• Melt Extract Stainless Steel Fiber Wavy for Construction with End Hooked System 1
  • Melt Extract Stainless Steel Fiber Wavy for Construction with End Hooked System 2
  • Melt Extract Stainless Steel Fiber Wavy for Construction with End Hooked System 3
  • Melt Extract Stainless Steel Fiber Wavy for Construction with End Hooked System 4
Melt Extract Stainless Steel Fiber Wavy for Construction with End Hooked

Melt Extract Stainless Steel Fiber Wavy for Construction with End Hooked

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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

 

1.Diameter:0.5mm-1.0mm

2.Length:   25mm-60mm

3.Material: low carbon steel wire

4.Feature:  excellent tensile,high tenacity,against cracking,impact and fatigue

5.Uses:     high way,tunnel,building,airport road serface and so on .


Specifications

Length :20-60mm

Diameter :0.5-1.2

Tensile strength:600Mpa-900Mpa

Appearance :clear and bright steel wire

Style :corrugated round fiber

Secondary dispersion: a water-soluble glue starts to dissolve, in a row of steel fibers in a dispersion premise, dispersed again in every corner of the monofilament fiber, showing a perspective view in the concrete of the fiber web, which play the role of an overall reinforcement  

Picture

 Steel Fiber Wavy for Construction with end Hooked

 

 any type steel fiber

Steel Fiber Wavy for Construction with end Hooked

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Steel Fiber Wavy for Construction with end Hooked



