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A review on machinability of carbon fiber reinforced polymer(CFRP)and glass fiber reinforced polymer(GFRP)composite materials 被引量:41
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作者 Meltem Altin Karatas Hasan Gokkaya 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2018年第4期318-326,共9页
Fiber reinforced polymer(FRP) composite materials are heterogeneous and anisotropic materials that do not exhibit plastic deformation. They have been used in a wide range of contemporary applications particularly in s... Fiber reinforced polymer(FRP) composite materials are heterogeneous and anisotropic materials that do not exhibit plastic deformation. They have been used in a wide range of contemporary applications particularly in space and aviation,automotive,maritime and manufacturing of sports equipment. Carbon fiber reinforced polymer(CFRP) and glass fiber reinforced polymer(GFRP) composite materials,among other fiber reinforced materials,have been increasingly replacing conventional materials with their excellent strength and low specific weight properties. Their manufacturability in varying combinations with customized strength properties,also their high fatigue,toughness and high temperature wear and oxidation resistance capabilities render these materials an excellent choice in engineering applications.In the present review study,a literature survey was conducted on the machinability properties and related approaches for CFRP and GFRP composite materials. As in the machining of all anisotropic and heterogeneous materials,failure mechanisms were also reported in the machining of CFRP and GFRP materials with both conventional and modern manufacturing methods and the results of these studies were obtained by use of variance analysis(ANOVA),artificial neural networks(ANN) model,fuzzy inference system(FIS),harmony search(HS) algorithm,genetic algorithm(GA),Taguchi's optimization technique,multi-criteria optimization,analytical modeling,stress analysis,finite elements method(FEM),data analysis,and linear regression technique. Failure mechanisms and surface quality is discussed with the help of optical and scanning electron microscopy,and profilometry. ANOVA,GA,FEM,etc. are used to analyze and generate predictive models. 展开更多
关键词 composite MATERIALS fiber reinforced polymer composite MATERIALS Cfrp Gfrp Machining Wear Surface damage
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Application of Glass Fiber Reinforced Polymer Composite (GFRPC) Escape Pipeline in Tunnel
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作者 Enhai Tuo 《Journal of World Architecture》 2019年第5期5-12,共8页
During the tunnel construction process,unfavorable geological conditionsare often encountered.Geological disasters such as collapse,roof fall,water inrush,gas explosion,etc.occur frequently,causing different degrees o... During the tunnel construction process,unfavorable geological conditionsare often encountered.Geological disasters such as collapse,roof fall,water inrush,gas explosion,etc.occur frequently,causing different degrees of property damage and casualties to the construction of the tunnel,seriously affecting harmony during construction.The domestic emergency hedging is mainly the use of 8-10mm steel coils,but the steel is heavy and not suitable for the frequent movement of tunnels.This paper introduces the new Glass Fiber Reinforced Polymer Composite(GFRPC)escape pipeline used in Chongqing Jiuyongyi Jinyunshan Tunnel,and compares the traditional steel coil parameters to provide reference for subsequent tunnel hedging measures. 展开更多
