• Concrete Steel Fiber As Concrete Admixtures CNBM System 1
  • Concrete Steel Fiber As Concrete Admixtures CNBM System 2
  • Concrete Steel Fiber As Concrete Admixtures CNBM System 3
Concrete Steel Fiber As Concrete Admixtures CNBM

Concrete Steel Fiber As Concrete Admixtures CNBM

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
2000 kg
Supply Capability:
250000 kg/month

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Quick Details

  • Place of Origin: Shandong, China (Mainland), Shandong, China (Mainland)

  • material: steel wire

  • type: wavy steel fiber

  • shape: corrugated flat fiber

  • usage: concrete reinforcement

  • appearance: clear and bright

 

 

 

 Product features

steel fiber are for concrete construction, greatly improves concrete bonding and tensile strength .  

The steel fiber is made of high-quality low carbon steel wire,with the characteristic of the high tensile strength,good toughness,etcs.This product is widely used in the construction fields for concrete reinforcement


 

 

Specifications


The Specification of Hooker Ends Steel Fiber
TYPEDiameter(mm)Length(mm)Length/DiameterTensile strength
LB-60/601.0 6060>=1000Mpa
LB-50/501.0 5050>=1000Mpa
LB-65/600.9 6065>=1000Mpa
LB-55/500.9 5055>=1000Mpa
LB-80/600.75 6080>=1000Mpa
LB-45/350.75 3545>=1000Mpa
LB-55/300.55 3055>=1000Mpa
LB-60/300.5 3060>=1000Mpa
LB-50/250.5 2550>=1000Mpa
LB-60/250.4 2560>=1000Mpa

 

Picture

 Concrete Steel Fiber As Concrete Admixtures CNBM

 

steel fiber for concrete reinforcement

 

steel fiber are for concrete construction, greatly improves concrete bonding and tensile strength .  

The steel fiber is made of high-quality low carbon steel wire,with the characteristic of the high tensile strength,good toughness,etcs.This product is widely used in the construction fields for concrete reinforcement

 Concrete Steel Fiber As Concrete Admixtures CNBM

 FAQ

we can produce any type steel fiber and of course we can make production according to your requirement

we have specilize in this field for almost 10 years ,with good quality and competitive price

 

 

