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Novel sandwich structured glass fiber Cloth/Poly(ethylene oxide)-MXene composite electrolyte
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作者 Yu-Qin Mao Guang-He Dong +3 位作者 Wei-Bin Zhu Yuan-Qing Li Pei Huang Shao-Yun Fu 《Nano Materials Science》 EI CAS CSCD 2024年第1期60-67,共8页
Recently,poly(ethylene oxide)(PEO)-based solid polymer electrolytes have been attracting great attention,and efforts are currently underway to develop PEO-based composite electrolytes for next generation high performa... Recently,poly(ethylene oxide)(PEO)-based solid polymer electrolytes have been attracting great attention,and efforts are currently underway to develop PEO-based composite electrolytes for next generation high performance all-solid-state lithium metal batteries.In this article,a novel sandwich structured solid-state PEO composite electrolyte is developed for high performance all-solid-state lithium metal batteries.The PEO-based composite electrolyte is fabricated by hot-pressing PEO,LiTFSI and Ti_(3)C_(2)T_(x) MXene nanosheets into glass fiber cloth(GFC).The as-prepared GFC@PEO-MXene electrolyte shows high mechanical properties,good electrochemical stability,and high lithium-ion migration number,which indicates an obvious synergistic effect from the microscale GFC and the nanoscale MXene.Such as,the GFC@PEO-1 wt%MXene electrolyte shows a high tensile strength of 43.43 MPa and an impressive Young's modulus of 496 MPa,which are increased by 1205%and 6048%over those of PEO.Meanwhile,the ionic conductivity of GFC@PEO-1 wt%MXene at 60℃ reaches 5.01×10^(-2) S m^(-1),which is increased by around 200%compared with that of GFC@PEO electrolyte.In addition,the Li/Li symmetric battery based on GFC@PEO-1 wt%MXene electrolyte shows an excellent cycling stability over 800 h(0.3 mA cm^(-2),0.3 mAh cm^(-2)),which is obviously longer than that based on PEO and GFC@PEO electrolytes due to the better compatibility of GFC@PEO-1 wt%MXene electrolyte with Li anode.Furthermore,the solid-state Li/LiFePO_(4) battery with GFC@PEO-1 wt%MXene as electrolyte demonstrates a high capacity of 110.2–166.1 mAh g^(-1) in a wide temperature range of 25–60C,and an excellent capacity retention rate.The developed sandwich structured GFC@PEO-1 wt%MXene electrolyte with the excellent overall performance is promising for next generation high performance all-solid-state lithium metal batteries. 展开更多
关键词 Solid polymer electrolyte Ti_(3)C_(2)T_(x)MXene Poly(ethylene oxide) glass fiber cloth All-solid-state Li metal Battery
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Development of Kaolin and Glass Fiber Reinforced Composites for Thermal Insulating Panels
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作者 Jagadiswar Reddy Tippi Reddy Jens Schuster Yousuf Pasha Shaik 《Open Journal of Composite Materials》 2024年第1期44-59,共16页
