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1.
免蒸压免烧结粉煤灰多孔砖砌体力学性能试验研究   总被引:5,自引:0,他引:5  
免蒸压免烧结粉煤灰多孔砖是一种新型承重墙体材料,为使其在地震区村镇建筑中得到推广应用,进行了多孔砖砌体抗压强度和抗剪强度试验,分析了砌体裂缝开展及破坏过程。试验结果表明:免蒸压免烧结粉煤灰多孔砖砌体的受压、受剪破坏过程及特征与普通黏土砖砌体类似,但具有更大的脆性;抗压、抗剪强度均小于普通黏土砖砌体;采用6次多项式的受压本构关系数学模型,反映了免蒸压免烧结粉煤灰多孔砖砌体受压应力-应变全过程,计算值与实测数据比较接近。  相似文献   

2.
基于损伤塑性模型的砌体墙体非线性有限元分析   总被引:2,自引:0,他引:2  
王蓓蓓  董军 《地震学刊》2014,(2):216-222
为了研究砌体墙体用钢结构加固后的力学性能,需要提供较准确的砌体墙体非线性计算,考虑到砌体与混凝土的材料性质具有相似性,将混凝土损伤塑性模型经修正后应用于砌体数值模拟,实现对砌体墙体的非线性有限元分析。通过与水平加载试验结果对比,验证了有限元模型的正确性。探讨了损伤塑性模型中的粘性系数、膨胀角、砌体本构关系中的初始弹性模量、受拉应力应变关系对计算结果的影响。结果表明:粘性系数和膨胀角对抗剪承载力、峰值位移及下降段性能均有较大影响,而对初始刚度影响很小;随着初始弹性模量的增大,砌体墙体抗剪承载力随之提高,但峰值位移无明显变化;受拉应力应变方程中待定系数的取值,对抗剪承载力及峰值位移影响较大。  相似文献   

3.
周晓洁    程昌恽    杜金鹏    陈康    陈培奇   《世界地震工程》2022,38(2):046-57
为进一步改善框架结构平面内和平面外抗震性能,本文提出带X形斜撑的新型砌体填充墙构造方案,并进行了4榀蒸压加气混凝土砌块砌体填充墙框架结构试验,以研究墙体构造措施和墙-框连接方式对框架结构抗震性能的影响。首先进行平面内水平低周往复荷载试验,随后进行历经平面内损伤的平面外单调静力加载试验,最后进行承载力、刚度退化和耗能能力等抗震性能指标的分析。结果表明:墙-框柔性连接方案下,填充墙框架结构的平面内及平面外水平承载力和初始刚度均小于刚性连接方案,而变形能力、耗能能力和位移延性等性能指标均比刚性连接表现更好;墙-框柔性连接且填充墙带X形斜撑框架结构的平面内及平面外抗震性能指标均有明显改善,更有利于抗震。  相似文献   

4.
大量震害表明,在强震作用下传统填充墙框架结构的填充墙与框架之间相互作用非常复杂,破坏严重。为改善填充墙框架结构的抗震性能,本文采用适应我国墙材革新所倡导的蒸压加气混凝土砌块作为墙体材料,利用玄武岩纤维格栅(BFG)替代钢筋作为填充墙墙体内的拉结材料,设计了两种不同的填充墙与框架的柔性连接方式,对填充墙框架进行了拟静力试验研究。分析了其破坏特征、滞回曲线特性、骨架曲线、墙体延性、强度衰减、刚度退化以及累积耗能。结果表明,在水平荷载作用下,采用柔性连接方式的填充墙对框架承载能力影响不大,不会因框架在平面内发生较大位移而导致墙体严重破坏,且采用本文提出的平板连接方式的填充墙对框架抗侧刚度几乎没有影响,其破坏模式更为合理;同时,墙体内配置的玄武岩纤维格栅延缓了墙体的开裂,对墙体变形构成有效约束。  相似文献   

5.
内注泡沫混凝土空心砌块墙体抗震性能的试验研究   总被引:3,自引:0,他引:3  
本文通过内注泡沫混凝土空心砌块与未注泡沫混凝土空心砌块砌体在低周反复荷载作用下的对比试验,研究了具有良好热工性能空心砌块砌体的破坏形态、抗剪承载力、变形特性等抗震性能。试验结果分析表明.内注泡沫混凝土的空心砌块,能提高墙体的开裂荷载和极限荷载,改善了混凝土空心砌块砌体的抗剪承载力。  相似文献   

