• Steel fiber wavy for construction and concrete China System 1
  • Steel fiber wavy for construction and concrete China System 2
  • Steel fiber wavy for construction and concrete China System 3
Steel fiber wavy for construction and concrete China

Steel fiber wavy for construction and concrete China

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
1000 kg
Supply Capability:
250000 kg/month

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Quick Details

  • material: steel wire

  • shape: corrugated round fiber

  • appearance: clean and bright

  • usage: construction and concrete

  • Place of Origin: Shandong, China (Mainland)

  • Model Number: steel fiber

 

Product features

steel iber for concrete reinforcement ,it`s widely used in buildings ,bridges ,thin roof engineering ,highway etc

cncrete steel iber is specificially designed to enhance concrete in its hardened state ,the uniform distribution of steel fibers throughout the concrete greatly improves concrete bonding and tensile strength ,additionally it provides exceptional load stability and durability ,as reliable and efficient concrete reinforcement material .

it is widely used in buildings ,bridges ,thin roof engineering ,highway etc.

 

Specifications

Length :20-60mm

Diameter :0.5-1.2

Tensile strength:600Mpa-900Mpa

Appearance :clear and bright steel wire

Style :corrugated round fiber

 

Picture

 Steel fiber wavy for construction and concrete China

 

steel iber for concrete reinforcement ,it`s widely used in buildings ,bridges ,thin roof engineering ,highway etc

cncrete steel iber is specificially designed to enhance concrete in its hardened state ,the uniform distribution of steel fibers throughout the concrete greatly improves concrete bonding and tensile strength ,additionally it provides exceptional load stability and durability ,as reliable and efficient concrete reinforcement material .

it is widely used in buildings ,bridges ,thin roof engineering ,highway etc.