In our modern world, where conserving energy is highly valued, thermal insulation panels play a crucial role in reducing heat transfer between two spaces, surfaces, or materials. They are used to enhance the energy ef... In our modern world, where conserving energy is highly valued, thermal insulation panels play a crucial role in reducing heat transfer between two spaces, surfaces, or materials. They are used to enhance the energy efficiency of various industrial applications by minimizing heat loss and temperature control. These panels function as silent protectors, aiding in reducing energy consumption and making things more sustainable and better for the environment. This is where composite materials come in;they are known for their lightweight nature, high strength-to-weight ratio, and excellent thermal insulation properties and have gained significant attention. Researchers are actively engaged in various studies aimed at enhancing these materials further. This research project focuses on the development of kaolin and glass fiber-reinforced composites for thermally insulating panels, to which natural strengthening materials like corn husk and bamboo fibers are added. The aim is to create cost-effective and efficient composite materials for thermal insulation applications by incorporating these components with a binder consisting of potassium silicate, hydroxide, and distilled water. This project involves conducting compression tests, bending tests, impact tests, thermal conductivity measurements, and microscopic analysis to evaluate the mechanical and thermal properties of the developed composites. The profound impact of these engineered composites on thermal insulation panels stands to revolutionize energy conservation efforts, offering a potent avenue to minimize heat loss and enhance overall energy efficiency across an array of industrial sectors. 展开更多
关键词 KAOLIN glass fiber Corn Husk BAMBOO Potassium Silicate Potassium Hydroxide
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Study of the Diffusion Behavior of Seawater Absorption in Multi-Walled Carbon Nanotubes/Halloysite Nanotubes Hybrid Nanofillers Modified Epoxy-Based Glass/Carbon Fiber Composites
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作者 Praful Choudhari Vivek Kulkarni Sanjeevakumar Khandal 《Modern Mechanical Engineering》 2024年第2期25-38,共14页
In the maritime industry, cost-effective and lightweight Fiber Reinforced Polymer (FRP) composites offer excellent mechanical properties, design flexibility, and corrosion resistance. However, their reliability in har... In the maritime industry, cost-effective and lightweight Fiber Reinforced Polymer (FRP) composites offer excellent mechanical properties, design flexibility, and corrosion resistance. However, their reliability in harsh seawater conditions is a concern. Researchers address this by exploring three approaches: coating fiber surfaces, hybridizing fibers and matrices with or without nanofillers, and interply rearrangement. This study focuses on evaluating the synergistic effects of interply rearrangement of glass/carbon fibers and hybrid nanofillers, specifically Multi-walled carbon nanotubes (MWCNT) and Halloysite nanotubes (HNT). The aim is to enhance impact properties by minimizing moisture absorption. Hybrid nanocomposites with equal-weight proportions of two nanofillers: 0 wt.%, 1 wt.