• Melt Extract Stainless Steel Fiber - Steel Fiber Copper Coated Company from CNBM System 1
  • Melt Extract Stainless Steel Fiber - Steel Fiber Copper Coated Company from CNBM System 2
Melt Extract Stainless Steel Fiber - Steel Fiber Copper Coated Company from CNBM

Melt Extract Stainless Steel Fiber - Steel Fiber Copper Coated Company from CNBM

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
2000 kg
Supply Capability:
30000 kg/month

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   Quick Details

  • Place of Origin: Jiangsu, China (Mainland)

  • Model Number: HT-ST

  • Material: Steel

Specifications

ISO 9001 certificated
2.70% for Europe, Middle Asia, America market
3.Have the most number of steel fiber machine in china
1. Material: low carbon steel wire or stainless steel
2.Diameter: 0.4mm-1.0mm
3.Length: meet your requirements
4.tensile strength >1000Mpa
6.Feature: excellent tensile,high tenacity,against cracking,impact and fatigue
7.Uses: highway road surface,tunnel,building,airport road surface and so on .

Straight Steel Fiber

1.ISO 9001 certificated
2.70% for Europe, Middle Asia, America market
3.Have the most number of steel fiber machine in china

 

Picture

Steel Fiber Copper Coated Company From CNBM

 

Steel fiber  

 

