期刊文献+
共找到317篇文章
< 1 2 16 >
每页显示 20 50 100
Preparation and Investigation of Mechanical and Physical Properties of Flax/Glass Fabric Reinforced Polymer Hybrid Composites
1
作者 Sayed Hasan Mahmud Md. Washim Akram +1 位作者 Md. Fuad Ahmed Md. Atik Bin Habib 《Journal of Flow Control, Measurement & Visualization》 2023年第3期165-182,共18页
Synthetic reinforced composites affect the environment adversely and have become a global concern, causing increased natural composite demand for sustainability and cost effectiveness. Glass is a popular material that... Synthetic reinforced composites affect the environment adversely and have become a global concern, causing increased natural composite demand for sustainability and cost effectiveness. Glass is a popular material that is highly consumed in reinforced composites for its superior mechanical strength. As opposed to that, flax obtained from flax stalks can be used as an alternative reinforcing material with synthetic fibers to minimize manmade fiber consumption. Hence, this research work addresses a few flax/glass-reinforced hybrid composites by using a thermoset polyester matrix. Here, six categories of samples are made, like neat flax, neat glass, and flax/glass fabric reinforced hybrid composite, followed by different stacking layer sequences and hand layout techniques during processing. Afterwards, the mechanical behavior, thermal stability, morphological behavior, and water absorption of hybrid samples were investigated. Among the developed samples, neat glass (NG) composite exhibits superior mechanical properties, while neat flax (NF) shows the lowest result. It is apparent that the mechanical properties and thermal stability of hybrid samples are in between NF and NG because, by adding glass with flax fabric, the strength of hybrid samples is increased. Moreover, it is noticeable that, due to multiple stacking layers of flax and glass, hybrid 3 and hybrid 4 show better strength than consecutive single stacking layers in hybrid 1 and hybrid 2. Among all hybrid composites, the H4 shows comparatively better mechanical and thermal properties due to having the glass layers on the outermost surface. In summary, this research work demonstrated the feasibility of flax fabric with glass fabric as a reinforced hybrid composite that can be used in automobile inner bodies, household furnishing, and home interior decoration. 展开更多
关键词 Flax-Glass Fabric reinforced composites Mechanical Properties SEM TGA Polyester resin
下载PDF
Preparation and Investigation of Mechanical and Physical Properties of Flax/Glass Fabric Reinforced Polymer Hybrid Composites
2
作者 Sayed Hasan Mahmud Md. Washim Akram +1 位作者 Md. Fuad Ahmed Md. Atik Bin Habib 《Journal of Textile Science and Technology》 2023年第3期165-182,共18页
