• Melt Extract Stainless Steel Fiber Reinforced Construction and Concrete System 1
  • Melt Extract Stainless Steel Fiber Reinforced Construction and Concrete System 2
Melt Extract Stainless Steel Fiber Reinforced Construction and Concrete

Melt Extract Stainless Steel Fiber Reinforced Construction and Concrete

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
5000 kg
Supply Capability:
250000 kg/month

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Quick Details

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

  • Model Number: GLUED, glued steel fiber

  • Material: Steel

  • type: steel fiber for concrete reinforcement

  • material: steel wire

  • shape: glued together in a row

  • appearance: clear and bright

Product features

glued steel fiber together in a row ,is used with cement for construction

 

oncrete steel fiber is specifically to enhance concrete in its hardened state ,the uniform distribution of steel fiber throughout the concrete greatly improve concrete bonding and tensile strength ,additionally it provides exceptional load stability and durability ,as reliable and efficient concrete reinforcement material

it is widely ued in buildings ,bridges ,thin roo engineering ,highway etc.

 

Specifications

length :20-60mm

diameter :0.5MM-1.2MM

tensile strengh:>1100Mpa

 

diameterlengthtensile strength
0.5mm35mm1100Mpa
0.7560mm1100Mpa
0.960m1100Mpa

 

Picture

 Steel fiber glued for construction and concrete

 Adhesion into a row

 

