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Civil and structural engineering applications,recent trends,research and developments on pultruded fiber reinforced polymer closed sections:a review 被引量:6
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作者 Alfred Kofi GAND Tak-Ming CHAN James Toby MOTTRAM 《Frontiers of Structural and Civil Engineering》 SCIE EI CSCD 2013年第3期227-244,共18页
The objectives of this study are to review and evaluate the developments and applications of pultruded fiber-reinforced polymer composites in civil and structural engineering and review advances in research and develo... The objectives of this study are to review and evaluate the developments and applications of pultruded fiber-reinforced polymer composites in civil and structural engineering and review advances in research and developments.Several case applications are reviewed.The paper presents a state-of-the-art review of fundamental research on the behavior of pultruded fiber reinforced polymer closed sections and highlights gaps in knowledge and areas of potential further research. 展开更多
关键词 fibre reinforced polymer composites behaviour of FRPs tubular sections pultruded FRP tubular profiles FRP tubes in bridges applications of pultruded FRP tubes new-build with FRP tubes
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Energy Absorption of Pultruded Hybrid GlassGraphite Epoxy Composites under High Strain-Rate SHPB Compression Loading 被引量:1
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作者 Seyed Soheil Daryadel Cameron Ray +1 位作者 Tejas Pandya P. Raju Mantena 《Materials Sciences and Applications》 2015年第6期511-518,共8页
In this study, the dynamic response and energy absorption characteristics of different combinations of fiber-reinforced pultruded hybrid composites made of unidirectional glass and graphite fiber/epoxy, have been inve... In this study, the dynamic response and energy absorption characteristics of different combinations of fiber-reinforced pultruded hybrid composites made of unidirectional glass and graphite fiber/epoxy, have been investigated. High strain-rate compression experiments were conducted on cylindrical specimens at an average strain rate of 700 /s using a modified Split Hopkinson Pressure Bar (SHPB). Failure was monitored with a high-speed video camera, and effects of hybridization on the dynamic behavior of pultruded composites were evaluated. It was found that for a given fiber volume fraction, placing glass fibers in the inner core results in a higher ultimate compressive strength, specific energy absorption, and in general a better dynamic performance with lower density. 展开更多
关键词 pultruded COMPOSITES HYBRIDS Dynamic COMPRESSIVE RESPONSE SHPB
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Quasi-Static Flexural Properties of a Pultruded Glass Fiber/Unsaturated Polyester Square Pipe
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作者 Yuri Imai Gabriel Fortin +5 位作者 Badin Pinpathomrat Keigo Nishitani Anin Memon Yuqiu Yang Akio Ohtani Hiroyuki Hamada 《Open Journal of Composite Materials》 2019年第3期271-284,共14页
This paper explores quasi-static flexural properties and fracture behavior of a pultruded glass fiber/unsaturated polyester square pipe for automotive structural applications. Three-point flexural testing is performed... This paper explores quasi-static flexural properties and fracture behavior of a pultruded glass fiber/unsaturated polyester square pipe for automotive structural applications. Three-point flexural testing is performed in an Instron Universal Testing Machine with steel jigs supporting the top and bottom surfaces of the pipe. Acoustic emission (AE) measurements are recorded during flexural testing to evaluate initial fracture in the pipe structure. After final fracture, five cross-sections of the pipe are cut at 50-mm intervals along the longitudinal axis, with the first cut located at the mid-span of the pipe. Cross-sections of a pipe from an interrupted test where initial fracture is detected from the AE method are also prepared. Damage locations and behavior on each cross-section are observed. The flexural testing results show that the cumulative AE counts increase rapidly from 2.5 kN, that final failure occurs at a maximum load of approximately 13 kN, and that corresponding initial and final failure occurs in the two corner regions on the compressive side of flexural loading. Failure initiates by stress concentrations due to the upper jig on the top surface during bending. The cross-sectional observations also reveal clear deformation behavior of the pipe where failure is present, marked by inward bending of the top surface and upper corners located on the compressive side, near the jig. The locations of maximum stresses and deformations obtained from finite element analysis of this pipe structure are in very good agreement with the experimental observations. 展开更多
关键词 AUTOMOTIVE Composites FLEXURAL Testing pultruded PIPE Mechanical Strength FRACTURE Behavior
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Energy Absorption of Pultruded Glass-Graphite/Epoxy Hybrid Composites under High Strain-Rate Induced Transverse Tension
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作者 Damian Stoddard Suman Babu Ukyam +1 位作者 R. Mantena Prabhakar Arunachalam Rajendran 《Open Journal of Composite Materials》 2018年第2期43-53,共11页
