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Thermal-mechanical properties of short carbon fiber reinforced geopolymer matrix composites subjected to thermal load 被引量:4
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作者 林铁松 贾德昌 +1 位作者 何培刚 王美荣 《Journal of Central South University》 SCIE EI CAS 2009年第6期881-886,共6页
Short carbon fiber preform reinforced geopolymer composites containing different contents of α-Al2O3 filler (Cr(a-Al2O3)/geopolymer composites) were fabricated, and the effects of heat treatment temperatures up t... Short carbon fiber preform reinforced geopolymer composites containing different contents of α-Al2O3 filler (Cr(a-Al2O3)/geopolymer composites) were fabricated, and the effects of heat treatment temperatures up to 1 200 ℃ on the thermal-mechanical properties were studied. The results show that the thermal shrinkage in the direction perpendicular to the lamination of the composites gradually increases with the increase of the heat treatment temperatures from room temperature (25 ℃ ) to 1000 ℃. However, the composites in the direction parallel to the lamination show an expansion behavior. Beyond 1 000℃, in the two directions the composites exhibit a larger degree of shrinkage due to the densification and crystallization. The mechanical properties of the composites show the minimum values in the temperature range from 600 to 800 ℃ as the hydration water of geopolymer matrix is lost. The addition of α-Al2O3 particle filler into the composites clearly increases the onset crystalline temperature of leucite (KAlSi2O6) from the amorphous geopolymer matrix. In addition, the addition of α-Al2O3 particles into the composites can not only help to keep volume stable at high temperatures but also effectively improve the mechanical properties of the composites subjected to thermal load to a certain extent. The main toughening mechanisms of the composites subjected to thermal load are attributed to fiber pulling-out. 展开更多
关键词 short carbon fiber Α-AL2O3 thermal-mechanical properties GEOPOLYMER thermal load
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Study on Microwave Dielectric Property of Carbon Black and Short Carbon Fibers
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作者 WUHong-huan ZHU Dong-mei LUO Fa ZHOU Wan-cheng WANG Xiao-yan 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2006年第B12期130-133,共4页
Carbon black and carbon fibers of different lengths were introduced in different matrices at different ratios to explore their microwave dielectric properties under 8.2 GHz-12.4 GHz. It is found that the actual dielec... Carbon black and carbon fibers of different lengths were introduced in different matrices at different ratios to explore their microwave dielectric properties under 8.2 GHz-12.4 GHz. It is found that the actual dielectric constants of the samples containing carbon black are in a two-order function of the contents of carbon black (ε', ε"=Av2+Bv+C) and the complex dielectric constants show an obvious frequency response. Of the added fibers of different lengths, the 4 mm-long one could well disperse in the matrices having not only good frequency response, but also larger real parts, imaginary parts and loss values. The imaginary parts and the loss values (tanδ)of the samples with 4 mm-long carbon fibers added increase linearly with the contents of fiber increasing. So it is practicable to adjust the dielectric parameters of the material in a wide range by changing the added amount of carbon black, and the carbon fiber or altering the lengths of the carbon fiber added. 展开更多
关键词 microwave dielectric property short carbon fibers carbon black
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Fabrication of Short Carbon Fiber Reinforced AZ91D Alloy by Infiltration-Extrusion Integrated Technique 被引量:1
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作者 Ouyang Haibo Li Hejun Qi Lehua Li Zhengjia Su Lizheng Wei Jianfeng 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2009年第A03期100-104,共5页
Short carbon fiber reinforced AZ91D alloy (Csf/AZ91D) was fabricated by the infiltration-extrusion method. The short carbon fiber preform was infiltrated with melted AZ91D alloy under the assistant of gas pressure. Th... Short carbon fiber reinforced AZ91D alloy (Csf/AZ91D) was fabricated by the infiltration-extrusion method. The short carbon fiber preform was infiltrated with melted AZ91D alloy under the assistant of gas pressure. The extrusion processing was applied following the infiltration processing directly. The tensile property and microstructure of the Csf/AZ91D and that of the die-casting and extruded AZ91D alloy was compared. The results show that the short carbon fiber reinforced AZ91D alloy present excellent tensile property. The tensile strength and modulus of elasticity of Csf/AZ91D is about 50% and 18% higher than that of cast AZ91D alloy, respectively. The elongation to fracture of Csf/AZ91D is about 50% lower than that of AZ91D alloy. 展开更多
关键词 碳纤维增强镁合金 制备方法 物理性能 微观结构
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Tribological properties of short carbon fibers reinforced epoxy composites 被引量:4
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作者 Nay Win KHUN He ZHANG +3 位作者 Lee Hoon LIM Chee Yoon YUE Xiao HU Jinglei YANG 《Friction》 SCIE EI CAS 2014年第3期226-239,共14页
Short carbon fiber(SCF)reinforced epoxy composites with different SCF contents were developed to investigate their tribological properties.The friction coefficient and wear of the epoxy composites slid in a circular p... Short carbon fiber(SCF)reinforced epoxy composites with different SCF contents were developed to investigate their tribological properties.The friction coefficient and wear of the epoxy composites slid in a circular path against a steel pin inclined at 45°to a vertical axis and a steel ball significantly decreased with increased SCF