%, and 2 wt.% were exposed to seawater for 90 days. Experimental data was subjected to modelling through the application of Predictive Fick’s Law. The study found that the hybrid composite containing 2 wt.% hybrid nanofillers exhibited a 22.10% increase in impact performance compared to non-modified counterparts. After 90 days of seawater aging, the material exhibited enhanced resistance to moisture absorption (15.74%) and minimal reduction in impact strength (8.52%) compared to its dry strength, with lower diffusion coefficients. 展开更多
关键词 glass/Carbon fiber Hybrid Composites Multiwall Carbon Nanotubes (MWCNTs) Halloysite Nanotubes (HNTs) Diffusion Behaviour Impact Properties Seawater Aging
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Mechanical Property Evaluation of Glass-carbon-durian Skin Fiber Reinforced Polylactic Acid Composites
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作者 Boonsin Nadondu Prayoon Surin Jakawat Deeying 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2023年第1期244-247,共4页
The main objective of this work was to study and develop composite materials by experiments with mixtures of synthetic(glass fiber, carbon fiber) and natural fiber(durian skin fiber) reinforcements on a polylactic aci... The main objective of this work was to study and develop composite materials by experiments with mixtures of synthetic(glass fiber, carbon fiber) and natural fiber(durian skin fiber) reinforcements on a polylactic acid(PLA) matrix composite, because of its excellent mechanical properties. Durian skin fiber(DSF) is a natural waste throughout Thailand, and an alternative to recycling is to realize its potential as a new reinforcement through mixing and the injection molding processes. The flexural strength(σ_(F)) and flexural modulus(E_(F)) of the composites from specimens showed a maximum value by content of durian skin fiber at 10 wt%, for good performance relative to particle dispersion between the matrix and the fiber, and showed a minimum value by content of durian skin fiber at 20 wt%, because the reinforcement material affects the mechanical properties in the experiments. 展开更多
关键词 glass fiber carbon fiber durian skin fiber polylactic acid mechanical properties
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Efficient utilization of glass fiber separator for low-cost sodium-ion batteries
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作者 Xiaohang Ma Zhijie Chen +7 位作者 Tianwen Zhang Xueqian Zhang Yuan Ma Yanqing Guo Yiyong Wei Mengyuan Ge Zhiguo Hou Zhenfa Zi 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第10期1878-1886,共9页
The separator is a key component of sodium-ion battery,which greatly affects the electrochemical performances and safety characteristics of the battery.Conventional glass fiber separator cannot meet the requirements o... The separator is a key component of sodium-ion battery,which greatly affects the electrochemical performances and safety characteristics of the battery.Conventional glass fiber separator cannot meet the requirements of large-scale application because of high cost and poor mechanical properties.Herein,the