Synthetic reinforced composites affect the environment adversely and have become a global concern, causing increased natural composite demand for sustainability and cost effectiveness. Glass is a popular material that... Synthetic reinforced composites affect the environment adversely and have become a global concern, causing increased natural composite demand for sustainability and cost effectiveness. Glass is a popular material that is highly consumed in reinforced composites for its superior mechanical strength. As opposed to that, flax obtained from flax stalks can be used as an alternative reinforcing material with synthetic fibers to minimize manmade fiber consumption. Hence, this research work addresses a few flax/glass-reinforced hybrid composites by using a thermoset polyester matrix. Here, six categories of samples are made, like neat flax, neat glass, and flax/glass fabric reinforced hybrid composite, followed by different stacking layer sequences and hand layout techniques during processing. Afterwards, the mechanical behavior, thermal stability, morphological behavior, and water absorption of hybrid samples were investigated. Among the developed samples, neat glass (NG) composite exhibits superior mechanical properties, while neat flax (NF) shows the lowest result. It is apparent that the mechanical properties and thermal stability of hybrid samples are in between NF and NG because, by adding glass with flax fabric, the strength of hybrid samples is increased. Moreover, it is noticeable that, due to multiple stacking layers of flax and glass, hybrid 3 and hybrid 4 show better strength than consecutive single stacking layers in hybrid 1 and hybrid 2. Among all hybrid composites, the H4 shows comparatively better mechanical and thermal properties due to having the glass layers on the outermost surface. In summary, this research work demonstrated the feasibility of flax fabric with glass fabric as a reinforced hybrid composite that can be used in automobile inner bodies, household furnishing, and home interior decoration. 展开更多
关键词 Flax-Glass Fabric reinforced composites Mechanical Properties SEM TGA Polyester resin
下载PDF
Mechanical Properties of Mo Fiber-reinforced Resin Mineral Composites with Different Mass Ratio of Resin and Hardener 被引量:2
3
作者 张超 张进生 +1 位作者 REN Xiuhua ZHANG Jianhua 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2019年第2期383-390,共8页
Mo fibers were added to RMC with different mass ratios of resin and hardener to improve its mechanical properties. The influences of fiber surface state and hardener content on interface bonding strength and mechanica... Mo fibers were added to RMC with different mass ratios of resin and hardener to improve its mechanical properties. The influences of fiber surface state and hardener content on interface bonding strength and mechanical properties of RMC were studied, respectively. Furthermore, strain values of typical measuring points on samples of Mo fiber reinforced