This paper focuses on the dynamic tensile response of glass-graphite/epoxy composites illustrating improvement in energy absorption through hybridization. The dynamic response and energy absorption characteristics of ... This paper focuses on the dynamic tensile response of glass-graphite/epoxy composites illustrating improvement in energy absorption through hybridization. The dynamic response and energy absorption characteristics of pultruded hybrid combinations of glass and graphite fibers in an epoxy matrix subjected to induced transverse tension at high strain-rate in a modified Split Hopkinson Pressure Bar (SHPB) apparatus, are presented. Transverse tensile strength was determined by diametral compression of disc samples (Brazilian indirect tensile test method). Diametral crack initiation and strain to failure were monitored with a Shimadzu HPV-2 high-speed video camera at a recording speed of 500,000 fps and Digital Image Correlation (DIC). Adequate measures were taken to ensure that initiation of specimen failure occurred at the exact center of the disc specimen, and propagated through the diameter along the compressive loading axis, for the induced transverse tension tests to be valid. A study of the strength and specific energy absorption demonstrates the benefits of hybridization. Under induced transverse tensile loading condition, the pure glass/epoxy (GL60) exhibited higher strength than pure graphite/epoxy (GR60). Pure graphite/epoxy (GR60) has higher specific energy absorption capacity than pure glass/epoxy (GL60) in transverse tension. Among all hybrids, GR30 has the highest specific energy absorption under transverse tension. Overall, hybrid GL48, with 48% low-cost glass fibers in the inner core and 12% high-cost graphite fibers in outer shell, was found to exhibit better performance under induced transverse tension at high strain-rates, showing the benefits of hybridization. 展开更多
关键词 pultruded Composites HYBRIDS HIGH STRAIN-RATE SHPB Dynamic Energy Absorption BRAZILIAN Disc Indirect Tensile Test
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Dynamic Response of Pultruded Glass-Graphite/Epoxy Hybrid Composites Subjected to Transverse High Strain-Rate Compression Loading
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作者 Mohammad Afrough Tejas S. Pandya +1 位作者 Seyed Soheil Daryadel Prabhakar Raju Mantena 《Materials Sciences and Applications》 2015年第11期953-962,共10页
In a previous study, the energy absorption and dynamic response of different combinations of cylindrical fiber-reinforced pultruded hybrid composite samples made of unidirectional glass and graphite fiber/epoxy, were ... In a previous study, the energy absorption and dynamic response of different combinations of cylindrical fiber-reinforced pultruded hybrid composite samples made of unidirectional glass and graphite fiber/epoxy, were investigated under longitudinal compression loading. It was found that placing glass fibers in the inner core of composites resulted in a higher ultimate compressive strength and specific energy absorption. In this study, the dynamic responses of pultruded glass-graphite/epoxy hybrid specimens with rectangular cross-section subjected to transverse compression loading are reported. Crack initiation and propagation was monitored using a high-speed video camera, and the effects of hybridization were analyzed. It was found that the location of glass or graphite fibers inside the pultruded composites has no significant effect on the ultimate compressive strength under such transverse compression loading. The energy absorption in all the hybrid specimens was almost identical. Graphite/epoxy composite showed higher specific energy absorption due to its lower density, and glass/epoxy composite had the lowest specific energy absorption. 展开更多
关键词 pultruded Composites HIGH STRAIN-RATE Compression Loading SHPB Energy Absorption TRANSVERSE Loadings
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Applications of Glass and Glass Fiber Retrofit Polymer in Modern Footbridges 被引量:1
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作者 Beata Stankiewicz MarcinTatara 《Journal of Civil Engineering and Architecture》 2015年第7期791-797,共7页
The architecture of footbridge design takes the form of a number of submissions from leading architects and engineers, each setting out their views on bridge design--present and future. It looks at the functions of a ... The architecture of footbridge design takes the form of a number of submissions from leading architects and engineers, each setting out their views on bridge design--present and future. It looks at the functions of a bridge, defining purpose of place and context, the spirit of creativity and the reasoned progression of an idea. It also explores the exploitation of materials technology and construction innovation and the tension between lightness and mass and between sculpture and scale. Present parameters of tempered and laminated glass create possibility of modern architecture of footbridges which are being full of transparency and light reflex effects. Four projects, using glass panels designed by Santiago Calatrava, have been presented in this paper. GFRP (glass fiber retrofit polymer) makes new horizon in material technology, helps to enrich new conception of structure with longer durability, low weight of deck and new creation of architecture line. The paper has described a few results of FEM (finite element method) analysis of footbridge with modular bridge GFRP deck system. The footbridge was excited by impact and human-induced vibrations. Composite material consists of glass fibers and polymer matrix is a promising alternative against traditional materials. New architecture and modern material engineering are looking for fresh possibilities of form and shape of structure, long durability and extraordinary technical parameters of building elements. 展开更多
关键词 Transparent bridge deck parameters of glass GFRP deck pultruded material FEM of bridge deck fiberline technology.
