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Compressive properties of glue-laminated timber circular post modified by basalt fiber reinforced polymer
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作者 WEI Peixing GUO Wenzhen +2 位作者 ZHAO Mingjing GUO Zhensheng WANG Jianhe 《林业工程学报》 CSCD 北大核心 2024年第5期67-74,共8页
Glued timber structure is one of the main forms of modern wood architecture,which has gradually developed towards mid-and high-rise buildings.Glue-laminated timber(GLT)is comprised of several laminates of parallel-to-... Glued timber structure is one of the main forms of modern wood architecture,which has gradually developed towards mid-and high-rise buildings.Glue-laminated timber(GLT)is comprised of several laminates of parallel-to-grain dimension lumber that are bonded together with durable,moisture resistant structural adhesives.GLT can be used in horizontal applications as a beam and in vertical applications as a post.So,its compressive performance has a significant impact on structural safety.Fiber reinforced polymers(FRPs)were commonly used to improve the bearing capacity of GLT components,and the structural and process parameters largely determined the reinforcement effect.This study was aimed at investigating the influence of structural and process parameters on the axial compression performance of GLT components.Three wrapping methods(middle-part,end-part and full wrapping)and three lengths(0.6,0.8,and 1.0 m)of wood post specimens were designed in this work and the axial compression performance and ductility of GLT post specimens modified by basalt fiber reinforced polymer(BFRP)were studied.The results showed that the effect of different BFRP wrapping methods on the compressive strength and elastic modulus of laminated wood was not statistically significant(P>0.05).The compressive bearing capacity of unreinforced GLT posts decreased with the increase of aspect ratio.The GLT posts with middle-part and end-part wrapping still followed this pattern,while the compressive bearing capacity of GLT posts with full wrapping showed a pattern of first decreasing and then increasing.For GLT with low aspect ratios(4.0 or 5.3),there was no correlation between the wrapping method and the compressive bearing capacity,while the compressive bearing capacity of GLT with a high aspect ratio(6.7)for middle-part,end-part and full wrapping increased by 3.5%,7.5%and 9.7%,respectively.Compared to the unreinforced group,the ultimate axial compressive strength and modulus of elasticity(MOE)of the 6-E series specimens reinforced at both ends decreased by 2.58%and 6.70%,respectively.The ultimate axial compressive strength of the 8-E specimens reinforced at both ends increased by 8.62%and the MOE decreased by 1.91%.The compressive strength of the 10-E specimens reinforced at both ends increased by 7.51%and the MOE increased by 8.14%.The failure modes of GLT with different aspects were consistent under the same BFRP wrapping,while the failure modes of GLT with the same aspect ratio were different for different BFRP wrapping methods.The ductility performance of GLT with different aspects ratio was improved by the BFRP wrapping. 展开更多