novel composite separators are prepared by a simple slurry sieving process using glass fiber separator scraps and ordinary qualitative filter paper as raw materials.As the composite mass ratio is 1:1,the composite separator has excellent comprehensive properties,including tensile strength of 15.8 MPa,porosity of 74.3%,ionic conductivity of 1.57×10^(-3)S·cm^(-1)and thermal stability at 210℃.The assembled sodium-ion battery shows superior cycling performance(capacity retention of 94.1%after 500 cycles at 1C)and rate capacity(retention rate of 87.3%at 10C),and it maintains fine interface stability.The above results provide some new ideas for the separator design of high-performance and low-cost sodium-ion batteries. 展开更多
关键词 SEPARATOR glass fiber low cost sodium-ion batteries
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Optimization of Mortar Compressive Strength Prepared with Waste Glass Aggregate and Coir Fiber Addition Using Response Surface Methodology
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作者 Cut Rahmawati Lia Handayani +6 位作者 Muhtadin Muhammad Faisal Muhammad Zardi S.M.Sapuan Agung Efriyo Hadi Jawad Ahmad Haytham F.Isleem 《Journal of Renewable Materials》 EI 2023年第10期3751-3767,共17页
Waste Glass(WGs)and Coir Fiber(CF)are not widely utilized,even though their silica and cellulose content can be used to create construction materials.This study aimed to optimize mortar compressive strength using Resp... Waste Glass(WGs)and Coir Fiber(CF)are not widely utilized,even though their silica and cellulose content can be used to create construction materials.This study aimed to optimize mortar compressive strength using Response Surface Methodology(RSM).The Central Composite Design(CCD)was applied to determine the optimization of WGs and CF addition to the mortar compressive strength.Compressive strength and microstructure testing with Scanning Electron Microscope(SEM),Fourier-transform Infrared Spectroscopy(FT-IR),and X-Ray Diffraction(XRD)were conducted to specify the mechanical ability and bonding between the matrix,CF,and WGs.The results showed that the chemical treatment of CF produced 49.15%cellulose,with an average particle size of 1521μm.The regression of a second-order polynomial model yielded an optimum composition consisting of 12.776%WGs and 2.344%CF with a predicted compressive strength of 19.1023 MPa.C-S-H gels were identified in the mortars due to the dissolving of SiO_(2) in WGs and cement.The silica from WGs increased the C-S-H phase.CF plays a role in preventing,bridging,and branching micro-cracks before reaching maximum stress.WGs aggregates and chemically treated CF are suitable to be composited in mortar to increase compressive strength. 展开更多
关键词 CELLULOSE response surface methodology waste glass coir fiber composite
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硬质合金涂层刀具车削GFRP的切削力研究
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作者 韩剑平 黄树涛 +3 位作者 葛亮 施华 于晓琳 许立福 《兵器材料科学与工程》 CAS CSCD 北大核心 2024年第3期15-21,共7页