Steel fiber wavy for construction and concrete China 

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:Can melt extract stainless steel fiber be used in bridge deck overlays for asphalt mixtures?
Yes, melt extract stainless steel fiber can be used in bridge deck overlays for asphalt mixtures. The addition of stainless steel fibers enhances the overall performance and durability of the asphalt mixtures. The fibers help to improve the tensile strength, crack resistance, and fatigue resistance of the asphalt overlay. This is particularly beneficial for bridge deck overlays, as they are subjected to heavy traffic loads, temperature fluctuations, and exposure to various environmental conditions. The stainless steel fibers also provide reinforcement to prevent the formation and propagation of cracks, which helps to prolong the service life of the bridge deck. Additionally, the corrosion-resistant properties of stainless steel make it suitable for use in bridge deck overlays, where exposure to moisture and deicing salts is common. Overall, incorporating melt extract stainless steel fibers in bridge deck overlays for asphalt mixtures is a viable option to improve the performance and longevity of the overlay system.
Q:What is the effect of melt extract stainless steel fiber on the drying time of concrete?
The use of melt extract stainless steel fiber in concrete can significantly reduce the drying time. The fibers help to enhance the drying process by improving the overall strength and durability of the concrete mixture. This, in turn, allows for faster evaporation of moisture, resulting in a shorter drying time for the concrete.
Q:Is melt extract stainless steel fiber compatible with all types of concrete surface finishes?
Melt extract stainless steel fiber is compatible with most types of concrete surface finishes. However, it is important to note that the compatibility may vary depending on factors such as the specific type of concrete surface finish, the application method, and the desired outcome. In general, melt extract stainless steel fiber can be successfully used with various types of concrete surface finishes, including smooth finishes, exposed aggregate finishes, stamped finishes, and textured finishes. The fibers can enhance the durability, strength, and crack resistance of the concrete, making it suitable for a wide range of applications. However, it is recommended to consult with a concrete expert or manufacturer to ensure the compatibility of melt extract stainless steel fiber with a specific type of concrete surface finish. They can provide valuable insights and guidance on the optimal fiber dosage, mixing methods, and application techniques to achieve the desired results. Additionally, they can also help address any potential concerns or limitations related to the compatibility of the fiber with the chosen surface finish.
Q:What is the effect of melt extract stainless steel fiber on the plastic shrinkage of concrete?
The use of melt extract stainless steel fiber in concrete has a positive effect on mitigating plastic shrinkage. Plastic shrinkage refers to the volume reduction of concrete during the early stages of curing, often caused by evaporation of water from the surface. When melt extract stainless steel fibers are added to concrete, they provide reinforcement and increase the tensile strength of the material. This reinforcement helps to reduce the formation of cracks and shrinkage in the concrete, as the fibers act as a network that holds the concrete together. The stainless steel fibers also improve the overall durability and resistance of the concrete to external factors such as temperature changes, chemical exposure, and mechanical stress. This enhanced durability further reduces the potential for plastic shrinkage, as the concrete is less prone to cracking and deformation. Additionally, the melt extract stainless steel fibers improve the overall workability and flowability of the concrete mix. This improved workability allows for better compaction and reduces the risk of segregation, which can contribute to plastic shrinkage. Overall, the incorporation of melt extract stainless steel fiber in concrete helps to mitigate plastic shrinkage by providing reinforcement, improving durability, and enhancing workability. This results in a more robust and resilient concrete structure with reduced shrinkage and cracking.
Q:Can melt extract stainless steel fiber be used in shotcrete tunnel boring machine applications?
Yes, melt extract stainless steel fiber can be used in shotcrete tunnel boring machine applications.
Q:Can melt extract stainless steel fiber be used in roundabout pavements?
Yes, melt extract stainless steel fiber can be used in roundabout pavements.
Q:How does melt extract stainless steel fiber impact the early-age cracking of concrete?
Concrete is prone to cracking in its early stages due to the rapid evaporation of moisture from the surface, causing shrinkage and tension within the material. However, incorporating melt extract stainless steel fibers into the concrete mixture can address this issue. These fibers act as reinforcement, adding strength and stability to the concrete. The stainless steel fibers help distribute the stress load evenly throughout the concrete, preventing the concentration of tension at specific points and reducing the likelihood of cracking. This improves the overall durability of the concrete structure. In addition, the presence of stainless steel fibers improves the microstructure of the concrete. They serve as sites for the formation of hydration products, resulting in a denser and more compact matrix. This densification makes the concrete less permeable, reducing moisture loss and minimizing the potential for early-age cracking. Furthermore, the stainless steel fibers also enhance the behavior of the concrete after cracking. If cracks do occur, the fibers act as bridges, preventing further propagation and safeguarding the structural integrity. This ensures that any cracks that do appear during the early stages will not develop into larger, more significant cracks over time. In conclusion, the inclusion of melt extract stainless steel fibers in concrete significantly reduces the occurrence of early-age cracking. These fibers improve the mechanical properties, distribute stress, enhance the microstructure, and provide bridging effects. As a result, the concrete becomes more durable and resistant to cracking.
Q:How does melt extract stainless steel fiber improve the toughness of fiber-reinforced shotcrete?
Melt extract stainless steel fiber improves the toughness of fiber-reinforced shotcrete by providing enhanced crack resistance and increased ductility. The inclusion of these fibers in shotcrete helps to distribute and dissipate energy upon impact, reducing the propagation of cracks and enhancing the overall strength and durability of the material.
Q:Can melt extract stainless steel fiber be used in underground parking structures or garages?
Melt extract stainless steel fiber is suitable for underground parking structures or garages. It is commonly used in concrete to improve its mechanical properties, such as tensile strength, ductility, and resistance to cracking. In environments where the concrete is exposed to moisture, chlorides, and carbonation, the inclusion of stainless steel fibers can significantly enhance the durability and longevity of the concrete. Corrosion resistance is a key feature of stainless steel fibers, especially in underground structures where concrete may be exposed to moisture and chloride ions that can lead to reinforcement corrosion. By adding stainless steel fibers to the concrete, an extra layer of protection against corrosion is provided, extending the structure's service life. Additionally, the use of stainless steel fibers enhances the structural performance of the concrete by acting as reinforcement. This reinforcement improves the concrete's tensile strength and ductility, preventing cracking and enhancing the overall structural integrity of the parking structure or garage. To sum up, melt extract stainless steel fiber is a beneficial addition to concrete in underground parking structures or garages. Its corrosion resistance and ability to improve the mechanical properties of the concrete make it a suitable choice for enhancing durability and structural performance in these types of structures.
Q:What is the effect of melt extract stainless steel fiber on the bond strength of concrete?
The effect of melt extract stainless steel fiber on the bond strength of concrete is significant. When added to concrete mixtures, stainless steel fibers enhance the bond between the concrete and other materials, improving the overall strength and durability of the structure. Stainless steel fibers act as reinforcement within the concrete matrix, enhancing its tensile strength and preventing crack propagation. These fibers create a three-dimensional network that helps distribute the load and improve the bond between the concrete and other components, such as aggregates or reinforcement bars. The unique properties of melt extract stainless steel fibers, including their high tensile strength, corrosion resistance, and ductility, make them an excellent choice for enhancing the bond strength of concrete. The fibers effectively bridge the gaps between cracks or weak spots in the concrete, preventing further deterioration and increasing the overall structural integrity. In addition to improving bond strength, stainless steel fibers also enhance the concrete's resistance to impact, fatigue, and thermal stresses. This makes them particularly suitable for applications where high-performance concrete is required, such as industrial floors, tunnels, bridges, and pavements. Furthermore, the addition of stainless steel fibers can also improve the concrete's resistance to shrinkage and plastic cracking, reducing the need for control joints and minimizing maintenance requirements. Overall, the incorporation of melt extract stainless steel fiber in concrete mixtures significantly improves the bond strength of the material. This results in a more durable and reliable concrete structure, with enhanced resistance to cracking, impact, and other external forces.

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