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 improve the resistance of concrete to impact loads?
Yes, melt extract stainless steel fiber can improve the resistance of concrete to impact loads. Stainless steel fibers are known for their high tensile strength, durability, and ability to enhance the mechanical properties of concrete. When added to concrete mixtures, stainless steel fibers can help to distribute the applied load more evenly and prevent crack propagation, which in turn improves the resistance of concrete to impact loads. The fibers act as reinforcement within the concrete matrix, effectively increasing its resistance to impact and enhancing its overall toughness. Additionally, melt extract stainless steel fibers have a high melting point, which allows them to maintain their structural integrity even under extreme temperatures or rapid heating. This further contributes to the improved impact resistance of concrete. Overall, the addition of melt extract stainless steel fibers can significantly enhance the ability of concrete to withstand impact loads and improve its overall performance in applications where impact resistance is critical, such as industrial floors, pavements, and high-traffic areas.
Q: Can melt extract stainless steel fiber be used in high-density concrete?
Melt extract stainless steel fiber is indeed applicable in high-density concrete. It is a common practice to incorporate stainless steel fibers into concrete mixes to enhance the overall strength, durability, and crack resistance of the material. In particular, high-density concrete, which is typically utilized in scenarios where a denser and sturdier substance is required, can reap the benefits of incorporating stainless steel fibers. These fibers work to reinforce the concrete and bolster its capacity to withstand significant loads, impacts, and other forms of stress. Furthermore, stainless steel fibers possess remarkable corrosion resistance properties, rendering them suitable for use in high-density concrete that may be exposed to harsh environmental conditions. All in all, utilizing melt extract stainless steel fibers in high-density concrete yields a more robust and enduring material that is better suited for demanding applications.
Q: How does melt extract stainless steel fiber improve the resistance to fatigue in shotcrete?
The resistance to fatigue in shotcrete is enhanced by melt extract stainless steel fiber, which adds extra reinforcement to the concrete matrix. Shotcrete, commonly used in construction projects that require high strength and durability, is prone to fatigue and cracking due to repeated loading and cyclic stresses. By including melt extract stainless steel fibers in the shotcrete mix, the overall fatigue resistance of the material is significantly improved. These fibers act as discrete reinforcement, distributing the applied stresses more evenly throughout the concrete. This helps prevent the formation and spreading of cracks, thereby enhancing the overall durability and lifespan of the shotcrete structure. The effectiveness of melt extract stainless steel fibers in enhancing fatigue resistance is due to their unique properties. These fibers are made from high-quality stainless steel, which possesses excellent tensile strength and corrosion resistance. Additionally, the manufacturing process ensures that the fibers have a smooth surface and uniform geometry, allowing for better bonding with the concrete matrix. Moreover, the addition of melt extract stainless steel fibers can also enhance the flexural strength of shotcrete, making it more resistant to bending and flexing stresses. This is particularly crucial in applications such as tunnel linings, underground structures, and retaining walls, where shotcrete is subjected to significant cyclic loading. To summarize, melt extract stainless steel fiber improves the resistance to fatigue in shotcrete by providing additional reinforcement, distributing stresses more evenly, and reducing the formation and propagation of cracks. As a result, shotcrete structures become more durable and long-lasting, capable of withstanding cyclic loading and maintaining their structural integrity over time.
Q: Can melt extract stainless steel fiber be used in marine structures for shotcrete?
Indeed, melt extract stainless steel fiber finds its application in marine structures for shotcrete. Renowned for their exceptional resistance against corrosion, stainless steel fibers prove to be a fitting choice for employment in marine settings. Shotcrete, a technique involving the pneumatic application of concrete, can reap the advantages of incorporating stainless steel fibers, as they enhance the concrete's longevity and robustness. By mitigating cracking and bolstering the shotcrete's structural integrity as a whole, these fibers render it a dependable option for marine structures confronted by demanding elements like saltwater and waves.
Q: How does melt extract stainless steel fiber improve the impact resistance of airport pavements?
The impact resistance of airport pavements can be greatly enhanced with the use of melt extract stainless steel fiber. This material is commonly employed as reinforcement in concrete to enhance its mechanical properties and increase its durability. By incorporating melt extract stainless steel fiber into airport pavements, their capacity to withstand impact forces is significantly improved. When aircraft land or take off, they exert immense pressure and impact on the pavement surface. Without adequate reinforcement, this can result in cracking, spalling, and other forms of damage. The stainless steel fiber functions as reinforcement by dispersing the stress caused by impact forces over a wider area. This helps to distribute the load and prevent concentrated pressure points, which are more susceptible to damage. Consequently, the airport pavements become more resistant to cracking and other forms of structural failure. Additionally, melt extract stainless steel fiber also enhances the overall toughness of the pavement. It effectively impedes the propagation of cracks, limiting their length and depth. This significantly reduces the risk of extensive damage and prolongs the lifespan of the pavement. Moreover, the stainless steel fiber provides increased resistance to fatigue. Airport pavements undergo repetitive loading and unloading cycles that can lead to fatigue failure over time. The inclusion of stainless steel fiber enhances the pavement's ability to withstand these cyclic loads, diminishing the likelihood of fatigue cracks and enhancing its overall resilience. In conclusion, melt extract stainless steel fiber is a valuable material for augmenting the impact resistance of airport pavements. Its incorporation into concrete reinforcement greatly enhances the pavement's ability to endure the pressure and impact forces generated by aircraft during landing and takeoff. This reinforcement disperses stress, impedes crack propagation, improves toughness, and enhances resistance to fatigue, ultimately resulting in a longer-lasting and more durable pavement.