关键词 TUNNEL glass fiber reinforced polymer composite ESCAPE PIPE Light and safety
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Compressive Strength Estimation for the Fiber-Reinforced Polymer (FRP)-Confined Concrete Columns with Different Shapes Using Artificial Neural Networks 被引量:3
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作者 曹玉贵 李小青 胡隽 《Journal of Donghua University(English Edition)》 EI CAS 2015年第3期395-400,共6页
An evaluation of existing strength of concrete columns confined with fiber-reinforced polymer( FRP) was presented with extensive collection of experimental data. According to the evaluation results, artificial neural ... An evaluation of existing strength of concrete columns confined with fiber-reinforced polymer( FRP) was presented with extensive collection of experimental data. According to the evaluation results, artificial neural networks( ANNs) model to predict the ultimate strength of FRP confined column with different shapes was proposed. The models had seven inputs including the column length,the tensile strength of the FRP in the hoop direction,the total thickness of FRP,the diameter of the concrete specimen,the elastic modulus of FRP,the corner radius and the concrete compressive strength. The compressive strength of the confined concrete was the output data. The results reveal that the proposed models have good prediction and generalization capacity with acceptable errors. 展开更多
关键词 compressive strength concrete column artificial neural networks(ANN) fiber-reinforced polymer(frp)
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THE EFFECT OF POLYMER IN STEEL FIBER REINFORCED CEMENT COMPOSITES
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作者 吴少鹏 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 1999年第3期23-27,52,共6页
Three kinds of polymers, polymethyl acrylate emulsion (POLYVINYLformal solution (PV- FO), styrene acrylate copolymer emulsion (SA)are chosen To study the effect of polymer in steel fiber rein forcedce- Ment composites... Three kinds of polymers, polymethyl acrylate emulsion (POLYVINYLformal solution (PV- FO), styrene acrylate copolymer emulsion (SA)are chosen To study the effect of polymer in steel fiber rein forcedce- Ment composites (SFRCC). The experimental results show That thebonding properties in SFRCC are remarkably im- Proved after theaddition of three kinds of polymer. 展开更多
关键词 polymer steel fiber reinforced cement composites effect mechanism
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B/CFRP筋海水海砂活性粉末混凝土梁抗弯性能研究
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作者 周芬 李丽娟 +1 位作者 彭飞 朱德举 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第9期145-154,共10页
为研究B/CFRP-SSRPC结构的抗弯性能,以配筋率及梁截面高度为研究因素,对5根B/CFRP-SSRPC梁开展四点弯曲试验研究,探究研究因素对B/CFRP-SSRPC梁极限承载力、跨中挠度及破坏模式等的影响规律.试验结果表明:增大配筋率仅对试验梁开裂后抗... 为研究B/CFRP-SSRPC结构的抗弯性能,以配筋率及梁截面高度为研究因素,对5根B/CFRP-SSRPC梁开展四点弯曲试验研究,探究研究因素对B/CFRP-SSRPC梁极限承载力、跨中挠度及破坏模式等的影响规律.试验结果表明:增大配筋率仅对试验梁开裂后抗弯性能有明显提升,增大梁截面高度对试验梁开裂前及开裂后抗弯性能均有提升,且对试验梁开裂前抗弯性能的提升更明显;所有试验梁均为脆性破坏,破坏模式与配筋率密切相关;现行中国、美国两国FRP筋普通混凝土结构设计规范均低估了B/CFRP-SSRPC梁的抗弯承载力及抗剪承载力,计算误差分别受试验梁的破坏模式及剪跨比影响. 展开更多
关键词 海水海砂混凝土 frp 四点弯曲试验
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FRP布材增强钢筋混凝土桩水平承载性能研究
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作者 张建伟 樊亚龙 +2 位作者 娄蒙凡 边汉亮 丁乐 《建筑结构》 北大核心 2024年第4期80-85,148,共7页
纤维增强复合材料(FRP)由于其轻质高强的优点被广泛应用于抗震加固、结构补强等实际工程中,但有关FRP增强混凝土桩水平承载性能的研究较少。为了研究不同FRP布材加固混凝土桩承载特性问题,通过室内模型试验对FRP布桩(普通钢筋混凝土桩... 纤维增强复合材料(FRP)由于其轻质高强的优点被广泛应用于抗震加固、结构补强等实际工程中,但有关FRP增强混凝土桩水平承载性能的研究较少。为了研究不同FRP布材加固混凝土桩承载特性问题,通过室内模型试验对FRP布桩(普通钢筋混凝土桩身包裹FRP布材)的水平承载规律进行研究,探究了不同包裹层数、不同FRP布材类型、不同布材混合包裹对钢筋混凝土桩承载性能的影响。同时利用ABAQUS软件建立FRP布桩三维有限元模型,对每种工况进行数值模拟。结果表明,FRP布桩的水平承载性能随着包裹层数的增加而提升,提升效果与包裹层数之间并不存在正比例关系;不同布材类型的FRP布桩中,CFRP布对FRP布桩的水平承载性能提升效果最优;混合包裹(CFRP+GFRP)的提升效果要略优于包裹2层GFRP布。 展开更多
