars suitable for use in structures with high vibration levels?
Steel rebars are commonly used in structures with high vibration levels. The strength and durability of steel rebars make them suitable for such applications. When structures are subjected to high vibration levels, the rebars help to provide stability and prevent any potential damage or failure. Steel rebars have excellent tensile strength, which enables them to withstand the dynamic forces generated by vibration. Additionally, steel rebars have good ductility, allowing them to absorb and dissipate energy during vibrations, thereby reducing the risk of structural damage. Proper design and installation techniques, including the use of appropriate reinforcement detailing, can further enhance the performance of steel rebars in structures with high vibration levels. Overall, steel rebars are a reliable choice for ensuring the structural integrity and safety of buildings and infrastructure exposed to significant vibrations.
Q:What are the guidelines for reinforcing concrete slabs with steel rebars?
The guidelines for reinforcing concrete slabs with steel rebars involve several key considerations. Firstly, the rebars should be placed in the lower portion of the slab, typically in a grid pattern, to provide tensile strength and prevent cracking. The spacing and size of the rebars should be determined based on the load and requirements of the specific slab. Additionally, proper lap length and overlap of rebars should be ensured at intersections to maintain structural integrity. Lastly, it is important to follow local building codes and standards to ensure compliance and safety.
Q:How are steel rebars affected by temperature fluctuations?
Steel rebars are affected by temperature fluctuations in several ways. Firstly, when exposed to high temperatures, steel rebars can expand, which may lead to the bending or distortion of the structure they support. On the other hand, in cold temperatures, steel rebars contract, potentially causing cracks or fractures in the concrete surrounding them. Rapid and frequent temperature changes can accelerate these effects, increasing the risk of structural damage. Therefore, it is crucial to consider temperature fluctuations when designing and constructing structures using steel rebars.
Q:Can steel rebars be bent on-site to fit specific shapes?
Yes, steel rebars can be bent on-site to fit specific shapes. The flexibility and malleability of steel allow it to be easily bent and shaped according to the required specifications.
Q:What are the different types of steel rebars used in tunneling?
There are typically two types of steel rebars used in tunneling: epoxy-coated rebars and stainless steel rebars. Epoxy-coated rebars are commonly used in tunneling projects to provide corrosion resistance and enhance durability. On the other hand, stainless steel rebars are used in situations where higher corrosion resistance is required, such as in highly acidic or alkaline environments.
Q:Can steel rebars be used in structures with high electrical conductivity requirements?
Steel rebars cannot be utilized in structures that demand high electrical conductivity. Although steel is a remarkably conductive substance, its implementation as reinforcement in concrete structures involves encasing it within the concrete, thus eliminating any direct electrical pathway. Consequently, steel rebars do not contribute to the overall electrical conductivity of the structure. In cases where high electrical conductivity is necessary, it is advisable to explore alternative materials like copper or aluminum. These materials possess significantly higher electrical conductivity characteristics, enabling them to fulfil the requirements of structures with elevated electrical conductivity demands.
Q:What are the different types of steel rebars used in industrial warehouses?
There are several types of steel rebars commonly used in industrial warehouses, including carbon steel rebars, epoxy-coated rebars, stainless steel rebars, and galvanized rebars. Each type has its own specific properties and benefits, catering to different requirements and environments within the warehouse.
Q:How do steel rebars affect the overall lifespan of bridge structures?
Steel rebars play a crucial role in enhancing the overall lifespan of bridge structures. By providing reinforcement and strength to the concrete, rebars help to distribute the load and increase the structural integrity of the bridge. Firstly, steel rebars are used to reinforce the concrete components of the bridge, such as beams, columns, and slabs. This reinforcement prevents the formation of cracks and minimizes the risk of structural failure. The rebars act as a support system, enabling the concrete to withstand heavy loads, vibrations, and external forces, such as wind and earthquakes. This reinforcement helps to maintain the structural stability of the bridge throughout its lifespan. Moreover, steel rebars also resist corrosion, which is a major concern for bridge structures exposed to harsh environmental conditions, such as saltwater or high humidity. Corrosion of the reinforcing bars can lead to the degradation of the concrete and weaken the entire structure. However, steel rebars are typically coated with protective materials or made from corrosion-resistant alloys, which significantly reduces the risk of corrosion and extends the lifespan of the bridge. Furthermore, steel rebars allow for flexibility and adaptability in bridge design and construction. They can be easily bent, shaped, and positioned to meet the specific structural requirements of the bridge. This flexibility enables engineers to design bridges with different shapes, spans, and load capacities, enhancing their overall durability and lifespan. In conclusion, steel rebars have a substantial impact on the overall lifespan of bridge structures. By reinforcing the concrete, resisting corrosion, and providing flexibility in design and construction, steel rebars significantly enhance the structural integrity and durability of bridges, ensuring their safe and long-lasting operation.

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