B500A/B500B/B500C Rebar

B500A grade steel is usually used for steel mesh products while B500B grade steel is used for steel bars. B500C steel is rarely required, and it is always worthwhile for structural engineers to check whether B500B grade steel can be used instead of B500C, because B500C usually has a significant cost overhead.

Rebar is a common kind of steel in construction engineering, which is mainly used to strengthen concrete structures and improve the bearing capacity and seismic performance of buildings. The yield strength of B500 rebar reaches 500MPa, with high tensile strength and compressive strength. While meeting the strength requirements, B500 steel bar has good ductility and toughness, which can ensure that the building has good plastic deformation and energy dissipation capacity during the stress process. Lastly, compared with traditional steel bars, the high strength of B500 rebars allows buildings to reduce the use of steel bars, reduce construction costs, and reduce environmental impact.

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B500A/B500B/B500C Rebar

B500A/B500B/B500C Rebar Description

Rebar is a common kind of steel in construction engineering, which is mainly used to strengthen concrete structures and improve the bearing capacity and seismic performance of buildings. The yield strength of B500 rebar reaches 500MPa, with high tensile strength and compressive strength. While meeting the strength requirements, B500 steel bar has good ductility and toughness, which can ensure that the building has good plastic deformation and energy dissipation capacity during the stress process. Lastly, compared with traditional steel bars, the high strength of B500 rebars allows buildings to reduce the use of steel bars, reduce construction costs, and reduce environmental impact.

Type
B500A
B500B
B500C
Area
Smooth, Pitted, Ribbed
Dents, Ribs
Ribbed
Delivery Form
Coil, Bar, Spot Welding Steel Mesh, Lattice Beam
Coil, Bar, Spot Welding Steel Mesh
Nominal Center Linemm
4-16
6-50
6-50
Min. Flow Rate/Yield Limit Re(Mpa)
500
500
500
Re,Actual value/Re,Nominal value<1.25
Min.Rm/Re Ratio
1.05a
1.05
1.15c;<1.35
Min. Maximum Load Elongation Agt%
3.0a,b
5.0b
7.5B, c
Min. Fatigue Strength 2σad(Mpa)
100 d≤ 28mm:175
d>28mm:145
d≤ 28mm:175
d>28mm:145
Tolerance Nominal Centerline %
/-4.5
/-4.5
/-4.5
Chemical Composition %
C<0.22
Ceq<0.50
C<0.22
Ceq<0.50
C<0.22
Ceq<0.50

Scope of Application

Widely used in houses, bridges, roads, especially railways and other civil engineering.