关键词 纤维增强复合材料 约束混凝土 frp布桩 水平承载特性 数值分析
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FRP筋混凝土短梁抗剪性能试验研究及承载力计算
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作者 宋博 金浏 杜修力 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第5期1080-1088,共9页
为分析梁高、剪跨比、腹筋率等参数对纤维增强聚合物(FRP)筋混凝土短梁抗剪承载力的定量影响,并验证前期基于拉杆拱模型提出的抗剪承载力计算方法的科学合理性,对11根玄武岩FRP筋混凝土短梁开展了剪切破坏试验,试验梁最大梁高为1.2 m.... 为分析梁高、剪跨比、腹筋率等参数对纤维增强聚合物(FRP)筋混凝土短梁抗剪承载力的定量影响,并验证前期基于拉杆拱模型提出的抗剪承载力计算方法的科学合理性,对11根玄武岩FRP筋混凝土短梁开展了剪切破坏试验,试验梁最大梁高为1.2 m.试验结果表明,梁高、剪跨比、水平腹筋率、竖向腹筋率均对FRP筋混凝土短梁的抗剪承载力有显著影响.当梁高由300 mm增大到1200 mm,试验梁的无量纲极限抗剪强度下降46.7%.当水平腹筋率由0增大至1.0%,试验梁的无量纲极限抗剪强度提高40.5%.基于拉杆拱模型提出的抗剪承载力计算式可以合理反映梁高、剪跨比、水平腹筋率等因素的影响规律,计算结果与本试验结果及搜集试验数据均吻合良好. 展开更多
关键词 混凝土短梁 纤维增强聚合物(frp)筋 抗剪承载力 计算方法 拉杆拱模型
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冰球和钨珠非正冲击下T800-CFRP层合板损伤特性的研究
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作者 尚晓壮 刘瑶璐 +3 位作者 冯晓伟 胡宁 谭晓军 胡艳辉 《振动与冲击》 EI CSCD 北大核心 2024年第11期135-147,共13页
通过试验和仿真相结合的方法研究了T800碳纤维增强复合材料(CFRP)层合板在冰球和钨珠非正冲击作用下的损伤特性。首先开展了冰球和钨珠在给定工况下高速撞击T800-CFRP层合板试验,以此对仿真模型的有效性进行验证;然后讨论了T800-CFRP层... 通过试验和仿真相结合的方法研究了T800碳纤维增强复合材料(CFRP)层合板在冰球和钨珠非正冲击作用下的损伤特性。首先开展了冰球和钨珠在给定工况下高速撞击T800-CFRP层合板试验,以此对仿真模型的有效性进行验证;然后讨论了T800-CFRP层合板在两种冲击体以不同冲击能量与冲击角度作用下的损伤特性及其差异性。研究表明:钨珠在冲击能量较低时就能对层合板造成穿孔损伤,但随着冲击能量增大层合板的损伤程度呈下降趋势;冰球对层合板造成损伤的冲击能量阈值与钨珠的相比要高很多,且随着冲击能量的增加损伤程度明显加剧;钨珠在冲击角度为45°和60°时造成的损伤与正冲击的情况相比要更加严重,而冲击角度为30°时造成的损伤却小于正冲击的情况;冰球冲击时,层合板的损伤程度随冲击角度的增加而减小。该研究有助于深化对T800-CFRP层合板在冲击载荷作用下的损伤与破坏行为的认识,具有重要的科学意义和工程应用价值。 展开更多
关键词 T800碳纤维增强复合材料 冰球 钨珠 非正冲击 损伤特性
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CFRP-铝合金复合管高强混凝土短柱轴压性能研究
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作者 王兰 姜航 +1 位作者 谢文超 叶勇 《建筑钢结构进展》 CSCD 北大核心 2024年第4期1-9,共9页
为研究CFRP-铝合金复合管混凝土构件的轴压性能,进行了12根短柱试件的轴向压缩试验,主要研究参数为CFRP层数。试验结果表明:复合管混凝土试件出现了多处外凸鼓曲以及对应位置混凝土被压溃的破坏形态,而空复合管试件发生了局部内凹屈曲破... 为研究CFRP-铝合金复合管混凝土构件的轴压性能,进行了12根短柱试件的轴向压缩试验,主要研究参数为CFRP层数。试验结果表明:复合管混凝土试件出现了多处外凸鼓曲以及对应位置混凝土被压溃的破坏形态,而空复合管试件发生了局部内凹屈曲破坏;试件轴压承载力随CFRP层数的增加而增大,且复合管混凝土试件的承载力提高幅度高于相应的空复合管试件的提高幅度。对各部分的承载力贡献比例进行分析,发现复合管混凝土试件中混凝土的承载力贡献比例超过70%,且承载力贡献度随CFRP层数的增加而提高。提出了CFRP-铝合金复合管混凝土构件的轴压承载力计算公式。 展开更多
关键词 铝合金管混凝土 碳纤维增强塑料(Cfrp) Cfrp-铝合金复合管 轴压性能 组合作用
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预应力FRP网格加固空心板梁桥的病害修复效果分析 被引量:1
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作者 施嘉伟 吴倩倩 +3 位作者 武善侠 李波 刘龑 李文耀 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第2期407-415,共9页
针对空心板梁桥存在的典型病害问题,采用预应力纤维增强复合材料(FRP)网格进行加固,通过数值模拟分析其对底板开裂及铰缝破损病害的修复效果,讨论了FRP网格种类、用量、布置方式等参数对桥梁承载性能的影响.结果表明:在底板开裂部位横... 针对空心板梁桥存在的典型病害问题,采用预应力纤维增强复合材料(FRP)网格进行加固,通过数值模拟分析其对底板开裂及铰缝破损病害的修复效果,讨论了FRP网格种类、用量、布置方式等参数对桥梁承载性能的影响.结果表明:在底板开裂部位横向或纵向布置预应力FRP网格,均可有效控制底板开裂和梁体下挠;在跨中横向布置预应力FRP网格,可有效降低铰缝破损的不利影响;若两类病害均显著存在,可采用横向布置预应力FRP网格进行综合加固;在预应力水平与加固量相同的条件下,玄武岩纤维增强复合材料(BFRP)网格与碳纤维增强复合材料(CFRP)网格的加固效果基本相当.合理布置预应力FRP网格可有效改善空心板梁桥底板开裂和铰缝破损病害,有助于提升其长期受力性能. 展开更多
关键词 frp网格 加固 预应力 空心板梁桥 桥梁病害
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A Review on Strengthening of Timber Beams Using Fiber Reinforced Polymers 被引量:1
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作者 Bingyu Jian Ke Cheng +8 位作者 Haitao Li Mahmud Ashraf Xiaoyan Zheng Assima Dauletbek Mahdi Hosseini Rodolfo Lorenzo Ileana Corbi Ottavia Corbi Kun Zhou 《Journal of Renewable Materials》 SCIE EI 2022年第8期2073-2098,共26页