研究了硬质合金涂层刀具车削玻璃纤维增强复合材料时,切削用量对切削力的影响,并通过正交试验建立了切削力经验公式。结果表明:切削速度引起的树脂软化对切削力的影响较大,切削分力随切削速度的增加先减后增,但切削速度由243 m/min增至3... 研究了硬质合金涂层刀具车削玻璃纤维增强复合材料时,切削用量对切削力的影响,并通过正交试验建立了切削力经验公式。结果表明:切削速度引起的树脂软化对切削力的影响较大,切削分力随切削速度的增加先减后增,但切削速度由243 m/min增至342 m/min时,切削力变化趋于平缓;切削力随进给量和背吃刀量的增加而增大,但在进给量为0.05 mm/r时,由于涂层刀具刃口的挤压作用,轴向切削力反而较大。正交试验和极差分析表明,背吃刀量对切削合力及各切削分力的影响最大,切削速度对切削合力及轴向分力Fx和径向分力Fy的影响次之,进给量对主切削力Fz的影响较切削速度大。 展开更多
关键词 玻璃纤维增强复合材料 切削用量 切削力 硬质合金涂层刀具
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Static Bending Creep Properties of Glass Fiber Surface Composite Wood
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作者 Shang Zhang Jie Wang +4 位作者 Benjamin Rose Yushan Yang Qingfeng Ding Bengang Zhang Chunlei Dong 《Journal of Renewable Materials》 SCIE EI 2023年第6期2881-2891,共11页
To study the static bending creep properties of glass fiber reinforced wood,glass fiber reinforced poplar(GFRP)specimens were obtained by pasting glass fiber on the upper and lower surfaces of Poplar(Populus euramevic... To study the static bending creep properties of glass fiber reinforced wood,glass fiber reinforced poplar(GFRP)specimens were obtained by pasting glass fiber on the upper and lower surfaces of Poplar(Populus euramevicana,P),the performance of Normal Creep(NC)and Mechanical Sorptive Creep(MSC)of GFRP and their influencing factors were tested and analyzed.The test results and analysis show that:(1)The MOE and MOR of Poplar were increased by 17.06%and 10.00%respectively by the glass fiber surface reinforced composite.(2)The surface reinforced P with glass fiber cloth only exhibits the NC pattern of wood and loses the MSC characteristics of wood,regardless of the constant or alternating changes in relative humidity.(3)The instantaneous elastic deformation,viscoelastic deformation,viscous deformation and total creep deflection of GFRP are positively correlated with the stress level of the external load applied to the specimen.Still,the specimen’s creep recovery rate is negatively correlated with the stress level of the external load applied to the specimen.The static creep deflection and viscous deformation of GFRP increase with the increase of the relative humidity of the environment.(4)The MSC maximum creep deflection of GFRP increased by only 7.41%over the NC maximum creep deflection,but the MSC maximum creep deflection of P increased by 199.25%over the NC maximum creep deflection.(5)The Burgers 4-factor model and the Weibull distribution equation can fit the NC and NC recovery processes of GFRP well. 展开更多
关键词 glass fiber reinforced composite wood Normal Creep(NC) wood creep Mechanical Sorptive Creep(MSC) creep model
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GFRP/铝合金叠层结构钻削力和分层研究
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作者 焉捷 赵正彩 +3 位作者 陈清良 刘元吉 勾江洋 徐九华 《工具技术》 北大核心 2024年第4期37-42,共6页
玻璃纤维增强复合材料(Glass Fiber Reinforced Plastics,GFRP)具有质量轻、比强度高和耐腐蚀等优异性能,广泛应用于航空航天制造领域。为了研究GFRP/铝合金叠层结构制孔时的轴向力和分层特征,开展GFRP/铝合金叠层结构钻削试验,分析主... 玻璃纤维增强复合材料(Glass Fiber Reinforced Plastics,GFRP)具有质量轻、比强度高和耐腐蚀等优异性能,广泛应用于航空航天制造领域。为了研究GFRP/铝合金叠层结构制孔时的轴向力和分层特征,开展GFRP/铝合金叠层结构钻削试验,分析主轴转速和进给速度对GFRP/铝合金叠层结构钻削力和分层特征的影响。研究结果表明,钻削力随着主轴转速的增大而减小,随着进给速度的增大而增大,建立了钻削力经验模型,实测值与理论值误差控制在3%以内,对预测钻削力提供了理论依据。主轴转速越低,进给速度越高,分层特征越明显,高转速低进给有利于减少分层并改善加工质量。 展开更多
