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Seismic evaluation of frequency influence and resonant behavior for lead rubber bearing isolated rigid rectangular liquid tanks
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作者 Jyoti Ranjan Barik Kishore Chandra Biswal 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2024年第4期973-994,共22页
The seismic behavior of a partially filled rigid rectangular liquid tank is investigated under short-and longduration ground motions.A finite element model is developed to analyze the liquid domain by using four-noded... The seismic behavior of a partially filled rigid rectangular liquid tank is investigated under short-and longduration ground motions.A finite element model is developed to analyze the liquid domain by using four-noded quadrilateral elements.The competency of the model is verified with the available results.Parametric studies are conducted for the dynamic parameters of the base-isolated tank,using a lead rubber bearing to evaluate the optimum damping and time period of the isolator.The application of base isolation has reduced the total and impulsive hydrodynamic components of pressure by 80 to 90 percent,and base shear by 15 to 95 percent,depending upon the frequency content and duration of the considered earthquakes.The sloshing amplitude of the base-isolated tank is reduced by 18 to 94 percent for most of the short-duration earthquakes,while it is increased by 17 to 60 percent for the majority of the long-duration earthquakes.Furthermore,resonance studies are carried out through a long-duration harmonic excitation to obtain the dynamic behavior of non-isolated and isolated tanks,using a nonlinear sloshing model.The seismic responses of the base-isolated tank are obtained as higher when the excitation frequency matches the fundamental sloshing frequency rather than the isolator frequency. 展开更多
关键词 lead rubber bearing frequency domain resonant inputs long-duration excitation
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Development of a modified Mooney-Rivlin constitutive model for rubber to investigate the effects of aging and marine corrosion on seismic isolated bearings 被引量:10
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作者 Zhao Guifeng Ma Yuhong +2 位作者 Li Yanmin Luo Jiarun Du Chang 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2017年第4期815-826,共12页
In this study, aging and marine corrosion tests of a large number of rubber material and rubber bearings have been carried out. The constitutive Mooney-Rivlin model parameters for a rubber isolated bearing have been d... In this study, aging and marine corrosion tests of a large number of rubber material and rubber bearings have been carried out. The constitutive Mooney-Rivlin model parameters for a rubber isolated bearing have been determined. By applying the least-square method to the experimental data, the relationships between the aging time and the marine corrosion time with the constants in the constitutive model