Q:How does melt extract stainless steel fiber improve the resistance to fatigue in concrete?
Concrete's resistance to fatigue can be significantly improved by incorporating melt extract stainless steel fiber. These fibers play a crucial role in enhancing the durability and performance of concrete structures, particularly in high-stress environments. One of the primary benefits of melt extract stainless steel fiber is its ability to enhance the flexural strength of concrete, thereby improving its resistance to fatigue. These fibers are evenly distributed throughout the concrete matrix, creating a three-dimensional reinforcement system. This reinforcement mechanism helps to evenly distribute stress and load, which reduces stress concentration in specific areas and prevents crack propagation. Additionally, the high tensile strength of stainless steel fibers provides further support to the concrete, augmenting its resistance to fatigue. Acting as mini-reinforcements, these fibers bridge any cracks that may form during repeated loading and unloading cycles. This bridging effect effectively inhibits crack growth and propagation, thereby maintaining the structural integrity of the concrete over time. Moreover, the corrosion resistance of stainless steel fibers is another crucial factor in improving fatigue resistance. Concrete structures are often exposed to harsh environments, such as those rich in chloride or alkaline substances, which can cause traditional steel reinforcements to corrode. However, stainless steel fibers exhibit exceptional resistance to corrosion, ensuring the long-term durability and performance of the concrete. In conclusion, the incorporation of melt extract stainless steel fiber enhances concrete's resistance to fatigue by improving its flexural strength, providing additional support, and offering corrosion resistance. These advantageous properties result in a more durable and resilient concrete structure capable of withstanding repeated stress and loading cycles, ultimately extending its lifespan and reducing maintenance costs.
Q:What are the advantages of using melt extract stainless steel fiber in concrete?
There are several advantages to using melt extract stainless steel fiber in concrete. To begin with, the durability and longevity of concrete structures are enhanced by stainless steel fiber. The properties of stainless steel that resist corrosion prevent rusting, even in harsh environments. This ensures that the structural integrity of the concrete remains intact over time, making it perfect for use in coastal or industrial areas where exposure to saltwater or chemicals is common. In addition, the tensile strength and crack resistance of concrete are improved by stainless steel fiber. Acting as reinforcement, the fibers distribute stresses and prevent cracks from forming and spreading. This leads to a more robust and durable concrete, reducing the need for expensive repairs or replacements. Furthermore, the impact and abrasion resistance of concrete are enhanced by stainless steel fiber. Acting as a barrier, the fibers absorb and dissipate energy upon impact, reducing the likelihood of surface damage. This makes it suitable for high-traffic areas like roads, bridges, and industrial floors, where wear and tear are major concerns. Moreover, the fire resistance of concrete can be improved by stainless steel fiber. The high melting point of stainless steel (typically above 1300°C) creates a barrier against heat transfer, slowing down the spread of fire and protecting the underlying structure. This is crucial in applications where fire safety is a priority, such as tunnels, parking garages, or buildings. Lastly, the use of stainless steel fiber in concrete allows for design flexibility. The fibers can be easily mixed into the concrete, enabling the creation of complex shapes and forms. This opens up opportunities for innovative architectural designs and structural solutions. In conclusion, melt extract stainless steel fiber provides advantages such as increased durability, enhanced tensile strength, improved impact and abrasion resistance, heightened fire resistance, and design flexibility when used in concrete. These benefits make it a valuable addition to concrete mixtures, ensuring the longevity and performance of concrete structures in various applications.
Q:Can melt extract stainless steel fiber be used in roller-compacted concrete applications?
Yes, melt extract stainless steel fiber can be used in roller-compacted concrete applications.
Q:Does melt extract stainless steel fiber increase the resistance to cracking in concrete?
Yes, melt extract stainless steel fiber does increase the resistance to cracking in concrete. Stainless steel fibers are commonly added to concrete mixes as reinforcement to improve its tensile strength and prevent cracking. The addition of these fibers helps to distribute stress and reduce shrinkage, thus increasing the overall resistance to cracking in the concrete. Melt extract stainless steel fibers are particularly effective in enhancing the concrete's resistance to cracking due to their high tensile strength, durability, and superior bonding properties.
Q:How does melt extract stainless steel fiber improve the fatigue resistance of concrete?
Melt extract stainless steel fiber is known for enhancing the fatigue resistance of concrete due to its unique properties and characteristics. When added to concrete, these fibers create a three-dimensional reinforcement network that strengthens the material and improves its ability to withstand repetitive loading or cyclic stress. One of the main ways in which melt extract stainless steel fiber enhances the fatigue resistance of concrete is by increasing its crack resistance. As the concrete undergoes cyclic loading, cracks may develop and propagate, leading to eventual failure. However, the presence of stainless steel fibers helps to arrest the growth of these cracks, preventing them from spreading and improving the overall durability of the concrete. Moreover, the high tensile strength and excellent ductility of stainless steel fibers contribute to the fatigue resistance of concrete. These fibers can absorb and distribute stress throughout the concrete matrix, reducing the concentration of stress at specific points. This redistribution of stress helps to prevent the formation of