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 marine concrete applications?
Yes, melt extract stainless steel fiber can be used in marine concrete applications. This type of fiber is highly resistant to corrosion and can withstand the harsh marine environment, making it suitable for reinforcing concrete structures in such applications.
Q: C50 steel fiber concrete, the minimum price, who will tell
This has to know the amount of steel fiber and kind of Caixing, different steel fiber price difference is quite big, mixing quantity is different, the cost difference is also very big.
Q: What is the effect of melt extract stainless steel fiber on the modulus of rupture of shotcrete?
The effect of melt extract stainless steel fiber on the modulus of rupture of shotcrete is that it enhances the overall strength and durability of the shotcrete. The stainless steel fibers reinforce the shotcrete matrix, preventing cracks and improving the resistance to bending and flexural stresses. This leads to an increased modulus of rupture, making the shotcrete more resistant to cracking and improving its structural performance.
Q: Is melt extract stainless steel fiber suitable for use in tunnel lining construction?
Yes, melt extract stainless steel fiber is suitable for use in tunnel lining construction. It provides enhanced strength, durability, and resistance to corrosion, making it an ideal choice for reinforcing concrete in tunnels.
Q: What are the different types of melt extract stainless steel fibers available in the market?
There are several different types of melt extract stainless steel fibers available in the market. Some of the most common types include: 1. Type 304 Stainless Steel Fibers: These fibers are made from a combination of iron, chromium, and nickel. They offer excellent corrosion resistance and are often used in applications where exposure to chemicals or moisture is a concern. 2. Type 316 Stainless Steel Fibers: These fibers are similar to Type 304, but they contain a higher amount of molybdenum, which provides even greater corrosion resistance. They are often used in more demanding environments, such as marine applications or in areas with high chloride concentrations. 3. Type 430 Stainless Steel Fibers: These fibers contain a higher amount of chromium and are known for their good resistance to oxidation and heat. They are often used in high-temperature applications, such as in furnaces or automotive exhaust systems. 4. Type 410 Stainless Steel Fibers: These fibers contain a higher amount of carbon, which gives them excellent wear resistance. They are often used in applications where abrasion or wear is a concern, such as in concrete reinforcement or in industrial equipment. 5. Type 420 Stainless Steel Fibers: These fibers contain a higher amount of carbon and are often heat treated to increase their hardness. They are commonly used in applications where high strength and wear resistance are required, such as in cutting tools or in high-load bearing structures. It is important to note that the availability of these different types of melt extract stainless steel fibers may vary depending on the supplier and the specific requirements of the application. It is recommended to consult with a knowledgeable supplier or engineer to determine the most suitable type for a particular project.
Q: How does melt extract stainless steel fiber improve the impact resistance of shotcrete?
Melt extract stainless steel fiber is a type of reinforcement material that is added to shotcrete, a highly versatile construction material used in various applications. When added to shotcrete, this stainless steel fiber greatly enhances the impact resistance of the material. The key reason behind this improvement lies in the unique properties of stainless steel fiber. Firstly, stainless steel is known for its high tensile strength, which means it can withstand high amounts of force without breaking or deforming. This property allows the stainless steel fiber to effectively distribute and absorb impact energy, thereby reducing the likelihood of cracks or fractures in the shotcrete. Additionally, the melt extract process used to produce these fibers ensures a high level of uniformity and consistency in their shape, size, and distribution. This uniformity contributes to the overall stability and durability of the shotcrete, making it more resistant to impact loads. Furthermore, the addition of stainless steel fibers to shotcrete enhances its ductility. Ductility refers to the material's ability to deform without fracturing. By increasing the ductility of shotcrete, the stainless steel fibers allow it to better absorb energy during impact events, preventing sudden failures or catastrophic damages. Overall, the use of melt extract stainless steel fibers in shotcrete significantly improves its impact resistance by enhancing its tensile strength, stability, durability, and ductility. This makes shotcrete reinforced with stainless steel fibers an ideal choice for applications where impact loads are expected, such as in tunnel linings, bridge abutments, or protective barriers.
Q: What is the effect of melt extract stainless steel fiber on the durability of tunnel linings?
The use of melt extract stainless steel fiber in tunnel linings can greatly enhance their durability. These fibers improve the tensile strength and resistance to cracking of the concrete used in tunnel linings. This, in turn, helps to prevent the formation of cracks and fractures, which can compromise the structural integrity of the tunnel lining. Additionally, the stainless steel fibers also enhance the overall ductility and toughness of the concrete, making it more resistant to impact and seismic loads. Overall, the incorporation of melt extract stainless steel fiber in tunnel linings significantly improves their long-term durability and extends their lifespan.
Q: Is melt extract stainless steel fiber compatible with all types of concrete additives?
Melt extract stainless steel fiber is generally compatible with most types of concrete additives. However, it is important to check the specific compatibility of the fiber with the additives being used in your concrete mixture. Some concrete additives, such as certain accelerators or superplasticizers, may have adverse reactions with stainless steel fibers. It is recommended to consult with the manufacturer or supplier of the stainless steel fiber and the concrete additives to ensure compatibility before using them together in your concrete mixture.
Q: Can melt extract stainless steel fiber be used in pre-stressed concrete?
Indeed, melt extract stainless steel fiber has the potential to be utilized in pre-stressed concrete. By incorporating stainless steel fibers into pre-stressed concrete, one can effectively enhance its ductility and resistance to cracking, thereby bolstering the overall performance and durability of the concrete structure. The stainless steel fibers function as reinforcement by effectively dispersing stress and obstructing the spread of cracks. Consequently, this aids in enhancing the structural integrity of the pre-stressed concrete and fortifying its ability to withstand mechanical and environmental pressures. Moreover, the application of melt extract stainless steel fibers in pre-stressed concrete can also mitigate the risk of corrosion, as stainless steel boasts remarkable resistance against rust and other forms of deterioration. In essence, the inclusion of melt extract stainless steel fibers in pre-stressed concrete materializes as a means to augment its strength, flexibility, and longevity.
Q: Can melt extract stainless steel fiber be used in fiber-reinforced polymers (FRP)?
Melt extract stainless steel fiber is applicable in fiber-reinforced polymers (FRP). FRP composites commonly employ stainless steel fibers to enhance mechanical properties like strength, stiffness, and toughness. During manufacturing, these fibers are typically added to the polymer matrix to improve the overall performance of the composite material. The excellent corrosion resistance, high tensile strength, and good thermal stability of melt extract stainless steel fibers make them suitable for applications where durability and reliability are crucial in FRP. Moreover, the presence of stainless steel fibers can also provide electromagnetic shielding properties to FRP composites, making them suitable for specific uses in industries such as aerospace or automotive. In summary, melt extract stainless steel fibers are effective in enhancing the mechanical and functional properties of fiber-reinforced polymers.

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