for a rubber beating have been derived. Next, the Mooney-Rivlin model has been modified accordingly. Further, using the modified Mooney-Rivlin model and the Abaqus software, the performance of the rubber isolated bearings has been simulated. The simulation results have been compared to the experimental results so as to verify the accuracy of the modified model. The comparison shows that the maximum errors for the vertical and horizontal stiffnesses are 16.8% and 0.49%, respectively. Since these errors are considered acceptable, the accuracy of the modified constitutive model can be considered verified. The results of this study can provide theoretical support for the performance study on rubber isolated bearings under the complex ocean environment and the life-cycle performance evaluation of bridges and other offshore structures. 展开更多
关键词 isolated rubber bearing marine corrosion AGING Mooney-Rivlin model finite element analysis
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A Study on the Seismic Isolation Systems of Bridges with Lead Rubber Bearings 被引量:1
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作者 Woo-Suk Kim Dong-Joon Ahn Jong-Kook Lee 《Open Journal of Civil Engineering》 2014年第4期361-372,共12页
This study consists of the development and presentation of example of seismic isolation system analysis and design for a continuous, 3-span, cast-in-place concrete box girder bridge. It is expected that example is dev... This study consists of the development and presentation of example of seismic isolation system analysis and design for a continuous, 3-span, cast-in-place concrete box girder bridge. It is expected that example is developed for all Lead-Rubber Bearing (LRB) seismic isolation system on piers and abutments which placed in between super-structure and sub-structure. Design forces, displacements, and drifts are given distinctive consideration in accordance with Caltrans Seismic Design Criteria (2004). Most of all, total displacement on design for all LRBs case is reduced comparing with combined lead-rubber and elastomeric bearing system . Therefore, this represents substantial reduction in cost because of reduction of expansion joint. This presents a summary of analysis and design of seismic isolation system by energy mitigation with LRB on bridges. 展开更多
关键词 SEISMIC ISOLATION System Bridge Lead rubber bearing (LRB) Energy MITIGATION
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Parameter identification of hysteretic model of rubber-bearing based on sequential nonlinear least-square estimation 被引量:10
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作者 Yin Qiang Zhou Li Wang Xinming 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2010年第3期375-383,共9页