RMC(MFRRMC) under different loads were obtained by experiments and finite element analysis. The experimental results prove that scrap Mo fibers can improve interface bonding strength and mechanical properties of RMC better than new smooth Mo fibers because of the discharge pits randomly distributed on the surface of scrap fibers. With the decrease of hardener content, not only interface bonding strength between fiber and matrix, but also compression and flexural strength of MFRRMC increase firstly and then decrease. The properties are best while the mass ratio of resin and hardener reaches 4:1. It is indicated that finite element calculation data basically agree with experimental data by comparison of strain values on typical measuring points, which can provide an important intuitive reference for successive study on other mechanical properties of MFRRMC, validating the correctness of simulation method as well. 展开更多
关键词 MO FIBER resin mineral composite(RMC) reinforcing effect compression STRENGTH flexural STRENGTH bonding STRENGTH
下载PDF
Determination of Water Diffusion Coefficients and Dynamics in Adhesive/Carbon Fiber Reinforced Epoxy Resin Composite Joints 被引量:3
4
作者 WANG Chao WANG zhi +1 位作者 WANG Jing SU Tao 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2007年第4期474-478,共5页
To determinate the water diffusion coefficients and dynamics in adhesive/carben fiber reinforced epoxy resin composite joints, energy dispersive X-ray spectroscopy analysis(EDX) is used to establish the content chan... To determinate the water diffusion coefficients and dynamics in adhesive/carben fiber reinforced epoxy resin composite joints, energy dispersive X-ray spectroscopy analysis(EDX) is used to establish the content change of oxy- gen in the adhesive in adhesive/carbon fther reinforced epoxy resin composite joints. As water is made up of oxygen and hydrogen, the water diffusion coefficients and dynamics in adhesive/carben fiber reinforced epoxy resin composite joints can be obtained from the change in the content of oxygen in the adhesive during humidity aging, via EDX analy-sis. The authors have calculated the water diffusion coefficients and dynamics in the adhesive/carbon fiber reinforced epoxy resin composite joints with the aid of beth energy dispersive X-ray spectroscopy and elemental analysis. The de- termined results with EDX analysis are almost the same as those determined with elemental analysis and the results al- so show that the durability of the adhesive/carbon fther reinforced epoxy resin composite joints subjected to silane cou- pling agent treatment is better than those subjected to sand paper burnishing treatment and chemical oxidation treat- ment. 展开更多
关键词 Diffusion coefficient DYNAMICS Energy dispersive X-ray spectroscopy Elemental analysis Adhesive/ carbon fiber reinforced epoxy resin composites joint
下载PDF