关键词 玻璃纤维增强复合材料 铝合金 钻削力 分层
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双腹板工字型GFRP腰梁机械连接力学性能试验研究
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作者 郝增明 王忠胜 +6 位作者 白晓宇 章伟 张鹏飞 孙培富 包希吉 李明 闫楠 《科学技术与工程》 北大核心 2024年第4期1433-1439,共7页
为深入研究双腹板工字型玻璃纤维增强复合材料(glass fiber reinforced polymer,GFRP)腰梁机械连接节点的力学性能,基于无连接和有机械连接2种类型GFRP腰梁的静载试验,分析双腹板工字型GFRP腰梁在三分点对称加荷下的受力特征,明确2种类... 为深入研究双腹板工字型玻璃纤维增强复合材料(glass fiber reinforced polymer,GFRP)腰梁机械连接节点的力学性能,基于无连接和有机械连接2种类型GFRP腰梁的静载试验,分析双腹板工字型GFRP腰梁在三分点对称加荷下的受力特征,明确2种类型腰梁的极限状态和破坏形式。结果表明:GFRP腰梁采用双腹板工字型截面型式,截面的最大应力为183 MPa,是GFRP腰梁纵向抗拉强度的62%,纵向抗压强度的73%(容许压缩承载力的205%),可以使GFRP材料强度得到充分发挥,腰梁稳定性能良好;GFRP腰梁容易出现局部破坏,首先在翼缘板处发生局部失稳,随即引起腹板产生屈曲破坏,翼缘和腹板连接处出现面层剥离和鼓起,腰梁连接处增设的缀板和螺栓可有效地抑制该局部破坏变形;采用螺栓机械连接并在连接处增设同材质缀板,可降低螺栓钻孔对梁体本身截面的削弱作用,使GFRP腰梁的刚度和极限承载能力分别提高17.9%和44.9%,是GFRP腰梁的合理连接方式。研究成果可为GFRP腰梁的推广应用提供参考和借鉴。 展开更多
关键词 玻璃纤维增强复合材料(gfRP)腰梁 机械连接 静载试验 力学性能 破坏形式
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压铆力对Φ4mm 2A10铆钉连接GFRP/铝合金叠层的铆接干涉量影响研究
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作者 朱亚蓉 马兴海 +2 位作者 杨帅 吴赟 安立辉 《导弹与航天运载技术(中英文)》 CSCD 北大核心 2024年第3期79-84,共6页
为了精确控制玻璃纤维增强塑料(Glass Fiber Reinforced Plastic,GFRP)/铝合金叠层的铆接干涉量,降低GFRP材料因铆接产生的损伤,需要对压铆力对干涉量的影响趋势进行研究。对2A10材料Φ4mm铆钉在连接GFRP/2A12铝合金叠层的电动伺服压铆... 为了精确控制玻璃纤维增强塑料(Glass Fiber Reinforced Plastic,GFRP)/铝合金叠层的铆接干涉量,降低GFRP材料因铆接产生的损伤,需要对压铆力对干涉量的影响趋势进行研究。对2A10材料Φ4mm铆钉在连接GFRP/2A12铝合金叠层的电动伺服压铆过程及不同压铆力和预制孔下的铆接干涉量进行了有限元仿真分析,根据仿真结果开展了不同压铆力的压铆试验,对钉杆不同位置的干涉量进行了测量并做了微观检测分析。结果表明,同一预制孔下同测量位置的干涉量随着压铆力的增加而增大,同压铆力下干涉量沿叠层厚度方向(铆钉头向镦头方向)呈现递减趋势;选择Φ4.2mm预制孔、18.3~18.7kN压铆力能够获得理想干涉量且GFRP复合材料无明显损伤。 展开更多
关键词 玻璃纤维增强塑料 压铆力 干涉量 递减趋势 理想干涉量
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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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FDM成型工艺对PEEK/CGF复合材料翘曲变形的影响
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作者 李久振 战丽 +2 位作者 李莞 李云鹏 袁勇超 《工程塑料应用》 CAS CSCD 北大核心 2024年第1期64-69,共6页
为降低连续玻璃纤维增强聚醚醚酮复合材料增材制造样件的翘曲变形,优化增材制造基础工艺参数,通过单因素试验、Plackett-Burman Design试验与Box-Behnken Design试验,研究了打印过程中的热效应,即保温舱温度、层厚、成型平台温度、打印... 为降低连续玻璃纤维增强聚醚醚酮复合材料增材制造样件的翘曲变形,优化增材制造基础工艺参数,通过单因素试验、Plackett-Burman Design试验与Box-Behnken Design试验,研究了打印过程中的热效应,即保温舱温度、层厚、成型平台温度、打印速度等工艺参数对连续玻璃纤维增强聚醚醚酮复合材料样件翘曲变形的影响规律,得出如下结论:研究发现打印工艺对翘曲度的影响程度是不同的,影响程度依次为B(层厚)>C(成型平台温度)>A(保温舱温度)。研究发现打印工艺参数之间是会对翘曲变形产生交互作用的,并且影响程度也较为显著(PB析因试验中大于t值),即B>C>A>AB>BC>D(打印速度)>BD。研究发现喷头温度440℃,成型平台温度100℃,保温舱温度90℃,层厚0.3 mm,道间距为0.5 mm,打印速度2 mm/s时,翘曲度可达到0.23%。 展开更多
关键词 玻璃纤维 聚醚醚酮 增材制造 工艺优化 翘曲变形
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废旧GFRP回收及其增强沥青性能
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作者 余森开 林娇 王大为 《北京工业大学学报》 CAS CSCD 北大核心 2024年第4期443-452,共10页
玻璃纤维增强复合材料(glass fiber reinforced polymer,GFRP)因其优异的力学性能和耐腐蚀性而广泛应用于航空、船舶和风力发电等领域。GFRP的广泛使用导致大量废弃物的产生,对环境造成了巨大的危害,因此废旧GFRP的回收处理问题备受关... 玻璃纤维增强复合材料(glass fiber reinforced polymer,GFRP)因其优异的力学性能和耐腐蚀性而广泛应用于航空、船舶和风力发电等领域。GFRP的广泛使用导致大量废弃物的产生,对环境造成了巨大的危害,因此废旧GFRP的回收处理问题备受关注。将废旧环氧基GFRP和聚氨酯基GFRP破碎粉末(直径<0.075 mm)作为沥青增强材料,研究了其对沥青基本性能的影响,并对比了硅烷偶联剂对增强作用的影响。结果表明,2种GFRP粉末对沥青的增强作用并不明显,而使用硅烷偶联剂对GFRP粉末进行表面处理后,能够显著改善GFRP粉末与沥青间相互作用,并提高沥青的流变性能和表面自由能,降低玻璃化转变温度,其中硅烷偶联剂对环氧基GFRP的改善效果优于聚氨酯基GFRP。该文为废弃GFRP提供了一种相对有效且环保的物理回收方法,并为纤维增强复合材料(fiber reinforced polymer,FRP)的回收利用提供了新思路。 展开更多