In order to evaluate the nonlinear performance and the possible damage to rubber-bearings (RBs) during their normal operation or under strong earthquakes, a simplified Bouc-Wen model is used to describe the nonlinea... In order to evaluate the nonlinear performance and the possible damage to rubber-bearings (RBs) during their normal operation or under strong earthquakes, a simplified Bouc-Wen model is used to describe the nonlinear hysteretic behavior of RBs in this paper, which has the advantages of being smooth-varying and physically motivated. Further, based on the results from experimental tests performed by using a particular type of RB (GZN 110) under different excitation scenarios, including white noise and several earthquakes, a new system identification method, referred to as the sequential nonlinear least- square estimation (SNLSE), is introduced to identify the model parameters. It is shown that the proposed simplified Bouc- Wen model is capable of describing the nonlinear hysteretic behavior of RBs, and that the SNLSE approach is very effective in identifying the model parameters of RBs. 展开更多
关键词 parameter identification rubber-bearing hysteretic behavior Bouc-Wen model sequential nonlinear least- square estimation
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Effect of Alternation of Aging and Seawater Erosion on Properties of Rubber Material Used in Lead Rubber Bearing
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作者 Yanmin Li Guifeng Zhao +1 位作者 Yuhong Ma Rong Liu 《Journal of Renewable Materials》 SCIE EI 2022年第6期1641-1658,共18页
An artificially accelerated alternation of aging and seawater erosion test of rubber materials used in lead rubber bearing(LRB)was performed,mainly to study the time-varying laws of rubber materials mechanical propert... An artificially accelerated alternation of aging and seawater erosion test of rubber materials used in lead rubber bearing(LRB)was performed,mainly to study the time-varying laws of rubber materials mechanical properties.Time-varying laws of the Mooney–Rivlin and Neo-Hookean constitutive parameters of rubber materials under the alternation of aging and seawater erosion were also analyzed.Results indicate that the rubber material mechanical properties were significantly affected by alternation of aging and seawater erosion.Hardness and elongation stress increased exponentially with test time.And 120 days after the test,the hardness increased by 14%,the maximum percentage increase in stress of 124.76%occurred at 100%constant elongation and the minimum percentage increase in stress of 68.32%occurred at 300%constant elongation;Tensile strength and elongation at break decreased by 44.96%and 53.09%.Besides,constitutive parameters of Mooney–Rivlin and Neo-Hookean all changed greatly with test duration.Finally,time-varying laws of constitutive parameters were verified by comparing the simulated and experimental results of the lead rubber bearing’s stiffness.Research results are of great significance to the seismic performance research and life-cycle performance analysis of offshore traffic engineering such as cross-sea bridges and bridges in the marine environment. 展开更多
关键词 Alternation of aging and seawater erosion lead rubber bearing rubber material properties constitutive parameters time-varying law
