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1)  Electrospinning equipments
静电纺丝装置
2)  electrospinning installation
电纺丝装置
1.
And 11 different electrospinning installations were introduced.
对11种处于发展和完善中的电纺丝装置进行了简要介绍。
3)  electro-spinning
静电纺丝
1.
Exploration of fabricating MAV foils using electro-spinning method;
静电纺丝法制备仿生MAV翼初探
2.
PVP/Gd(NO3)3·Eu(NO3)3 composite fibers were prepared by electro-spinning technique with Gd(NO3)3·6H2O,Eu(NO3)3·6H2O and PVP as starting materials.
6H2O反应制得前驱体溶液,采用静电纺丝技术制备了PVP/Gd(NO3)3。
3.
It is suggested that solid carbon nanofibers can be made by electro-spinning method.
指出静电纺丝技术可制得实心碳纳米纤维。
4)  electrostatic spinning
静电纺丝
1.
It points out that textile nanofiber,solid-core carbon nanofiber,biodegradable nanofiber,and conductive hybrid nanofibers of polymers can be manufactured by the electrostatic spinning process,and their diameters are dependent on the spinning technological parameters.
指出静电纺丝技术可制得聚合物纳米纺织纤维长丝、实心纳米碳纤维、生物降解性聚合物纳米纤维和聚苯胺及其与常规聚合物共混的纳米导电纤维,其直径取决于纺丝工艺参数;静电纺丝是得到纳米纤维最重要的方法,也是最有可能实现纳米纤维工业化生产的技术。
2.
The article discusses particularly the electrostatic spinning of natural polymers.
静电纺丝技术是一种直接且相对容易的纳米纤维制备方法。
3.
Biodegradable ultrafine fibers of polylactide (PLA) and poly(L-lactide-co-ε-caprolactone)(PLLA-CL) were produced by electrostatic spinning with acetone as solvent.
以丙酮为溶剂,用静电纺丝法,制备了聚丙交酯(PLA)及其与己内酯共聚物(PLLA CL)的超细纤维。
5)  electrospun
静电纺丝
1.
Brief study on the processing theory、actuality and application of electrospun nanofibers;
静电纺丝纳米纤维的工艺原理、现状及应用前景
2.
Progress in Manufacture and Application of Oriented Electrospun Nanofibers
取向静电纺丝纳米纤维的制备及应用研究进展
3.
The application of electrospun chlorinated PVC fiber membrane to dust respirator and air cleaner for removing PM_(10) for was studied,based on talc dust and smoke fog.
静电纺丝纳米纤维膜是一种新型空气净化过滤材料。
6)  electrospinning
静电纺丝
1.
Progress in the Electrospinning of Biopolymers;
生物高分子静电纺丝研究进展
2.
Preparation of Sulfated Zirconia/Silica Complex Nanofibers by Electrospinning Method;
静电纺丝法制备硫酸化的二氧化锆/二氧化硅复合纤维
3.
The Influence of Several Chief Parameters in Electrospinning on the Morphology of PLGA Fiber Scaffolds and the Fiber Diameter;
静电纺丝的主要参数对PLGA纤维支架形貌和纤维直径的影响
补充资料:静电
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性质: 宏观范围内分离开来的相对静止的正电荷和负电荷。静电技术可用于除尘、喷漆、植绒、复印、分选等生产过程。在工艺过程中和人的行动中,可能产生和积累有害的静电。高分子材料容易产生和积累危险的静电。固体物料的大面积摩擦、高强度的接触-分离、强力挤出、粉碎和研磨;粉体物料的过滤、筛分、输送、搅拌和干燥、高速输送;液体物料的过滤、高速输送、喷射和冲刷;气体和蒸气的高速喷射等工艺过程都能产生强烈静电。工艺过程中所产生静电的电压可达数万至数十万伏。由于静电放电火花、静电力、静电场场强的作用,工艺过程中的静电可能引起爆炸和火灾,可能给人以电击,还可能妨碍生产和降低产品质量。

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