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1)  Carbon fiber
碳纤
1.
The wear of POM is reduced by filling some glass fiber or carbon fiber, but the effect of filling some carbon fiber is better.
利用RFT-Ⅲ往复摩擦磨损试验机测试了玻纤,碳纤填充聚甲醛所形成复合材料的摩擦磨损性能,并利用SEM和XPS研究了其磨损机理。
2)  carbon filament
碳丝,碳纤维
3)  carbon fiber
碳纤维
1.
The surface and interface of carbon fiber-reinforced soluble PPESK composite;
碳纤维增强可溶性聚芳醚树脂基复合材料的表面与界面
2.
Study of resin matrix composites reinforced by carbon fiber;
碳纤维增强树脂基复合材料的应用研究
3.
Researches on mechanical properties of carbon fiber reactive powder concrete;
掺短切碳纤维活性粉末混凝土的力学性能研究
4)  carbon fibers
碳纤维
1.
Review on the precursors of PAN based carbon fibers obtained from melt spinning;
熔融纺丝工艺制备碳纤维原丝
2.
Preferred orientation of PAN-based carbon fibers during continuous graphitization;
PAN基碳纤维连续石墨化过程中的取向性
3.
Studies of electrochemical-oxidation-treated carbon fibers;
碳纤维的电化学氧化处理研究进展
5)  carbon fibre
碳纤维
1.
Preparation and electrorheological performance of β-cyclodextrin inclusion compound doped with carbon fibre;
碳纤维掺杂β-环糊精包合物材料的制备和电流变性能
2.
Performance feature of 3-dimension weaved carbon fibre reinforce of composite;
复合材料中三维编织碳纤维增强体的性能特点
3.
Study of electroless nickel plating on surface of carbon fibre;
碳纤维表面化学镀镍工艺研究
6)  carbon fibres
碳纤维
1.
A single raman band has been observed at 1 580cm-1(G-line) in single crystale of graphite,in polycrystalline carbon fibres an additional band war observed at 1 355cm-1(D-line) and attributed to a crystalline size effect.
激光拉曼光谱(LRS)可用来研究碳纤维和石墨纤维的结构。
2.
The advance in the research of mesopore active carbon fibres in China and abroad is reviewed with a discussion on how to increase the content of the mesopore by the improvement of the activation process and of the material modification.
综述了中孔活性碳纤维的国内外研究进展 ,从改变活化工艺和原料改性两方面阐述了如何提高其中孔含量 ,并提出今后的研究方
3.
The weibull analysis of carbon fibres strength is reviewed.
本文综述了碳纤维强度的WEIBULL理论给出了WEIBULL参数的含义及其参数的计算方法。
补充资料:多孔性碳纤维
分子式:
CAS号:

性质:表面多微孔的碳纤维和石墨纤维。密度各为1.96和2.25g/cm3,比表面积各为2.58和2.52m2/R,比表面积比各为7.98和0.96,制成环氧树脂复合材料的弯曲强度和弯曲模量各为200,6184MPa和226,6478MPa。制法是将直径0.8μm,长宽比46,相对密度1.96,比表面积2.58m2/g的气相成长碳纤维,边加热至1000℃,边供入水蒸气浓度80%(vol)的氮、水气混合气,得到多孔碳纤维。若在氩气中于2900℃再处理30min,便得多孔石墨纤维。用途为补强用填充材料和层间化合物的主材料。

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