• Wear-Resistant Cold Drawn Wire End Hook Steel Fiber Bridge Expansion Joint Water Conservancy Project Concrete Fiber
  • Wear-Resistant Cold Drawn Wire End Hook Steel Fiber Bridge Expansion Joint Water Conservancy Project Concrete Fiber
  • Wear-Resistant Cold Drawn Wire End Hook Steel Fiber Bridge Expansion Joint Water Conservancy Project Concrete Fiber
  • Wear-Resistant Cold Drawn Wire End Hook Steel Fiber Bridge Expansion Joint Water Conservancy Project Concrete Fiber
  • Wear-Resistant Cold Drawn Wire End Hook Steel Fiber Bridge Expansion Joint Water Conservancy Project Concrete Fiber
  • Wear-Resistant Cold Drawn Wire End Hook Steel Fiber Bridge Expansion Joint Water Conservancy Project Concrete Fiber

Wear-Resistant Cold Drawn Wire End Hook Steel Fiber Bridge Expansion Joint Water Conservancy Project Concrete Fiber

Certification: ISO, CE
Surface: Smooth
Technique: Cold Drawn and Cutting
Application: Manufacturing, Construction
Alloy or Not: Non-alloy
Standard: GB, ASTM, AISI
Customization:
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Basic Info.

Concrete Reinfoced
Low Carbon Steel Fibers
Certificate
ISO 9001
Advantages
Excellent Tensile, High Tenacity,Cost Saving
MPa
1150
Name
Steel Fiber
Shape
Hooked End
Transport Package
Bags with Wooden Pallets
Specification
0.5/0.75/0.8/0.9/1.0 mm
Trademark
Xuanhua
Origin
Zhengzhou
HS Code
7326201000
Production Capacity
1500tons/Month

Product Description

Wear-Resistant Cold Drawn Wire End Hook Steel Fiber Bridge Expansion Joint Water Conservancy Project concrete fiber



End Hooked Steel fiber for Concrete Reinforcement
1. High tensile strength 2. Length 6-60mm 3. Diameter 0.5-1.0mm

Specifications
Steel fiber for Concrete Reinforcement
1. High tensile strength
2. Length 6-60mm
3. Diameter 0.2-1.0mm
4. ISO9001, CE, TUV, SGS

Steel fiber for Concrete Reinforcement
1. Steel fiber types includes,
(A) Hooked ends steel fiber
(B) glued steel fiber in a row
(C)copper plated steel fiber
(D) wavy steel fiber
(E) milling steel fiber
(F) shearing fiber

2. Application of steel fiber:
A. Tunnel pre-treatment(primary support)
B. Tunnel forming(permanent lining)
C. Slope stabilization
D. Ditch excavation support
E. Industrial floor
F. Precast concrete element
G. Concrete restoration
H. High performance concrete

3. Technical advantages of 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

4. Economic benefits of steel fiber:
A. Replace of rebar mesh
B. Reduce concrete volume
C. Save construction time and cost
D. Reduce excavation volume
E. Available for joint less floor.
steel fiber Data
Dia(mm) Length(mm) Tensile Strength(Mpa)
0.5 30,35 1150-1200
0.62 30,35,50,60 1150-1200
0.75 30,50,60 1150-1200
0.9 50,60 1050
1.0 50,60 1050

Production technology of cold drawn steel fiber
The cold-drawn steel wire with a diameter of 0.4 ~ 0.8mm is cut into short fibers with a cutter, punch or rotation according to the specified length. The tensile strength of steel fiber made of cold-drawn steel wire can reach 1000-2000MPa. However, its surface is smooth and its bonding strength with concrete or cement mortar matrix is poor. In order to enhance the adhesion strength of steel fiber and matrix, the shape of steel fiber can usually be changed, that is, the method of producing special-shaped steel fiber can be solved.
The commonly used methods are: (1) pressing edge method. Before cutting the steel wire, the pinch roller of the feed steel wire is used to press the prismatic concave on the steel wire and then cut. (2) Waveform method. Before cutting the wire, use the pinch roller to press the waveform of the wire before cutting. (3) Bending hook method. Before cutting the wire, press out the hook with the pinch roller of the feed wire at an equal distance and then cut off.
The end hook type steel fiber is cut by thin steel wire of a certain strength and diameter, the middle is straight, and the two ends are bent into a hook shape; The appearance is smooth and uniform, and it is the most common kind of steel fiber.
hooked end steel fiber concrete reinforcement steel  fibers 
Reinforced Concrete steel fiber for construction
Material
Q195/Q235/Low carbon steel/Copper coated/High carbon steel
Color
Metallic or Copper
Standard
ASTM 820A; YB/T151-1999; JG/T3064-1999
Grade
Q195/Q235/Stainless Steel/Low carbon steel/Copper coated/Galvanised/High carbon steel.
Shape
Hooked Ends; Waved Low Carbon Steel Fiber; Flat End Fibres; Crimped Steel Fibers; Continuous Deformed Steel Wire Fiber; Courrugrated/Milling Fibers etc.
Advantage
Result in more homogeneous mix in concrete
Flexural strain capacity is enhanced
Add ductility to concrete
Control cracks
Joint stability
Narrow joint width
Shear load transfer
Fatigue and impact resistance
Post crack ductility
Reduce material consumption and save cost - on average a Steel Fibre slab will overall cost between 10-15% less than an equivalent mesh slab.
Longer service life
Quick & Easy Application: Steel Fibres can be added at the concrete plant or at the job site directly in to the back of the truck mixer. You can then pour pre-reinforced concrete.
Suitable for
Shotcreting of tunnels
Slope Stabilizations
Mine Roof Support
Pre Cast for Tunnel Linings
Foundation Slabs
Roads
Bridges
Runwas
Taxiways
Factory Flooring
Pre Cast walls
Concrete Pipes
Manhole Covers
Wear-Resistant Cold Drawn Wire End Hook Steel Fiber Bridge Expansion Joint Water Conservancy Project Concrete FiberWear-Resistant Cold Drawn Wire End Hook Steel Fiber Bridge Expansion Joint Water Conservancy Project Concrete FiberWear-Resistant Cold Drawn Wire End Hook Steel Fiber Bridge Expansion Joint Water Conservancy Project Concrete Fiber

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Gold Member Since 2023

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Manufacturer/Factory & Trading Company
Number of Employees
18
Year of Establishment
2011-08-22