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首页> 外文期刊>KSCE journal of civil engineering >Simplified Strength Design Method for Allowable Compressive Stresses in Pretensioned Concrete Members at Transfer
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Simplified Strength Design Method for Allowable Compressive Stresses in Pretensioned Concrete Members at Transfer

机译:预应力混凝土构件转移时容许压应力的简化强度设计方法

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The allowable compressive stress of the pretensioned precast concrete members at transfer is the most important factor for determining its bed staying time at the Precast Concrete (PC) factory, and it consequently has a large influence on the productivity of pretensioned PC members. The current design code provisions have specified the allowable compressive stresses of concrete at prestress transfer in an empirical manner, and it was simply expressed only as the function of concrete compressive strength at the time of transfer. In contrast, the Strength Design Method (SDM) can theoretically determine the allowable compressive stresses of pretensioned concrete members considering the effect of influential factors, such as eccentricity ratio of tendons, sectional types, level of prestressing forces, and size of concrete section. In this study, a SDM based approach was proposed to simplify the calculation process of the SDM for the each type of concrete cross-section. In addition, four rectangular pretensioned concrete specimens were fabricated and tested to investigate their allowable prestress. It appeared that ACI318-11 and EC2-02 code models provided unsafe estimations on the allowable compressive stress of pretensioned concrete members with the low eccentricity ratios but excessively conservative results for those with high eccentricity ratios. The SDM and the simplified SDM proposed in this study showed reasonable accuracy and safety margin on the allowable compressive stresses of the pretensoined concrete specimens at prestress transfer.
机译:预应力预制混凝土构件在转移时的允许压应力是确定其在预制混凝土(PC)工厂的床停留时间的最重要因素,因此,对预拉伸PC构件的生产率有很大影响。当前的设计规范规定以经验的方式规定了预应力传递时混凝土的允许压应力,并且仅将其表示为传递时混凝土抗压强度的函数。相比之下,强度设计方法(SDM)可以在理论上确定预应力混凝土构件的允许压应力,考虑到影响因素的影响,例如钢筋的偏心率,截面类型,预应力水平和混凝土截面尺寸。在这项研究中,提出了一种基于SDM的方法来简化每种混凝土截面类型的SDM计算过程。此外,制造并测试了四个矩形预应力混凝土试样以研究其允许的预应力。看来,ACI318-11和EC2-02代码模型对偏心率低的预应力混凝土构件的可允许压应力提供了不安全的估计,但对于偏心率高的预应力混凝土构件却提供了过于保守的结果。在这项研究中提出的SDM和简化SDM在预应力转移时对预应力混凝土试样的容许压应力显示出合理的精度和安全裕度。

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