关键词 玻璃纤维增强复合材料(gfRP) 固体废弃物 回收利用 沥青 增强作用 表面处理
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基于FDM的PEEK/CGF复合材料综合力学性能优化
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作者 李久振 战丽 +2 位作者 李莞 袁勇超 李云鹏 《工程塑料应用》 CAS CSCD 北大核心 2024年第2期75-81,共7页
为提升连续玻璃纤维增强聚醚醚酮(PEEK/CGF)复合材料熔融沉积成型(FDM)制品的力学性能,通过单因素试验,Plackett-Burman Design试验与Box-Behnken Design试验,研究了保温舱温度、常用打印路径(5种)、层厚、道间距等工艺参数对PEEK/CGF... 为提升连续玻璃纤维增强聚醚醚酮(PEEK/CGF)复合材料熔融沉积成型(FDM)制品的力学性能,通过单因素试验,Plackett-Burman Design试验与Box-Behnken Design试验,研究了保温舱温度、常用打印路径(5种)、层厚、道间距等工艺参数对PEEK/CGF复合材料样件综合力学性能的影响规律,寻求最优工艺参数组合并进行试验验证。结果表明,各工艺参数对力学性能影响程度大小排序为打印路径>道间距>保温舱温度>层厚;各工艺参数之间存在相互作用,适当的工艺参数组合可以使力学性能得到大幅提升,其中相较于拉伸强度,弯曲强度受工艺参数间的相互作用更为明显;当保温舱温度为82℃、层厚为1.0 mm、打印路径为0°/0°/0°/0°、道间距为0.7 mm时,拉伸强度可得最大值为383.75 MPa,当保温舱温度为73℃、层厚为0.75 mm、打印路径为0°/0°/0°/0°、道间距为1.0 mm时,弯曲强度可得最大值510.13 MPa。 展开更多
关键词 连续玻璃纤维 聚醚醚酮 熔融沉积成型 增材制造 工艺优化 力学性能
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海水环境下GFRP筋与低碱混凝土界面黏结性能研究
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作者 张宁 周健 +3 位作者 李辉 徐名凤 陈智丰 刘成健 《混凝土》 CAS 北大核心 2024年第3期12-16,共5页
针对GFRP筋在低碱耐腐蚀水泥基体环境下界面黏结性能的时变规律进行研究,采用中心拉拔试验方法测定了GFRP筋-矿渣硫铝酸盐水泥(G·SAC)混凝土、GFRP筋-硅酸盐水泥(OPC)混凝土在淡水和人工海水环境下养护30 d、90 d和180 d的界面黏... 针对GFRP筋在低碱耐腐蚀水泥基体环境下界面黏结性能的时变规律进行研究,采用中心拉拔试验方法测定了GFRP筋-矿渣硫铝酸盐水泥(G·SAC)混凝土、GFRP筋-硅酸盐水泥(OPC)混凝土在淡水和人工海水环境下养护30 d、90 d和180 d的界面黏结强度,并利用扫描电子显微镜(SEM)及pH计分析了孔溶液浸泡后GFRP筋微观结构的劣化过程及水泥基体孔溶液pH值的变化规律。结果表明:在淡水环境下,GFRP筋-G·SAC混凝土界面黏结强度随养护时间的增加而提高,但GFRP筋-OPC混凝土的黏结强度逐渐降低;在海水环境下,G·SAC基体碱度进一步降低,且海水对其强度发展有促进作用,GFRP筋-G·SAC混凝土在海水中的黏结强度较淡水增长较快。 展开更多
关键词 矿渣硫铝酸盐水泥 玻璃纤维增强复合筋 黏结性能 低碱耐腐蚀 海水
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交变载荷下绝缘拉杆用GFRP电树枝劣化特性
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作者 陈允 韩先才 +5 位作者 李进 赵仁勇 崔博源 腾云 郝留成 杜伯学 《中国电机工程学报》 EI CSCD 北大核心 2024年第6期2475-2484,I0033,共11页
气体绝缘组合电器(gas insulated switchgear,GIS)现场调试或运行过程多次发生绝缘拉杆内部击穿问题,影响工程投运与设备可靠性,迫切需要探明故障机理。该文选取GIS断路器绝缘拉杆用玻璃纤维增强环氧树脂复合材料(glass fiber reinforce... 气体绝缘组合电器(gas insulated switchgear,GIS)现场调试或运行过程多次发生绝缘拉杆内部击穿问题,影响工程投运与设备可靠性,迫切需要探明故障机理。该文选取GIS断路器绝缘拉杆用玻璃纤维增强环氧树脂复合材料(glass fiber reinforced epoxy resin composite,GFRP)为研究对象,通过计算分、合闸下绝缘拉杆主应力分布特性,设置交变载荷下电树枝劣化实验条件,研究不同交变载荷对GFRP内电树枝生长特性影响规律。结果表明,相较于单一载荷,交变载荷条件下GFRP中电树枝生长速度加快,平均击穿时间降低,击穿概率增大。基于复合材料力学仿真发现交变载荷下GFRP内树脂-纤维界面处会出现较大的应力集中,局部应力损伤已达到失效的临界值。综上,交变载荷下绝缘拉杆纤维-树脂界面机械损伤与绝缘劣化交互演进是造成绝缘击穿的主要原因,也可作为试验考核与结构设计的改进依据。 展开更多
关键词 气体绝缘组合电器 绝缘拉杆 交变载荷 玻璃纤维增强环氧树脂复合材料 电树枝劣化
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Deriving Tensile Properties of Glass Fiber Reinforced Polymers (GFRP) Using Mechanics of Composite Materials
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作者 Thomas I. Altanopoulos Ioannis G. Raftoyiannis 《Open Journal of Composite Materials》 2020年第1期1-14,共14页