Effect of Natural Fiber Reinforced Polypropylene Composite Using Resin Impregnation 被引量:1
5
作者 Gibeop Nam Nanqi Wu +1 位作者 Kazuya Okubo Toru Fujii 《Agricultural Sciences》 2014年第13期1338-1343,共6页
In this paper, we deals with mechanical performance of resin impregnation with natural fiber and fiber reinforced composites. The effect of the addition of a rein impregnation process on static strength of the injecti... In this paper, we deals with mechanical performance of resin impregnation with natural fiber and fiber reinforced composites. The effect of the addition of a rein impregnation process on static strength of the injection molded composites was investigated by carrying out tensile and banding tests, followed by Scanning electron microscopy (SEM) observation of fiber surface and fracture surface of composites. The tensile strength of natural fiber and natural fiber reinforced composites with resin impregnation method increases with Polyvinyl alcohol (PVA) impregnation. In addition, Phenol resin impregnation recovers fiber tensile strength after alkali treatment. Resin impregnation causes decrease in contact surface area;however, it does not cause decrease in mechanical properties. Our results suggest that the using rein impregnation method has better effect on the mechanical properties of natural fiber reinforced Polypropylene (PP) composites. 展开更多
关键词 KENAF FIBER Bamboo FIBER Natural FIBER reinforced composite resin IMPREGNATION Method Polyvinyl Alcohol PHENOLIC resin FIBER Treatment Mechanical Properties
下载PDF
Study of Maleic Anhydride Grafted Polypropylene Effect on Resin Impregnated Bamboo Fiber Polypropylene Composit
6
作者 Gibeop Nam Noboru Wakamoto +1 位作者 Kazuya Okubo Toru Fujii 《Agricultural Sciences》 2014年第13期1322-1328,共7页
Previously, Polyvinyl Alcohol (PVA) and phenolic resin were used for resin impregnated bamboo fiber reinforced PP composites which was manufactures for resin impregnated bamboo fiber with polypropylene (PP). Resin imp... Previously, Polyvinyl Alcohol (PVA) and phenolic resin were used for resin impregnated bamboo fiber reinforced PP composites which was manufactures for resin impregnated bamboo fiber with polypropylene (PP). Resin impregnation method can show improvement on tensile strength of fiber. However, to reduce the contact surface area and low inter-facial shear strength (IFSS) between impregnated resin and matrix, using 40% weight fraction of bamboo fiber in PP matrix, PVA impregnated composites with mean flexural and tensile strength 10% higher than untreated composites were produced butphenolic resin impregnated fiber reinforced composition’s mechanical properties were decreased. In this study maleic anhydride grafted polypropylene (MAPP) was used to increase interfacial shear strength between resin impregnated fiber and PP. With 10% MAPP, IFSS between resin impregnated fiber and PP increased more than 100% and reinforced composites. MAPP with untreated, phenolic resin and PVA impregnated cases showed similar mechanical properties. Yet in water absorption test, the PVA treatment with bamboo/PP composites increased water absorption ratio. But with 10% MAPP, matrix PP water absorption ratio decreased like phenolic resin impregnated fiber reinforced composites. 