• Hot Rolled Steel Wire Rod SAE1008 for Wire and Nail System 1
  • Hot Rolled Steel Wire Rod SAE1008 for Wire and Nail System 2
  • Hot Rolled Steel Wire Rod SAE1008 for Wire and Nail System 3
Hot Rolled Steel Wire Rod SAE1008 for Wire and Nail

Hot Rolled Steel Wire Rod SAE1008 for Wire and Nail

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Loading Port:
Shanghai
Payment Terms:
TT or LC
Min Order Qty:
100 m.t.
Supply Capability:
200000 m.t./month

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OKorder is offering Hot Rolled Steel Wire Rod SAE1008 for Wire and Nail 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 African, South American and Asian markets. We provide quotations within 24 hours of receiving an inquiry and guarantee competitive prices.

 

Product Applications:

Hot Rolled Steel Wire Rod SAE1008 for Wire and Nail are ideal for structural applications and are widely used in drawing, construction materials, machinery parts,   construction for Houses, Bridges, Roads.

 

Product Advantages:

OKorder's Hot Rolled Steel Wire Rod SAE1008 for Wire and Nail are durable, strong, and wide variety of sizes.

 

Main Product Features:

·         Premium quality

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

·         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

Grade

Chemical Composition(%)

C

Mn

Si

S

P

B

SAE1006B

0.03~O.07

≤0.32

≤0.30

≤0.045

≤0.040

>0.0008

Mechanical properties

Yield strength(N/mm2)

Tensile strength(N/mm2)

Elongation(%)

250-280

350-380

≥32

 

Grade

Chemical Composition(%)

C

Mn

Si

S

P

B

SAE1008B

0.10max

0.3~O.50

0.15max

0.050max

0.040 max

0.0008 min

Mechanical properties

Yield strength(N/mm2)

Tensile strength(N/mm2)

Elongation(%)

≥195

315-430

≥30

 

Grade

Chemical Composition(%)

C

Mn

Si

S

P

B

Q195B

0.06~O.12

0.25~O.50

≤0.30

≤0.050

≤0.045

>0.0008

Mechanical properties

Yield strength(N/mm2)

Tensile strength(N/mm2)

Elongation(%)

≥195

315-430

≥33

 

Grade

Chemical Composition(%)

C

Mn

Si

S

P

B

Q235B

0.12~O.2

0.3~O.701

≤0.30

≤0.045

≤0.045

>0.0008

Mechanical properties

Yield strength(N/mm2)

Tensile strength(N/mm2)

Elongation(%)

235

375-500

≥26

 

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 arrange production. The normal sizes with the normal grade can be produced within one month. The specific shipping date is dependent upon international and government factors, the delivery to international main port about 45-60days.

Images:

