1)  micropipettes
微喷嘴
1.
A new non-IC method for fabricating micropipettes was presented to improve traditional micropipette fabrication from pulling of glass capillary to solve problems such as easily brittle fracture,hard to control length of microchannel and low efficiency of micro-jetting.
为解决玻璃微管道拉制工艺制作的单孔微喷嘴存在容易脆断,微管道长度不易控制,微喷射效率低等问题,提出了一种新的微喷嘴制作工艺。
2)  the single gauge head micro-orifice
单测头微喷嘴
3)  micro jet
微喷
1.
Characterization of the pressure wave in piezoelectrically actuated micro jet;
压电致动微喷的压力波特征分析
2.
Based on the shear vibration of piezoelectric ceramics,a novel piezoelectric micro jet is designed.
利用压电陶瓷的厚度切变振动,设计出一种新型微喷。
3.
As an important actuator in the micro fluidic system , the micro jet could eject many kinds of substances (ink , polymer , solid) .
微喷是微流量控制系统中重要的执行器件,它可喷射多种介质(墨、聚合物、固体等),能够实现DNA微细排列、微量药品精确供给、微推进以及喷墨打印等多种功能,在医药、生物、化学领域有着广阔的应用前景,是MEMS技术最典型的应用之一。
4)  microjet
微喷
1.
Study on Fabrication of Conductor by Microjet and Laser Hybrid Direct Writing Method;
微喷和微喷/激光复合直写导体关键技术的研究
2.
A piezoelectric ultrasonic focusing system is developed for microjetting biological microarrays.
研制了一种用于制作生物微阵列的超声聚焦微喷系统。
3.
This paper presents the fabrication and experiment results of a novel array microjet,which can be used for medical nebulizer.
介绍了一种基于微电子机械系统(MEMS)技术的阵列微喷的加工和实验结果。
5)  micro-jet
微喷
1.
This paper made theoretic analysis of the piezoelectric micro-jet developed in the institute and defined the driving conditions of the micro-jet.
点样微喷头是非接触法点样的关键部件。
2.
A piezoelectric micro-jet was presented,which can precisely provide a liquid sample in an order of nano-liter.
介绍了一种能够实现微量样品精确供给的压电微喷。
6)  micro injection
微喷射
1.
Uniform digital discretization and micro injection of solid powders had been realized by the driving and disturbing of the pulse intertia force produced by the piezoelectric actuator.
利用压电陶瓷驱动器产生的脉冲惯性力来驱动和扰动微流体,实现了粉体流的均匀离散和微喷射,具有数字可控性。
2.
Uniform digital discretization and micro injection of microfluids had been realized by the driving and disturbing of the pulse intertia force produced by the piezoelectric ceramics actuator.
微流体数字化技术利用压电陶瓷驱动器产生的脉冲惯性力来驱动和扰动微流体,实现了微流体的均匀离散和微喷射,具有数字可控性。
参考词条
补充资料:寄微之 时微之为虢州长史。
【诗文】:
高天默默物茫茫,各有来由致损伤。
鹦为能言长剪翅,龟缘难死久搘床。
莫嫌冷落抛闲地,犹胜炎蒸卧瘴乡。
外物竟关身底事,谩排门戟系腰章?





【注释】:



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