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- LiFePO4/C复合材料 LiFePO4/C composite material
- LiFePO4/C复合材料 LiFePO4/C composites
- LiFePO4/C LiFePO4/C
- c语言
- LiFePO4晶体 LiFePO4
- 结果表明,因CVR温度、C/C复合材料初始密度不同,抗氧化处理后的密度增加量有显著不同。 The results show that, with different CVR temperature and initial density of carbon-carbon composite, the density increment is significantly different after antioxidant treatment.
- 磷酸铁锂(LiFePO4) lithium iron phosphate(LiFePO4)
- 维生素C vitamin(e) C
- C语言程序设计 Programming in C
- C/C复合材料热梯度CVI工艺的数值模拟研究 NUMERICAL SIMULATION OF THERMAL-GRADIENT CVI PROCESS FOR C/C COMPOSITE
- 而在含LiPF5的不同电解液中,LiFePO4在EC/DMC中的电化学性能最优,在EC/DEC/PC中其次,在EC/DEC中最差。 When electrolytes differ from solvent component, the best electrochemical performance of LiFePO4 was attained in EC/DMC, following with EC/DEC/PC, while the worst in EC/DEC.
- 热梯度CVl制备C/C复合材料工艺技术研究进展 Progress in fabrication of C/C composites by thermal gradient CVI process
- C程序设计 Program Design in C
- C/C复合材料 C/C composites
- 通过等通道挤压(ECAP)制备了Al-C复合材料,并使用HRTEM、EDS和XRD研究了A1/C界面。 Al-3at%25C composites were prepared by equal-channel angular pressing (ECAP).
- C/SiC复合材料 C/SiC composites
- C/Cu复合材料 C/Cu composite
- C-SiC复合材料 C-SiC composite
- C/Mg复合材料 C/Mg composite
- 利用多元耦合场CVI工艺将炭毡增密至1.58 g/cm3,再进行树脂浸渍/炭化增密至1.85 g/cm3制备C/C复合材料。 The carbon felt was densified to 1.58 g/cm3 with multi-factor coupling fields CVI,and then it was impregnated with resin/carbonized to 1.85 g/cm3 to make the low cost C/C composites.