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1.
部分预应力混凝土扁梁框架节点的拟静力试验研究 总被引:4,自引:1,他引:4
本文进行了四个部分预应力混凝土扁梁框架节点的拟静力试验研究。通过四个不同试件的试验研究分析了节点的变形能力、耗能能力、延性和刚度退化等抗震性能,同时分析了低周反复荷载作用下预应力混凝土框架节点的破坏机理。 相似文献
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基于瑞典条分法数值解的边坡蒙特卡罗可靠性分析 总被引:1,自引:0,他引:1
本文基于瑞典条分法数值解的基本思想,建立了蒙特卡罗(Monte-Carlo)边坡可靠性分析计算模型,对云南省香格里拉县冷都复杂斜坡体前缘滑动体的稳定性进行了分析,计算结果表明该复杂斜坡体在目前状况下具有较高的稳定系数和可靠度,在降雨和地震作用下稳定性差,需要采取工程措施进行加固。 相似文献
4.
针对传统结构震后修复能力不足,带可更换构件的混合框架结构体系在地震作用下,可更换耗能构件集中损伤和耗散地震能量,保护其他构件不损伤或轻微损伤,更换损伤的耗能构件,即可实现结构预定功能震后可恢复。通过3个可更换耗能梁试件,研究其抗震性能。在此基础上,通过SAP2000有限元建模,对带可更换构件的混合框架结构进行非线性分析,研究整体结构体系的屈服机制、承载力和可更换耗能构件的可更换性能。结果表明:试件均发生剪切屈服型破坏,破坏特征包括腹板-加劲肋焊缝撕裂、腹板屈曲和腹板撕裂。各试件的滞回曲线非常饱满,具有优异的承载能力、变形能力和耗能能力;在地震作用下,带可更换构件的混合框架结构体系中各构件能够实现良好的有序屈服机制,可更换耗能构件具有较好的可更换性。 相似文献
5.
提出了一种新型扇形盘式效能器(fanshaped disc-type energy dissipator,FDED),阐明了其原理、特点,导出其设计要点和设计理论,采用数值方法分析了FDED的减震性能,研究不同设计参数对FDED减震性能的影响。结果表明:FDED设计原理可行,减震机理明确,其转盘式的构造可起到有效的位移放大效果,使得消能器在小激励位移下发挥耗能作用;FDED具有明显的双线性恢复力特性和稳定的耗能性能,等效黏滞阻尼系数可达50%以上;阻尼件中橡胶硬度的改变对FDED初始刚度的影响不敏感,但对FDED屈服后刚度和等效黏滞阻尼系数的影响较为明显。随着橡胶硬度的增大,FDEDE的屈服后刚度上升,等效黏滞阻尼系数降低;保持阻尼层中橡胶层的总厚度不变,通过增减叠层钢板改变单层橡胶层的厚度对于调整FDED的减震性能影响不大;调整铅芯直径的大小主要影响FDED的屈服力和耗能性能。随着铅芯直径的增大,FDED的屈服力也增大,耗能能力逐渐提高。 相似文献
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Quasi-static testing is one of the most commonly used experimental methods for examining the seismic performance of structural members. However, consistent loading protocols for experimental seismic qualification of members in emerging steel frames such as self-centering braced frames (SCBFs) as well as in some conventional ones including buckling-restrained braced frames (BRBFs) are still lacking. This paper aims to propose standardized loading protocols based on time-history dynamic analysis on a series of prototype building frames, including steel SCBFs, BRBFs, and moment-resisting frames (MRFs), where both far-field and near-fault earthquakes are considered. The methodology for the development of the loading protocols involves ground motion selection and scaling, design and analysis of prototype buildings, analysis results processing, and rainflow cycle counting, together with extra justification steps. The proposed loading protocols are consistently derived based on the MCE-level seismic hazard and 84th percentile values of key seismic demand parameters. These parameters are number of damaging cycles Nt, maximum inter-story drift θmax, inter-story drift range Δθi, sum of inter-story drift range ΣΔθi, and residual inter-story drift θr. The analysis confirms the variations in these seismic demands imposed on the different structural systems under different types of ground motions, highlighting the necessity of developing separate loading protocols for the different cases. The assumptions, decisions, and judgments made during the development of the loading protocols are elaborated, and the conditions and restrictions are outlined. The rationality of the proposed loading protocols is further justified through demonstrating the cumulative distribution function and energy dissipation demand of the systems. 相似文献
7.