6.
采用地震工程开源模拟软件OpenSees(Open System for Earthquake Engineering Simulation)对CFRP(Carbon Fiber Reinforced Polymer,碳纤维增强复合材料)布加固高强钢筋混凝土方柱的抗震性能进行了数值分析。采用Steel02Material和Concrete02Material材料本构模型模拟了CFRP布加固高强混凝土方柱的抗震性能;在此基础上,进一步研究了轴压比和剪跨比这2个因素对试件抗震性能的影响。将所得数值分析结果与相同条件下的试验结果对比后发现:基于Steel02 Material和Concrete02 Material材料本构,利用OpenSees,可以较好地模拟CFRP布加固高强混凝土方柱的抗震性能,并且与试验结果(滞回曲线、骨架曲线、水平承载力和位移延性系数)能够较好地吻合,从而说明该数值分析方法还可以准确地反映出轴压比和剪跨比对高强混凝土柱抗震性能的影响规律。  相似文献   

7.
目的对比研究水平配置钢筋和纤维格栅的蒸压硅酸盐企口砌块墙体在低周反复荷载作用下的破坏形态及抗震性能,并为编制《蒸压硅酸盐企口砌块应用技术规程》提供理论依据。方法在不同竖向压力条件下对水平配置钢筋和纤维格栅的蒸压硅酸盐企口砌块墙体进行拟静力试验,对比分析两类墙体的抗震性能。结果在竖向压应力相同时,配置钢筋墙体要比铺设玻纤格栅墙体的极限承载力高约13%,且前者的延性系数高于后者约24%,同时配玻纤格栅墙体的延性系数比同类素墙体提高约40%。结论配玻纤格栅墙体较配钢筋蒸压硅酸盐企口砌块墙体的抗震性能稍差,但要远优于同类素墙体。在砌体水平灰缝中配玻纤格栅提高了墙体抗震性能,是代替水平配置钢筋的一种有效探索。  相似文献   

8.
梁斌  张海  姚新强  高武平  陈贺 《地震工程学报》2020,42(4):856-861,947
砖砌体结构是农村传统农居建筑的主要结构形式,如何精确评价其抗震能力具有重要的研究意义。目前既有传统农居中,20世纪80、90年代砖砌体结构仍是其重要的组成部分。为研究既有传统砖砌体结构的抗剪性能,首先对水泥砂浆、白灰砂浆、炉渣砂浆、黄泥砂浆4种典型砂浆开展抗压强度试验;然后对4种典型砂浆砌筑的砌体进行沿通缝抗剪强度试验,通过与传统老旧红砖砌体抗剪强度的平均值和公式值进行对比,对砌体抗剪强度计算公式进行修正后得到修正公式;最后对比修正值、标准值和设计值,对传统农居进行准确的砖砌体抗剪强度评估。本项研究主要为传统农居砖砌体结构的抗震性能评估、抗震加固以及抗震设计提供技术支持与科学依据。  相似文献   

9.
钢结构建筑轻质砂加气混凝土墙体的抗震性能试验研究   总被引:1,自引:2,他引:1  
本文介绍了一钢结构建筑轻质砂加气混凝土外墙板和砌块填充墙的足尺模型振动台试验,并通过试验结果分析,重点研究砌块填充墙的抗震性能、砌块墙体与墙板墙体抗震性能的对比以及两者对钢结构动力特性的影响对比。文中得出了与带墙体钢结构抗震设计有关的结论。  相似文献   

10.
为了适应国家绿色建筑和装配式建筑的发展,减少地震中填充墙的平面外破坏,采用ABAQUS有限元程序研究了装配式AAC砌体填充墙的平面外抗震性能。进行了不同工况下足尺有限元模型的模拟,分析了填充墙高厚比、配筋率及填充墙与框架间连接方式对其平面外抗震性能的影响,以峰值、极限状态下的荷载与跨中位移评定其平面外抗震性能。分析结果表明:采用ABAQUS进行填充墙平面外抗震性能数值模拟与试验结果吻合较好;填充墙高厚比越小,平面外承载力越大,当高厚比小于10时,墙体延性大幅下降;填充墙配筋率和承载力近似呈正比关系,但当配筋率大于0.2%时,墙体延性也会下降;高厚比在15~20和配筋率在0.1%~0.2%范围内,填充墙呈适筋延性破坏模式;填充墙与框架之间布置双向柔性连接约束,墙体具备一定延性,墙体平面外承载力较单向连接件布置有所提升。  相似文献   

