标题: | 钢筋混凝土版之贯穿剪力强度评估 Punching Shear Strength Prediction of Reinforced Concrete Slabs |
作者: | 陈彦翰 Yen-Han Chen 陈诚直 Cheng-Chih Chen 土木工程学系 |
关键字: | 软化压拉杆模型;钢筋混凝土版;贯穿剪力强度;Soften Strut-and-Tie model;reinforced concrete slabs;punching shear strength |
公开日期: | 2002 |
摘要: | 各国规范对钢筋混凝土版之贯穿剪力设计公式皆采用统计回归的方式而求得,不但缺乏力学机制,且应用范围也有一定的限制。本研究应用软化压拉杆理论,建立钢筋混凝土版之贯穿剪力强度分析模型。文中收集147组钢筋混凝土版试体,以软化压拉杆模型、英国BS-8110规范与美国ACI 318-99规范进行分析与比对。 本研究测试钢筋混凝土版设计参数在软化压拉杆模型、英国BS-8110规范与美国ACI 318-99规范中的反应情形。研究结果显示:软化压拉杆模型在混凝土抗压强度低于20 MPa时,会有略偏保守的情况,而在其他情况皆可有效反应试体内各设计参数对贯穿剪力强度之贡献,亦可对高强度钢筋混凝土版作出保守且准确的预估;英国BS-8110规范之分析结果尚称精准,但在混凝土抗压强度甚低或拉力钢筋比较高的情况下,会有略偏不保守的情况;美国ACI 318-99规范未考虑拉力钢筋比之贡献,且将柱断面长宽比列入考虑,其分析结果过于保守,且当拉力钢筋比越高、柱断面长宽比越大或版有效深度越小时,会有越趋于保守的趋势。此外,软化压拉杆模型亦可预测以碳纤维贴片补强钢筋混凝土版之贯穿剪力强度。 Based on statistic regression, various design code expressions used to calculate punching shear strength of reinforced concrete slabs do not fully consider the force transferred mechanism, but also have some limitations in application. This study adopts the theory of Soften Strut-and-Tie (SST) model to establish an analytical model for predicting the punching shear strength of reinforced concrete slabs. The test results of 147 reinforced concrete slabs are collected to compare the predicted results calculated from SST model, British Standards (BS-8110), and American Concrete Institution Building Code (ACI 318-99). Effects of design parameters of reinforced concrete slabs on predictions calculated from SST model, BS-8110, and ACI 318-99 are studied. The results show that the SST model is effective to reflect the various design variables on the punching shear capacity, and the model can be used to predict slabs with high strength concrete also. However, the prediction of SST model is conservative for slabs having concrete strength lower than 20 MPa. BS-8110 can well predict the punching shear capacity, but it is un-conservative for slabs having lower concrete strength and higher tensile steel ratio. ACI code doesn’t consider the contribution of steel reinforcement even the effect of the aspect ratio of the column side lengths is included. Therefore, ACI code leads to a too conservative prediction, especially for the slabs with higher steel ratio, higher aspect ratio of the column side lengths, and lower effective slab depth. Moreover, the SST model can estimate well the punching shear capacity of reinforced concrete slabs strengthened with Carbon-Fiber-Reinforced-Plastic laminates. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#NT910015024 http://hdl.handle.net/11536/69716 |
显示于类别: | Thesis |