Q:How is steel wire rod recycled or disposed of?
There are multiple ways to handle steel wire rod, either by recycling or disposing of it. Melting and reusing it in the production of new steel products is a common method of recycling. This process entails collecting the wire rod from different sources like construction sites, manufacturing facilities, or recycling centers, and then melting it in a furnace. Once melted, impurities and contaminants are eliminated, and the molten steel is molded into new wire rods or other steel products. Another recycling method involves mechanical processing. The wire rod is shredded into smaller pieces, which can then serve as raw material for manufacturing new steel products. These shredded pieces can be used for producing rebar, wire mesh, or other steel-based items. Moreover, steel wire rod can be disposed of responsibly in an environmentally-friendly way. If it is contaminated with hazardous substances or cannot be recycled due to its condition, it may be necessary to dispose of it in a landfill or designated waste management facility. However, it is crucial to emphasize that this disposal method should only be utilized as a last resort, as recycling is a more sustainable and environmentally conscious option. Overall, the recycling and disposal of steel wire rod involve various techniques, with recycling being the preferred choice due to its economic and environmental advantages. Recycling steel wire rod helps conserve valuable resources, save energy, and reduce the overall carbon footprint.
Q:How is steel wire rod used in the manufacturing of wire mesh for concrete reinforcement?
Steel wire rod is an essential component in the manufacturing of wire mesh for concrete reinforcement. Wire mesh is a grid-like structure made from interconnected steel wires, and it serves to enhance the strength and durability of concrete structures. Steel wire rod is used as the primary material for producing the wires that form the mesh. The rod is typically made from carbon steel and undergoes a series of processes to transform it into the desired wire diameter and tensile strength. These processes include hot rolling, pickling, and drawing. Once the steel wire rod has been transformed into wire, it is then formed into a mesh pattern through a weaving or welding process. The mesh pattern can vary, with common options being square or rectangular openings. The spacing between the wires is usually determined based on the specific requirements of the concrete project. During the manufacturing process, the wire mesh is carefully designed to provide reinforcement to concrete structures. When concrete is poured, the wire mesh is placed within it, creating a network of interconnected wires that help distribute the load evenly. This reinforcement significantly improves the concrete's resistance to cracking and breaking under stress, such as from heavy loads or temperature changes. Additionally, wire mesh also helps to control shrinkage and prevent the formation of large cracks in the concrete. By restricting the movement of individual concrete elements, the mesh ensures that any cracks that do form are smaller and more manageable. In summary, steel wire rod plays a crucial role in the manufacturing of wire mesh for concrete reinforcement. It is transformed into wire, which is then woven or welded into a mesh pattern. This mesh is placed within concrete structures to enhance their strength, durability, and resistance to cracking and breaking.
Q:What are the main factors influencing the choice of steel wire rod end-user?
The main factors influencing the choice of steel wire rod end-user include the specific application requirements, such as tensile strength, corrosion resistance, and durability. Other factors include price, availability, and the reputation and reliability of the supplier.
Q:What are the different types of steel wire rod coating materials?
Steel wire rods can be coated with various materials, each with its own purpose and advantages. Different types of coatings include: 1. Galvanizing: Zinc coating is widely used for steel wire rods and offers excellent corrosion resistance. It protects against rust and environmental factors and can be applied through hot-dipping or electroplating methods. 2. Pretreatment: Phosphate coating is often used before applying other coatings or paints. It enhances adhesion, improves corrosion resistance, and finds application in industries like automotive, construction, and agriculture. 3. Additional Protection: Polymer coatings, made of materials like epoxy, nylon, or polyethylene, provide extra protection against corrosion, abrasion, and mechanical stresses. They are highly durable, resistant to chemicals and extreme temperatures. 4. Enhanced Conductivity: Copper coating improves the electrical conductivity of steel wire rods. It is commonly used in the production of electrical wires and cables that require high conductivity. 5. High Resistance: Chrome coating has excellent resistance to corrosion and wear. It is applied to steel wire rods used in harsh environments or exposed to high temperatures. 6. Lightweight and Corrosion-Resistant: Aluminum coating provides a corrosion-resistant layer to steel wire rods while keeping them lightweight. It is often used in aerospace and automotive industries for weight reduction and durability. 7. Aesthetic Appeal: Organic coatings, like polyurethane or acrylic paints, offer both aesthetic appeal and protection against corrosion and UV rays. They are suitable for applications where wire rods will be visible or exposed to outdoor conditions. Choosing the right coating material for steel wire rods depends on specific requirements and intended use. Factors such as corrosion resistance, electrical conductivity, durability, and environmental conditions should be considered to ensure optimal performance.
Q:What are the different types of steel wire rod surface defect monitoring and reporting systems?
