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They observed that the hybrid FRP bar with a core of carbon fiber showed an improvement in the modulus of elasticity.
This study introduces a glass fiber reinforced polymer (GFRP -steel hybrid bar with a core of a deformed steel bar (steel core).
Among all the steel core having a diameter of 19.1 mm, the bar with a core diameter of 9.53 mm exhibited the highest tangent modulus of elasticity.
In this study, we developed the GFRP hybrid bar with a core of deformed steel bar to enhance the modulus of elasticity and corrosion resistance.
Keeping the difficulty in adjusting the sectional design according to the standard diameter in mind, the sectional design of the GFRP hybrid bar with a core of D10 steel core was considered to be the most appropriate design.
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Every movement starts with a core group.
Start with a core philosophy.
For the configuration of the all same core section of D10 deformed steel bar, the GFRP hybrid bar with a D19 GFRP outer surface showed a tensile strength higher than that of the GFRP hybrid bar with a D13 GFRP outer surface.
THE BAR A long, shiny wood bar with a raw bar at one end.
In order to compare the enhanced tensile strength of the GFRP hybrid bars with the steel core, the tensile test was conducted for the steel core of D10, D13, and D16, respectively.
Dealing with rejection is a core skill.
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Justyna Jupowicz-Kozak
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