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Experimental and Finite Element Analysis for Multi-lead Rubber Bearings:A Comparative Study
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作者 聂肃非 江宜城 +1 位作者 叶志雄 李黎 《Journal of Southwest Jiaotong University(English Edition)》 2010年第2期134-139,共6页
The mechanical properties of multi-lead rubber bearings (MLRBs) were investigated by experiment and finite element analysis. First, the vertical stiffness, horizontal stiffness and yielded shear force were tested fo... The mechanical properties of multi-lead rubber bearings (MLRBs) were investigated by experiment and finite element analysis. First, the vertical stiffness, horizontal stiffness and yielded shear force were tested for four MLRB specimens and two specimens of the single-lead rubber bearings ( SLRBs). Then, the MLRBs were modeled by the explicit finite element analysis software ANSYS/ LS-DYNA, in order to evaluate the horizontal force-displacement hysteretic curves under static vertical and dynamical horizontal loadings. The disagreement between the tested and theoretical values was less than 11.4%, and MLRBs and SLRBs were similar in vertical stiffness, pre-yield stiffness and yield stiffness. 展开更多
关键词 Bridge seismic isolation Multi-lead rubber bearing Nonlinear mechanical properties Experimental study Explicit finite element analysis
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Effect of Lead-Rubber Bearing Isolators in Reducing Seismic Damage for a High-Rise Building in Comparison with Normal Shear Wall System
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作者 Mahmoud Fakih Jaafar Hallal +1 位作者 Hassan Darwich Hala Damerji 《Structural Durability & Health Monitoring》 EI 2021年第3期247-260,共14页
Seismic earthquakes are a real danger for the construction evolution of high rise buildings.The rate of earthquakes around the world is noteworthy in a wide range of construction areas.In this study,we present the dyn... Seismic earthquakes are a real danger for the construction evolution of high rise buildings.The rate of earthquakes around the world is noteworthy in a wide range of construction areas.In this study,we present the dynamic behavior of a high-rise RC building with dynamic isolators(lead-rubber-bearing),in comparison with a traditional shear wall system of the same building.Seismic isolation has been introduced in building construction to increase the structural stability and to protect the non-structural components against the damaging effects of an earthquake.In order to clarify the influence of incorporating lead rubber bearing isolators in the seismic response and in reducing seismic damages;a comparative study is performed between a fixed base system(shear wall system)and an isolated base system(Lead Rubber Bearing)on an irregular high rise reinforced concrete(RC)building located in Beirut consisting of 48 storeys almost asymmetric orthogonally.For this purpose,a non-linear analysis