10% MAPP with resin impregnated bamboo fiber reinforced PP composites can improve IFSS, mechanical properties of composite and can decrease water absorption PVA resin impregnated bamboo fiber reinforced composites. 展开更多
关键词 Bamboo FIBER reinforced composite resin IMPREGNATION Method Polyvinyl Alcohol PHENOLIC resin FIBER Treatment Maleic ANHYDRIDE Grafted POLYPROPYLENE (MAPP) Mechanical Properties
下载PDF
Progress in Recycling of Composites with Polycyanurate Matrix
7
作者 Christian Dreyer Dominik Sothje Monika Bauer 《Advances in Chemical Engineering and Science》 2014年第2期167-183,共17页
Thermoset based composites are used increasingly in industry for light weight applications, mainly for aircraft, windmills and for automobiles. Fiber reinforced thermoset polymers show a number of advantages over conv... Thermoset based composites are used increasingly in industry for light weight applications, mainly for aircraft, windmills and for automobiles. Fiber reinforced thermoset polymers show a number of advantages over conventional materials, like metals, especially their better performance regarding their strength-to-weight ratio. However, composite recycling is a big issue, as there are almost no established recycling methods. The authors investigate the recyclability of polycyanurate homo- and copolymers with different recycling agents under different conditions. Also the influence of the recycling process on the most important reinforcement fibers, i.e. carbon-, glass-, aramid-, and natural-fiber is investigated. The authors find that: the recycling speed is not only dependent on the temperature, but also is significantly influenced by the particular recycling agents and the polycyanurate formulation. Hence, the stability against the recycling media can be adjusted over a broad range by adjusting the polymer composition. Furthermore, the authors find that the inorganic reinforcement fibers (carbon and glass) are almost unaffected by neither recycling agent at either temperature. Aramid-fibers degrade, depending on the particular recycling agent, from slightly up to extremely strong. This leaves one with the possibility to find a combination of matrix resin and recycling agent, which does not affect the aramid-fiber significantly. In the case of natural fibers, the dependence on the particular recycling media is very strong: some media do not affect the fiber significantly;others reduce the mechanical properties (tensile strength and elongation at break) significantly, and still others even improve both mechanical properties strongly. From the Recyclate, the authors synthesize and subsequently characterize a number of new polyurethane thermosets (foamed and solid samples) with different contents of recyclate, exhibiting Tg in the range of 60°C to 128°C. 展开更多
