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1)  HTA carbon fiber
HTA炭纤维
2)  Carbon fiber
炭纤维
1.
The influence of carbonization temperatures on mesophase pitch-based carbon fibers;
炭化温度对中间相沥青基炭纤维性能的影响
2.
Influence of phenolic resin surface treatment agent on interfacial adhesion of carbon fiber reinforced epoxy resin composites;
酚醛树脂表面处理剂对炭纤维增强环氧树脂复合材料界面强度的影响
3.
Surface characteristics of different cross-section carbon fibers and its effect on interfacial adhesion properties of composite;
不同截面炭纤维表面特性及其对复合材料界面粘接性能的影响
3)  Carbon fibers
炭纤维
1.
Synthesis of nano nickel particles on carbon fibers by impregnation-reduction method;
采用浸渍-还原法在炭纤维表面制备纳米镍催化剂颗粒
2.
Preparation of carbon felts reinforced by both SiC nano-fibers and carbon fibers;
碳化硅纳米纤维/炭纤维共增强毡体的制备
3.
Surface grafting modification of carbon fibers by γ-ray pre-irradiation and plasma technique
预辐照与等离子体对炭纤维表面接枝改性研究
4)  PAN-carbon fiber
PAN炭纤维
5)  bamboo charcoal fiber
竹炭纤维
1.
The development of bamboo charcoal fiber/Tencel/Shengma blended face fabric;
竹炭纤维/天丝/圣麻混纺面料的研制
2.
To research the relationship between the tensile properties of bamboo charcoal fiber and cotton fiber blended yarn,and the variation of the bamboo charcoal fiber content,the tensile properties of bamboo charcoal fiber and cotton fiber blended yarn of different blending ratios were tested through electronic yarn strength instrument YG061.
为了研究竹炭纤维/棉混纺纱中竹炭纤维含量与混纺纱拉伸性能的变化关系,对不同混纺比的竹炭纤维/棉混纺纱线在YG061电子单纱强力仪上进行拉伸性能测试,并对测试结果进行了分析和比较。
6)  short carbon fiber
短炭纤维
1.
Friction and wear properties of short carbon fiber reinforced C/C-SiC braking materials;
短炭纤维增强C/C-SiC制动材料的摩擦磨损性能
2.
The short carbon fiber reinforced copper graphite composites was fabricated with powder metallurgy technology.
以高性能受电弓滑板为应用前景 ,研究了短炭纤维对铜 -石墨复合材料冲击性能的影响 。
3.
The short carbon fiber(Cf)reinforced phenolic resin(PF)/graphite(Gr)composites were fabricated by hot compression molding.
以短炭纤维(Cf)为增强相,超细石墨(Gr)为填充组分,热固性酚醛树脂(PF)为基体,采用热模压法制备Cf-PF/Gr复合材料。
补充资料:碳(石墨)纤维增强体(见碳纤维、石墨纤维)


碳(石墨)纤维增强体(见碳纤维、石墨纤维)
earbon(graPhite)fibrereinforeements

,、、里z耽维增强体earbon(graphi现inforcements用于复合材料中承受负荷,田的磷纤始知五史纤俯亡e)fibre起增强作
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