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1)  electrospinning
高压静电场纺丝
1.
It was found that there is no difference between raw material and the fiber in chemical structure after electrospinning in a high voltage electrostatic field.
研究了乙基氰乙基纤维素/四氢呋喃溶液((E-CE)C/THF)的高压静电场纺丝,制备出直径分布范围为0。
2.
This review describes the principle, research background and development of electrospinning.
综述了高压静电场纺丝的研究背景,原理及进展。
2)  Electrospinning
高压静电纺丝
1.
Preparation zirconia/silica complex nanofibers by electrospinning
高压静电纺丝技术制备二氧化锆/二氧化硅复合纳米纤维
2.
The fiber and bead diameters of membranes decrease with the electrospinning voltage and deposition distance i.
采用高压静电纺丝法制备了EVOH-g-SO3H离子聚合物无纺布膜,并采用扫描电子显微镜(SEM)及X射线衍射仪(XRD)对该无纺布膜的微观形貌及结晶行为进行了表征。
3.
A polymer of poly(ethylene covinyl alcohol) end-capped with Sodium sulfonate(EVOH-SO_3Na) is synthesized with poly(ethylene-co-vinyl alcohol)(EVOH) and 1,3-propane sultone,and the EVOH-SO_3Na non-woven fabrics membrane is prepared by electrospinning technique.
采用高压静电纺丝法,制备了EVOH-SO3Na无纺布薄膜。
3)  electrospunning
高压静电纺丝法
4)  near-field electrospinning
近场静电纺丝
1.
Direct-write(DW) technology based on near-field electrospinning(NFES),which suits for flexible electronic manufacturing,was studied in the paper.
基于近场静电纺丝(NFES),研究了可用于柔性电子制造的微/纳米结构直写技术。
5)  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。
6)  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。
补充资料:高压静电场


高压静电场
static field of high tension

  gooyoJ一ngdianehang高压静电场(statie field。f high tension)带电电极与接地极或带电两极间不产生放电且无电子流动的高压电场。电力线自正极出发到负极,如其中带电电极的曲率大,另一极的曲率小,则电力线的分布呈不均匀状态,靠近曲率大的电极处,电力线非常密集,电场梯度也最大,此种电场称为不均匀电场(图中b),电场梯度愈大,对导体矿物产生的吸力越大,其原因是矿粒受到的非均匀电场作用力是电场强度E与电场.一一dE,一_,,,。_dE.、_._、,一,_、.一一梯度嚣的乘积即E嚣(或EgradE);如两极为平面极,除极面边缘外,电力线呈均匀分布,此为均匀电场(图中a),现已很少采用。现在使用的板式电选机、筛枷丽哪丽 (+)(+) ab 均匀电场与非均匀电场电力线分布图 a一均匀电场电力线分布图;b一非均匀电场电力线分布图板式电选机以及对辊式电选机,均属单纯静电场电选机。入选物料中的导体矿粒在高压静电场中感应而带电,或事先摩擦、传导、接触带电,预先带正电的矿粒被吸向高压负电极,带负电的矿粒被吸向负极。 (刘永之)
  
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