Q: What is the recommended mix design for concrete containing melt extract stainless steel fiber?
The recommended mix design for concrete containing melt extract stainless steel fiber typically involves using a higher dosage of fibers compared to traditional concrete mix designs. This is because stainless steel fibers have a higher aspect ratio and better tensile strength, which allows for better reinforcement and crack resistance in the concrete. The fiber dosage can vary depending on the specific application and desired performance characteristics of the concrete. However, a general guideline is to use between 1% to 2% by volume of stainless steel fibers. This dosage range has been found to provide optimal reinforcement and improve the overall durability of the concrete. In addition to the fiber dosage, it is important to consider other factors such as the water-cement ratio, aggregate gradation, and admixture selection. The water-cement ratio should be carefully controlled to ensure the mix is workable and has adequate strength. The aggregate gradation should be optimized to provide a dense and strong concrete matrix. Admixtures can also be used to improve the workability, pumpability, and setting time of the concrete. It is recommended to consult with a qualified engineer or concrete supplier to determine the specific mix design parameters for a project involving melt extract stainless steel fiber. Overall, the recommended mix design for concrete containing melt extract stainless steel fiber involves a higher fiber dosage, careful control of water-cement ratio, optimization of aggregate gradation, and appropriate use of admixtures. This will help ensure a high-performance concrete with improved reinforcement and durability properties.
Q: What is the effect of melt extract stainless steel fiber on the modulus of porosity of concrete?
By incorporating melt extract stainless steel fibers into the concrete mix, the modulus of porosity is significantly impacted. The inclusion of these stainless steel fibers helps decrease the overall porosity of the material, thanks to their exceptional attributes like high tensile strength and resistance to corrosion. The inclusion of melt extract stainless steel fibers serves to enhance the strength and durability of the concrete material by filling in gaps and reducing porosity. As a result, the concrete matrix becomes denser, leading to a decreased modulus of porosity. This reduction in porosity elevates the concrete's ability to resist water absorption, chemical attacks, and freeze-thaw cycles. Moreover, the stainless steel fibers also augment the concrete's ability to resist cracks and increase its ductility. Acting as reinforcement, these fibers offer additional strength and hinder the propagation of cracks. Consequently, the modulus of elasticity is improved, which measures the material's capacity to deform under stress and regain its original shape. All in all, the incorporation of melt extract stainless steel fibers into concrete yields positive outcomes for the modulus of porosity. It not only enhances the durability, strength, and crack resistance of the concrete but also makes it a preferable choice for a range of construction applications that demand high-performance and long-lasting concrete.
Q: How does melt extract stainless steel fiber improve the toughness of high-performance concrete?
The toughness of high-performance concrete is improved by melt extract stainless steel fiber through various mechanisms. Firstly, the crack resistance of the concrete is enhanced by the addition of stainless steel fibers. These fibers act as reinforcement when the concrete is under stress or loading, preventing cracks from spreading. As a result, the material becomes more durable and resilient, capable of withstanding higher levels of stress without significant damage. Secondly, the post-crack behavior of the concrete is also improved by the stainless steel fibers. Once cracks begin to form, the fibers evenly distribute the stress throughout the material, effectively dissipating energy and preventing further crack growth. This ensures that the concrete maintains its structural integrity even after cracks have formed, thereby enhancing its overall toughness. Furthermore, the inclusion of melt extract stainless steel fibers can enhance the flexural strength of high-performance concrete. These fibers reinforce the matrix, increasing the tensile strength and preventing excessive deflection or failure under bending loads. This is particularly important in applications where high-performance concrete is exposed to dynamic or impact loading. Moreover, the stainless steel fibers also improve the resistance of high-performance concrete to shrinkage and thermal cracking. Due to their high melting point and low coefficient of thermal expansion, these fibers provide the concrete with enhanced dimensional stability, reducing the risk of cracking caused by temperature variations or drying shrinkage. In conclusion, melt extract stainless steel fiber enhances the toughness of high-performance concrete by improving crack resistance, post-crack behavior, flexural strength, and resistance to shrinkage and thermal cracking. These properties make high-performance concrete with stainless steel fibers an ideal choice for structures that require durability, resistance to cracking, and the ability to withstand high levels of stress and loading.
Q: Can melt extract stainless steel fiber be used in precast concrete applications?
Yes, melt extract stainless steel fiber can be used in precast concrete applications. These fibers are commonly added to concrete mixes to enhance their mechanical properties and improve structural integrity. The stainless steel fibers provide reinforcement and increase the tensile strength of the concrete, preventing cracking and enhancing its durability. Additionally, stainless steel fibers are corrosion-resistant, making them suitable for use in precast concrete applications where exposure to moisture or chemicals is a concern. Overall, using melt extract stainless steel fiber in precast concrete can improve the performance and longevity of the structures.
Q: The heavy steel fiber feifanshi supeiflat floor for what?
Feifanshi steel fiber heavy-duty supeiflat floor walk forklift high level rack of logistics distribution center

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