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拉挤复合材料在H型垂直轴风机叶片上的应用 被引量:1
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作者 刘森川 王秋野 王海芳 《纤维复合材料》 CAS 2011年第1期35-37,20,共4页
H型垂直轴风机叶片是翼型等截面制品,采用拉挤复合材料能够满足其外形尺寸要求。本文主要分析了拉挤工艺生产叶片具有质量稳定、成本低、生产效率高等优点,同时也需要解决产品定型、叶片结构设计等问题。
关键词 H型垂直轴风机 复合材料叶片 拉挤工艺
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On Employment of FRP Elements in Constructions: The Case of an All GFRP Covering for Historic Structure Stroked by Earthquake
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作者 Salvatore Russo 《Journal of Civil Engineering and Architecture》 2012年第5期606-612,共7页
The paper shows the approach toward the calculation of one of the bigger PFRP (Pultruded Fiber Reinforced Polymer) structure realized in high seismic zone, i.e., a covering structure of an historic church stroked an... The paper shows the approach toward the calculation of one of the bigger PFRP (Pultruded Fiber Reinforced Polymer) structure realized in high seismic zone, i.e., a covering structure of an historic church stroked and partially collapsed by earthquake in L'Aquila (Italy), the 4 April 2009. The goal regards the analysis and evaluation of seismic performance of that structure made by very light and elastic-brittle material, as FRP material, in a moment in which there is a loss of technical recommendation for specific calculation in seismic field, indeed actually some deepening already present in literature allows only static field. The covering structure is an all FRP spatial-reticular with elements made by pultrusion process, connection plates by bag molding process and steel bolts. The PFRP structure covers more than 1000 meters squares surface with 32 meters height and only 100 kN weight. Detail performance of first part of PFRP structure through mode vibrations and involved percentage mass deduced by numerical approach with discussion of employment's perspectives of PFRP material in seismic zones than traditional material are showed. 展开更多
关键词 pultruded FRP profile seismic performance mode of vibration.
