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1)  Nano-micron Fibers
纳微米纤维
1.
By introducing ZrO2 micron powder into the thermit and through thermit combustion, liquid-liquid separation of metal/ceramics and crystal in-situ growth of eutectic reaction, self-toughening composite ceramics with in-situ growing nano-micron fibers were fabricated.
通过将ZrO2微米粉末引入铝热剂中,借助铝热燃烧、陶瓷/金属液相分离及共晶反应中的晶体原位生长,制备出原位生长纳微米纤维自增韧Al2O3/ZrO2陶瓷复合材料。
2)  micro/nanofibers
微/纳米纤维
1.
PVP/Ba(CH3COO)2 composite micro/nanofibers were prepared by electrospinning with barium acetate and PVP as starting materials.
以聚乙烯吡咯烷酮(PVP)为络合剂,与醋酸钡[Ba(CH3COO)2]反应制得前驱体溶液;以36%乙酸为钡盐的相容剂,和乙醇组成了混合溶剂体系,用静电纺丝法制备了PVP/Ba(CH3COO)2纤维,经煅烧得到BaO微/纳米纤维。
2.
PVP/Mn(CH_3COO)_2 composite micro/nanofibers were prepared by electrospinning technique with manganese acetate and PVP as starting materials.
以聚乙烯吡咯烷酮(PVP)为络合剂与醋酸锰Mn(CH3COO)2]反应制得前驱体溶液,用静电纺丝法制备了PVP/Mn(CH3COO)2纤维,经煅烧得到具有微孔结构的Mn2O3微/纳米纤维。
3)  Micro-nanofiber
微纳米纤维
1.
Fabrication of LaFeO_3 Micro-nanofiber by Electrospinning
静电纺丝法制备LaFeO_3微纳米纤维
4)  nano/submicron fibers
纳米/亚微米纤维
1.
dope concentration,voltage,spinning distance and flow rate,on morphology of electrospun zein nano/submicron fibers.
利用正交设计实验,对影响静电纺制备玉米醇溶蛋白纳米/亚微米纤维的4个主要因素(蛋白质的质量分数、电压、挤出率和纺丝距离)在4个水平上进行优化筛选,获得了最佳纺丝工艺条件:蛋白质质量分数为26%、电压为20 kV、挤出率为0。
5)  ZnO-TiO2 composite nanofiber
ZnO-TiO2微/纳米纤维
6)  cellulose nanocrystals
纳米微晶纤维素
1.
Mixing of K-carrageenan with cellulose nanocrystals(CNC)can form gel.
K-卡拉胶和纳米微晶纤维素(CNC)共混时可以得到凝胶多糖。
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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