Fiber reinforced polymer(FRP)has been used in the construction industry because of its advantages such as high strength,light weight,corrosion resistance,low density and high elasticity.This paper presents a review of... Fiber reinforced polymer(FRP)has been used in the construction industry because of its advantages such as high strength,light weight,corrosion resistance,low density and high elasticity.This paper presents a review of bonding techniques adopted to strengthen timber beams using FRP to achieve larger spans.Different methods of bonding between FRP and timber beams have been summarized with a focus on the influencing factors and their effects as well as relevant bond-slip models proposed for fundamental understanding.Experimental investigations to evaluate the flexural performance of timber beams strengthened by FRP bars,sheets and wraps have also been critically reviewed to identify key influencing parameters.Limited research available on the shear performance of FRP reinforced timber beams have been analyzed to determine the influencing factors of the shear performance in timber-FRP beams.The paper finally presents an overall summary of the current-state-of-the-art and proposes some future research directions in the field. 展开更多
关键词 fiber reinforced polymer(frp) timber beams retrofitting engineered timber flexural properties
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Experimental Investigation of Natural Fiber Reinforced Polymers 被引量:2
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作者 Irene S. Fahim Salah M. Elhaggar Hatem Elayat 《Materials Sciences and Applications》 2012年第2期59-66,共8页
The potential usage of virgin Low density polyethelyne (LDPE) reinforced with different concentrations (2%, 5% and 6% by weight) of treated rice straw with different lengths (2 mm, 4 mm and 6 mm) is investigated to pr... The potential usage of virgin Low density polyethelyne (LDPE) reinforced with different concentrations (2%, 5% and 6% by weight) of treated rice straw with different lengths (2 mm, 4 mm and 6 mm) is investigated to produce high value products that have technical and environmental demand. The two treatment methods used for rice straw are alkali and acidic treatments of rice straw. The removal of impurities and waxy substances from fiber surface avoid creation of rougher topography after treatment and improves the quality of fiber, also content of hemi cellulose and lignin decrease so increase effectiveness of fiber due to dispersing of fiber in matrix. The reinforcing material is embedded in the matrix material to enhance tensile and flexural behaviors of the synthesized composite. The result of investigating these two mechanical properties, using statistical analysis & design of experiments, showed an enhancement in the mechaniccal properties of the virgin polymer composite compared to the virgin polymer. The flexural stress of the composite increased three times the virgin flexural stress, while the tensile stress increased eight times the original tensile stress. 展开更多
关键词 polymers-Matrix composites (PMCs) fiber reinforced PLASTIC (frp) NATURAL fibers Low Density POLYETHYLENE (LDPE)
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FRP复合材料在桥梁工程中的发展与应用 被引量:1
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作者 董文学 《合成材料老化与应用》 CAS 2024年第2期86-89,共4页
纤维增强聚合物(FRP)是一种由塑料基体和纤维增强材料组成的复合材料,具有轻质高强、抗腐蚀和耐久性等优点。在土木工程领域,尤其是桥梁工程中,它具有广泛的应用前景。该文综述了FRP复合材料的性能、结构和应用特点,并重点探讨了其在桥... 纤维增强聚合物(FRP)是一种由塑料基体和纤维增强材料组成的复合材料,具有轻质高强、抗腐蚀和耐久性等优点。在土木工程领域,尤其是桥梁工程中,它具有广泛的应用前景。该文综述了FRP复合材料的性能、结构和应用特点,并重点探讨了其在桥梁结构加固、竖向受力构件、劲性结构、预应力筋以及桥面板等领域的研究进展。在此基础上,指出了FRP复合材料存在的问题并展望了发展的主要方向。 展开更多
关键词 纤维增强聚合物 复合材料 桥梁工程 机械性能
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Seismic retrofitting of reinforced concrete frame structures using GFRP-tube-confined-concrete composite braces 被引量:1