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纤维增强复合材料拉挤型材桁架桥静动力性能研究 被引量:33
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作者 冯鹏 田野 覃兆平 《工业建筑》 CSCD 北大核心 2013年第6期36-41,共6页
重庆市彭水县太原乡茅以升公益桥是我国第一座全部采用纤维增强复合材料(FRP)拉挤型材的桁架桥,跨度为20 m,桥宽为2.0 m。以该桥为背景,对拉挤型材性能、结构体系和连接节点进行分析。研究FRP拉挤型材桁架桥的静力和动力特性,包括在工... 重庆市彭水县太原乡茅以升公益桥是我国第一座全部采用纤维增强复合材料(FRP)拉挤型材的桁架桥,跨度为20 m,桥宽为2.0 m。以该桥为背景,对拉挤型材性能、结构体系和连接节点进行分析。研究FRP拉挤型材桁架桥的静力和动力特性,包括在工厂预拼装后和现场使用174 d后对实桥结构进行的2次静力性能试验以及在现场进行的实桥动力性能测试,并采用SAP 2000对该桥进行了有限元分析。实测表明,FRP桁架桥具有较高的刚度和承载能力,在45%的人群设计荷载下结构变形为2.09 mm,空载状态下结构一阶竖向振动频率为10.8 Hz,有限元计算结果与测试结果吻合良好,说明可采用线弹性杆件计算分析FRP桁架桥结构。 展开更多
关键词 纤维增强复合材料 拉挤型材 节点 结构变形 有限元分析
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GFRP栏杆的受力性能及其结构安全性研究 被引量:12
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作者 冯鹏 齐玉军 +2 位作者 叶列平 陈必光 王绥明 《玻璃钢/复合材料》 CAS CSCD 2010年第6期48-54,共7页
拉挤GFRP型材具有稳定的力学性能和抗腐蚀能力,用于栏杆结构中可防盗、免维护,并能设计出丰富的外观效果,在城市公共基础设施,尤其是景观桥梁中具有广阔的应用前景。本文对GFRP栏杆的结构性能进行了系统研究,对比了国内外规范对栏杆结... 拉挤GFRP型材具有稳定的力学性能和抗腐蚀能力,用于栏杆结构中可防盗、免维护,并能设计出丰富的外观效果,在城市公共基础设施,尤其是景观桥梁中具有广阔的应用前景。本文对GFRP栏杆的结构性能进行了系统研究,对比了国内外规范对栏杆结构的基本设计要求,建议了设计目标;对一种用于GFRP栏杆的拉挤型材进行了轴压和弯曲试验,得到了其受力性能;再通过计算对这种栏杆的安全性和经济性进行了分析。结果表明,GFRP栏杆结构具有较高的安全储备和较好的经济效益。本文建议的设计方法可为同类产品的开发提供参考。 展开更多
关键词 栏杆 设计规范 拉挤型材 景观桥梁 新产品开发
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复合材料拉挤型材桁架桥静载性能试验研究 被引量:11
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作者 孙慧明 方海 +1 位作者 徐以扬 刘伟庆 《工业建筑》 CSCD 北大核心 2014年第S1期896-900,共5页
采用以拉挤成型工艺制成的复合材料方管及片材装配成的轻质复合材料桁架桥,具有质量轻、强度高、可工业化生产、拼装迅速、耐腐蚀性强、免维护的显著优点。本文通过对复合材料桁架桥整体结构进行竖向静载试验,研究桥梁整体的协调变形能... 采用以拉挤成型工艺制成的复合材料方管及片材装配成的轻质复合材料桁架桥,具有质量轻、强度高、可工业化生产、拼装迅速、耐腐蚀性强、免维护的显著优点。本文通过对复合材料桁架桥整体结构进行竖向静载试验,研究桥梁整体的协调变形能力和杆件连接的效果,分析复合材料桁架桥在荷载作用下结构竖向位移、杆件应力等。基于桁架桥梁静载性能试验结果,统筹考虑复合材料杆件受拉、受压,节点断裂等破坏特征。研究结果表明:轻质复合材料桁架桥具有较高的刚度和承载能力,在102.86%的设计荷载作用下结构变形为22.23 mm,同时通过有限元软件MIDAS,对承受荷载的复合材料桁架桥进行了有限元模拟计算,有限元分析与试验结果较吻合。 展开更多
关键词 复合材料 拉挤型材 桁架桥 变形 有限元分析