关键词 Polycyanurate composite Recycling THERMOSET Cyanate Ester resins High Performance Polymers reinforcement Fiber Carbon Fiber Natural Fiber
下载PDF
Optimization Mechanism of Mechanical Properties of Basalt Fiber-Epoxy Resin Composites by Interfacially Enriched Distribution of Nano-Starch Crystals
8
作者 Yanpeng Wei Jiale Zhao +2 位作者 Jian Zhuang Peng Zhang Zhiwu Han 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS 2024年第3期289-296,共8页
Fibre reinforced polymer composites have become a new generation of structural materials due to their unique advantages such as high specific strength,designability,good dimensional stability and ease of large-area mo... Fibre reinforced polymer composites have become a new generation of structural materials due to their unique advantages such as high specific strength,designability,good dimensional stability and ease of large-area monolithic forming.However,the problem of interfacial bonding between the resin matrix and the fibres limits the direct use of reinforcing fibres and has become a central difficulty in the development of basalt fibre-epoxy composites.This paper proposes a solution for enhancing the strength of the fibre-resin interface using maize starch nanocrystals,which are highly yield and eco-friendly.Firstly,in this paper,corn starch nanocrystals(SNC)were prepared by hydrolysis,and were deposited on the surface of basalt fibers by electrostatic adsorption.After that,in order to maximize the modification effect of nano-starch crystals on the interface,the basalt fiber-epoxy resin composite samples were prepared by mixing in a pressureless molding method.The test results shown that the addition of basalt fibers alone led to a reduction in the strength of the sample.Deposition of 0.1 wt%SNC on the surface of basalt fibers can make the strength consistent with pure epoxy resin.When the adsorption amount of SNC reached 0.5 wt%,the tensile strength of the samples was 23.7%higher than that of pure epoxy resin.This is due to the formation of ether bond homopolymers between the SNC at the fibre-epoxy interface and the epoxy resin,which distorts the originally smooth interface,leading to increased stress concentration and the development of cracks.This enhances the binding of basalt fibers.The conclusions of this paper can provide an effective,simple,low-cost and non-polluting method of interfacial enhancement modification. 展开更多
关键词 Basalt fibres Epoxy resin Fibre reinforced composites Starch nanocrystals Eco-friendly
下载PDF
Comparison of Quasi-Static and Dynamic Compressive Response of E-Glass/Polyester-CNF Nanocomposites