of a real earthquake acceleration record(EI Centro seismic signal)is conducted,so that the mode shapes,the damping ratio and the natural frequencies of the two models are obtained using ETABS software.The results prove a substantial elongation of the building period,as well as a reduction in the building displacement,the roof acceleration,the inter-storey drift ratio and the base shear force of isolated building relative to fixed-base building.This study proves that this technology is applicable to high rise buildings with acceptable results. 展开更多
关键词 Seismic damage non-linear time history analysis high-rise RC building seismic response analysis lead rubber bearing
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Influence of Vertical Irregularity on the Seismic Behavior of Base Isolated RC Structures with Lead Rubber Bearings under Pulse-Like Earthquakes
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作者 Ali Mahamied Amjad AYasin +2 位作者 Yazan Alzubi Jamal Al Adwan Issa Mahamied 《Structural Durability & Health Monitoring》 EI 2023年第6期501-519,共19页
Nowadays,an extensive number of studies related to the performance of base isolation systems implemented in regular reinforced concrete structures subjected to various types of earthquakes can be found in the literatu... Nowadays,an extensive number of studies related to the performance of base isolation systems implemented in regular reinforced concrete structures subjected to various types of earthquakes can be found in the literature.On the other hand,investigations regarding the irregular base-isolated reinforced concrete structures’performance when subjected to pulse-like earthquakes are very scarce.The severity of pulse-like earthquakes emerges from their ability to destabilize the base-isolated structure by remarkably increasing the displacement demands.Thus,this study is intended to investigate the effects of pulse-like earthquake characteristics on the behavior of low-rise irregular base-isolated reinforced concrete structures.Within the study scope,investigations related to the impact of the pulse-like earthquake characteristics,irregularity type,and isolator properties will be conducted.To do so,different values of damping ratios of the base isolation system were selected to investigate the efficiency of the lead rubber-bearing isolator.In general,the outcomes of the study have shown the significance of vertical irregularity on the performance of base-isolated structures and the considerable effect of pulse-like ground motions on the buildings’behavior. 展开更多
关键词 Reinforced concrete low-rise structure vertical irregularity the influence of pulse-like earthquake characteristics lead rubber bearing isolators nonlinear response history analysis
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Numerical Analysis of Seismic Elastomeric Isolation Bearing in the Base-Isolated Buildings
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作者 M. Jabbareh Asl M. M. Rahman A. Karbakhsh 《Open Journal of Earthquake Research》 2014年第1期1-4,共4页
