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1)  SiC nanofibers
碳化硅纳米纤维
1.
SiC nanofibers were prepared by the thermal evaporation of Si fragments onto the PAN carbon fibers at 1500℃.
1500℃下,采用热蒸发硅碎片的方法,在PAN碳纤维上原位生长碳化硅纳米纤维
2.
Straight-line, bamboo-like and beaded SiC nanofibers were prepared by the sol-gel and car-bothermal reduction method, in which lanthanum nitrate and surfactant CTAB were employed as additives for structural control.
结果表明,通过此方法所制备的碳化硅纳米纤维均为β- SiC,分别具有直线状、竹节状和链珠状三种不同形貌。
2)  carbon nanofibers
碳纳米纤维
1.
Field emission from individual vertically carbon nanofibers;
单根准直碳纳米纤维的场发射特性
2.
Synthesis of carbon nanotubes and carbon nanofibers onpulse plated Ni nanocrystalline substrate in ethanol flames;
脉冲电镀镍纳米晶基板上碳纳米管和碳纳米纤维的火焰法合成
3.
Study on sulfur tolerance of Pd-Pt catalyst supported on carbon nanofibers for hydrogenation of naphthalene to tetralin;
碳纳米纤维负载Pd-Pt催化剂的萘加氢抗硫性能
3)  carbon nanofibers
纳米碳纤维
1.
Study on the Electrochemical Properties of Modified Electrodes Based on Carbon Nanofibers;
纳米碳纤维修饰电极的电化学行为研究
2.
Determination of cobalt and nickel by carbon nanofibers microcolumn preconcentration and inductively coupled plasma mass spectrometry
纳米碳纤维分离富集-电感耦合等离子体质谱法测定痕量钴和镍
3.
Under hydrothermal and ultrasonic conditions,concentrated acidification(vitriol / nitric acid)was applied to the surface treatment of carbon nanofibers,and the epoxy resin /carbon nanofibers composite materials was prepared.
采用浓酸(浓硫酸/浓硝酸)氧化法对纳米碳纤维进行表面处理,在水热和超声分散条件下,制备了纳米碳纤维/环氧树脂复合材料。
4)  carbon nanofiber
纳米碳纤维
1.
Fabrication of carbon nanofiber based on polyacrylonitrile by electrospinning;
电纺法制备聚丙烯腈基纳米碳纤维
2.
Study on microwave attenuation performance of vapor-growth carbon nanofibers;
气相生长纳米碳纤维微波衰减性能研究
3.
Preparation of electroless Ni-Fe-Co-P alloy plating on carbon nanofibers;
纳米碳纤维化学镀镍-铁-钴-磷合金镀层
5)  carbon nanofiber
碳纳米纤维
1.
Electrospinning: carbon nanofibers from polyacrylonitrile by carbonization;
静电纺丝:聚丙烯腈炭化制备碳纳米纤维
2.
Large-area synthesis of carbon nanofibers and nanotubes on disk of Al_2O_3 by dip-coating;
涂层浸渍法在Al_2O_3片上大面积合成碳纳米纤维
3.
To achieve the Ag composite coatings having excellen telectric contact properties, carbon nanotubes and carbon nanofibers used as rein forcements were added into the plating bath which achieved better plating effect than others.
为获得电接触性能优越的复合电镀层,选用碳纳米管及碳纳米纤维作为增强相物质,在优化选择的镀液体系中,利用超声振荡辅助复合电镀制备Ag基碳纳米管及碳纳米纤维复合电镀层。
6)  carbon nanofibres
碳纳米纤维
1.
The capability of hydrogen adsorption storage in three carbon nanofibres was estimated using N_2 adsorp- tion isotherm at 77K and H_2 adsorption isotherm at 298K.
利用N_2(T=77K)、H_2(T=298K)在三种碳纳米纤维材料中的吸附等温线,对这三种材料的吸附储氢性能进行了评价。
2.
In this paper, epoxy composite based on one dimension carbon nano-material including carbon nanotubes(CNTs) and carbon nanofibres(CNFs) was prepared due to excellent physical properties including electrical properties, thermal properties, mechanical properties and so on.
本文以一维碳纳米材料(碳纳米管、碳纳米纤维)、环氧树脂等原料为基础,旨在探讨制备具有优良性能(导电性能、耐热性能、机械性能等)的环氧复合材料。
补充资料:碳化硅纤维补强碳化硅基复合材料
分子式:
CAS号:

性质:以碳化硅陶瓷材料为基体,碳化硅纤维为增强体在一定工艺下复合而成的材料。具有良好力学性能,耐高温、热冲击和热循环,抗弯强度470MPa,断裂韧性30MPa·m1/2。碳化硅纤维的加人大大改善了碳化硅陶瓷的韧性。CVD法制造的碳化硅单丝(SCS-6)和热解法制造的碳化硅束丝(Nicalon、Tyranno)都可以用作增强体。前者可以承受较高的制造和使用温度,但复合材料性能较差。该复合材料主要制造方法有:热压法、化学气相浸渍法(CVI)、聚合物热解法。该复合材料可望在飞机防热瓦、涡轮发动机、汽车发动机、喷气发动机、燃汽轮发动机的各种部件以及火箭喷管和装甲板等方面得到应用。用该复合材料作超高速列车的制动器,和以往制动器相比,其抗热震、耐疲劳、耐磨损性能都较好。

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