11.
Reinforced concrete (RC) buildings in Nepal are constructed with RC frames and masonry infill panels. These structures exhibit a highly non-linear inelastic behavior resulting from the interaction between the panels and frames. This paper presents an extensive case study of existing RC buildings in Nepal. Non-linear analyses were performed on structural models of the buildings considered as a bare frame and with masonry infill, in order to evaluate the influence of infill walls on the failure mechanisms. Five three-storey buildings with different structural configurations and detailing were selected. The effect of masonry infill panels on structural response was delineated by comparing the bare-framed response with the infill response. Seismic performance is evaluated with regard to global strength, stiffness, energy dissipation, inter-storey drift, and total deflection of the structure. A parametric analysis of structures with masonry infill is also performed. For this, the influence of different material properties is studied, namely diagonal compressive stress, modulus of elasticity and tensile stress of masonry infill panels. Study results show that masonry infill increases the global strength and stiffness of the structures; it decreases the inter-storey drift and hence the total displacement of the structure. The results quantify the influence of the infill panels on structural response and, in particular, the effect of the diagonal compressive strength of the masonry wall.  相似文献   

12.
This paper proposes a new analytical model for masonry‐infilled R/C frames to evaluate the seismic performance considering R/C frame–infill interactions. The proposed analytical model replaces masonry infill with a diagonal compression strut, which represents distributed compression transferred between frame and infill interfaces. The equivalent strut width is presented as a function of the frame–infill contact length, which can be evaluated by static equilibriums related to compression balance and lateral displacement compatibility at the frame–infill interfaces. The proposed analytical model was verified through comparisons with experimental results obtained for several brick masonry‐infilled R/C frames representing a typical R/C building with nonstructural masonry infill in Indonesia. As a result, good agreements were observed between the experimental and analytical values of the lateral strength and ductility of the infilled frames. The seismic performances of two earthquake‐damaged R/C buildings with different damage conditions were evaluated considering infill effects by applying the proposed analytical model. Consequently, the nonstructural brick masonry infill significantly affected the seismic resistances of the buildings, which seemed to lead to differing levels of damage for each building. These results indicate that the proposed analytical model can be an effective tool for more precisely screening earthquake‐vulnerable existing R/C buildings in Indonesia. Copyright © 2016 The Authors. Earthquake Engineering & Structural Dynamics Published by John Wiley & Sons Ltd.  相似文献   

13.
In this paper, a contribution of various types of masonry infill to the behaviour of reinforced concrete frames under lateral loads is presented. As a part of the bigger project, ten one‐bay, one‐storey reinforced concrete frames were designed according to the EC8, built in a scale 1:2.5, infilled with masonry and tested under constant vertical and cyclic lateral load. The masonry wall had various strength properties, namely, high strength hollow clay brick blocks, medium strength hollow clay brick blocks and low strength lightweight autoclaved aerated concrete blocks. There were no additional shear connectors between the masonry and frame. The results showed that the composite ‘framed wall’ structure had much higher stiffness, damping and initial strength than the bare frame structure. Masonry infill filled in the load capacity gap from very low (0.05%) to drifts when the frame took over (0.75%). The structures behaved as linear monolithic elements to drifts of 0.1%, reached the maximum lateral capacities at drift of 0.3%, maintained it to drifts of 0.75% and after that their behaviour depended on the frame. Masonry infill had severe damage at drift levels of about 0.75% but contributed to the overall system resistance to drifts of about 1%. At that drift level, the frame had only minor damage and was tested to drifts of about 2% without any loss of capacity. Improvement of the ‘infill provisions’ in the codes could be sought by taking into account the contribution of a common masonry that reduces expected damages by lowering the drift levels. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

14.
为了研究设窗洞的蒸压加气混凝土砌块砌体承重墙的抗震性能,运用ABAQUS有限元分析软件对其进行了非线性分析。首先将有限元模型的计算结果与足尺试件的试验结果进行了对比验证,在此基础上,通过改变墙体的竖向压应力、水平配筋和开洞大小,研究了这些参数对墙体抗震性能的影响。研究表明:随着竖向压应力的增大,墙体水平承载力提高,而极限变形能力则有降低趋势;水平配筋可以提高墙体的承载力和变形性能;增大洞口水平尺寸导致极限承载力明显降低,而对其相应位移的影响则小得多。  相似文献   