Base isolation concept is currently accepted as a new strategy for earthquake resistance structures. According to different types of base isolation devices, laminated rubber bearing which is made by thin layers of ste... Base isolation concept is currently accepted as a new strategy for earthquake resistance structures. According to different types of base isolation devices, laminated rubber bearing which is made by thin layers of steel shims bonded by rubber is one of the most popular devices to reduce the effects of earthquake in the buildings. Laminated rubber bearings should be protected against failure or instability because failure of isolation devices may cause serious damage on the structures. Hence, the prediction of the behaviour of the laminated rubber bearing with different properties is essential in the design of a seismic bearing. In this paper, a finite element modeling of the laminated rubber bearing is presented. The procedures of modeling the rubber bearing with finite element are described. By the comparison of the numerical and the experimental, the validities of modelling and results have been determined. The results of this study perform that there is a good agreement between finite element analysis and experimental results. 展开更多
关键词 Base-Isolated Structure SEISMIC ISOLATION bearing LAMINATED rubber bearing Finite Element Analysis
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Rubber/UHMWPE复合尾轴承材料及其性能分析 被引量:8
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作者 秦红玲 周新聪 +2 位作者 闫志敏 刘正林 赵新泽 《兵器材料科学与工程》 CAS CSCD 北大核心 2014年第3期23-27,共5页
以丁腈橡胶为基体,加入超高分子量聚乙烯(UHMWPE)和石墨等物质进行共混改性,得到一种新型舰船尾管水润滑轴承材料。其物理力学性能达到了我国CB和美国MIL标准,摩擦因数达到了美国军标MIL-DTL-17901C(SH)的标准,在低速下更优于标准。局... 以丁腈橡胶为基体,加入超高分子量聚乙烯(UHMWPE)和石墨等物质进行共混改性,得到一种新型舰船尾管水润滑轴承材料。其物理力学性能达到了我国CB和美国MIL标准,摩擦因数达到了美国军标MIL-DTL-17901C(SH)的标准,在低速下更优于标准。局部最大比压可达0.70 MPa,减振降噪性能优于同类产品,是一种综合性能优异的水润滑轴承材料。 展开更多
关键词 rubber UHMWPE材料 摩擦性能 试验研究 舰船尾轴承 水润滑
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弱连接体钢连廊对高层结构的影响
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作者 叶成浩 潘东辉 +1 位作者 郑耿东 成璞 《建筑技术开发》 2025年第1期13-17,共5页
航城星座公馆为双塔楼带3道连廊的连体高层建筑,采用框支剪力墙结构。钢结构连廊设置铅芯橡胶支座与塔楼相连,通过对多个连体结构模型的动力性能进行分析,研究了弱连接连廊对塔楼的影响,提出了弱连体结构连廊设计建议。带多重连廊弱连... 航城星座公馆为双塔楼带3道连廊的连体高层建筑,采用框支剪力墙结构。钢结构连廊设置铅芯橡胶支座与塔楼相连,通过对多个连体结构模型的动力性能进行分析,研究了弱连接连廊对塔楼的影响,提出了弱连体结构连廊设计建议。带多重连廊弱连体结构的地震效应非常复杂,在一定条件下连廊起到调谐质量阻尼系统的作用,从而降低塔楼地震效应,然而各连廊对塔楼的影响各不相同。对于有减震效应的连廊会吸收整体建筑结构过多的地震能量,通过采用包括性能抗震设计方法在内的一整套设计方法,以降低地震效应的不确定性。 展开更多
关键词 装配式 多重连廊 弱连接 连体结构 橡胶支座 抗震性能
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寒区环境温度对板式橡胶支座连续梁桥地震易损性影响研究 被引量:1
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作者 虞庐松 王力 +2 位作者 杜新龙 李子奇 李於钱 《地震工程学报》 CSCD 北大核心 2024年第1期105-114,共10页
