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首页> 外文期刊>Advances in Structural Engineering >Calibration of Strength Design of Pretensioned Flexural Concrete Members at Release
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Calibration of Strength Design of Pretensioned Flexural Concrete Members at Release

机译:释放时预应力混凝土构件强度设计的标定

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Strength design method for pretensioned flexural concrete members at prestress release was developed in 2001 as a rational alternative to the working stress design method. Load and resistance factors for the developed strength design method were selected to match those used in similar applications (e.g., tied columns) without reliability-based calibration. The purpose of this paper is to present the calibration of resistance factors for the strength design of pretensioned flexural concrete members at release to achieve a target reliability index of 3.5. Resistance models were developed to capture material, fabrication, and professional uncertainty. Statistical parameters of load and resistance were obtained from the literature. Formulae for strength design at release were developed for rectangular and flanged sections in cases when top reinforcement is needed and when top reinforcement is not necessarily needed. Reliability analysis was conducted for several rectangular and inverted-T sections and resistance factors of 0.75 and 0.70 were recommended in light of the results for 5 ksi (34.5 MPa) and 8 ksi (55.2 MPa) concrete strengths, respectively. Moreover, a simplified design procedure was proposed to assist designers and producers in applying the strength design method at prestress release. Three design examples were also presented and compared against those designed using the working stress method.
机译:2001年,开发了预应力挠性混凝土构件在释放预应力时的强度设计方法,以替代工作应力设计方法。选择用于发达强度设计方法的载荷和阻力系数以匹配类似应用中使用的载荷和阻力系数(例如系柱),而无需基于可靠性的校准。本文的目的是提出用于预应力挠性混凝土构件释放时的强度设计的阻力系数的校准,以达到3.5的目标可靠性指标。开发了电阻模型来捕获材料,制造和专业不确定性。载荷和阻力的统计参数从文献中获得。在需要顶部加强筋和不一定需要顶部加强筋的情况下,针对矩形和带凸缘的截面开发了用于释放时强度设计的公式。对几个矩形和倒T形截面进行了可靠性分析,并分别针对5 ksi(34.5 MPa)和8 ksi(55.2 MPa)的混凝土强度结果建议了0.75和0.70的阻力系数。此外,提出了一种简化的设计程序,以帮助设计师和生产商在预应力释放时应用强度设计方法。还提出了三个设计示例,并将它们与使用工作应力方法设计的示例进行了比较。

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