9
作者 Mohammad Kamal Hossain Muhammad Enayet Hossain +1 位作者 Mahesh Hosur Shaik Jeelani 《材料科学与工程(中英文B版)》 2016年第1期14-29,共16页
下载PDF
桥梁工程中的纤维增强树脂基复合材料应用进展
10
作者 敬麒麟 《合成材料老化与应用》 CAS 2024年第2期80-82,共3页
为满足恶劣环境条件下现代化桥梁工程高质量建造所需材料的力学性能、耐腐蚀性及耐疲劳性等要求,基于纤维增强树脂基复合材料的优异性能,从公路桥、观赏桥、梁式桥以及超大跨度悬索桥等不同工况要求下的桥梁建设出发,总结了纤维增强树... 为满足恶劣环境条件下现代化桥梁工程高质量建造所需材料的力学性能、耐腐蚀性及耐疲劳性等要求,基于纤维增强树脂基复合材料的优异性能,从公路桥、观赏桥、梁式桥以及超大跨度悬索桥等不同工况要求下的桥梁建设出发,总结了纤维增强树脂基复合材料的发展与应用现状。指出纤维增强树脂基复合材料在桥梁工程应用中仍存在应力损失、受风力影响大及回收处理难等弊端,并提出了主要的解决思路。 展开更多
关键词 纤维增强树脂基复合材料 桥梁工程 应用现状 发展方向
下载PDF
树脂基纤维复合材料在新能源汽车上的应用
11
作者 陈云霞 李志虎 《汽车实用技术》 2024年第15期102-107,共6页
树脂基纤维复合材料具有密度小、模量高、比强度高等优点,是优异的车用轻量化材料。为更好地探寻新能源汽车零部件的用材趋势,文章对树脂基纤维复合材料在国内外新能源汽车上的应用进行了详细的分析。研究发现,碳纤维增强复合材料虽然... 树脂基纤维复合材料具有密度小、模量高、比强度高等优点,是优异的车用轻量化材料。为更好地探寻新能源汽车零部件的用材趋势,文章对树脂基纤维复合材料在国内外新能源汽车上的应用进行了详细的分析。研究发现,碳纤维增强复合材料虽然成本高,但由于优异的性能,仍在部分高端车型上大量使用,用以提升品牌影响力;玻纤增强复合材料,成本较低,是理想的轻量化材料,近几年在新能源汽车上大量应用;天然纤维增强复合材料的应用主要是为了提升低碳、环保的形象;玄武岩纤维增强复合材料目前还未形成完整的产业链,但未来有广阔的发展空间。文章的分析为新能源汽车零部件的选材提供了依据和指引方向。 展开更多
关键词 树脂基纤维 复合材料 新能源汽车 GFRP CFRP
下载PDF
纤维增强热固性树脂基复合材料成型过程数值模拟研究进展
12
作者 赵华坤 于涛 +2 位作者 程泽非 徐鉴 李岩 《材料工程》 EI CAS CSCD 北大核心 2024年第5期46-56,共11页
纤维增强热固性树脂基复合材料在高端制造领域应用广泛,其固化过程涉及树脂流动、固化反应发生、残余应力引发固化变形等多个步骤。数值模拟纤维增强热固性树脂基复合材料的工艺成型过程是一个多场耦合的复杂问题,建立完善的数值模拟方... 纤维增强热固性树脂基复合材料在高端制造领域应用广泛,其固化过程涉及树脂流动、固化反应发生、残余应力引发固化变形等多个步骤。数值模拟纤维增强热固性树脂基复合材料的工艺成型过程是一个多场耦合的复杂问题,建立完善的数值模拟方法用来预测其成型过程中的固化行为对于工艺类型选择、工艺参数设计和复合材料构件性能优化具有重要的理论与实践意义。本文归纳了数值模拟纤维增强热固性树脂基复合材料成型过程的主要研究进展,并讨论了不同数值模型的适用条件,通过分析同一问题不同模型的适用条件可以为复合材料固化工艺及参数设计的选择提供指导。提升精度和降低成本是数值模型迭代优化的主要研究方向。在此基础上,本文对数值模拟纤维增强热固性树脂基复合材料成型过程进行了总结,并认为未来可以从复合材料的树脂流动多尺度建模、机器学习与材料基因组方法在复合材料的构件优化设计中的应用和残余应力对复合材料的性能及使用寿命的影响等方面开展研究。 展开更多
关键词 纤维增强复合材料 数值模拟 热固性树脂 成型工艺
下载PDF
APP-MCA-CFA三元复配阻燃体系改性环氧树脂基玻璃纤维复合材料及性能研究
13
作者 董大为 郝杰 +4 位作者 欧秋仁 胡楠 桂起林 张铁夫 王晓辉 《化工新型材料》 CAS CSCD 北大核心 2024年第6期239-246,共8页
首次以聚磷酸铵(APP)为酸源和主阻燃剂,以高氮含量的三聚氰胺氰尿酸盐(MCA)为气源,以大分子型三嗪成炭剂(CFA)为炭源,组成APP-MCA-CFA三元复配阻燃剂体系。将其用于环氧树脂体系的阻燃改性,通过极限氧指数(LOI)、垂直燃烧等级、锥形量... 首次以聚磷酸铵(APP)为酸源和主阻燃剂,以高氮含量的三聚氰胺氰尿酸盐(MCA)为气源,以大分子型三嗪成炭剂(CFA)为炭源,组成APP-MCA-CFA三元复配阻燃剂体系。将其用于环氧树脂体系的阻燃改性,通过极限氧指数(LOI)、垂直燃烧等级、锥形量热、扫描电镜(SEM)、热失重分析(TG)和动态力学分析(DMA)等实验分析了它们之间的协同效应。结果表明:与单独使用APP阻燃剂相比,三元复配阻燃剂体系(20%APP-5%MCA-5%CFA,均为质量分数)表现出显著的协同阻燃效应,LOI值提升至62.0%,热释放速率峰值(PHRR)降低至401kW/m^(2),总热释放量(THR)下降至37.3MW/m^(2)。成炭分析结果表明,APP-MCA-CFA三元复配阻燃剂体系的引入使环氧树脂在高温下形成孔洞直径约5μm的形貌均一且规整的微米级膨胀炭层。DMA实验表明MCA和CFA可以通过粒子表面的胺基参与环氧固化反应,提高环氧固化交联密度,在一定程度抵消APP阻燃剂粉体加入导致的环氧机械性能下降。APP-MCA-CFA三元复配阻燃体系可用于环氧树脂基玻璃纤维复合材料的阻燃改性,垂直燃烧等级提升至UL-94 V0级,LOI值提升至66.3%。该研究为开发综合性能优异的阻燃环氧树脂基复合体系提供了一种简单易行的途径。 展开更多
关键词 环氧树脂 三元复配阻燃体系 协同阻燃效应 玻璃纤维增强复合材料
下载PDF
高性能纤维增强树脂基复合材料湿热老化研究进展
14
作者 李佳楠 姜亚明 +1 位作者 项赫 杨晨 《化工新型材料》 CAS CSCD 北大核心 2024年第1期1-7,共7页
高性能纤维增强树脂基复合材料具有卓越的结构整体性及抗分层等特性,在诸多工业领域中具有广泛适用性。在其储藏及使用时,制件强度会不可避免地因湿热老化造成降解和退化。探讨和揭示高性能纤维增强树脂基复合材料在不同湿热老化环境下... 高性能纤维增强树脂基复合材料具有卓越的结构整体性及抗分层等特性,在诸多工业领域中具有广泛适用性。在其储藏及使用时,制件强度会不可避免地因湿热老化造成降解和退化。探讨和揭示高性能纤维增强树脂基复合材料在不同湿热老化环境下的力学响应,对其结构件的耐久性、安全服役性能和寿命预估具有至关重要的意义。综述了国内外高性能纤维增强树脂基复合材料湿热老化方面的研究进展,介绍了其吸湿机理以及在湿热环境下的老化机理。梳理了湿热老化环境对于高性能纤维增强树脂基复合材料力学性能的影响,寿命预测模型等。最后指出了高性能纤维增强树脂基复合材料老化研究存在的问题、面临的挑战,对未来研究发展方向提出了展望。 展开更多