FAQ

steel fiber for concrete reinforcement glued steelfiber in a row>1200Mpa

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 the construction of tunnels?
Yes, melt extract stainless steel fiber can be used in the construction of tunnels. It is commonly used as a reinforcement material in tunnel construction due to its high tensile strength, durability, and resistance to corrosion. The fibers are added to the concrete mix to enhance its structural integrity, prevent cracking, and increase overall durability of the tunnel.
Q: What is the effect of melt extract stainless steel fiber on the compressive strength of concrete?
Concrete can significantly benefit from the use of melt extract stainless steel fiber, as it enhances its compressive strength. By adding stainless steel fibers to the concrete mixture, the mechanical properties of the concrete are improved and its performance under compressive loading is enhanced. The incorporation of stainless steel fibers in concrete serves to increase its tensile strength, ductility, and toughness. These fibers act as reinforcement within the concrete matrix, providing additional strength and preventing crack propagation. When subjected to compressive forces, the fibers distribute stress more evenly throughout the concrete, resulting in a reduction in stress concentration points and an overall improvement in strength. Moreover, the presence of melt extract stainless steel fibers in concrete can enhance its resistance to temperature variations, shrinkage, and cracking. This is especially advantageous in areas where the concrete is exposed to extreme weather conditions or undergoes thermal cycling. Furthermore, the use of stainless steel fibers improves the durability and longevity of concrete structures. By inhibiting crack growth and propagation, the fibers contribute to a more durable and long-lasting concrete. Nevertheless, it is important to consider that the effect of melt extract stainless steel fibers on the compressive strength of concrete may vary depending on factors such as fiber content, aspect ratio, and distribution within the concrete matrix. Therefore, it is crucial to carefully assess these factors and conduct proper testing to determine the optimal fiber dosage and distribution for achieving the desired enhancement in compressive strength. In conclusion, melt extract stainless steel fibers positively impact the compressive strength of concrete by improving its mechanical properties, enhancing its resistance to cracking, and increasing its durability.
Q: Can melt extract stainless steel fiber be used in tunnel linings for underground mining?
Melt extract stainless steel fiber is indeed applicable for tunnel linings in underground mining. Renowned for their exceptional tensile strength, resistance to corrosion, and durability, stainless steel fibers prove to be fitting for demanding tasks like mining tunnels. By reinforcing the lining, these fibers effectively enhance its structural integrity, preventing any cracks or fractures. Furthermore, the stainless steel material's resistance to chemical reactions, moisture, and temperature fluctuations commonly found in underground mining settings solidifies it as a dependable choice for tunnel linings. With the ability to withstand diverse challenges and ensure long-term stability, stainless steel fibers are a reliable option.
Q: What is the effect of melt extract stainless steel fiber on the drying time of concrete?
The primary impact of melt extract stainless steel fiber on concrete drying time is reduction. By incorporating stainless steel fibers into concrete mixes, the overall strength and durability of the concrete are improved. These fibers serve as reinforcement, providing additional tensile strength and crack resistance to the concrete. In terms of drying time, the inclusion of melt extract stainless steel fibers can significantly expedite the concrete's drying and curing process. This is due to the fibers' ability to manage and decrease shrinkage during the drying phase. Shrinkage is a common concern in concrete, as the material tends to contract as it dries. This contraction can result in cracks and other types of damage. However, the utilization of stainless steel fibers aids in minimizing shrinkage and controlling cracking, which ultimately reduces drying time. Furthermore, the presence of these fibers enhances the concrete's overall performance by increasing its resistance to various factors such as temperature fluctuations, chemical attacks, and impact loads. This improved durability further contributes to a faster drying time, as the concrete becomes less prone to damage or deterioration. To summarize, incorporating melt extract stainless steel fiber into concrete can effectively decrease drying time by managing shrinkage and enhancing the material's strength and durability. As a result, the construction process becomes more efficient and reliable, reducing the time required for concrete to dry and cure.
Q: Can melt extract stainless steel fiber be used in retaining walls?
Yes, melt extract stainless steel fiber can be used in retaining walls. Stainless steel fiber is commonly used as a reinforcement material in various construction applications, including retaining walls. It offers excellent tensile strength, corrosion resistance, and durability, making it suitable for withstanding the pressures and forces that retaining walls face. The addition of stainless steel fiber to the concrete mix can improve the overall structural integrity of the retaining wall, reducing the risk of cracking and improving its long-term performance. Therefore, melt extract stainless steel fiber is a suitable option for reinforcing retaining walls.
Q: What is the impact of melt extract stainless steel fiber on the thermal properties of concrete?
The thermal properties of concrete are greatly impacted by the presence of melt extract stainless steel fiber. To enhance the concrete's thermal conductivity and heat resistance, stainless steel fibers are incorporated into the concrete mixture. These fibers serve as conduits for heat within the concrete structure, enabling better heat transfer throughout the entire building. By adding stainless steel fibers, the thermal conductivity of concrete is increased, resulting in more efficient heat transfer within the material. This is particularly advantageous in situations where effective heat dissipation is crucial, such as in the construction of high-temperature industrial facilities or fire-resistant structures. Additionally, the inclusion of stainless steel fibers helps mitigate the risk of thermal cracking in concrete. When exposed to high temperatures, concrete undergoes thermal expansion, which can lead to the formation of cracks. However, by incorporating stainless steel fibers, the heat is distributed more evenly throughout the concrete, reducing the likelihood of localized thermal stresses and consequent cracking. Moreover, stainless steel fibers contribute to enhancing the fire resistance of concrete. By reinforcing the concrete and preventing the propagation of cracks and spalling caused by thermal shock during a fire, the addition of these fibers improves the overall fire rating of concrete structures. In conclusion, the incorporation of melt extract stainless steel fibers in concrete has a significant impact on its thermal properties. It enhances thermal conductivity, reduces the risk of thermal cracking, and increases fire resistance. These advantages make stainless steel fiber-reinforced concrete the preferred choice for applications where thermal performance and resistance to high temperatures are of utmost importance.
Q: What is the effect of melt extract stainless steel fiber on the corrosion resistance of concrete?
By adding melt extract stainless steel fiber to concrete, its corrosion resistance can be significantly enhanced. Stainless steel fibers are produced from a corrosion-resistant alloy that typically contains chromium, nickel, and other elements. When integrated into concrete, these fibers create a three-dimensional reinforcement system that helps mitigate the effects of corrosion. Concrete is vulnerable to corrosion when exposed to harsh conditions, such as environments rich in chloride or acidity. These corrosive substances can permeate the concrete and attack the reinforcing steel, leading to structural degradation and decreased service life. However, the presence of stainless steel fibers within the concrete matrix acts as a barrier, preventing the penetration of corrosive agents and reducing the risk of corrosion. The excellent corrosion resistance of stainless steel fibers ensures their long-lasting effectiveness. Unlike traditional steel reinforcements, stainless steel fibers do not easily corrode, even under aggressive conditions. This characteristic helps maintain the integrity of the concrete, offering long-term durability and reducing the necessity for expensive repairs or replacements. Additionally, the inclusion of stainless steel fibers also enhances the mechanical properties of concrete, such as its tensile strength and crack resistance. This additional reinforcement aids in preventing the formation and propagation of cracks, which can serve as pathways for corrosive agents to reach the reinforcing steel. To summarize, integrating melt extract stainless steel fiber into concrete enhances its corrosion resistance by serving as a barrier against corrosive agents and improving the overall durability of the structure. This results in an extended service life and decreased maintenance costs for concrete structures exposed to corrosive environments.
Q: Can melt extract stainless steel fiber be used in pipeline construction?
Yes, melt extract stainless steel fiber can be used in pipeline construction. It is commonly used to enhance the strength, durability, and resistance to corrosion in pipelines, making them more reliable and long-lasting.
Q: How does the addition of melt extract stainless steel fiber affect the fresh concrete properties?
The addition of melt extract stainless steel fiber to fresh concrete can significantly enhance its properties. It improves the concrete's toughness, durability, and resistance against cracking, impact, and abrasion. The fibers act as reinforcement, dispersing stress throughout the concrete matrix, resulting in improved structural performance. Additionally, the stainless steel fibers can also improve the concrete's resistance to corrosion, making it suitable for various applications in harsh environments.
Q: How does melt extract stainless steel fiber affect the permeability of concrete to chloride ions?
Melt extract stainless steel fiber can significantly reduce the permeability of concrete to chloride ions. The addition of this type of fiber enhances the concrete's ability to resist the penetration of chloride ions, which are responsible for causing corrosion in reinforced concrete structures. The fiber acts as a physical barrier, preventing the movement of chloride ions through the concrete matrix. This ultimately helps to increase the durability and lifespan of concrete structures in chloride-rich environments.

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