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Studies on the static behaviors of unbonded prestressed steel reinforced low- strength concrete rectangular frame beams

机译:无粘结预应力钢骨低强度混凝土矩形框架梁的静力性能研究

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In this paper, four one-fifth-scale unbonded prestressed steel reinforced concrete (UPSRC) frame beam specimens were tested under vertical monotonic loading. The parameters including the amount of steel shape, ratio of rebar and the dimension of column sections were studied. The failure mode, load-deflection behavior, crack distribution, strain of rebar and steel shape were investigated. Furtherly, the tendon stress increment, ductility and post-peak load-carrying capacity of UPSRC frame beams were discussed and an analysis method was established to predict the maximum and post-peak load-carrying capacity. Test results showed that the UPSRC frame beams showed a typical beam hinge failure mode and still had good bearing capacity after the maximum load-carrying capacity. The unbonded tendons could well control the development of cracks and greatly improve the deformation restoring capacity of SRC beams. Furthermore, the value of ultimate stress increment in tendons of UPSRC members was greatly underestimated by the methods in generally design codes. By increasing the depth of web or enlarge the dimension of columns would improve the ductility of UPSRC members. Finally, the analysis method provided in the paper accurately evaluate the maximum load-carrying capacity and a little overestimate the post-peak load-carrying capacity.
机译:本文在垂直单调荷载下测试了四个五分之一比例的无粘结预应力钢筋混凝土(UPSRC)框架梁标本。研究了钢形量,钢筋配比和柱截面尺寸等参数。研究了破坏模式,载荷-挠度行为,裂纹分布,钢筋应变和钢形。此外,还讨论了UPSCRC框架梁的腱应力增量,延性和峰后承载能力,并建立了一种预测最大和峰后承载能力的分析方法。测试结果表明,UPSCRC框架梁表现出典型的梁铰链破坏模式,最大承载能力后仍具有良好的承载能力。无粘结的钢筋束可以很好地控制裂纹的发展,并大大提高了SRC梁的变形恢复能力。此外,一般设计规范中的方法大大低估了UPSRC构件中钢筋的极限应力增量值。通过增加腹板的深度或增大圆柱的尺寸,可以提高UPSRC构件的延展性。最后,本文提供的分析方法可以准确地评估最大承载能力,而过高估计了峰值后的承载能力。

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