Kim Jung Joong
Department of Civil Engineering, Kyungnam University, Changwon 51767, Republic of Korea.
Materials (Basel). 2024 May 30;17(11):2643. doi: 10.3390/ma17112643.
In this study, a masonry panel under a high compressive stress to strength ratio is considered. The panel is modeled as a composite structure by considering a repeated unit cell of mortar and brick. Load redistributions due to creep in mortar and brick as composite materials are accounted for. A step-by-step in-time analysis is performed to calculate the load redistribution in the composite masonry. Time-dependent system reliability analysis of the masonry panel is performed by defining the component and system limit state functions at each time step. While the reliability index of ductile materials depends on the load level in each part of masonry, the reliability index of brittle materials depends only on the overall load. By proposing the reliability index of quasi-brittle materials being between these two reliability index bounds, the reliability index of quasi-brittle materials depends on both the load level in each part and the overall load. Using the proposed reliability index of quasi-brittle materials, partial safety factors for masonry panel design considering creep and damage are calibrated based on the Hasofer and Lind method. A design example using the proposed partial safety factor is presented.
在本研究中,考虑了处于高抗压应力与强度比下的砌体面板。通过考虑砂浆和砖块的重复单元体,将该面板建模为复合结构。计入了由于砂浆和砖块作为复合材料的徐变引起的荷载重新分布。进行了逐步实时分析以计算复合砌体中的荷载重新分布。通过在每个时间步定义构件和系统极限状态函数,对砌体面板进行了时变系统可靠性分析。延性材料的可靠性指标取决于砌体各部分的荷载水平,而脆性材料的可靠性指标仅取决于总荷载。通过提出准脆性材料的可靠性指标介于这两个可靠性指标界限之间,准脆性材料的可靠性指标取决于各部分的荷载水平和总荷载。利用所提出的准脆性材料的可靠性指标,基于哈索费尔和林德方法校准了考虑徐变和损伤的砌体面板设计的分项系数。给出了一个使用所提出的分项系数的设计示例。