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作者 Nasim S. Moghaddasi B Zhang Yunfeng Hu Xiaobin 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2012年第1期91-105,共15页
This paper presents a new type of structural bracing intended for seismic retrofitting use in framed structures. This special composite brace, termed glass-fiber-reinforced-polymer (GFRP)-tube-confined-concrete comp... This paper presents a new type of structural bracing intended for seismic retrofitting use in framed structures. This special composite brace, termed glass-fiber-reinforced-polymer (GFRP)-tube-confined-concrete composite brace, is comprised of concrete confined by a GFRP tube and an inner steel core for energy dissipation. Together with a contribution from the GFRP-tube confined concrete, the composite brace shows a substantially increased stiffness to control story drift, which is often a preferred feature in seismic retrofitting. An analysis model is established and implemented in a general finite element analysis program - OpenSees, for simulating the load-displacement behavior of the composite brace. Using this model, a parametric study of the hysteretic behavior (energy dissipation, stiffness, ductility and strength) of the composite brace was conducted under static cyclic loading and it was found that the area ratio of steel core to concrete has the greatest influence among all the parameters considered. To demonstrate the application of the composite brace in seismic retrofitting, a three-story nonductile reinforced concrete (RC) frame structure was retrofitted with the composite braces. Pushover analysis and nonlinear time-history analyses of the retrofitted RC frame structure was performed by employing a suite of 20 strong ground motion earthquake records. The analysis results show that the composite braces can effectively reduce the peak seismic responses of the RC frame structure without significantly increasing the base shear demand. 展开更多
关键词 BRACE composite confined concrete glass-fiber-reinforced polymer frame nonlinear analysis RETROFIT seismic
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GFRP约束ECC短柱偏压试验研究
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作者 史玉英 袁婉莹 韩强 《市政技术》 2024年第9期10-18,共9页
纤维增强复合材料(Fiber Reinforced Polymer,FRP)约束工程纤维增强水泥基复合材料(Engineered Fiber Reinforced Cementitious Composites,ECC)轴压柱可显著提高其承载能力和延性,但偏压作用下FRP约束ECC柱的性能提升程度和作用机理有... 纤维增强复合材料(Fiber Reinforced Polymer,FRP)约束工程纤维增强水泥基复合材料(Engineered Fiber Reinforced Cementitious Composites,ECC)轴压柱可显著提高其承载能力和延性,但偏压作用下FRP约束ECC柱的性能提升程度和作用机理有待研究。基于此,以偏心距(0、10、30、50 mm)和FRP层数(0、2、4层)为试验变量,对玻璃纤维增强复合材料(Glass Fiber Reinforced Polymer,GFRP)约束ECC短柱展开了竖向加载试验,并对试验结果进行了分析。研究结果表明:小偏心破坏时受压侧FRP断裂、混凝土被压碎,大偏心破坏时受拉侧FRP撕裂与混凝土横向裂缝近乎同时出现。轴压作用下,轴向变形和抗压强度显著增大;偏压作用下,抗压承载力随着偏心距的增大而减小,而极限位移无明显变化规律。此外,承载力和延性都随着FRP层数的增加而增大。 展开更多
关键词 Gfrp ECC短柱 约束 偏压试验 偏心距 frp层数
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Study of damage behavior and repair effectiveness of patch repaired carbon fiber laminate under quasi-static indentation loading
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作者 Alok Kumar Chinmaya Kumar Sahoo A.Arockiarajan 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第4期29-41,共13页
