• Steel Fiber Copper Coated Company From China CNBM International System 1
  • Steel Fiber Copper Coated Company From China CNBM International System 2
  • Steel Fiber Copper Coated Company From China CNBM International System 3
Steel Fiber Copper Coated Company From China CNBM International

Steel Fiber Copper Coated Company From China CNBM International

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
1000 kg
Supply Capability:
30000 kg/month

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   Quick Details


Place of Origin:            

Hebei, China (Mainland)

Brand Name:            

cnbm

Model Number:            

CW04

Material:            

Steel

Material::            

Steel,low carbon steel wire

Standard::            

ASTM ,ISO9001,CE

Shape::            

hooked ends and straight middle

Grade::            

Q195

Application::            

shortcrete on tunnel, underground project, dam plate

Tensile strength::            

2850Mpa

Demension::            

per your requirement

Place of Origin::            

HeBei  China (Mainland)

Brand Name::            

ZhiTai  steel fiber

Delivery Detail::            

in 7 days upon receive prepayment


 

Specifications


Steel fiber for Concrete Reinforcement  
1.High tensile strength 2.Length 6-10mm 3.Diameter 0.15-0.3mm

Copper coated steel fiber

1. diameter: 0.15-0.3mm

2. lengthe: 6-10mm

3. high tensile strength : 2850Mpa

4. It is widely used for concrete reinforcement.



 

Picture

Steel Fiber Copper Coated Company From China CNBM International

 

Steel fiber  

 

Steel Fiber Copper Coated Company From China CNBM International

Steel Fiber Copper Coated Company From China CNBM International

FAQ

 

certificated: ISO 9001

Technical advantages of Daye steel fiber:
A. Improve mechanical performance of concrete
B. Provide uniform distribution throughout concrete with excellent mixing
C. No balling or caking by adopt correct mixing method 

D. Reduce concrete volume

E.Save construction time and cost

F.Reduce excavation volume

G.Available for jointless floor.

 

 

 

 