针对现行规范对寒区桥梁减隔震设计中仅考虑橡胶支座力学特性受环境温度作用影响,而忽略桥墩混凝土材料特性受温度影响的不足,以高寒地区一座两联3×30 m混凝土连续梁桥为背景,开展不同环境温度下桥墩混凝土材料抗压性能试验,确定... 针对现行规范对寒区桥梁减隔震设计中仅考虑橡胶支座力学特性受环境温度作用影响,而忽略桥墩混凝土材料特性受温度影响的不足,以高寒地区一座两联3×30 m混凝土连续梁桥为背景,开展不同环境温度下桥墩混凝土材料抗压性能试验,确定温度对其力学参数的影响,基于试验结果对不同环境温度下的桥墩混凝土力学参数进行修正,从而建立不同环境温度下的全桥精细化非线性有限元模型,并基于增量动力分析(IDA)法探究不同环境温度下该桥的地震易损性。结果表明:极端温度引起桥墩混凝土材料参数和支座刚度的改变,使得该桥自振频率随着温度的升高而降低;地震作用下,极端低温时桥墩墩顶位移较常温增大了26.8%,而极端高温时支座位移增大了19.4%;根据现行规范计算的极端低温时支座和桥梁系统的损伤概率偏小,极端高温时结构和构件的损伤概率偏大,在设计中应予以重视;极端低温下桥墩、支座及桥梁系统的损伤概率,较常温分别增大45.0%、35.2%和27.5%,对于高寒地区该类桥梁设计时需考虑低温对其抗震性能的影响。 展开更多
关键词 环境温度 板式橡胶支座 摩擦滑移 连续梁桥 增量动力分析 地震易损性
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桥梁板式橡胶支座开裂力学性能 被引量:1
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作者 高小妮 任红伟 +1 位作者 朱蔚涛 郝朝伟 《公路交通科技》 CAS CSCD 北大核心 2024年第8期146-153,共8页
为了研究板式橡胶支座开裂后的力学性能,为桥梁的养护和设计提供更科学的依据,进一步明确支座开裂后裂缝宽度、深度以及裂缝深度对支座力学性能的影响;针对公路桥梁板式支座开裂的问题,利用大型有限元分析软件,建立了不同裂缝宽度、深... 为了研究板式橡胶支座开裂后的力学性能,为桥梁的养护和设计提供更科学的依据,进一步明确支座开裂后裂缝宽度、深度以及裂缝深度对支座力学性能的影响;针对公路桥梁板式支座开裂的问题,利用大型有限元分析软件,建立了不同裂缝宽度、深度和不同开裂层数等多种病害工况下的有限元模型,构建了支座开裂与支座性能衰减间的关系,并对支座在不同病害程度下的力学性能进行了对比分析。结果表明:裂缝宽度较小且开裂层数较少时,开裂对支座受力性能影响很小;当裂缝宽度小于2 mm,裂缝层数小于3层时,对支座竖向位移影响较小,但对支座橡胶最大拉应力和钢板应力影响较大;当裂缝宽度大于2 mm后或支座开裂层数大于3层,对支座的受力性能影响较大。建议将裂缝宽度小于0.5 mm,裂缝层数小于3层,支座病害等级定为Ⅱ级;将裂缝宽度在0.5~1 mm之间,裂缝层数小于3层,支座病害等级定为Ⅲ级;裂缝宽度在1~2 mm之间,裂缝层数小于2层,支座病害等级定为Ⅳ级;裂缝宽度大于2 mm或支座开裂大于3层,支座病害等级定为Ⅴ级,该分级建议可为桥梁板式橡胶支座相关评定标准修订提供参考。 展开更多
关键词 桥梁工程 力学性能 有限元分析 板式橡胶支座 裂缝
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钢板削弱型叠层橡胶支座力学性能试验研究 被引量:1
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作者 马乾瑛 李冰冰 业嘉超 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2024年第7期1436-1445,1478,共11页
结合厚层橡胶支座和普通叠层橡胶支座的优点设计新型钢板削弱型叠层橡胶支座,通过调节环形钢板的总数和位置进行支座水平和竖向刚度的有效控制.选择3种中心橡胶层厚度的钢板削弱型叠层橡胶支座,分析所设计支座的滞回特性、刚度特性和耗... 结合厚层橡胶支座和普通叠层橡胶支座的优点设计新型钢板削弱型叠层橡胶支座,通过调节环形钢板的总数和位置进行支座水平和竖向刚度的有效控制.选择3种中心橡胶层厚度的钢板削弱型叠层橡胶支座,分析所设计支座的滞回特性、刚度特性和耗能特性.基于串-并联模型,构建水平和竖向刚度的计算模型.试验结果表明,相比普通叠层橡胶支座,钢板削弱型叠层橡胶支座的水平和竖向刚度更低,水平和竖向耗能比更高,滞回曲线更光滑饱满.所建模型的计算结果与试验结果的一致性较好,误差绝对值不超过10%.所建模型在评估钢板削弱型叠层橡胶支座的水平和竖向刚度方面具有较高的精度和适用性. 展开更多
关键词 橡胶支座 钢板削弱 串-并联模型 三维隔震 滞回特性
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远场和近场地震下核电隔震结构的摇摆响应分析
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作者 何文福 吉敏 +2 位作者 任逸飞 许浩 MIYAMA Takafumi 《上海大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第4期595-607,共13页
为了探究远场和近场地震动作用对核电隔震结构的不同影响,研究了核电隔震结构在远场和近场地震动作用下的摇摆响应和支座状态,主要讨论了地震特性对结构摇摆响应的影响,包括上部结构的摇摆角、隔震支座的拉压应力、隔震支座的剪切变形等... 为了探究远场和近场地震动作用对核电隔震结构的不同影响,研究了核电隔震结构在远场和近场地震动作用下的摇摆响应和支座状态,主要讨论了地震特性对结构摇摆响应的影响,包括上部结构的摇摆角、隔震支座的拉压应力、隔震支座的剪切变形等.分析发现:上部结构的摇摆角随地震动加速度幅值线性增加,其中近场地震动作用下上部结构的摇摆角明显大于远场地震动作用,且具有更大的离散性;当地震动加速度幅值为1.2 g时,近场地震动作用下上部结构摇摆角均值和标准差可达远场地震动作用下的2.88倍和3.90倍;近场地震动作用下,支座更容易进入非安定变形状态,也更容易出现支座受拉现象.该成果可为核电厂结构的隔震设计提供工程参考价值. 展开更多
关键词 远场和近场地震 橡胶支座 摇摆效应 动力响应 核电结构
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空气弹簧-铅芯橡胶支座三维隔震装置力学性能
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作者 舒赣平 墨泽 +2 位作者 刘汶津 郑宝锋 付亨利 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第6期1395-1403,共9页
为提高柔性建筑结构的隔震能力,提出一种兼具水平和竖向隔震功能的空气弹簧-铅芯橡胶支座(AS-LRB)三维隔震装置.介绍了该三维隔震装置的构造,分别对该三维隔震装置水平和竖向力学性能进行了试验研究,提出了该三维隔震装置水平和竖向力... 为提高柔性建筑结构的隔震能力,提出一种兼具水平和竖向隔震功能的空气弹簧-铅芯橡胶支座(AS-LRB)三维隔震装置.介绍了该三维隔震装置的构造,分别对该三维隔震装置水平和竖向力学性能进行了试验研究,提出了该三维隔震装置水平和竖向力学性能参数的计算方法.研究结果表明:该三维隔震装置采用空气弹簧(AS)进行竖向隔震,采用铅芯橡胶支座(LRB)进行水平隔震;竖向隔震的载荷-位移曲线表现出非线性变化的特点,其竖向力学性能受空气弹簧气压的影响明显;水平隔震的耗能能力强,其水平力学性能受加载幅值和空气弹簧气压的影响明显.通过与试验结果的对比表明,所提出的计算方法能够准确地计算该三维隔震装置的水平和竖向力学性能参数. 展开更多