关键词 basalt fiber reinforced polymer(bfrp) GLT circular post bearing performance
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Compressive Performance of Fiber Reinforced Recycled Aggregate Concrete by Basalt Fiber Reinforced Polymer-Polyvinyl Chloride Composite Jackets 被引量:1
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作者 Zhijie Fan Huaxin Liu +2 位作者 Genjin Liu Xuezhi Wang Wenqi Cui 《Journal of Renewable Materials》 SCIE EI 2023年第4期1763-1791,共29页
The development of recycled aggregate concrete(RAC)provides a new approach to limiting the waste of natural resources.In the present study,the mechanical properties and deformability of RACs were improved by adding ba... The development of recycled aggregate concrete(RAC)provides a new approach to limiting the waste of natural resources.In the present study,the mechanical properties and deformability of RACs were improved by adding basalt fibers(BFs)and using external restraints,such as a fiber-reinforced polymer(FRP)jacket or a PVC pipe.Samples were tested under axial compression.The results showed that RAC(50%replacement of aggregate)containing 0.2%BFs had the best mechanical properties.Using either BFs or PVC reinforcement had a slight effect on the loadbearing capacity and mode of failure.With different levels of BFs,the compressive strengths of the specimens reinforced with 1-layer and 3-layer basalt fiber reinforced polymer(BFRP)increased by 6.7%–10.5%and 16.5%–23.7%,respectively,and the ultimate strains increased by 48.5%–80.7%and 97.1%–141.1%,respectively.The peak stress of the 3-layer BFRP-PVC increased by 42.2%,and the ultimate strain improved by 131.3%,relative to the control.This reinforcement combined the high tensile strength of BFRP,which improved the post-peak behavior,and PVC,which enhanced the structural durability.In addition,to investigate the influence of the various constraints on compressive behavior,the stress-strain response was analyzed.Based on the analysis of experimental results,a peak stress-strain model and an amended ultimate stress-strain model were proposed.The models were verified as well;the result showed that the predictions from calculations are generally consistent with the experimental data(error within 10%).The results of this study provide a theoretical basis and reference for future applications of fiber-reinforced recycled concrete. 展开更多
