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首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Strengthening RC frames subjected to lateral load with Ultra High- Performance fiber reinforced concrete using damage plasticity model
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Strengthening RC frames subjected to lateral load with Ultra High- Performance fiber reinforced concrete using damage plasticity model

机译:使用损伤塑性模型加强对横向载荷进行横向载荷的RC框架

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摘要

Material non-linearity of Reinforced Concrete (RC) framed structures is studied by modelling concrete using the Concrete Damage Plasticity (CDP) theory. The stress-strain data of concrete in compression is modelled using the Hsu model. The structures are analyzed using a finite element approach by modelling them in ABAQUS / CAE. Single bay single storey RC frames, designed according to Indian Standard (IS):456:2000 and IS:13920:2016 are considered for assessing their maximum load carrying capacity and failure behavior under the influence of gravity loads and lateral loads. It is found that the CDP model is effective in predicting the failure behaviors of RC frame structures. Under the influence of the lateral load, the structure designed according to IS:13920 had a higher load carrying capacity when compared with the structure designed according to IS:456. Ultra High Performance Fiber Reinforced Concrete (UHPFRC) strip is used for strengthening the columns and beam column joints of the RC frame individually against lateral loads. 10mm and 20mm thick strips are adopted for the numerical simulation of RC column and beam-column joint. Results obtained from the study indicated that UHPFRC with two different thickness strips acts as a very good strengthening material in increasing the load carrying capacity of columns and beam-column joint by more than 5%. UHPFRC also improved the performance of the RC frames against lateral loads with an increase of more than 3.5% with the two different strips adopted. 20 mm thick strip is found to be an ideal size to enhance the load carrying capacity of the columns and beam-column joints. Among the strengthening locations adopted in the study, column strengthening is found to be more efficient when compared with the beam column joint strengthening.
机译:通过使用混凝土损伤可塑性(CDP)理论来建模混凝土研究钢筋混凝土(RC)框架结构的材料非线性。使用HSU模型建模压缩中混凝土的应力 - 应变数据。通过在ABAQUS / CAE中建模它们来分析结构使用有限元方法来分析。单架单层RC框架,根据印度标准设计(是):456:2000,是:13920:2016,用于评估重力负荷和横向载荷的影响下的最大载荷承载能力和故障行为。结果发现,CDP模型在预测RC帧结构的故障行为方面是有效的。在横向载荷的影响下,根据以下是:13920设计的结构更高的负载承载能力,与根据的结构相比:456。超高性能纤维钢筋混凝土(UHPFRC)条用于加强RC框架的柱和梁柱接头抵抗横向载荷。采用10mm和20mm厚的条带,用于RC柱和梁柱接头的数值模拟。从研究获得的结果表明,具有两个不同厚度带的UHPFRC充当了在增加柱子和光束接头的承载能力超过5%的情况下充当非常好的强化材料。 UHPFRC还提高了RC帧对横向载荷的性能,其两种不同的条带增加了3.5%以上。发现20毫米厚的条带是一种理想的尺寸,以增强柱和梁柱接头的负载承载能力。在该研究采用的加强位置中,与光束柱关节强化相比,发现柱强化更有效。

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