关键词 空气弹簧 铅芯橡胶支座 三维隔震 力学性能 试验研究 计算方法
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铅芯隔震橡胶支座力学性能试验研究
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作者 彭立群 林达文 +3 位作者 王进 吴兴磊 刘立峰 周函宇 《轨道交通材料》 2024年第1期66-70,共5页
针对铅芯隔震橡胶支座力学性能试验,重点分析橡胶支座结构及粘接试验标准,设计一种新型抗剪粘接模块化试验装置,与现有试验装置进行分析比对,对新型试验装置的结构进行分析计算,对LRB750、LRB900两种支座进行压缩性能、水平性能、水平... 针对铅芯隔震橡胶支座力学性能试验,重点分析橡胶支座结构及粘接试验标准,设计一种新型抗剪粘接模块化试验装置,与现有试验装置进行分析比对,对新型试验装置的结构进行分析计算,对LRB750、LRB900两种支座进行压缩性能、水平性能、水平非破坏粘接性能和破坏粘接性能试验,结果表明:试验设计满足要求,相比垂向压缩、水平剪切对隔震橡胶支座粘接性能影响更明显,且支座压缩刚度、屈服力、屈服刚度、水平等效刚度均满足要求,LRB900初始粘接破坏载荷761 kN、位移735 mm。该研究成果为橡胶支座及同类产品研发和试验提供一定指导作用。 展开更多
关键词 铅芯隔震橡胶支座 粘接性能 试验研究
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板式橡胶支座梁式桥准隔震体系参数组合研究
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作者 田石柱 韩铴 刘晨光 《沈阳建筑大学学报(自然科学版)》 CAS 北大核心 2024年第6期1001-1011,共11页
目的提出纵横桥向分别设置X型弹塑性钢挡块、黏滞阻尼器与板式橡胶支座进行组合的方法,形成板式橡胶支座梁式桥准隔震体系来提高桥梁的抗震性能,克服采用板式橡胶支座的梁式桥限位能力、自复位能力不足等缺陷。方法应用OpenSees有限元... 目的提出纵横桥向分别设置X型弹塑性钢挡块、黏滞阻尼器与板式橡胶支座进行组合的方法,形成板式橡胶支座梁式桥准隔震体系来提高桥梁的抗震性能,克服采用板式橡胶支座的梁式桥限位能力、自复位能力不足等缺陷。方法应用OpenSees有限元软件建立一座四跨连续梁桥全桥精细化模型,通过主梁位移、桥墩内力、支座剪力与位移等地震响应对X型弹塑性钢挡块和黏滞阻尼器进行了力学性能参数分析。结果横桥向X型弹塑性钢挡块与板式橡胶支座的组合可以有效控制梁体在地震作用下的位移,基本消除震后残余位移,且在合理选择挡块力学性能参数的情况下,能够有效降低支座承受的剪力与位移,同时减小传递到桥梁下部结构的惯性力以起到保护作用;纵桥向黏滞阻尼器和板式橡胶支座的组合,采用较为合理的参数选择可以一定程度上减小梁端的最大位移和残余位移,且大大降低了墩柱所承受的内力,确保桥梁下部结构免受严重损伤。结论板式橡胶支座与X型弹塑性钢挡块、黏滞阻尼器组合形成的板式橡胶支座梁式桥准隔震体系能够有效提高桥梁的抗震性能,解决强震作用下梁体位移过大的问题。 展开更多
关键词 板式橡胶支座 准隔震体系 X型弹塑性钢挡块 黏滞阻尼器
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自然老化服役后板式橡胶支座摩擦滑移性能试验研究
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作者 贾俊峰 顾冉星 +2 位作者 程寿山 樊平 李茂昌 《桥梁建设》 EI CSCD 北大核心 2024年第3期31-38,共8页
为了解自然老化服役后板式橡胶支座的摩擦滑移性能,取实际桥梁中服役10年的7个板式橡胶支座进行摩擦滑移试验,分析不同竖向压应力下支座摩擦滑移规律,研究自然老化板式橡胶支座的水平弹性刚度、摩擦系数及耗能能力等,并对比人工热老化... 为了解自然老化服役后板式橡胶支座的摩擦滑移性能,取实际桥梁中服役10年的7个板式橡胶支座进行摩擦滑移试验,分析不同竖向压应力下支座摩擦滑移规律,研究自然老化板式橡胶支座的水平弹性刚度、摩擦系数及耗能能力等,并对比人工热老化支座的相关性能。结果表明:相同服役年限的自然老化板式橡胶支座老化程度并不相同;自然老化板式橡胶支座摩擦系数随着竖向压应力的增大而减小,水平弹性刚度随着竖向压应力的增大而增大;压剪作用对老化板式橡胶支座的耗能能力影响较小,但需要注意累积的摩擦滑移会使支座耗能能力降低。自然老化板式橡胶支座(试验值)相较于未老化支座(理论值)的表面摩擦系数有所降低,但水平弹性刚度明显增大;自然老化板式橡胶支座水平弹性刚度增大幅度远高于人工热老化的板式橡胶支座,人工热老化研究严重低估了自然老化对板式橡胶支座的危害。 展开更多
关键词 板式橡胶支座 自然老化 水平弹性刚度 摩擦系数 耗能能力 摩擦滑移试验
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铅芯隔震橡胶支座关键抗震性能参数极低温效应试验研究
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作者 陈忆前 牛松山 +2 位作者 刘洋 申光兴 彭伟 《四川建筑科学研究》 2024年第5期20-27,73,共9页
中国北方部分地区冬季易受到极寒气候的影响,研究铅芯隔震橡胶支座在此环境下的性能变化规律和规范适用性,对结构抗震安全性具有非常重要的意义。对3种不同形状的铅芯隔震橡胶支座,分别进行了不同温度(-60~40℃)和不同低温暴露时间(1、2... 中国北方部分地区冬季易受到极寒气候的影响,研究铅芯隔震橡胶支座在此环境下的性能变化规律和规范适用性,对结构抗震安全性具有非常重要的意义。对3种不同形状的铅芯隔震橡胶支座,分别进行了不同温度(-60~40℃)和不同低温暴露时间(1、2、7 d)下的剪切性能试验,得出了支座的关键抗震性能参数(特征强度、水平等效刚度、屈服后刚度和等效阻尼比)随温度和低温暴露时间的变化规律。研究表明:支座形状对铅芯隔震橡胶支座的低温隔震性能影响较小;而橡胶配比在极低温时的影响至关重要;在满足各项性能需求的前提下,低温减隔震支座宜优先选择剪切模量较小的支座;支座的关键抗震性能参数在低温暴露时间约为2 d时达到一个相对稳定的状态。 展开更多
关键词 铅芯隔震橡胶支座 力学特性 温度相关性 低温暴露时间 剪切性能试验
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