关键词 basalt fiber reinforced polymer polyvinyl chloride recycled aggregate concrete axial compression performance stress-strain relationships stress-strain model
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Shear Strength Evaluation of Concrete Beams Reinforced with BFRP Bars and Steel Fibers without Stirrups
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作者 Smitha Gopinath S.Meenu A.Ramachandra Murthy 《Computers, Materials & Continua》 SCIE EI 2016年第2期81-103,共23页
This paper presents experimental and analytical investigations on concrete beams reinforced with basalt fiber reinforced polymer(BFRP)and steel fibers without stirrups.Independent behaviour of BFRP reinforced beams an... This paper presents experimental and analytical investigations on concrete beams reinforced with basalt fiber reinforced polymer(BFRP)and steel fibers without stirrups.Independent behaviour of BFRP reinforced beams and steel fiber reinforced beams were evaluated and the effect of combining BFRP bars and steel fiber was investigated in detail.It is found that combining s teel fibers with BFRP could change the shear failure of BFRP reinforced beam to flexural failure.Further,the existing analytical models were reviewed and compared to predict the shear strength of both FRP reinforced and steel fiber reinforced beams.Based on the review,the appropriate model was chosen and modified to predict the shear strength of BFRP reinforced beam along with steel fibers. 展开更多
关键词 basalt fiber reinforced polymer(bfrp) Steel fibers Flexure Shear strength
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Fiber-Reinforced Polymers Based Rebar and Stirrup Reinforcing Concrete Structures
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作者 Marco Lindner Konrad Vanselow +1 位作者 Sandra Gelbrich Lothar Kroll 《材料科学与工程(中英文A版)》 2018年第2期47-54,共8页
关键词 聚合物基 增强纤维 体结构 纤维塑料 应用程序 纤维增强 测试验证 交通线路
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Strengthening effects of BFRP on reinforced concrete beams 被引量:5
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作者 黄丽华 李宇婧 王跃方 《Journal of Southeast University(English Edition)》 EI CAS 2013年第2期182-186,共5页
Reinforced concrete (RC) beams externally bonded with basalt fiber reinforced polymer (BFRP) are experimentally investigated by using different numbers of bonding plies, transverse anchorages as well as the initia... Reinforced concrete (RC) beams externally bonded with basalt fiber reinforced polymer (BFRP) are experimentally investigated by using different numbers of bonding plies, transverse anchorages as well as the initial conditions of strengthened beams. The performances of the BFRP strengthening are compared with those of the carbon fiber reinforced polymer (CFRP) and the glass fiber reinforced polymer (GFRP) under the same experimental condition. Experimental results indicate