关键词 高性能纤维增强树脂基复合材料 湿热老化 吸湿模型 力学性能 寿命预测
下载PDF
碳纤维增强树脂基复合材料的层间颗粒增韧技术研究进展
15
作者 赵涵怡 柯红军 +2 位作者 汪东 张洋 李琪 《材料导报》 EI CAS CSCD 北大核心 2024年第S01期575-582,共8页
碳纤维增强树脂基复合材料(CFRP)具有高强高模的优点,被广泛应用于汽车、体育、船舶、航空航天等领域,达到了材料轻量化的要求。目前使用较多的树脂基体以环氧树脂(EP)等热固性树脂为代表,普遍存在脆性大、韧性差的问题,导致复合材料层... 碳纤维增强树脂基复合材料(CFRP)具有高强高模的优点,被广泛应用于汽车、体育、船舶、航空航天等领域,达到了材料轻量化的要求。目前使用较多的树脂基体以环氧树脂(EP)等热固性树脂为代表,普遍存在脆性大、韧性差的问题,导致复合材料层合板容易在层间发生开裂。层间增韧是一种有效的增韧方式,它可以在不改变基体树脂粘度的情况下对特定区域进行增韧,提高材料的断裂韧性。本文介绍了层间断裂模式并总结了层间断裂韧性(ILFT)测试的数据处理方法,总结了聚合物颗粒与无机纳米颗粒(主要是碳纳米管)的颗粒种类、增韧机制、引入方式,并主要通过层间断裂韧性评价了各种颗粒的增韧效果。 展开更多
关键词 碳纤维增强树脂基复合材料 层间增韧 层间断裂韧性 聚合物颗粒 无机纳米颗粒 碳纳米管
下载PDF
抗弹复合材料用高性能有机纤维、树脂及其匹配性研究进展 被引量:1
16
作者 周子言 翟文 +5 位作者 董彬 魏汝斌 王小伟 张文婷 何金迎 付思伟 《工程塑料应用》 CAS CSCD 北大核心 2024年第4期181-187,共7页
简述了纤维增强树脂基复合材料的抗弹机理,介绍了装甲防护领域常用的高性能有机抗弹纤维和树脂,分析了影响纤维复合材料抗弹性能的主要因素。从纤维/树脂协调匹配的角度出发,揭示了匹配的各组分可以最大程度上发挥增强体高强度、高模量... 简述了纤维增强树脂基复合材料的抗弹机理,介绍了装甲防护领域常用的高性能有机抗弹纤维和树脂,分析了影响纤维复合材料抗弹性能的主要因素。从纤维/树脂协调匹配的角度出发,揭示了匹配的各组分可以最大程度上发挥增强体高强度、高模量和基体能量吸收率高的特性,分析了纤维/树脂匹配性的发展趋势,指出下一步研究重点在于构建恰当的纤维/树脂匹配体系,通过调整纤维/树脂含量、树脂模量和对纤维进行表面处理等进行调控。 展开更多
关键词 纤维增强树脂基复合材料 抗弹用高性能有机纤维 匹配性 抗弹机理 弹道性能
下载PDF
纤维增强热塑性复合材料与金属连接技术的研究进展
17
作者 张龙 解妙霞 张林杰 《焊管》 2024年第2期8-16,44,共10页
纤维增强热塑性复合材料(FRTP)与金属的连接技术是多材料异质结构的关键制造技术。总结了纤维增强热塑性树脂基复合材料相对于传统金属材料的性能优势,分析了FRTP与金属连接技术的重要性和必要性,系统回顾了胶接、机械连接、混合连接和... 纤维增强热塑性复合材料(FRTP)与金属的连接技术是多材料异质结构的关键制造技术。总结了纤维增强热塑性树脂基复合材料相对于传统金属材料的性能优势,分析了FRTP与金属连接技术的重要性和必要性,系统回顾了胶接、机械连接、混合连接和焊接四大类FRTP/金属连接技术的特点和发展,最后对未来FRTP/金属异质结构连接技术的发展、接头性能的改善提出了展望。 展开更多
关键词 纤维增强热塑性树脂基复合材料 金属 异质结构 连接方式
下载PDF
连续纤维增强树脂基复合材料绿色化技术的研究进展
18
作者 赵淼 《工程塑料应用》 CAS CSCD 北大核心 2024年第4期188-192,共5页
连续纤维增强树脂基复合材料具有轻质、高强、性能可设计等特点,是航空装备轻量化不可或缺的重要结构材料。由于其主要采用热压罐成型技术制备,成型过程能耗高,热固性树脂回收利用难、成本高,难以满足低碳绿色发展的要求,因此开展可回... 连续纤维增强树脂基复合材料具有轻质、高强、性能可设计等特点,是航空装备轻量化不可或缺的重要结构材料。由于其主要采用热压罐成型技术制备,成型过程能耗高,热固性树脂回收利用难、成本高,难以满足低碳绿色发展的要求,因此开展可回收绿色复合材料、复合材料低能耗制造以及回收再利用等复合材料绿色化技术研究受到了越来越广泛的重视。笔者介绍了目前连续纤维增强复合材料绿色化技术的发展现状,并探讨了连续纤维增强复合材料绿色化技术的发展前景。 展开更多
关键词 连续纤维增强树脂基复合材料 热塑性复合材料 绿色化技术 绿色复合材料 低能耗制造技术 回收再利用
下载PDF
注射成型制备的碳纤维聚丙烯复合材料蠕变性能
19
作者 高佳艺 杨扬 阳玉球 《复合材料科学与工程》 CAS 北大核心 2024年第7期39-44,共6页
碳纤维热塑性树脂基复合材料在极端环境及长期服役条件下的蠕变行为会使结构件的形状发生改变,影响其性能稳定性,因此对该种材料蠕变性能的研究是材料设计及应用的关键。本文通过对注射成型制备的碳纤维增强聚丙烯复合材料进行单轴拉伸... 碳纤维热塑性树脂基复合材料在极端环境及长期服役条件下的蠕变行为会使结构件的形状发生改变,影响其性能稳定性,因此对该种材料蠕变性能的研究是材料设计及应用的关键。本文通过对注射成型制备的碳纤维增强聚丙烯复合材料进行单轴拉伸蠕变试验,研究其蠕变行为,并基于以上试验数据得到该种材料的Burgers模型理论方程,采用Moldex3D模流分析软件模拟注射成型哑铃型试样内部碳纤维的取向和分布情况,将该模拟结果映射到ABAQUS中进行有限元分析。结果发现Burgers模型的拟合曲线与试验曲线吻合程度较高,能够用于更长时间以及更广范围应力水平下该种材料的蠕变行为预测;模流分析结果与实际试样横截面观察结果具有较好的一致性;注射成型过程中碳纤维取向及分布会影响最终成型试样的蠕变行为,采用模流分析与有限元分析相结合的方式能够更好地反映材料的蠕变进程。 展开更多
关键词 碳纤维增强热塑性树脂基复合材料 蠕变 有限元分析 注射成型 回收型碳纤维
下载PDF
交变载荷下绝缘拉杆用GFRP电树枝劣化特性
20
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
下载PDF
上一页 1 2 16 下一页 到第
使用帮助 返回顶部