Q:Can melt extract stainless steel fiber be used in industrial chimneys?
Yes, melt extract stainless steel fiber can be used in industrial chimneys. Stainless steel fibers are commonly used as reinforcement in high-temperature applications due to their excellent heat resistance properties. They can withstand temperatures up to 1200°C (2192°F) and have a high resistance to corrosion and oxidation. These properties make them suitable for use in industrial chimneys, where high temperatures and harsh environments are common. The stainless steel fibers can help improve the strength and durability of the chimney structure, ensuring it can withstand the extreme conditions it is exposed to. Additionally, the fibers can also help enhance the thermal conductivity and insulation properties of the chimney, improving its overall efficiency. Overall, melt extract stainless steel fiber is a suitable and reliable choice for use in industrial chimneys.
Q:Can melt extract stainless steel fiber be used in bridge deck overlays for asphalt mixtures?
Bridge deck overlays for asphalt mixtures can indeed utilize melt extract stainless steel fiber. By incorporating these fibers, the overall performance and durability of the asphalt mixtures are enhanced. The introduction of stainless steel fibers aids in the improvement of tensile strength, crack resistance, and fatigue resistance for the asphalt overlay. This is especially advantageous for bridge deck overlays due to the heavy traffic loads, temperature fluctuations, and exposure to various environmental conditions they encounter. Moreover, the stainless steel fibers provide reinforcement, preventing the formation and spread of cracks, ultimately extending the service life of the bridge deck. Furthermore, the corrosion-resistant nature of stainless steel renders it a fitting choice for bridge deck overlays, where exposure to moisture and deicing salts is commonplace. In summary, the incorporation of melt extract stainless steel fibers in bridge deck overlays for asphalt mixtures presents a feasible solution to enhance the performance and durability of the overlay system.
Q:Can melt extract stainless steel fiber be used in high-performance concrete applications?
Yes, melt extract stainless steel fiber can be used in high-performance concrete applications. Stainless steel fibers are known for their high tensile strength, corrosion resistance, and durability. These properties make them suitable for applications where concrete structures are subjected to high loads, severe weather conditions, or aggressive environments. In high-performance concrete, stainless steel fibers are commonly added to enhance the mechanical properties of the material. The fibers help to improve the concrete's resistance to cracking, increase its flexural and tensile strength, and enhance its resistance to impact and fatigue. This makes high-performance concrete with stainless steel fibers ideal for applications such as bridge decks, industrial floors, tunnels, and other structures that require enhanced durability and strength. Melt extract stainless steel fibers are produced by melting stainless steel and then rapidly extracting it into fibers. This manufacturing process ensures that the fibers have a uniform diameter and high aspect ratio, which further enhances their performance in high-performance concrete applications. The fibers are typically added to the concrete mix in a specific dosage to achieve the desired reinforcement effect. The use of melt extract stainless steel fibers in high-performance concrete has been extensively studied and proven effective. Numerous research studies and field applications have shown that the addition of stainless steel fibers can significantly improve the mechanical properties and durability of high-performance concrete. These fibers can help to reduce cracking, increase the load-bearing capacity, and enhance the overall performance of the concrete structure. However, it is important to note that the dosage of stainless steel fibers and the concrete mix design should be properly evaluated and optimized for each specific application. This will ensure that the desired performance requirements are met without negatively affecting other properties of the concrete mix, such as workability or finishability. In conclusion, melt extract stainless steel fiber can be successfully used in high-performance concrete applications. Its high tensile strength, corrosion resistance, and durability make it an excellent reinforcement material for structures subjected to high loads, severe weather conditions, or aggressive environments. Proper dosage and mix design considerations are crucial to achieve the desired performance while maintaining the overall quality of the concrete.
Q:What is the effect of melt extract stainless steel fiber on the crack width in concrete?
The addition of melt extract stainless steel fiber in concrete has a beneficial effect on reducing the crack width. The fibers act as reinforcement, improving the tensile strength and preventing the propagation of cracks. This leads to increased durability and improved structural integrity of the concrete.
Q:Can melt extract stainless steel fiber be used in decorative precast concrete applications?
Yes, melt extract stainless steel fiber can be used in decorative precast concrete applications.
Q:Can melt extract stainless steel fiber be used in tunnel lining rehabilitation applications?
Yes, melt extract stainless steel fiber can be used in tunnel lining rehabilitation applications. Stainless steel fibers are known for their high strength, corrosion resistance, and durability, making them suitable for use in various construction and rehabilitation projects. In tunnel lining rehabilitation, these fibers can be added to the concrete mix to enhance its mechanical properties and improve its resistance to cracking and spalling. The stainless steel fibers help to increase the flexural strength of the concrete, reduce shrinkage, and enhance its overall durability. Additionally, the fibers can also provide additional reinforcement to the tunnel lining, improving its resistance to seismic activity and other external forces. Overall, the use of melt extract stainless steel fiber in tunnel lining rehabilitation applications can help to prolong the lifespan of the tunnel, increase its structural integrity, and reduce the need for frequent maintenance and repairs.
Q:Can melt extract stainless steel fiber be used in high-strength shotcrete applications?
Certainly, high-strength shotcrete applications can make use of melt extract stainless steel fiber. Renowned for their exceptional mechanical properties, such as high tensile strength and superior durability, melt extract stainless steel fibers are frequently employed to enhance the strength and performance of shotcrete, a spray-on concrete material. The incorporation of melt extract stainless steel fibers into shotcrete mixtures results in a material that possesses improved toughness, crack resistance, and impact resistance. Consequently, this renders it suitable for high-strength shotcrete applications, where heightened structural integrity and durability are prerequisites. By aiding in load distribution and inhibiting crack propagation, the stainless steel fibers contribute to an overall sturdier and more dependable shotcrete material. Furthermore, melt extract stainless steel fibers exhibit corrosion resistance, which is particularly advantageous in high-strength shotcrete applications that may encounter harsh environments or chemicals. The corrosion resistance guarantees the long-term durability and performance of the shotcrete, thereby reducing maintenance demands and extending its service life. In conclusion, there is no doubt that melt extract stainless steel fibers can be effectively employed in high-strength shotcrete applications. Their exceptional mechanical properties and resistance to corrosion render them an excellent choice for reinforcing shotcrete, thereby augmenting its strength and durability in demanding construction projects.
Q:Does melt extract stainless steel fiber improve the dimensional stability of concrete?
Yes, melt extract stainless steel fiber does improve the dimensional stability of concrete.
Q:Are there any specific mixing requirements for concrete with melt extract stainless steel fiber?
Yes, there are specific mixing requirements for concrete with melt extract stainless steel fiber. The fibers should be added during the mixing process and evenly dispersed throughout the concrete to ensure proper reinforcement. Additionally, the mixing time may need to be extended to ensure the fibers are uniformly distributed. It is important to follow the manufacturer's guidelines and recommendations for the specific type of stainless steel fiber being used to achieve the desired results.
Q:Are there any guidelines or standards for using melt extract stainless steel fiber in construction?
Construction projects involving melt extract stainless steel fiber must adhere to guidelines and standards. ASTM A820 is the primary standard governing the use of stainless steel fiber in construction. This standard outlines guidelines for classifying, determining chemical composition, and assessing mechanical properties of stainless steel fibers used for concrete reinforcement. According to ASTM A820, stainless steel fibers must meet specific criteria for diameter, length, and tensile strength. The standard also specifies the minimum fiber content necessary to achieve the desired reinforcement effect when added to concrete. Aside from ASTM A820, other guidelines and standards exist for the usage of stainless steel fiber in specific applications. The American Concrete Institute (ACI), for example, provides recommendations for employing stainless steel fiber reinforcement in shotcrete and precast concrete elements. It is important to note that while these guidelines and standards offer valuable recommendations, they are not obligatory requirements. The specific requirements for utilizing melt extract stainless steel fiber in construction may differ depending on project specifications and local building codes. Consequently, consulting with design professionals and local authorities is always advisable to ensure compliance with the appropriate guidelines and standards.

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