that the strength and ductility of the strengthened beam with two plies of the BFRP are improved remarkably than those with one ply. The strengthening effects of the BFRP lie between those of the CFRP and the GFRP. The BFRP strengthening is little influenced by pre-cracks of concrete. Most failures are caused by interfaciai debonding induced by flexural cracks in the experiment. Clamping of Uwraps along the whole beam is less efficient than endpoint anchorage for increasing the ultimate load of the strengthened beam. Finally, the models suggested by the five guidelines for predicting the debonding strain of the CFRP are extended to the BFRP and the conservative estimates of the debonding strain of the BFRP are given as well. 展开更多
关键词 basalt fiber reinforced polymer bfrp strengthening reinforced concrete beam EXPERIMENT stren^thenin~ zuidelines
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BFRP筋回收轮胎钢纤维混凝土黏结性能分析 被引量:1
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作者 范小春 黄祎晨 +1 位作者 张澳 徐伟 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第2期389-397,共9页
对玄武岩纤维增强复合材料(BFRP)筋在回收轮胎钢纤维(RTSF)混凝土中的黏结性能进行了试验和分析研究.对不同RTSF体积掺量、BFRP筋直径和嵌入长度的试件进行了拉拔试验,研究其对黏结破坏模式、黏结滑移响应和黏结强度的影响,并提出了BFRP... 对玄武岩纤维增强复合材料(BFRP)筋在回收轮胎钢纤维(RTSF)混凝土中的黏结性能进行了试验和分析研究.对不同RTSF体积掺量、BFRP筋直径和嵌入长度的试件进行了拉拔试验,研究其对黏结破坏模式、黏结滑移响应和黏结强度的影响,并提出了BFRP筋RTSF混凝土的黏结滑移理论模型.结果表明:BFRP筋RTSF混凝土黏结破坏类型包括拔出破坏、劈裂破坏以及拔出且劈裂破坏;BFRP筋直径对黏结破坏模式无显著影响,而RTSF体积掺量、BFRP筋直径和嵌入长度均对黏结强度有较大影响,且RTSF体积掺量与极限黏结强度呈正相关,BFRP筋直径和嵌入长度对其影响与之相反;当RTSF体积掺量从0增大至1.5%时,其极限黏结强度最大可提高约23.87%.与已有模型相比,所提出的黏结滑移理论模型对BFRP筋RTSF混凝土的黏结滑移曲线具有更高的拟合精度. 展开更多
关键词 bfrp 回收轮胎钢纤维(RTSF)混凝土 拉拔试验 黏结应力-滑移曲线
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BFRP模壳不排水加固RC墩柱恢复力模型
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作者 张景杭 夏樟华 +3 位作者 姜绍飞 洪俊贤 朱朴 范千 《振动与冲击》 EI CSCD 北大核心 2024年第16期192-203,共12页
为研究玄武岩纤维增强聚合物(basalt fiber reinforced polymer, BFRP)模壳不排水加固钢筋混凝土(reinforced concrete, RC)墩柱抗震恢复力模型,在拟静力试验基础上,采用OpenSees有限元软件对模壳加固墩柱进行数值分析,主要研究参数为... 为研究玄武岩纤维增强聚合物(basalt fiber reinforced polymer, BFRP)模壳不排水加固钢筋混凝土(reinforced concrete, RC)墩柱抗震恢复力模型,在拟静力试验基础上,采用OpenSees有限元软件对模壳加固墩柱进行数值分析,主要研究参数为填充层混凝土强度、模壳厚度、加固高度、轴压比。研究表明:填充层混凝土强度等级越高,墩柱抗震性能有所增强,但C40以上的填充层混凝土强度等级墩柱的抗震性能较为接近;模壳加固厚度较大墩柱的抗震性能优于厚度较小墩柱;当模壳加固高度较高时,墩柱的抗震性能较好,当加固高度大于2~3倍原墩柱塑性铰高度时,抗震性能提升效果趋于稳定;轴压比越大,墩柱的刚度退化较快,不利延性发展。后通过数据回归分析,建立了BFRP模壳加固RC墩柱恢复力模型,对比可知,恢复力模型与试验曲线拟合较好,能有效反映加固墩柱的滞回性能,可为此类结构的抗震性能分析提供参考。 展开更多
关键词 玄武岩纤维增强聚合物(bfrp)模壳 不排水加固 钢筋混凝土(RC)墩柱 有限元 参数分析 恢复力模型
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A low-cost and high-strength basalt/carbon fiber reinforced polymer improved by imitating tree-root micro/nano aramid short fiber
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作者 Guangming YANG Yanan LYU +6 位作者 Fei CHENG Jiaxin HE Shihao ZUO Wenyi HUANG Yunsen HU Xiaozhi HU Xi CHEN 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2024年第10期526-538,共13页