Damage caused due to low-velocity impacts in composites leads to substantial deterioration in their residual strength and eventually provokes structural failure.This work presents an experimental investigation on the ... Damage caused due to low-velocity impacts in composites leads to substantial deterioration in their residual strength and eventually provokes structural failure.This work presents an experimental investigation on the effects of different patch and parent laminate stacking sequences on the enhancement of impact strength of Carbon Fiber Reinforced Polymers(CFRP)composites by utilising the adhesively bonded external patch repair technique.Damage evolution study is also performed with the aid of Acoustic Emission(AE).Two different quasi-isotropic configurations were selected for the parent laminate,viz.,[45°/45°/0°/0°]s and[45°/0°/45°/0°]s.Quasi Static Indentation(QSI)test was performed on both the pristine laminates,and damage areas were detected by using the C-scan inspection technique.Damaged laminates were repaired by using a single-sided patch of two different configurations,viz.,[45°/45°/45°/45°]and[45°/0°/0°/45°],and employing a circular plug to fill the damaged hole.Four different combinations of repaired laminates with two configurations of each parent and patch laminate were produced,which were further subjected to the QSI test.The results reveal the effectiveness of the repair method,as all the repaired laminates show higher impact resistance compared to the respective pristine laminates.Patches of[45°/0°/0°/45°]configuration when repaired by taking[45°/45°/0°/0°]s and[45°/0°/45°/0°]s as parents exhibited 68%and 73%higher peak loads,respectively,than the respective pristine laminates.Furthermore,parent and patch of configuration[45°/0°/45°/0°]s and[45°/0°/0°/45°],respectively,attain the highest peak load,whereas[45°/45°/0°/0°]s and[45°/45°/45°/45°]combinations possess the most gradual decrease in the load. 展开更多
关键词 Carbon fiber reinforced polymers(Cfrp) Quasi-isotropic laminate Quasi static indentation(QSI) Acoustic emission(AE) composite repair
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Nonlinear stability of timber column strengthened with fiber reinforced polymer
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作者 欧阳煜 杨骁 包若涵 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2011年第7期903-916,共14页
By taking into account the effect of the bi-modulus for tension and compression of the fiber reinforced polymer (FRP) sheet in the reinforcement layer, a general mathematical model for the nonlinear bending of a sle... By taking into account the effect of the bi-modulus for tension and compression of the fiber reinforced polymer (FRP) sheet in the reinforcement layer, a general mathematical model for the nonlinear bending of a slender timber beam strengthened with the FRP sheet is established under the hypothesis of the large deflection deformation of the beam. Nonlinear governing equations of the second order effect of the beam bending are derived. The nonlinear stability of a simply-supported slender timber column strengthened with the FRP sheet is then investigated. An expression of the critical load of the simply-supported FRP-strengthened timber beam is obtained. The existence of postbuckling solution of the timber column is proved theoretically, and an asymptotic analytical solution of the postbuckling state in the vicinity of the critical load is obtained using the perturbation method. Parameters are studied showing that the FRP reinforcement layer has great influence on the critical load of the timber column, and has little influence on the dimensionless postbuckling state. 展开更多
关键词 fiber reinforced polymer frp timber column REINFORCEMENT bi-modulus nonlinear mathematical model postbuckling analysis
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FRP增强海水海砂混凝土结构研究进展