This work addresses the tensile properties of glass fiber reinforced polymers (GFRP) and investigates the different ways of estimating them without the cost associated with experimentation. This attempt is achieved th... This work addresses the tensile properties of glass fiber reinforced polymers (GFRP) and investigates the different ways of estimating them without the cost associated with experimentation. This attempt is achieved through comparison between experimental results, derived in accordance with the ASTM standards, and results obtained using the mechanics of composite materials. The experimental results are also compared to results derived from work by other researchers in order to corroborate the findings regarding the correlation of tensile properties of the GFRP material and the fiber volume fraction. 展开更多
关键词 glass fiber-Reinforced POLYMERS (gfRP) TENSILE Properties Hand LAY-UP Method
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有效高度对GFRP筋混凝土板冲切性能的影响
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作者 周欣竹 陈浩 +2 位作者 吴熙 范兴朗 向华伟 《浙江工业大学学报》 北大核心 2023年第5期473-480,共8页
相比于传统的钢筋混凝土板,玻璃纤维增强聚合物(Glass fiber reinforced polymer,GFRP)筋混凝土板具有较高的耐腐蚀性能和较长的使用寿命,被广泛应用于水利工程和港口工程中。有效高度是影响GFRP筋混凝土板冲切承载力的重要因素,为量化... 相比于传统的钢筋混凝土板,玻璃纤维增强聚合物(Glass fiber reinforced polymer,GFRP)筋混凝土板具有较高的耐腐蚀性能和较长的使用寿命,被广泛应用于水利工程和港口工程中。有效高度是影响GFRP筋混凝土板冲切承载力的重要因素,为量化其影响规律,完成了3块不同有效高度GFRP筋混凝土板的冲切试验。通过分析板的破坏形式、荷载—变形曲线、GFRP筋应变和混凝土应变,获得了GFRP筋混凝土板有效高度与冲切承载力之间的定量关系。试验结果表明:3块板均被冲切破坏,当有效高度分别增大23%和57%时,虽然抗冲切承载力分别对应提高51%和116%,但是GFRP筋应变和混凝土压应变反而比例减小;增大有效高度虽然一定程度上会减小板的变形,但不是决定极限挠度的唯一因素,在实际设计中应适当考虑有效高度的影响。 展开更多
关键词 有效高度 玻璃纤维增强聚合物 混凝土板 冲切性能
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The study of electroless Ni-W-P alloy plating on glass fibers 被引量:8
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作者 HUANG Ying HUANG Fei ZHAO Wentao SHI Ke ZHAO Li WANG Yanli 《Rare Metals》 SCIE EI CAS CSCD 2007年第4期365-371,共7页
Ni-W-P coatings were deposited on the surface of glass fibers by the electroless plating process. The bath was very stable through the palladium salt test. There was no phenomenon of peeling and blistering on the surf... Ni-W-P coatings were deposited on the surface of glass fibers by the electroless plating process. The bath was very stable through the palladium salt test. There was no phenomenon of peeling and blistering on the surface of the Ni-W-P alloy glass fibers in the thermal shock test. It showed that the deposit had high impact strength and good adhesion. The morphology of the coatings was observed by scanning electron microscope (SEM). The elements and their contents were tested and analyzed by energy dispersion spectrometer (EDS). The tungsten content reached up to 12.1 wt.%. The effects of the concentrations of NiSO4, Na2WO4, and NaH2PO2.H20 on the conductivity of the coatings were studied. The resistivity of the Ni-W-P alloy glass fibers reached 7.39 × 10^-3 Ωcm. The alloy coatings on glass fibers were analyzed by XRD. The results indicated that the deposit had an amorphous structure and good heat stability. The suitable work temperature range was lower than 190℃. Finally, the electromagnetic parameters of the Ni-W-P alloy glass fibers were tested and analyzed primarily. The magnetic loss reached 0.04023 and the dielectric loss reached -5.80239. The plated alloy is a kind of soft magnetic material. 展开更多
关键词 Ni-W-P alloy electroless plating RESISTIVITY electromagnetic parameters glass fiber
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