There are various types of steel wire rod surface defect monitoring and reporting systems, including visual inspection systems, automated optical inspection systems, ultrasonic inspection systems, and electromagnetic inspection systems. These systems utilize different technologies and methods to detect and analyze surface defects on steel wire rods, providing accurate and detailed reports for quality control and process improvement purposes.
Q:How is the corrosion resistance of steel wire rod improved?
There are several methods and techniques available to enhance the corrosion resistance of steel wire rods. One effective approach is to apply protective coatings. Coatings made of zinc, aluminum, or other corrosion-resistant metals can be used to create a barrier between the steel and corrosive elements in the surrounding environment. These coatings act as sacrificial layers, corroding instead of the steel and extending the lifespan of the wire rods. Another way to improve corrosion resistance is through galvanization. This involves immersing the steel wire rod in molten zinc, which forms a protective layer on its surface. The galvanized coating acts as both a physical barrier against corrosion and a source of cathodic protection for the steel, minimizing the risk of corrosion. Corrosion resistance can also be enhanced by alloying the steel with specific elements. For example, stainless steel wire rods are widely used in applications where corrosion resistance is critical. Stainless steel contains a high percentage of chromium, which forms a self-repairing oxide layer on the surface, protecting the steel from corrosion. Additionally, the surface finish of the steel wire rod can influence its resistance to corrosion. Smoother and more polished surfaces tend to offer better protection against corrosion compared to rougher surfaces, as they have fewer crevices and imperfections for corrosive agents to penetrate. Proper maintenance and storage practices are also crucial for preserving the corrosion resistance of steel wire rods. This includes keeping them in dry environments, shielding them from moisture or corrosive substances, and promptly addressing any signs of corrosion, such as rust, by cleaning and applying suitable corrosion inhibitors. To summarize, enhancing the corrosion resistance of steel wire rods involves a combination of coating techniques, alloying, surface finishing, and proper maintenance. These measures ensure the longevity and performance of the wire rods in corrosive environments.
Q:What are the specifications for steel wire rod in different international standards?
The specifications for steel wire rod vary across different international standards. However, some common specifications include the diameter range, chemical composition, mechanical properties, and tolerance limits for the wire rod. It is essential to refer to the specific international standard, such as ASTM, DIN, or JIS, to obtain the precise specifications for steel wire rod.
Q:How is steel wire rod used in the production of wire displays?
Steel wire rod is used in the production of wire displays as it serves as the foundation material for creating the wire frames and structures that make up the displays. The wire rod is first processed and shaped into the desired dimensions and then formed into different shapes and configurations to create the structures that hold and showcase products in wire displays.
Q:What are the standard impact strength requirements for steel wire rod?
The standard impact strength requirements for steel wire rod vary depending on the specific application and industry standards. However, in general, steel wire rods are expected to possess a high level of impact strength to withstand various loading conditions and prevent failure or deformation. These requirements typically include meeting specific impact energy values, as specified by relevant industry standards or customer specifications.
Q:What are the different types of steel wire rod surface cleaning tools?
There are several different types of steel wire rod surface cleaning tools available in the market. These tools are designed to remove dirt, rust, and other contaminants from the surface of steel wire rods, ensuring a clean and smooth finish. One common type of cleaning tool is a wire brush. These brushes have stiff bristles made from steel or other materials that are capable of removing rust and loose debris from the surface of the wire rod. Wire brushes are available in various shapes and sizes, allowing users to choose the one that best fits their needs. Another type of cleaning tool is a sanding disc or wheel. These tools are typically made from abrasive materials such as sandpaper or grinding wheels. They are mounted on a rotating machine, and when pressed against the surface of the wire rod, they remove rust and other contaminants through abrasion. Chemical cleaning agents are also used to clean steel wire rod surfaces. These agents are usually applied using a brush or spray, and they work by breaking down and dissolving the contaminants on the surface. After application, the surface is usually rinsed with water to remove the cleaning agent and any remaining residue. Ultrasonic cleaners are another option for cleaning steel wire rod surfaces. These machines use high-frequency sound waves to create tiny bubbles in a cleaning solution. As the bubbles implode, they create a scrubbing action that removes dirt, rust, and other contaminants from the surface of the wire rod. In addition to these tools, there are also specialized cleaning machines available for larger-scale operations. These machines often use a combination of mechanical, chemical, and/or ultrasonic cleaning methods to ensure a thorough and efficient cleaning process. Overall, the choice of cleaning tool will depend on the specific needs and requirements of the user. It is important to consider factors such as the extent of contamination, the desired finish, and the size of the wire rod when selecting the appropriate cleaning tool.

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