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作者 吴沛宗 江振兴 +1 位作者 杨泽铭 林嘉祥 《混凝土》 CAS 北大核心 2024年第8期48-54,62,共8页
结合轻质高强耐腐蚀的纤维增强复合材料(FRP)与海水海砂制备FRP增强海水海砂混凝土结构是近年来的研究热点。使用FRP材料替代钢材可以使得海水海砂可以未经淡化直接用于结构当中。利用海水海砂代替淡水河砂是解决淡水河砂资源匮乏、河... 结合轻质高强耐腐蚀的纤维增强复合材料(FRP)与海水海砂制备FRP增强海水海砂混凝土结构是近年来的研究热点。使用FRP材料替代钢材可以使得海水海砂可以未经淡化直接用于结构当中。利用海水海砂代替淡水河砂是解决淡水河砂资源匮乏、河砂开采导致河床生态问题的重要途径,对于海洋工程建设还能就地取材,降低淡水河砂的运输成本,对我国海洋强度战略具有重大意义。通过对国内外已有的FRP增强海水海砂混凝土结构研究现状进行分析,总结介绍了海水海砂混凝土以及FRP增强聚合物两种材料特性和新型FRP增强海水海砂混凝土结构形式。综述了FRP筋截面面积、配筋率、箍筋间距等因素对FRP增强海水海砂混凝土结构的力学性能影响规律。分析了目前海工混凝土结构所存在的问题,并提出了海工混凝土结构研究建议以及展望,为今后海工结构的研究提供参考。 展开更多
关键词 海水海砂混凝土 纤维增强复合材料 海工混凝土结构
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Punching and Local Damages of Fiber and FRP Reinforced Concrete under Low-Velocity Impact Load
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作者 Kyung-Hwan Min 《Open Journal of Civil Engineering》 2018年第1期64-81,共18页
In recent years, the development and application of high performance fiber reinforced concrete or cementitious composites are increasing due to their high ductility and energy absorption characteristics. However, it i... In recent years, the development and application of high performance fiber reinforced concrete or cementitious composites are increasing due to their high ductility and energy absorption characteristics. However, it is difficult to obtain the required properties of the FRCC by simply adding fiber to the concrete matrix. Many researchers are paying attention to fiber reinforced polymers (FRP) for the reinforcement of construction structures because of their significant advantages over high strain rates. However, the actual FRP products are skill-dependent, and the quality may not be uniform. Therefore, in this study, two-way punching tests were carried out to evaluate the performances of FRP strengthened and steel and polyvinyl alcohol (PVA) fiber reinforced concrete specimens for impact and static loads. The FRP reinforced normal concrete (NC), steel fiber reinforced concrete (SFRC), and PVA FRCC specimens showed twice the amount of enhanced dissipated energy (total energy) under impact loadings than the non-retrofitted specimens. In the low-velocity impact test of the two-way NC specimens strengthened by FRPs, the total dissipated energy increased by 4 to 5 times greater than the plain NC series. For the two-way specimens, the total energy increased by 217% between the non-retrofitted SFRC and NC specimens. The total dissipated energy of the CFRP retrofitted SFRC was twice greater than that of the plain SFRC series. The PVA FRCC specimens showed 4 times greater dissipated energy than for the energy of the plain NC specimens. For the penetration of two-way specimens with fibers, the Hughes formula considering the tensile strength of concrete was a better predictor than other empirical formulae. 展开更多
关键词 fiber reinforced Concrete Steel fiber Polyvinyl ALCOHOL (PVA) fiber fiber reinforced polymer (frp) Low-Velocity Impact Load PUNCHING Penetration Depth
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FRP绿色建筑附属部品部件数值模拟
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作者 闵红光 陶宇 林忠良 《科技和产业》 2024年第19期278-283,共6页
FRP(纤维增强复合材料)是一种新型绿色建筑材料,具有强度高、质量轻、耐腐蚀性强等特点,在建筑工程中得到广泛应用。通过对FRP空调支架和防护栏杆进行有限元分析,研究FRP空调支架的疲劳性能,分析FRP防护栏杆的抗冲击性能。结果表明,FRP... FRP(纤维增强复合材料)是一种新型绿色建筑材料,具有强度高、质量轻、耐腐蚀性强等特点,在建筑工程中得到广泛应用。通过对FRP空调支架和防护栏杆进行有限元分析,研究FRP空调支架的疲劳性能,分析FRP防护栏杆的抗冲击性能。结果表明,FRP空调支架具有良好的耐疲劳性能,螺栓孔位置是影响FRP空调支架疲劳寿命的薄弱处;FRP防护栏杆具有良好的抗冲性能,且在撞击后栏杆能够较快速地恢复形状。因此,FRP绿色建筑附属部品部件具有良好的力学性能和耐久性能,能够满足恶劣环境下工程使用要求,对FRP绿色建筑材料的推广应用具有重要意义。 展开更多
关键词 绿色建筑材料 frp(纤维增强复合材料)绿色建筑附属部品部件 有限元分析 力学性能
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