The high-strength Basalt Carbon Fiber Reinforced Polymer(BCFRP)composites had been manufactured by guiding Imitating Tree-root Micro/Nano Aramid Short Fiber(ITMNASF)into the interlayer of Basalt Fiber(BF)and Carbon Fi... The high-strength Basalt Carbon Fiber Reinforced Polymer(BCFRP)composites had been manufactured by guiding Imitating Tree-root Micro/Nano Aramid Short Fiber(ITMNASF)into the interlayer of Basalt Fiber(BF)and Carbon Fiber(CF)plies to form thin interleaving,and various mass proportions of IT-MNASF were designed to discuss the reinforcing effect on the BCFRP heterogeneous composites.The results of three points bending tests showed that flexural strength and energy absorption of 4wt%IT-MNASF reinforced BCFRP heterogeneous composites had been improved by 32.4%and 134.4%respectively compared with that of unreinforced specimens.The 4wt%IT-MNASF reinforced BCFRP specimens showed both a greater strength and a lower cost(reduced by 31%around)than that of plain CFRP composites.X-ray micro-computed tomography scanning results exhibited that the delamination-dominated failure of plain BCFRP composites was changed into multi-layer BF and CF fabrics damage.The reinforcing mechanism revealed that the introduced IT-MNASF could construct quasi-vertical fiber bridging,and it was used as"mechanical claws"to grasp adjacent fiber layers for creating a stronger mechanical interlocking,and this effectively improved resin-rich region and interfacial transition region at the interlayers.The simple and effective IT-MNASF interleaving technique was very successful in low-cost and high-strength development of BCFRP heterogeneous composites. 展开更多
关键词 basalt carbon fiber reinforced polymer Micro/nano aramid fiber fiber bridging Strength improvement Low-cost substitution
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降雨条件下三级桥基岸坡-BFRP锚杆体系的协同变形机制研究
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作者 杨昊天 吴红刚 +2 位作者 韦洪 赖国泉 尹威江 《岩土力学》 EI CAS CSCD 北大核心 2024年第S01期267-276,共10页
为探讨降雨条件下三级桥基岸坡-玄武岩纤维增强复合材料(basalt fiber reinforced polymer,简称BFRP)杆体系的水文响应和协同变形机制,以实际工程案例为依托开展室内物理模型试验,测试得到了坡体含水率、土压力、锚杆轴力及应变响应数... 为探讨降雨条件下三级桥基岸坡-玄武岩纤维增强复合材料(basalt fiber reinforced polymer,简称BFRP)杆体系的水文响应和协同变形机制,以实际工程案例为依托开展室内物理模型试验,测试得到了坡体含水率、土压力、锚杆轴力及应变响应数据。分析了边坡降雨-入渗-变形的阶段性演化规律及过程响应,提出了坡体“分级加固,兼顾整体与局部”原则的强度-渗流-变形综合防控措施。基于多属性响应数据系统,阐明了桥基岸坡-BFRP锚杆体系的协同变形机制。结果表明:降雨条件下桥基岸坡表现出由3级→2级→1级的变形演化趋势,1级边坡底部在积水软化、卸荷回弹和应力集中效应影响下更易发生累积性破坏。边坡张拉裂缝初步形成或扩展时,BFRP锚杆轴力呈受拉突增趋势,即边坡的阶段性变形特征与BFRP锚杆轴力的变化趋势较为吻合,该指标有望为降雨条件下边坡的变形监测提供可靠依据。BFRP锚杆的柔性加固性能可有效遏制降雨诱发的坡体变形,在此基础上应采取坡体排水和绿化护坡等措施对其进行补强加固。 展开更多
关键词 桥基岸坡 玄武岩纤维增强复合材料(bfrp) 协同变形机制 降雨条件
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BFRP/HFRP布-混凝土界面黏结性能试验研究 被引量:20
