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Effect of Sustained Load Level on Long-Term Deflections in GFRP and Steel-Reinforced Concrete Beams

机译:持续载荷水平对GFRP和钢筋混凝土梁长期挠度的影响

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ACI 440.1R [1] applies an adjustment factor of 0.6 to the long-term deflection multiplier for steel-reinforced beams to reflect the experimentally observed differences between FRP and steel-reinforced members. The objective of this study is to evaluate the effect of the level of sustained load on the long-term multiplier in GFRP-reinforced beams. Five beams, including four GFRP-reinforced beams and one steel-reinforced control beam, were tested in four-point bending on a simply supported span with different temporary service loads (M_a = 1.80 M_(cr)-2.36 M_(cr)) and sustained load (M_(sus) = 0.58 M_a-0.85 M_a) levels. Mid-span deflections were recorded twice weekly over a period of 100 days, and the long-term deflection multiplier, λ_Δ, was plotted vs. time. The results indicate that the temporary service load level, rather than the sustained load level, affects the long-term deflection multiplier with larger temporary service loads causing a smaller long-term multiplier. The current 0.6 multiplier on the time factor for FRP-reinforced beams also appears to underestimate long-term deflections. In addition, the multiplier to capture the effects of GFRP vs. steel-reinforcement may not be a constant value.
机译:ACI 440.1R [1]将0.6的调节因子应用于用于钢筋梁的长期偏转倍数,以反映实验观察到FRP和钢筋构件之间的差异。本研究的目的是评估GFRP加强梁中长期乘数的持续负载水平的影响。在简单地支撑跨度的四点弯曲中,在简单的临时服务负载(M_A = 1.80M_(CR)-2.36M_(CR))上以四点弯曲测试五个光束,包括四个GFRP加强梁和一个钢筋控制梁。持续负载(M_(SUS)= 0.58 m_-0.85 m_a)水平。中跨偏转在100天的时间内每周记录两次,并且长期偏转乘法器λ_Δ被绘制与时间。结果表明,临时服务负载水平,而不是持续的负载级别,影响具有更大临时服务负载的长期偏转乘法器,导致较小的长期乘法器。 FRP加强梁的时因子上的电流0.6乘法器也似乎低估了长期偏转。另外,乘法器捕获GFRP与钢筋的效果可能不是恒定值。

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