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新型FRP拉挤夹芯型材及其结构应用初探 被引量:10
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作者 齐玉军 熊伟 +3 位作者 刘伟庆 陆伟东 方海 万里 《玻璃钢/复合材料》 CAS CSCD 北大核心 2014年第12期25-30,共6页
FRP拉挤夹芯型材是指采用拉挤成型工艺制作的复合材料夹芯构件,其外侧为FRP面层,内部为泡沫、轻木等轻质芯材,具有轻质高强、局部承压能力强、FRP面板不易屈曲、生产效率高、质量稳定等优点。以泡桐木和杨木等轻木、无碱玻璃纤维以及不... FRP拉挤夹芯型材是指采用拉挤成型工艺制作的复合材料夹芯构件,其外侧为FRP面层,内部为泡沫、轻木等轻质芯材,具有轻质高强、局部承压能力强、FRP面板不易屈曲、生产效率高、质量稳定等优点。以泡桐木和杨木等轻木、无碱玻璃纤维以及不饱和聚酯树脂为原材料,对FRP夹芯型材的拉挤成型工艺进行了研究,成功制造了不同截面形式的FRP拉挤夹芯型材,并对其界面性能、弯曲性能、轴心受压性能进行了试验研究。对FRP拉挤夹芯型材的工程应用进行了探讨,并对实际工程——玉竹楼项目进行了介绍。 展开更多
关键词 复合材料拉挤夹芯型材 拉挤工艺 夹芯复合材料框架结构 复合材料夹芯桥面板
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风电叶片用拉挤板应用现状及发展趋势 被引量:2
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作者 徐强 张曦月 +2 位作者 黄辉秀 王志伟 刘传瑞 《复合材料科学与工程》 CAS 北大核心 2024年第6期123-128,共6页
本文介绍了风电叶片用拉挤板的国内外研究发展历程及现状,共涉及五种不同材料体系的拉挤板,分别为碳纤维拉挤板、玻纤拉挤板、碳玻混拉挤板、免脱模布拉挤板及聚氨酯拉挤板。分析了拉挤板相比较于传统的真空灌注、预浸料复合材料的应用... 本文介绍了风电叶片用拉挤板的国内外研究发展历程及现状,共涉及五种不同材料体系的拉挤板,分别为碳纤维拉挤板、玻纤拉挤板、碳玻混拉挤板、免脱模布拉挤板及聚氨酯拉挤板。分析了拉挤板相比较于传统的真空灌注、预浸料复合材料的应用优势和面临的挑战。结合目前应用现状,针对各种材料体系的拉挤板分别提出了未来重点关注方向和发展趋势:玻纤拉挤板因其低成本的优势,在未来陆上风电叶片中仍会占据主流,并将向更高模量及更低成本的方向发展;随着海上风电的发展及碳丝国产化进程加速,碳纤维拉挤板将会有更广阔的应用前景;碳玻混拉挤板、免脱模布拉挤板及聚氨酯体系拉挤板减重或降本优势明显,但仍需进一步开展应用研究。 展开更多
关键词 风电叶片 拉挤主梁 玻纤拉挤板 碳纤拉挤板 应用 复合材料
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碳纤维增强树脂复合材料(CFRP)拉挤板材的楔形-挤压锚固机制 被引量:9
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作者 李承高 郭瑞 +2 位作者 黄翔宇 辛美音 咸贵军 《南京工业大学学报(自然科学版)》 CAS 北大核心 2021年第3期358-365,共8页
碳纤维增强树脂复合材料(CFRP)板材的可靠锚固是影响桥梁结构预应力加固应用的关键问题。本文提出一种采用化学黏结及物理挤压为受力模式的CFRP板材楔形挤压锚固系统,该锚固系统通过楔形锚固树脂与CFRP板材的挤压与黏结作用传递外部荷... 碳纤维增强树脂复合材料(CFRP)板材的可靠锚固是影响桥梁结构预应力加固应用的关键问题。本文提出一种采用化学黏结及物理挤压为受力模式的CFRP板材楔形挤压锚固系统,该锚固系统通过楔形锚固树脂与CFRP板材的挤压与黏结作用传递外部荷载。采用力学分析及有限元模拟研究该锚固系统内荷载传递方式与锚固机制,通过拉伸试验获得锚固系统的锚固效率及应力分布。结果表明:Tc和T1两种锚固树脂胶黏剂锚固CFRP板材都具有较高的锚固承载力,且极限锚固承载力随锚固树脂韧性增大而增大;静载作用下锚固系统的破坏方式为CFRP板材爆裂破坏,与力学分析及有限元模拟结果相吻合;循环荷载下锚具内应力分布均匀,无明显应力集中。 展开更多
