...
首页> 外文期刊>Journal of Performance of Constructed Facilities >Reliability Analysis of RC Columns and Frame with FRP Strengthening Subjected to Explosive Loads
【24h】

Reliability Analysis of RC Columns and Frame with FRP Strengthening Subjected to Explosive Loads

机译:爆炸载荷作用下玻璃纤维增​​强的钢筋混凝土柱和框架的可靠度分析

获取原文
获取原文并翻译 | 示例

摘要

Some structures, both military and civilian, might experience explosive loads during their service life. Owing to high uncertainties in blast load predictions and structural parameters, accurate assessment of the performances of structures under explosion loads is a challenging task. For example, a number of experimental studies using fiber-reinforced plastic (FRP) strengthening of RC structures have been reported in the literature. Most of these studies demonstrate that FRP strengthening is effective in increasing the blast load-carrying capacities of RC structures. However, significant variations in the effectiveness of FRP strengthening have also been observed owing to the large uncertainties in blast loading, RC and FRP material properties, and workmanship in preparing the test specimens and conducting experimental tests. Very few studies that take into consideration these uncertainties in analyzing the effectiveness of FRP strengthening of RC structures on blast loading resistance can be found in the literature. This study performs a reliability analysis to assess the performance of RC columns with or without FRP strengthening in resisting blast loads. Statistical variations of blast loading predictions derived in a previous study are adopted in this study. To define structural performance, pressure-impulse (P-I) curves with a damage criterion on the basis of axial load-carrying capacity that were developed in previous studies for RC columns without strengthening or with FRP strip, FRP wrap, or both FRP strip and wrap strengthening are used. Considering the uncertainties in blast loading predictions and RC column and FRP material properties and dimensions, limit-state functions corresponding to different damage levels of RC columns with or without FRP strengthening are formulated. The statistical variations of blast loading, RC column dimension, longitudinal and transverse reinforcement ratio, and concrete, steel, and FRP material strength and FRP thickness are considered. The failure probabilities of RC columns corresponding to different damage levels with or without FRP strengthening are calculated. The effectiveness of FRP strengthening on the RC column's blast loading resistance capacities is discussed. The importance of considering the random fluctuations on blast loading and RC column parameters in assessing the blast loading effect on RC columns is demonstrated. A structural system reliability analysis is also carried out to examine the probability of structural collapse as a result of blast loading applied to the front of an example two-span multistory RC frame. The results obtained in this study demonstrate the effectiveness of FRP strengthening on structure protection and can also be used to assess RC structure performance under blast loadings.
机译:一些军事和民用建筑在其使用寿命期间可能会承受爆炸性载荷。由于爆炸载荷预测和结构参数的不确定性很高,因此,准确评估爆炸载荷下结构的性能是一项艰巨的任务。例如,文献中已经报道了许多使用纤维增强塑料(FRP)增强RC结构的实验研究。这些研究大多数表明,FRP加固可有效提高RC结构的爆炸承载能力。但是,由于爆炸载荷,RC和FRP材料性能以及制备试样和进行实验测试的工艺存在较大不确定性,因此还观察到了FRP加固效果的显着变化。很少有研究在分析FRP加固RC结构对爆炸荷载的抵抗力时考虑到这些不确定性。这项研究进行了可靠性分析,以评估带有或不带有FRP加固的RC柱在抵抗爆炸载荷方面的性能。这项研究采用了先前研究得出的爆炸载荷预测的统计变化。为了定义结构性能,在先前的研究中针对不加筋或不带FRP板,FRP缠绕或FRP板和缠绕的RC柱,在轴向承载能力的基础上建立了带有破坏准则的压力-脉冲(PI)曲线使用加强。考虑到爆炸载荷预测的不确定性以及RC柱和FRP材料的特性和尺寸,制定了相应的具有或不具有FRP加固的RC柱损伤水平的极限状态函数。考虑了爆炸荷载,钢筋混凝土柱尺寸,纵向和横向钢筋比率以及混凝土,钢和玻璃钢材料强度和玻璃钢厚度的统计变化。计算了在有或没有FRP加固的情况下,对应于不同损伤程度的RC柱的失效概率。讨论了FRP加固对RC柱的抗爆炸荷载能力的有效性。说明了在评估爆破荷载对RC柱的影响时考虑爆破荷载和RC柱参数的随机波动的重要性。还进行了结构系统可靠性分析,以检查由于爆炸荷载施加到示例两跨多层RC框架的正面而导致结构崩溃的可能性。这项研究中获得的结果证明了FRP加固对结构保护的有效性,也可用于评估爆炸荷载下的RC结构性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号