15.
Unreinforced masonry infills are widely used in many parts of the world and it is common practice for seismic design to use simplified methods that usually do not take into account the interaction between the infill and the structure. Starting from the 1950s, many researchers have investigated the lateral response of masonry infills focusing on several different topics. The scientific interest on masonry infills is continuously raising due to the unsatisfactory seismic response of the infilled frame structures observed during post-event inspections and to the difficulty to contrive a widely scientifically and practical recognized solution. Although some modern codes consider the presence of infills with some specifications to prevent damage in the masonry panels and global and local effects on the structure, an effective evaluation of these detrimental effects has not been achieved yet. Within this paper, a FEM simulation of in-plane pseudo-static cyclic tests on a RC frame specimen infilled with unreinforced Autoclaved Aerated Concrete (AAC) masonry infill has been performed in order to study accurately the influence and the interaction of the infill with the RC structure. The experimental results performed by Calvi and Bolognini (J Earthq Eng 5:153–185, 1999), and Penna and Calvi (Campagna sperimentale su telai in c.a. con tamponamenti in Gasbeton (AAC) con diverse soluzioni di rinforzo” (in Italian), 2006) on one-bay one-storey full scale specimens are taken as reference. Non-linear static analyses using a “meso-modelling” approach have been carried out. The masonry used in the model has been calibrated according to tests of mechanical characterization and to in-plane cyclic tests on load-bearing AAC masonry conducted by Costa et al. (J Earthq Eng 15:1–31, 2011). The analyses performed have allowed to investigate the local effects on the frame and, in particular, the changes in the moment and shear demands on the RC elements due to the presence of the AAC infill in comparison with the ones in the bare structure, and to estimate the thrust and the contact length activated by the infill on the frame.  相似文献   

16.
为研究填充墙对底层框架多层砌体房屋地震反应的影响,以典型的填充墙-底层框架多层砌体房屋为基础,建立有限元计算模型并进行了弹塑性动力时程分析。根据不同模型的计算结果以及填充墙的刚度和强度,分析了填充墙对底层框架多层砌体房屋自振周期、地震作用下房屋整体变形、底层框架的损伤以及填充墙与底层框架相互作用的影响。计算结果表明:填充墙对房屋整体地震反应产生明显影响,其影响不能忽略。在上部砌体结构质量和刚度不变的情况下,结构自振周期随着填充墙刚度的增加而降低;随着填充墙与底层框架之间连接作用的增强,结构整体的变形减小,底层框架的损伤增大。当填充墙与底层框架之间采用弱连接时,采用强度较高的填充墙可以提高结构整体的变形能力,从而提高结构整体的抗震能力。  相似文献   

17.
Code design of unreinforced masonry (URM) buildings is based on elastic analysis, which requires as input parameter the effective stiffness of URM walls. Eurocode estimates the effective stiffness as 50% of the gross sectional elastic stiffness, but comparisons with experimental results have shown that this may not yield accurate predictions. In this paper, 79 shear‐compression tests of modern URM walls of different masonry typologies from the literature are investigated. It shows that both the initial and the effective stiffness increase with increasing axial load ratio and that the effective‐to‐initial stiffness ratios are approximately 75% rather than the stipulated 50%. An empirical relationship that estimates the E‐modulus as a function of the axial load and the masonry compressive strength is proposed, yielding better estimates of the elastic modulus than the provision in Eurocode 6, which calculates the E‐modulus as a multiple of the compressive strength. For computing the ratio of the effective to initial stiffness, a mechanics‐based formulation is built on a recently developed analytical model for the force‐displacement response of URM walls. The model attributes the loss in stiffness to diagonal cracking and brick crushing, both of which are taken into account using mechanical considerations. The obtained results of the effective‐to‐initial stiffness ratio agree well with the test data. A sensitivity analysis using the validated model shows that the ratio of effective‐to‐initial stiffness is for most axial load ratios and wall geometries around 75%. Therefore, a modification of the fixed ratio of effective‐to‐initial stiffness from 50% to 75% is suggested.  相似文献   

18.
This paper reports the results of cyclic loading tests performed on four specimens consisting of reinforced concrete frames with brick infill walls. The brick infill is pre‐laid, followed by the cast in‐place RC columns and beams. Test parameters include the height‐to‐length ratio of the brick infill wall and the mortar compressive strength. Test results reveal that the in‐plane lateral strength of brick infill wall is related to the fracture path. The fracture path for brick infill walls with large height‐to‐length ratios includes bed joints, cross joints, and vertical splitting of bricks. As a result, the lateral strength of this type of brick infill wall is larger. In comparison, the fracture path for brick infill walls with small height‐to‐length ratios only passes through joints, which is the reason why they have lower lateral strength. Mortar with higher strength improves the lateral strength of brick infill wall. In addition to presenting experimental observations in detail, this paper compares the test results with those obtained from existing methods for assessment of seismic resistance. Comments and recommendations are offered with respect to the capabilities of the assessment methods in predicting stiffness, strength, and ultimate deformation capacity of brick infill walls. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   

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