content due to the solid lubricating effect of SCFs along with the improved mechanical strength of the composites.The scanning electron microscope(SEM)observation showed that the epoxy composites had less sensitive to surface fatigue caused by the repeated sliding of the counterparts than the epoxy.The tribological results clearly showed that the incorporation of SCFs was an effective way to improve the tribological properties of the epoxy composites. 展开更多
关键词 epoxy composite short carbon fiber FRICTION WEAR
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Study on the crystal morphology and melting behavior of isothermally crystallized composites of short carbon fiber and poly(trimethylene terephthalate)
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作者 Mingtao RUN Hongzan SONG Yanping HAO 《Frontiers of Chemical Science and Engineering》 SCIE EI CSCD 2009年第3期255-264,共10页
The spherulites of the short carbon fiber(SCF)/poly(trimethyleneterephthalate)(PTT)compositesformedin limited space at designed temperatures,and their melting behaviors were studied by the polarized optical microscopy... The spherulites of the short carbon fiber(SCF)/poly(trimethyleneterephthalate)(PTT)compositesformedin limited space at designed temperatures,and their melting behaviors were studied by the polarized optical microscopy,atomic force microscopy(AFM),and scanning electron microscopy(SEM),respectively.The results suggest that SCF content,isothermal crystallization temperatures,and the film thicknesses influence the crystal morphology of the composites.The dimension of the spherulites is decreased with increasing SCF content,but whether banded or nonbanded spherulites will form in the composites is not dependent on SCF content.However,the crystal morphology of the composites depends strongly on the temperature.When the isothermal crystallization temperatures increase from 180℃ to 230℃,the crystal morphology of SCF/PTT composites continuously changes in the following order:nonbanded→banded→nonbanded spherulites.Disconti-nuous circle lines form in the film when the film thickness increases from 30 to 60μm.Basing on the SEM observation,it is found that these circle lines are cracks formed due to the constriction difference of the different parts of the spherulites.These cracks are formed when the film is cooled from the isothermal crystallization temperature to the room tempera-ture at a slow cooling rate;while they will disappear gradually at different temperatures in the heating process.The crack will appear/disappear first around the center of the spherulite when the film was cooled/heated.The nontwisted or slightly twisted lamellas will reorganize to form highly twisted lamellas inducing apparent banded texture of the spherulites. 展开更多
关键词 poly(trimethylene terephthalate) short carbon fiber banded spherulites CRACK