为推广装配式混凝土框架结构的应用,提出3种不同的新型装配式钢筋混凝土框架中节点连接形式,进行低周往复荷载试验。对比各试件的破坏形态、滞回性能、刚度退化、累积耗能和节点剪切变形等抗震指标。研究结果表明:采用方钢管连接的装配式混凝土节点呈现梁端弯曲破坏,采用工字钢连接或对拉螺栓连接的节点呈现节点核心区剪切破坏。采用方钢管的连接形式既能改善节点核心区的破坏形态,又能提高其承载能力、变形能力、耗能能力和梁端转动能力,同时显著改善节点的滞回特性,减小核心区的剪切变形。在弹塑性和塑性变形阶段,采用方钢管连接形式的装配式混凝土节点的抗震性能优于工字钢连接和对拉螺栓连接的节点。此外,采用工字钢连接形式比对拉螺栓连接形式的节点具有更高的承载能力、耗能能力和较小的核心区剪切变形。 相似文献
8.
Reinforced concrete (RC) precast shear walls are extensively applied in practical engineering, owing to their fast construction speed. However, because of the transport conditions, RC precast shear walls have to be separated into small wall segments during the factory prefabrication procedure before being assembled on site. Typically, wet-type jointing methods are adopted to link the segments, which is time-consuming and results in unreliable post-pouring area strength. To overcome this problem, the novel scheme of the steel shear key (SSK) featuring steel shear panels and combined fillet and plug welding is proposed. Three RC precast shear wall specimens with different linking strength, termed as weakened SSK wall, standard SSK wall, and strengthened SSK wall, respectively, and an integrated shear wall specimen were designed. Quasi-static cyclic loading was applied to investigate the specimens' dynamic properties. The test results suggest the prefabricated wall segments equipped with SSKs showed reliable stiffness and bearing capacity and were improved in energy dissipation ability, compared with conventional shear walls. As the shear stiffness and number of equipped SSKs increased, the specimens exhibited higher strength, but their ductility and energy dissipation were slightly decreased. Most importantly, the standard SSK wall specimen could achieve satisfactory bearing capacity and deformability and is thus recommended for precast building structures. Finite element method (FEM) models were established to validate the test results, and parametric study analysis was conducted based on the coupling ratio of the SSK walls. Finally, an appropriate coupling ratio range is recommended for practical engineering applications. 相似文献
9.
在1.2 m×1.2 m×1.2 m小型土工箱中完成了4组采取不同桩头连接构造的单桩-承台-土复合受力体缩尺模型的低周往复水平加载抗震试验,获得了试件破坏形态、荷载-位移滞回曲线、刚度退化曲线、桩身弯矩及桩侧土压力等数据,研究了不同桩头连接构造对试件水平受力性能的影响。研究表明:桩头部位采取不同的节点连接构造措施对桩头破坏形态和破坏程度、体系耗能能力和水平极限承载力及桩身弯矩分布规律均有一定的影响,但对桩与承台侧面的土压力分布规律和大小的影响并不显著。对于桩头普通连接的情况,以桩头嵌入深度为0.5D(D为桩径)为宜。桩头加强环连接与桩头嵌入深度1.0D时的连接具有大体相当的桩头约束效果,但加强环的制作相对复杂,其约束效果和破坏形态与加强环的截面尺寸、混凝土强度及配筋参数均有关系,应进一步深入研究。 相似文献
10.
桩腿耦合装置(简称LMU)在平台浮托安装过程中上部组块插尖与导管架桩管对接期间起缓冲作用,是海上浮装的最重要装置之一。运用非线性有限元软件ABAQUS,对相同尺寸、受相同垂向载荷作用的有沙箱和无沙箱的LMU分别进行了显式准静态和动态数值模拟,并将计算结果进行对比,以考察沙箱对LMU力学特性的影响。结果表明,与无沙箱的LMU相比,有沙箱的LMU能够承受较大的外载荷作用,可提升外套筒钢材的使用效率,较迅速地降低载荷转移作业过程中整个平台的运动速度,提高平台浮托安装过程中能量吸收速率,并且能减小LMU在动态过程中的最大应力。 相似文献