microcracks and enhances the overall fatigue strength of the concrete. Additionally, the corrosion resistance of stainless steel fibers plays a crucial role in improving the fatigue resistance of concrete. Concrete is often exposed to harsh environmental conditions, such as moisture and chemical agents, which can lead to corrosion and deterioration of the material. However, stainless steel fibers are highly resistant to corrosion, ensuring the long-term integrity and durability of the concrete structure. Furthermore, melt extract stainless steel fibers also provide thermal stability to concrete. The expansion and contraction of concrete due to temperature variations can lead to the development of cracks and decrease its fatigue resistance. However, the presence of stainless steel fibers helps to minimize these thermal stresses by providing additional reinforcement and reducing the risk of crack formation. In conclusion, melt extract stainless steel fiber enhances the fatigue resistance of concrete through various mechanisms. It improves crack resistance, distributes stress, offers corrosion resistance, and provides thermal stability. By incorporating these fibers into concrete, the material becomes more resilient, durable, and capable of withstanding repetitive loading or cyclic stress, ultimately improving its fatigue resistance.
Q:Can melt extract stainless steel fiber be used in concrete repair or rehabilitation?
Concrete repair or rehabilitation can utilize melt extract stainless steel fiber. To enhance durability, strength, and resistance to cracking, stainless steel fibers are commonly incorporated into concrete mixes. Acting as reinforcement, these fibers reduce shrinkage and prevent crack formation. Furthermore, they bolster impact, abrasion, and corrosion resistance of the concrete. Melt extract stainless steel fibers undergo a specialized melting and extraction process, resulting in high-quality fibers with exceptional mechanical properties. During concrete batching, these fibers are typically added to ensure even distribution throughout the structure. In the context of concrete repair or rehabilitation, melt extract stainless steel fibers can reinforce damaged or deteriorated concrete. They restore structural integrity and prevent further degradation. Additionally, these fibers enhance the bond between repair material and existing concrete, ultimately improving the performance and longevity of the restored structure. It is crucial to adhere to specific guidelines and recommendations provided by manufacturers or industry standards when employing melt extract stainless steel fibers in concrete repair or rehabilitation. Proper dosage, mix design, and application techniques must be followed to achieve optimal performance and durability.
Q:How does melt extract stainless steel fiber improve the resistance to sulfate attack in concrete?
The resistance to sulfate attack in concrete is improved by melt extract stainless steel fiber through various mechanisms. To begin with, the addition of stainless steel fibers to the concrete mix boosts the overall durability and longevity of the concrete structure, reducing its susceptibility to sulfate attack. Sulfate attack occurs when sulfate ions from sources like groundwater, soil, or industrial waste react with the components of concrete, leading to the creation of expansive compounds that can cause cracks and deterioration in the concrete. The highly corrosion-resistant stainless steel fibers serve as a physical barrier against the penetration of sulfate ions into the concrete matrix. They establish a network throughout the concrete, providing additional reinforcement and preventing the expansion and cracking caused by sulfate attack. Additionally, the stainless steel fibers possess high tensile strength and flexibility, thereby enhancing the overall mechanical properties of the concrete and making it more resistant to the harmful effects of sulfate attack. The fibers assist in distributing stresses more evenly within the concrete, reducing the potential for cracks and damage. Furthermore, the presence of stainless steel fibers can also enhance the concrete's resistance to chemical attack. Due to their high corrosion resistance, even in harsh environments, the stainless steel fibers help safeguard the concrete from the corrosive impact of sulfate ions. In conclusion, melt extract stainless steel fiber improves the resistance to sulfate attack in concrete by acting as a physical barrier, enhancing the mechanical properties, and providing corrosion resistance. These combined effects result in a more durable and long-lasting concrete structure capable of withstanding the damaging effects of sulfate attack.
Q:What is melt extract stainless steel fiber?
Melt extract stainless steel fiber is a type of fiber made from stainless steel through a process called melt extraction. It is used in various industries, including concrete reinforcement, refractories, and composites, to improve the strength, durability, and thermal properties of materials.
Q:Is melt extract stainless steel fiber suitable for use in self-compacting concrete?
Yes, melt extract stainless steel fiber is suitable for use in self-compacting concrete. It provides excellent reinforcement, improves the durability and ductility of the concrete, and enhances its resistance to cracking and impact.
Q:Is melt extract stainless steel fiber compatible with different types of shotcrete accelerators?
Different types of shotcrete accelerators can be used with melt extract stainless steel fiber, as they are compatible. Shotcrete accelerators are employed to quicken the setting and hardening processes of shotcrete or concrete. To enhance the mechanical properties and durability of the final product, melt extract stainless steel fibers are frequently incorporated into shotcrete mixes. These fibers, made from stainless steel, possess exceptional corrosion resistance, allowing them to be compatible with various shotcrete accelerators. The inclusion of melt extract stainless steel fibers can bolster the bond strength, crack resistance, and impact resistance of shotcrete, regardless of the accelerator type. Thus, it is safe to assert that melt extract stainless steel fiber is compatible with different types of shotcrete accelerators.

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