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Improved multi-orientation dispersion of short carbon fibers in aluminum matrix composites prepared with square crucible by mechanical stirring 被引量:5
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作者 Guanglong Li Yingdong Qu +3 位作者 Yaohua Yang Qiwen Zhou Xishi Liu Rongde Li 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2020年第5期81-87,共7页
In order to improve the strength of short carbon fibers reinforced aluminum matrix(Csf/Al)composite,the dispersion of short carbon fibers with multi-orientation was controlled with a square crucible by mechanical stir... In order to improve the strength of short carbon fibers reinforced aluminum matrix(Csf/Al)composite,the dispersion of short carbon fibers with multi-orientation was controlled with a square crucible by mechanical stirring.The three-dimensional flow field models of liquid aluminum melt in the square/round crucibles were established and calculated,and the results were compared.The calculated results show that turbulent flow could be induced both in the square and round crucible,while the non-axisymmetric structure of the square crucible results in higher turbulent kinetic energy in the melt.Therefore,the uniformity and multi-orientation dispersion of the short fibers can be improved by the intensive turbulent flow in the square crucible,which will be increased by increasing the rotational velocity.The distribution of the short carbon fibers in the aluminum matrix prepared under different rotation velocities in square crucible was experimentally investigated.With the increase of stirring velocity,the multi-orientation dispersion of the short fibers in the composites increased gradually.The experimental results are consistent with the calculation results.The tensile testing results show that the strength of the Csf/Al composite can reach 172 MPa when the rotational velocity is 1000 rpm,and it is 48.3%higher than that prepared by the round crucible under the same conditions,which results from the improved multi-orientation dispersion of short carbon fibers in aluminum matrix. 展开更多
关键词 SQUARE CRUCIBLE short carbon fibers Aluminum matrix composite Mechanical STIRRING Multi-orientation DISPERSION
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Monte Carlo Computer Simulation of Nonuniform Field Emission Current Density for a Carbon Fiber
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作者 P. A. Golovinski A. A. Drobyshev 《Journal of Electromagnetic Analysis and Applications》 2014年第1期8-14,共7页
The field emission current from a carbon fiber is considered. As a model of emission of an elementary carbon tube, tunnel ionization of an electron from a short-range potential is taken. The exact solution for the wav... The field emission current from a carbon fiber is considered. As a model of emission of an elementary carbon tube, tunnel ionization of an electron from a short-range potential is taken. The exact solution for the wave function in such a model allows obtaining an asymptotic expression for electron current. A computer model of transverse distribution of emission current of a carbon fiber is built on the basis of the Monte Carlo method that allows taking into account the random character of distribution of local emitter sources and the distribution of gains of an electric field in carbon nanotubes. 展开更多