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作者 施嘉伟 朱虹 +1 位作者 吴智深 吴刚 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2010年第3期554-558,共5页
为了深入了解BFRP(玄武岩纤维增强复合材料)及HFRP(混杂FRP)布外贴加固混凝土结构的界面黏结性能,进行了单调荷载下BFRP/HFRP布-混凝土界面力学性能的试验研究.试验采用双面剪切试件的形式,利用数字图像相关(DIC)法测量FRP表面的应变分... 为了深入了解BFRP(玄武岩纤维增强复合材料)及HFRP(混杂FRP)布外贴加固混凝土结构的界面黏结性能,进行了单调荷载下BFRP/HFRP布-混凝土界面力学性能的试验研究.试验采用双面剪切试件的形式,利用数字图像相关(DIC)法测量FRP表面的应变分布.试验结果表明:与同层数CFRP试件相比,BFRP-混凝土界面剥离承载力较低,但剥离破坏过程具有延性特征;与碳纤维混杂后,HFRP-混凝土界面的承载力明显提高.基于该试验结果发现,最大界面断裂能、最大剪应力与FRP刚度存在着一定的相关性;经过与应变片数据比较,证实了DIC法用于FRP-混凝土界面试验应变测量的可靠性. 展开更多
关键词 FRP 混杂纤维 玄武岩纤维 剥离 数字图像相关
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Experimental study on the durability of BFRP bars embedded in concrete 被引量:4
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作者 朱莹 吴刚 +2 位作者 董志强 汪昕 吴智深 《Journal of Southeast University(English Edition)》 EI CAS 2014年第3期323-329,共7页
This paper presents an experimental study on the alkali-resistant properties of basalt fiber reinforced polymers (BFRP) bars under a typical concrete environment. BFRP bars were embedded in concrete and exposed to d... This paper presents an experimental study on the alkali-resistant properties of basalt fiber reinforced polymers (BFRP) bars under a typical concrete environment. BFRP bars were embedded in concrete and exposed to different aggressive environments, including tap water, saline solution and ambient temperature environments, to study the effects of the type of solution and relative humidity (RH) on the durability of BFRP. Meanwhile, BFRP bars were directly immersed in an alkaline solution for comparison. The acceleration factor describing the relationship between the alkaline solution immersion and the moisture-saturated concrete was also obtained. Aging was accelerated with a temperature of 60 ℃. The results show that the chloridion in the saline solution does not have any harmful effects on the degradation of the concrete-encased BFRP bars. Contact with an alkaline (high pH) concrete pore-water solution is the primary reason for the degradation of the BFRP bars. The degradation rate of concrete-encased BFRP bars is accelerated when a high temperature and a high humidity are present simultaneously. The degradation rate of the BFRP bars is relatively quick at the initial stage and slows down with exposure time. Results show that the degradation of 2.18 years in moisture-saturated concrete at 60 ℃corresponds to that of one year when directly immersed in an alkaline solution (other conditions remaining the same) for the BFRP bars analyzed. 展开更多
关键词 CONCRETE basalt fiber reinforced polymers bfrp bar DURABILITY alkalinity environment chloride environment acceleration factor
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BFRP连续配筋复合式路面配筋设计 被引量:10