关键词 CFRP拉挤板材 锚固性能 力学分析 应力分布
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耐温型碳纤维拉挤复合材料连续抽油杆的制备和性能研究 被引量:7
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作者 薛承瑾 《北京化工大学学报(自然科学版)》 CAS CSCD 2003年第4期55-59,共5页
针对国内石油开采的抽油杆长期耐温使用的需要 ,研究了 4种不同树脂基体的碳纤维拉挤复合材料的抽油杆样品 ,采用DSC分析了 4种树脂基体的固化特征 ,通过力学性能和动态热机械分析了所得的 4种碳纤维抽油杆样品的力学性能和耐热性能 ,... 针对国内石油开采的抽油杆长期耐温使用的需要 ,研究了 4种不同树脂基体的碳纤维拉挤复合材料的抽油杆样品 ,采用DSC分析了 4种树脂基体的固化特征 ,通过力学性能和动态热机械分析了所得的 4种碳纤维抽油杆样品的力学性能和耐热性能 ,并初步进行了碳纤维抽油杆的动态服役和实验室模拟的介质腐蚀静态实验。结果表明 :制备的 4种具有不同耐热等级的碳纤维抽油杆 ,可满足国内深井和超深井石油开采的抽油杆的耐温要求 ,具有良好的力学和耐温性能。 展开更多
关键词 碳纤维拉挤复合材料 树脂基体 抽油杆
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大风机叶片材料轻量化的探索 被引量:7
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作者 孙二平 苏宝定 江海涛 《玻璃纤维》 CAS 2022年第2期37-42,共6页
分析了梁帽的轻量化发展方向,研究了梁帽的不同材料、不同工艺的性能,通过实验及数据统计的分析,对比结果表明:同为玻纤或碳纤维,采用拉挤成型工艺的拉挤板性能要优于灌注工艺成型的织物灌注玻璃钢性能。碳纤维拉挤板性能最优,是轻量化... 分析了梁帽的轻量化发展方向,研究了梁帽的不同材料、不同工艺的性能,通过实验及数据统计的分析,对比结果表明:同为玻纤或碳纤维,采用拉挤成型工艺的拉挤板性能要优于灌注工艺成型的织物灌注玻璃钢性能。碳纤维拉挤板性能最优,是轻量化的首选。 展开更多
关键词 大风机叶片 轻量化 性能 拉挤板
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风电叶片用大丝束碳纤维拉挤板的应用现状与挑战 被引量:3
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作者 祁蓉 周文明 +1 位作者 冯永国 杨丽彬 《合成纤维工业》 CAS 2024年第1期56-60,共5页
综述了风电叶片用大丝束碳纤维拉挤板的应用现状和挑战。风电叶片用碳纤维拉挤板以连续大丝束碳纤维和高性能环氧树脂经热固化拉挤成型工艺连续生产而成,主要用作海上风电叶片的主梁;当前风电叶片用碳纤维拉挤板面临提高性能(包括压缩... 综述了风电叶片用大丝束碳纤维拉挤板的应用现状和挑战。风电叶片用碳纤维拉挤板以连续大丝束碳纤维和高性能环氧树脂经热固化拉挤成型工艺连续生产而成,主要用作海上风电叶片的主梁;当前风电叶片用碳纤维拉挤板面临提高性能(包括压缩性能、层间性能、拼接性能)和降低成本的挑战;碳/玻混拉挤板作为一种低成本拉挤板,可为叶片设计、减重、降本提供更多可能;预计随着海上风电的发展及大丝束碳纤维国产化进程加速,大丝束碳纤维在风电领域的应用会进一步增长。 展开更多
关键词 碳纤维 拉挤板材 风电叶片 性能 碳/玻混合
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新型纤维增强复材-金属组合空间桁架结构及弯曲性能研究 被引量:7
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作者 张冬冬 袁嘉欣 +1 位作者 赵启林 杨军 《工业建筑》 CSCD 北大核心 2019年第9期102-108,166,共8页