关键词 Field Emission carbon fiber Current Density short-RANGE Potential MONTE Carlo Method
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短切碳纤维增强MC尼龙复合材料的制备与性能 被引量:1
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作者 林嘉恩 张鹏 +4 位作者 杨玉婧 麦振宇 张功武 程永奇 章争荣 《材料科学与工程学报》 CAS CSCD 北大核心 2024年第1期84-90,143,共8页
MC尼龙是一种已得到广泛应用的重要的工程塑料,但存在尺寸稳定性较差、热稳定性不高和重载下强度欠佳等缺点。本研究采用短切碳纤维(SCF)作为改性剂,探索研究了SCF/MC尼龙复合材料的制备工艺,研究了不同的SCF含量对复合材料密度、转化... MC尼龙是一种已得到广泛应用的重要的工程塑料,但存在尺寸稳定性较差、热稳定性不高和重载下强度欠佳等缺点。本研究采用短切碳纤维(SCF)作为改性剂,探索研究了SCF/MC尼龙复合材料的制备工艺,研究了不同的SCF含量对复合材料密度、转化率、机械性能、摩擦性能及结晶度的影响。结果表明:在0~20%SCF含量范围内,复合材料的密度及拉伸强度表现为先增大后减少;转化率和冲击强度为20%SCF复合材料最为突出;而摩擦系数、磨损量在加入SCF后呈现先减少后增加的趋势。在10%SCF含量时,材料表现出较好的摩擦性能,同时结晶温度增大到182.95℃,结晶度为35.57%。研究结果证实通过添加适当比例的SCF改性剂可以有效改善MC尼龙的性能,这为进一步开发满足某些特殊螺旋传动下的新型复合材料做了有益尝试。 展开更多
关键词 MC尼龙 短切碳纤维 复合材料 性能
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碳纤维表面处理对铜基摩擦材料性能的影响
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作者 刘建秀 贾旭钢 +3 位作者 樊江磊 程晓阳 梁柳博 张宇 《热加工工艺》 北大核心 2024年第16期143-147,共5页
采用粉末冶金技术制备了添加短切碳纤维的铜基摩擦材料,研究了碳纤维粗化、碳纤维镀铜对铜基摩擦材料组织、力学性能及摩擦磨损性能的影响。结果表明:由于碳纤维与铜基体界面性能较差,添加无处理碳纤维后,摩擦材料的硬度及密度最低,摩... 采用粉末冶金技术制备了添加短切碳纤维的铜基摩擦材料,研究了碳纤维粗化、碳纤维镀铜对铜基摩擦材料组织、力学性能及摩擦磨损性能的影响。结果表明:由于碳纤维与铜基体界面性能较差,添加无处理碳纤维后,摩擦材料的硬度及密度最低,摩擦系数和磨损率在不同制动初速度下最大。添加粗化处理碳纤维的摩擦材料,其摩擦系数低于未添加碳纤维的,硬度及密度有所降低。由于碳纤维镀铜改善了碳纤维与基体之间的润湿性与结合状态,硬度以及密度有轻微下降。碳纤维发挥了其固体润滑剂的作用,摩擦系数稳定,碳纤维镀铜处理试样的磨损量最低。 展开更多
关键词 铜基摩擦材料 短切碳纤维 粗化 镀铜
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短切碳纤维对泵用SiC复合陶瓷强度与耐冲蚀性影响研究
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作者 梁晨阳 危涛 +7 位作者 文钰斌 吴志宏 李家虎 熊华 惠越 李丽 印雄雄 徐衡 《粘接》 CAS 2024年第5期72-74,共3页
将0.5 mm、1 mm和3 mm的短切碳纤维分别加入SiC树脂复合陶瓷中,研究不同短切碳纤维长度对SiC复合陶瓷抗折强度和耐冲蚀性能的影响。研究结果表明,添加短切碳纤维后,试样的体积密度从2.45降低至2.32 g/cm^(3),而显气孔率变化不大,维持在4... 将0.5 mm、1 mm和3 mm的短切碳纤维分别加入SiC树脂复合陶瓷中,研究不同短切碳纤维长度对SiC复合陶瓷抗折强度和耐冲蚀性能的影响。研究结果表明,添加短切碳纤维后,试样的体积密度从2.45降低至2.32 g/cm^(3),而显气孔率变化不大,维持在4%。随着添加短切碳纤维长度的增加,试样的抗折强度显著提升,从61.57 MPa增加至71.67 MPa。添加3 mm的短切碳纤维后,试样的抗折强度更加稳定,多个试样间的差距显著降低。添加不同长度短切碳纤维后,试样的常温耐冲蚀性无明显变化,一次和二次冲蚀损失体积分别维持在0.033 cm^(3)和0.045 cm^(3)左右。SiC树脂复合陶瓷浇注料的制备过程中,添加3 mm的短切碳纤维可以有效提升抗折强度,同时保持复合陶瓷优秀的耐冲蚀性能。 展开更多
关键词 SiC树脂复合材料 短切碳纤维 抗折强度 耐冲蚀性能
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短切碳纤维对GF-Fabric/EP夹层复合材料的增强作用研究
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作者 李华冠 李赵璇 +3 位作者 章月 项俊贤 匡宁 丁颖 《玻璃纤维》 CAS 2023年第1期11-18,共8页
针对高速列车、新能源汽车等交通工具对高性能泡沫夹层复合材料的迫切需求,制备了玻璃纤维三维立体织物增强环氧树脂泡沫复合材料(下称GF-Fabric/EP复合材料)及其夹层结构,并重点探索短切碳纤维(Short carbon fiber,SCF)对其泡沫本身及... 针对高速列车、新能源汽车等交通工具对高性能泡沫夹层复合材料的迫切需求,制备了玻璃纤维三维立体织物增强环氧树脂泡沫复合材料(下称GF-Fabric/EP复合材料)及其夹层结构,并重点探索短切碳纤维(Short carbon fiber,SCF)对其泡沫本身及夹层复合材料的增强作用。研究结果表明,SCF的填充通过受载时阻断环氧树脂泡沫内部裂纹的扩展,利用自身断裂及与基体脱粘等消耗能量,显著提升环氧树脂泡沫的力学性能,并可与玻璃纤维三维立体织物实现协同增强效果,在填充质量比为2%时复合材料力学性能最佳。同时,基于纤维的“桥联”作用,SCF的引入亦可有效改善铝合金面板与芯材的界面性能。 展开更多