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作者 葛倩如 黄志义 +1 位作者 王金昌 张晨旭 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2015年第1期186-192,共7页
为了控制连续配筋混凝土(CRC)路面结构在温降干缩作用下产生的横向裂缝,利用解析法推导裂缝控制指标的计算公式.结合有限元模拟验证解析公式的有效性,分析玄武岩纤维(BFRP)筋的材料特性与配筋方案对裂缝的影响.研究结果表明:解析法与有... 为了控制连续配筋混凝土(CRC)路面结构在温降干缩作用下产生的横向裂缝,利用解析法推导裂缝控制指标的计算公式.结合有限元模拟验证解析公式的有效性,分析玄武岩纤维(BFRP)筋的材料特性与配筋方案对裂缝的影响.研究结果表明:解析法与有限元模拟结果吻合,可以用于CRC+AC复合式路面BFRP配筋设计;BFRP筋弹性模量对裂缝间距与宽度的影响显著,为了减小裂缝宽度,采用弹性模量较高为宜;BRFP筋黏结刚度对裂缝间距与裂缝宽度的影响较大,黏结刚度不应低于20GPa/m;相同配筋率时,小直径小间距方案对裂缝控制有利,配筋率不宜小于0.5%;考虑BFRP材料的耐腐蚀性,建议提高裂缝间距与宽度控制指标,分别不大于2.0m和1.0mm. 展开更多
关键词 CRC+AC复合式路面 玄武岩纤维(bfrp) 配筋设计 裂缝
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BFRP和CFRP加固受弯混凝土界面疲劳性能试验 被引量:8
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作者 谢建和 黄昆泓 +2 位作者 李自坚 张洹 许光辉 《建筑科学与工程学报》 CAS 北大核心 2015年第4期53-59,共7页
以纤维增强复合材料(FRP)片材外贴混凝土受弯构件为研究对象,探讨玄武岩纤维(BFRP)和碳纤维增强复合材料(CFRP)加固混凝土界面疲劳性能。通过实施四点弯曲加载试验,研究了BFRP和CFRP加固混凝土界面疲劳破坏模式、界面疲劳裂缝扩展规律... 以纤维增强复合材料(FRP)片材外贴混凝土受弯构件为研究对象,探讨玄武岩纤维(BFRP)和碳纤维增强复合材料(CFRP)加固混凝土界面疲劳性能。通过实施四点弯曲加载试验,研究了BFRP和CFRP加固混凝土界面疲劳破坏模式、界面疲劳裂缝扩展规律以及构件跨中挠度和FRP应变随加载循环次数的变化规律,并对BFRP和CFRP加固混凝土界面的静载剥离承载力和疲劳寿命进行了分析,给出了BFRP和CFRP加固混凝土界面的疲劳强度。研究结果表明:与BFRP-混凝土界面相比,CFRP-混凝土界面的静载剥离承载力提高了约50%,其疲劳寿命也明显提高;既有疲劳历程对BFRP和CFRP加固混凝土界面的静载剥离承载力影响不大。 展开更多
关键词 结构工程 剥离承载力 玄武岩纤维 碳纤维增强复合材料 界面 疲劳
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BFRP与混凝土有效粘结长度的试验 被引量:6
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作者 邢建英 杨勇新 +2 位作者 陈绪军 胡玲 汪健根 《华侨大学学报(自然科学版)》 CAS 北大核心 2009年第5期553-556,共4页
通过27个混凝土与玄武岩纤维增强复合材料(BFRP)的粘结试件的单剪试验,考察树脂种类、混凝土强度、粘结长度等因素对粘结性能的影响.通过描述粘结界面破坏形态,测量BFRP与混凝土界面的应变分布规律,分析界面粘结应力的分布规律.... 通过27个混凝土与玄武岩纤维增强复合材料(BFRP)的粘结试件的单剪试验,考察树脂种类、混凝土强度、粘结长度等因素对粘结性能的影响.通过描述粘结界面破坏形态,测量BFRP与混凝土界面的应变分布规律,分析界面粘结应力的分布规律.结果表明,当混凝土强度在C20-C40的强度等级范围内,随着混凝土强度等级的提高,有效粘结长度稍微有所减少,可以确定为80mm. 展开更多
关键词 玄武岩纤维增强复合材料 混凝土 有效粘结长度 单剪试验
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玄武岩纤维(BFRP)筋与混凝土粘结性能试验研究 被引量:20
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作者 沈新 顾兴宇 陆佳颖 《交通运输工程与信息学报》 2010年第3期124-130,共7页
玄武岩纤维筋是一种新型的复合材料,具有强度高、耐腐蚀等特点,用它代替混凝土路面结构中的钢筋,可解决因雨水进入引起的连续配筋混凝土路面钢筋锈蚀问题。玄武岩纤维筋与混凝土的粘结性能,是影响其推广应用的关键技术之一。本文运用18... 玄武岩纤维筋是一种新型的复合材料,具有强度高、耐腐蚀等特点,用它代替混凝土路面结构中的钢筋,可解决因雨水进入引起的连续配筋混凝土路面钢筋锈蚀问题。玄武岩纤维筋与混凝土的粘结性能,是影响其推广应用的关键技术之一。本文运用18个中心拉拔试件研究了不同螺纹表面玄武岩纤维筋与混凝土之间的粘结性能,试验结果表明:玄武岩纤维筋与混凝土试验粘结强度在11.592~23.578MPa之间,粘结强度随着玄武岩纤维筋表面螺纹深度与螺纹间距的变化而变化;有螺纹玄武岩纤维筋的粘结强度明显高于无螺纹玄武岩纤维筋,玄武岩纤维筋最佳螺纹间距约为筋直径长度的80%,最佳螺纹深度约为直径长度的10%;拉拔试件的破坏形态均为玄武岩纤维筋与混凝土接触面混凝土的剪切破坏而拔出。 展开更多
关键词 玄武岩纤维筋 拉拔试验 粘结强度 混凝土
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BFRP加固震损混凝土框架节点抗震性能试验研究 被引量:5
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作者 苏磊 陆洲导 +2 位作者 张克纯 余江滔 程莉 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2010年第3期559-564,共6页