纤维增强复材(FRP)拉挤型材具有轻质高强、单向受力性能好等优点,将其用于具有较高承载效率的空间桁架结构,能够进一步降低结构质量、提高结构跨度。基于前期研究成果,提出一种新型FRP-金属组合空间桁架结构,采用了新型结构形式、高性... 纤维增强复材(FRP)拉挤型材具有轻质高强、单向受力性能好等优点,将其用于具有较高承载效率的空间桁架结构,能够进一步降低结构质量、提高结构跨度。基于前期研究成果,提出一种新型FRP-金属组合空间桁架结构,采用了新型结构形式、高性能复合材料及高承载连接技术。基于该新型结构体系,设计和制备了一座跨度为24 m、承载达150 k N的轻量化、模块化应急桥,并进行了结构弯曲性能试验,最后将试验结果与有限元计算结果进行了比较。结果表明:该新型结构具有承载高、质量轻、拼装架设方便等优点,且在用材、尺寸与构型等方面设计灵活;在设计荷载下结构表现出良好的静载弯曲性能;桁架杆件能够充分发挥FRP拉挤圆管的单向力学优势,杆件承载效率高;实测值与有限元计算结果吻合较好,所建立的有限元模型可用于该空间结构的线弹性力学性能预测和设计计算。 展开更多
关键词 纤维增强复材拉挤型材 空间桁架 组合结构 弯曲性能 静载试验 有限元模型
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GFRP-钢屈曲约束支撑力学性能试验研究 被引量:7
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作者 潘鹏 邓开来 +2 位作者 胥晓光 叶列平 解晋珍 《土木工程学报》 EI CSCD 北大核心 2014年第12期1-8,共8页
提出GFRP-钢屈曲约束支撑的构造及其生产工艺。通过对4个GFRP-钢屈曲约束支撑足尺试件进行低周往复加载试验,研究GFRP-钢屈曲约束支撑的受力性能、破坏形态和耗能能力,考察外围约束单元中GFRP缠绕层厚度、缠绕角度和钢芯材形式对GFRP-... 提出GFRP-钢屈曲约束支撑的构造及其生产工艺。通过对4个GFRP-钢屈曲约束支撑足尺试件进行低周往复加载试验,研究GFRP-钢屈曲约束支撑的受力性能、破坏形态和耗能能力,考察外围约束单元中GFRP缠绕层厚度、缠绕角度和钢芯材形式对GFRP-钢屈曲约束支撑性能的影响。建立了GFRP-钢屈曲约束支撑的精细有限元模型,并对典型试验工况进行模拟。主要研究成果如下:1GFRP-钢屈曲约束支撑由钢芯材和GFRP拉挤型材通过缠绕工艺组合而成,容易实现工业化生产;2合理设计的GFRP-钢屈曲约束支撑的力学性能稳定,滞回曲线饱满,耗能性能优良;3增加外围约束单元中GFRP缠绕层厚度有利于提高GFRP-钢屈曲约束支撑的性能;4改变外围约束单元中GFRP缠绕角度对支撑性能无显著影响;5相对于一字形截面钢芯材,十字形钢截面芯材对外围约束单元的局部挤压更轻微,表现出更好的力学性能;6精细有限元模型可有效模拟GFRP-钢屈曲约束支撑的力学行为,模型精度较好。 展开更多
关键词 屈曲约束支撑 GFRP拉挤型材 缠绕工艺 低周往复试验
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风电叶片玻纤拉挤板性能影响因素的研究 被引量:7
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作者 王伟伟 杨忠 +2 位作者 刘鲜红 贾宇婷 常军委 《天津科技》 2022年第7期84-87,共4页
玻纤拉挤板具有模量高、成本低、产出效率高、产品类型多等优势,能够满足风电行业大叶片降本减重的需求而得到广泛关注。研究了不同模量纱线、不同纤维体积含量、不同类型层间织物和不同表面粗糙度这4种因素对于玻纤拉挤板静态性能的影... 玻纤拉挤板具有模量高、成本低、产出效率高、产品类型多等优势,能够满足风电行业大叶片降本减重的需求而得到广泛关注。研究了不同模量纱线、不同纤维体积含量、不同类型层间织物和不同表面粗糙度这4种因素对于玻纤拉挤板静态性能的影响,结果表明不同因素对玻纤拉挤板静态性能影响不同。纱线的模量越高或纤维体积含量越高,玻纤拉挤板本体拉伸压缩性能越好;不同类型层间织物对玻纤拉挤板界面之间结合性能影响不大;拉挤板表面粗糙度越高,玻纤拉挤板界面之间结合性越好。对拉挤板性能影响因素进行研究,旨在为今后拉挤板在风电叶片应用提供理论参考依据。 展开更多
关键词 玻纤拉挤板 纤维含量 静态性能
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