关键词 短切碳纤维 环氧泡沫夹层复合材料 力学性能 失效机制
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聚碳酸酯/短切碳纤维/二苯砜磺酸钾复合材料的阻燃性能 被引量:1
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作者 李倩玉 刘杰 唐涛 《应用化学》 CAS CSCD 北大核心 2023年第12期1662-1671,共10页
采用熔融共混方法制备了聚碳酸酯/短切碳纤维/二苯砜磺酸钾(PC/sCF/KSS)复合材料,通过垂直燃烧(UL-94)、极限氧指数(LOI)和锥型量热测试研究了同时加入sCF和KSS对PC阻燃性能的影响。结果表明,当加入质量分数2%的sCF和质量分数0.1%的KSS... 采用熔融共混方法制备了聚碳酸酯/短切碳纤维/二苯砜磺酸钾(PC/sCF/KSS)复合材料,通过垂直燃烧(UL-94)、极限氧指数(LOI)和锥型量热测试研究了同时加入sCF和KSS对PC阻燃性能的影响。结果表明,当加入质量分数2%的sCF和质量分数0.1%的KSS时,PC/2sCF/0.1KSS复合材料的LOI较纯PC(27.2%)大幅提高,达到36.2%,UL-94等级达到V-0级。sCF和KSS在降低PC热释放和烟释放方面表现出协同效应。与纯PC相比,PC/2sCF/0.1KSS复合材料的峰值热释放速率(pHRR)降低59%,峰值烟释放速率(pSPR)降低57%,峰值CO释放速率(pCOP)降低63%,均优于单独加入sCF或KSS的样品。在燃烧过程中,sCF和KSS的同时加入在PC复合材料中发挥了优异的凝聚相阻燃作用。此外,PC/2sCF/0.1KSS复合材料的冲击强度、拉伸强度、断裂伸长率与纯PC相比变化不大,力学性能得到保持。 展开更多
关键词 聚碳酸酯 短切碳纤维 磺酸盐阻燃剂 阻燃性能
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HEC分散剂和纤维掺量对短切碳纤维水泥基材料压敏性的影响 被引量:1
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作者 方思怡 巴明芳 +3 位作者 许浩锋 张晨剑 谢嘉磊 王志豪 《材料导报》 CSCD 北大核心 2023年第15期291-299,共9页
为提高碳纤维水泥基复合材料(CFRCC)的压敏性,研究了羟乙基纤维素(HEC)对CFRCC中短切碳纤维分散特征的影响,采用灵敏度系数法分别探究了不同HEC掺量和短切碳纤维掺量对CFRCC压敏性的影响规律,并根据电化学阻抗法和可蒸发水含量法分析了... 为提高碳纤维水泥基复合材料(CFRCC)的压敏性,研究了羟乙基纤维素(HEC)对CFRCC中短切碳纤维分散特征的影响,采用灵敏度系数法分别探究了不同HEC掺量和短切碳纤维掺量对CFRCC压敏性的影响规律,并根据电化学阻抗法和可蒸发水含量法分析了相应CFRCC的孔结构特征,然后采用SEM测试技术对CFRCC基体中短切碳纤维分散状况以及纤维与基体界面特征进行了深入观察。结果表明:HEC分散剂在CFRCC中的掺量为胶凝材料总质量的0.4%~0.6%时,可以使CFRCC具有良好力学性能的条件下发挥更好的压敏性;CFRCC基体水胶比在0.35时,短切碳纤维的分散效果最好。在相同水胶比条件下,随着短切碳纤维掺量的增加,CFRCC抗折强度均有不同程度的提高,而其抗压强度则逐渐降低。当短切碳纤维体积掺量为0.2%时,短切碳纤维在CFRCC基体中无互相搭接和成簇现象;综合考虑压敏性和力学性能,CFRCC中短切碳纤维的适宜掺量范围为0.2%~0.25%。 展开更多
关键词 碳纤维水泥基复合材料 分散剂 压敏性 短切碳纤维
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碳纤维粉末改性铁基粉末冶金材料的组织与性能 被引量:1
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作者 汪家瑜 方华婵 +6 位作者 张芊芊 段志英 方舟 张茁 陈卓 许永祥 任子安 《粉末冶金材料科学与工程》 2023年第4期390-403,共14页
采用还原Fe粉作为基体,分别添加长度约为20μm的微米短碳纤维(micron short carbon fibers,MCsf)和粒径为1~4μm的碳纤维颗粒(carbon fiber particles,Cfp)作为弥散相,采用压制−真空烧结制备MCsf/Fe和Cfp/Fe粉末冶金材料,并与平均粒度10... 采用还原Fe粉作为基体,分别添加长度约为20μm的微米短碳纤维(micron short carbon fibers,MCsf)和粒径为1~4μm的碳纤维颗粒(carbon fiber particles,Cfp)作为弥散相,采用压制−真空烧结制备MCsf/Fe和Cfp/Fe粉末冶金材料,并与平均粒度10μm的天然石墨(natural graphite,NG)为原料制备的NG/Fe粉末冶金材料进行对比。研究微米短碳纤维、碳纤维颗粒对粉末冶金材料显微组织、物理性能、力学性能和尺寸变化的影响。结果表明:碳纤维颗粒的活性远高于石墨和脱胶短碳纤维(degummed short carbon fibers,DCsf),空气气氛下800℃的最大质量损失率为石墨的3.75倍,脱胶短碳纤维的16.6倍。与NG/Fe和MCsf/Fe粉末冶金材料相比,Cfp/Fe粉末冶金材料在烧结过程中的尺寸稳定性大幅提高,最大径向膨胀率和收缩率分别为0.39%和0.14%,且强度和韧性最高,密度、抗弯强度、剪切强度和抗拉强度分别为6.91 g/cm3、736.9 MPa、205.7 MPa和334.8 MPa,伸长率达到10.5%,材料的断裂模式由脆性沿晶断裂向完全韧窝型断裂转变。 展开更多
关键词 FE 短碳纤维 烧结收缩率 活性 力学性能 尺寸变化
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有限元分析不同材料对超短种植体的影响 被引量:2
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作者 吕虹雨 孙毅 +1 位作者 李天佑 谢伟丽 《口腔医学》 CAS 2023年第4期308-311,333,共5页