通过4组三维混凝土框架节点进行模拟地震的预损伤试验、构件加固和加固后的低周反复试验,研究不同受损程度下玄武岩纤维加固后节点的抗震性能.通过对试验现象与相关结果包括极限承载力、极限位移、延性系数、钢筋应变、玄武岩纤维应变... 通过4组三维混凝土框架节点进行模拟地震的预损伤试验、构件加固和加固后的低周反复试验,研究不同受损程度下玄武岩纤维加固后节点的抗震性能.通过对试验现象与相关结果包括极限承载力、极限位移、延性系数、钢筋应变、玄武岩纤维应变、耗散能力等方面进行分析表明,楼板对框架梁抗弯承载力的贡献是不容忽视的.经过玄武岩纤维加固后节点的极限承载力和抗震性能达到并超过未加固时的水平,玄武岩纤维可以提高节点核心区的承载力和黏结滑移性能,在较大荷载下,有效约束混凝土柱的横向膨胀和变形,加固后节点的最终破坏形式由柱端的压弯和节点的剪切破坏转变为梁、板的弯曲破坏,即由"弱柱强梁"转变成了"强柱弱梁"的破坏形式.研究结果表明,玄武岩纤维加固地震灾害后的钢筋混凝土框架节点是合理、有效的. 展开更多
关键词 地震损伤 玄武岩纤维 抗震性能 三维框架节点 计算分析
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BFRP筋与混凝土的粘结-滑移本构关系 被引量:11
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作者 单炜 张绍逸 《建筑科学与工程学报》 CAS 北大核心 2013年第2期15-20,共6页
为研究玄武岩纤维增强复合材料(BFRP)筋与混凝土的粘结-滑移本构关系,探讨BFRP筋与混凝土的受力过程,对16组共96个不同参数的粘结试件进行拉拔试验,每组选取1个试验结果,得到试件的粘结-滑移曲线。将BFRP筋与混凝土的粘结-滑移曲线细分... 为研究玄武岩纤维增强复合材料(BFRP)筋与混凝土的粘结-滑移本构关系,探讨BFRP筋与混凝土的受力过程,对16组共96个不同参数的粘结试件进行拉拔试验,每组选取1个试验结果,得到试件的粘结-滑移曲线。将BFRP筋与混凝土的粘结-滑移曲线细分为微滑移阶段、滑移阶段、下降阶段和残余应力阶段共4个阶段。基于试验结果,在已有的粘结-滑移本构模型基础上进行改进,建立了适用于BFRP筋与混凝土粘结-滑移本构关系的理论模型。研究结果表明:微滑移阶段粘结-滑移曲线近似于直线上升,滑移阶段粘结-滑移曲线逐渐偏离直线呈非线性上升,下降阶段粘结-滑移曲线近似于线性下降,残余应力阶段粘结-滑移曲线近似于周期性递减的正弦函数;该模型与试验结果吻合良好,能较好地反映BFRP筋与混凝土之间的受力过程,可为今后BFRP筋与混凝土锚固性能的理论分析和工程应用提供参考。 展开更多
关键词 玄武岩纤维筋 粘结-滑移 拉拔试验 本构关系 混凝土 理论模型
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BFRP加固严重震损砌体砖墙抗震性能 被引量:2
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作者 雷真 周德源 王继兵 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2013年第12期5084-5090,共7页
通过对6片砌体砖墙进行模拟地震作用下的预损伤试验、构件修复加固和加固后的低周反复试验,探讨不同玄武岩纤维用量、不同竖向荷载作用下纤维玄武岩纤维(BFRP)加固严重震损砖墙的抗震性能。通过对试验现象及相关数据包括极限承载力、极... 通过对6片砌体砖墙进行模拟地震作用下的预损伤试验、构件修复加固和加固后的低周反复试验,探讨不同玄武岩纤维用量、不同竖向荷载作用下纤维玄武岩纤维(BFRP)加固严重震损砖墙的抗震性能。通过对试验现象及相关数据包括极限承载力、极限位移、延性系数、滞回&延性曲线、刚度退化等方面进行分析。研究结果表明:裂缝修复对震损砖墙承载力恢复的贡献是不容忽视的,砖墙的极限承载力和抗震性能经过玄武岩纤维加固后达到并超过未加固时的水平。玄武岩纤维加固震损砌体结构是合理、有效的,值得在灾后恢复重建阶段中推广。 展开更多
关键词 玄武岩纤维 砌体砖墙 修复加固 承载力 抗震性能
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BFRP加固砌体墙抗震性能试验研究 被引量:4
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作者 赵少伟 胡霖嵩 裴文博 《河北工业大学学报》 CAS 2016年第2期104-110,共7页
为了研究不同加固方式、加固不同损伤程度墙体的抗震性能,通过对玄武岩纤维布(BFRP)加固后的4片墙体进行低周反复荷载试验,并分析其破坏形态、承载力、变形性能、耗能能力、加固效果等.研究结果表明:采用BFRP加固砌体墙的方法,可以不同... 为了研究不同加固方式、加固不同损伤程度墙体的抗震性能,通过对玄武岩纤维布(BFRP)加固后的4片墙体进行低周反复荷载试验,并分析其破坏形态、承载力、变形性能、耗能能力、加固效果等.研究结果表明:采用BFRP加固砌体墙的方法,可以不同程度的提升墙体的极限承载力及延性,提高墙体的整体性,延缓刚度退化,从而改善墙体抗震性能. 展开更多
关键词 砌体结构加固 玄武岩纤维布(bfrp) 拟静力试验 抗剪承载力 抗震性能
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等离子体处理对BFRP增强结构用集成材胶合性能的影响 被引量:2
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作者 王希俊 申士杰 靳婷婷 《林产工业》 北大核心 2014年第6期28-30,共3页
通过改变空气等离子体设备的功率、离子焰口距离、传送速度,对玄武岩纤维增强复合材料(BFRP)表面进行等离子体处理,并将处理后的BFRP与樟子松进行胶合。经等离子体处理后板材胶合性能明显改善,达到了标准要求。通过SEM、FTIR等方法对处... 通过改变空气等离子体设备的功率、离子焰口距离、传送速度,对玄武岩纤维增强复合材料(BFRP)表面进行等离子体处理,并将处理后的BFRP与樟子松进行胶合。经等离子体处理后板材胶合性能明显改善,达到了标准要求。通过SEM、FTIR等方法对处理后BFRP进行分析,初步解释了等离子体处理能提高胶合性能的原因:等离子体处理BFRP后,材料表面发生化学变化,且对表面起到刻蚀作用,从而使BFRP表面化学与物理性能得到改善。 展开更多
关键词 等离子体 bfrp 胶合性能 集成材
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