目的 应用有限元分析研究不同种植材料对超短种植体及周围骨的应力影响效果,旨在为超短种植体修复下颌第一磨牙的应用奠定理论基础。方法 通过SoildWorks软件建立下颌骨模型和三种不同材质的一段式超短种植体模型,三种材质分别为氧化锆(... 目的 应用有限元分析研究不同种植材料对超短种植体及周围骨的应力影响效果,旨在为超短种植体修复下颌第一磨牙的应用奠定理论基础。方法 通过SoildWorks软件建立下颌骨模型和三种不同材质的一段式超短种植体模型,三种材质分别为氧化锆(ZrO)、钛锆合金(Ti-Zr)、碳纤维加强型聚醚醚酮(carbon fiber reinforced polyether ether ketone, CFR-PEEK)。采用ABAQUS有限元软件模拟咬合力对每个模型施加轴向以及斜向载荷,运算并分析种植体及周围骨的应力分布情况。结果 CFR-PEEK组种植体以及皮质骨的Von-Mises应力值低于Ti-Zr组和ZrO组。结论 采用超短种植体修复骨量不足的下颌第一磨牙区,从生物力学角度分析采用CFR-PEEK比Ti-Zr和ZrO更有优势。 展开更多
关键词 超短种植体 三维有限元 碳纤维加强型聚醚醚酮 氧化锆 钛锆合金
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短切碳纤维增强环氧树脂形状记忆复合材料的制备与性能研究 被引量:1
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作者 罗发祥 魏要强 +2 位作者 武南 宋世彬 邵一川 《宇航材料工艺》 CAS CSCD 北大核心 2023年第3期60-67,共8页
为实现形状驱动能耗与复合材料力学性能的最佳配合,本文在热致环氧形状记忆聚合物基体中提高增韧剂新戊二醇二缩水醚(NGDE)含量来降低其玻璃化转变温度,同时添加短切碳纤维(SCF)来抵消由增韧剂引起的刚度降低负面效果。通过实验研究了不... 为实现形状驱动能耗与复合材料力学性能的最佳配合,本文在热致环氧形状记忆聚合物基体中提高增韧剂新戊二醇二缩水醚(NGDE)含量来降低其玻璃化转变温度,同时添加短切碳纤维(SCF)来抵消由增韧剂引起的刚度降低负面效果。通过实验研究了不同NGDE、SCF含量对复合材料形状记忆转变温度、形状记忆性能和力学性能的影响。结果表明,增加NGDE含量可将环氧聚合物基体的形状记忆转变温度从90℃降至43℃,其储能模量和弯曲模量也随之降低。在11wt%NGDE上添加SCF后,复合材料的玻璃态储能模量、橡胶态储能模量、弯曲模量最高可提高至原始试样的1.9倍、7倍和2.4倍。 展开更多
关键词 环氧形状记忆复合材料 短切碳纤维 形状记忆转变温度 储能模量 弯曲模量
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复合材料汽车前地板后本体轻量化设计 被引量:2
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作者 朱佳文 邱睿 +1 位作者 周甘华 曹清林 《机械设计与制造》 北大核心 2023年第2期200-205,共6页
对某新能源车型前地板后本体件进行轻量化设计,选用密度小、原材料成本低、成型效率高的短切玻纤热塑性复合材料(SGFRTP)替代原铝合金材料;结合性能要求、成型工艺和装配要求对前地板后本体件进行结构设计,通过加强筋合理布局提高结构... 对某新能源车型前地板后本体件进行轻量化设计,选用密度小、原材料成本低、成型效率高的短切玻纤热塑性复合材料(SGFRTP)替代原铝合金材料;结合性能要求、成型工艺和装配要求对前地板后本体件进行结构设计,通过加强筋合理布局提高结构件整体刚性;采用连续碳纤片材(CFRP)对主要承载区域进行补强设计,并结合连续纤维补强片成型特点对结构件局部结构进行二次优化。使用UG软件建模,导入HyperWorks中对前地板后本体典型工况进行分析。结果表明,以SGFRTP为基材辅以CFRP局部补强的复合材料前地板后本体结构设计满足性能和工艺要求,应力安全系数高于原铝合金地板,脚踩区与翻边过渡处的应力集中得到改善,同时减重10.37%,具有工程应用价值。 展开更多
关键词 前地板后本体 短切玻纤 连续碳纤维 轻量化设计 局部补强
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短碳纤维增强仿生材料设计及其力学性能
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作者 杨正青 栾云博 +4 位作者 张巨旗 闻贞 王维 李明臻 李永存 《高压物理学报》 CAS CSCD 北大核心 2023年第4期53-61,共9页
在自然进化中,众多生物材料因其内部多级结构的精巧配合表现出卓越的力学性能。碳纤维作为一种性能优异的人工材料,为仿生材料设计与制备提供了重要的原材料支撑。以短碳纤维和聚氨酯为原料,发展了一种针管挤制和蒸发固化方法,制备出具... 在自然进化中,众多生物材料因其内部多级结构的精巧配合表现出卓越的力学性能。碳纤维作为一种性能优异的人工材料,为仿生材料设计与制备提供了重要的原材料支撑。以短碳纤维和聚氨酯为原料,发展了一种针管挤制和蒸发固化方法,制备出具有特定纤维取向的短碳纤维增强聚氨酯复合材料薄膜,利用叠层固化成型方法,制备出具有不同层间夹角的仿螳螂虾螺旋叠层结构材料。在此基础上,通过拉伸性能测试及拉伸过程中材料内部微观形貌表征,对该仿生材料的力学增强机理进行研究。结果表明:短碳纤维在薄膜材料中具有良好的取向一致性,当纤维取向角为45°时,单层薄膜的拉伸强度最高;在螺旋叠层结构中,当层间夹角为30°时,仿生材料的拉伸强度最高,这主要是由材料内部纤维端部引起的损伤破坏以及界面脱粘引起的失效破坏所调控。研究结果对于设计和制备高性能短纤维增强复合材料、实现其性能优化具有指导意义。 展开更多
关键词 短碳纤维 仿生设计 力学性能 微观表征
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冻融环境下碳纤维聚合物加固混凝土施工技术研究 被引量:2
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作者 肖亮洲 《山西建筑》 2023年第22期128-131,共4页
为进一步提高混凝土短柱在冻融环境下的力学性能,使用碳纤维增强聚合物和收缩补偿混凝土加固混凝土受压构件,以研究加固混凝土短柱施工技术。由碳纤维增强聚合物(CFRP)和补偿收缩自密实混凝土(ESCC)组成的加固体系对CFRP外壳施加后张应... 为进一步提高混凝土短柱在冻融环境下的力学性能,使用碳纤维增强聚合物和收缩补偿混凝土加固混凝土受压构件,以研究加固混凝土短柱施工技术。由碳纤维增强聚合物(CFRP)和补偿收缩自密实混凝土(ESCC)组成的加固体系对CFRP外壳施加后张应力,进一步消除应力滞后,并发挥约束作用。实验变量包括冻融循环次数、加固聚合物壳层和加固混凝土类型。试验结果表明,当冻融循环次数达到125次时,混凝土受压构件的动态弹性模量损失率达到24.8%,质量损失率为5.3%。采用收缩补偿自密实混凝土对CFRP施加后张拉应力的方法,可以显著提高混凝土受压构件的承载力,比普通混凝土的承载力分别提高了13.23%和4.22%。且当冻融循环次数增加到75次时,混凝土试件的承载力比对照组降低了5.13%。随着冻融循环次数的不断增加,混凝土试件的损坏程度也逐渐增加,与对照组相比,承载力下降了28.2%。 展开更多
关键词 冻融循环 碳纤维聚合物 混凝土短柱 加固
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Strength and Wear Behavior of Mg Alloy AE42 Reinforced with Carbon Short Fibers 被引量:4
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作者 Sabbah Ataya Naser A.Alsaleh Mohamed M.El-Sayed Seleman 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2019年第1期31-40,共10页
In addition to the advantage of the lightweight of magnesium alloys, magnesium composites have moderate strength and elastic modulus. The proposed application of magnesium composites as diesel truck pistons makes it n... In addition to the advantage of the lightweight of magnesium alloys, magnesium composites have moderate strength and elastic modulus. The proposed application of magnesium composites as diesel truck pistons makes it necessary to assess their wear performance. Little research data have been discussed on wear behavior of Mg alloy AE42 matrix and its composites. Thus, this paper reports wear behavior of magnesium alloy AE42(Mg–Al–Mn—RE; rare earth) and its composite AE42-C, which contains 23 vol% of randomly oriented carbon short fibers. Materials characterization, including density measurements, hardness testing, microstructures investigation, and compression testing at temperatures of 25, 150,and 300 °C, were conducted. Wear tests were performed under various loads and sliding distances. Wear mechanisms were also proposed based on the examination of worn surfaces using optical microscopy and scanning electron microscopy equipped with EDX(energy-dispersive X-ray spectrometry) analysis system. The hardness of AE42-23 vol% C composite is twice the hardness of the Mg matrix alloy AE42. Significant improvements to yield stress and compressive strength at temperatures of 25, 150, and 300 °C of the composite versus the AE42 alloy are achieved. Wear resistance of the composite is improved considerably versus that of the Mg alloy AE42 at the various sliding distances. Smearing of graphite on the worn surface produces a lubricating film that delays change from mild to severe wear of the composite, especially at high loads. EDX analysis of the worn surface shows oxidation of the matrix alloy at higher wear loads, and this mechanism decreases in the presence of carbon fibers under the same loads. Abrasive wear, oxidation, and plastic deformation are the dominant wear mechanisms for the alloy matrix AE42, whereas mainly abrasive wear is the wear mechanism of AE42-23 vol% C composite under the proposed testing conditions. 展开更多
关键词 Magnesium composites carbon short fibers COMPRESSIVE STRENGTH WEAR resistance WEAR mechanisms
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