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机械器件
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  mechanical devices
     Electromechanical/Mechanical Devices
     机电与机械器件
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     Electromechanical & Mechanical Devices
     机电与机械器件
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  “机械器件”译为未确定词的双语例句
     ELECTRODEPOSITED Fe-Ni ALLOY FILMS FOR MEMS APPLICATIONS
     用于微机械器件的电镀Fe-Ni合金薄膜的研究
短句来源
     CHARACTERISTICS OF Fe-Ni ALLOY DEPOSITS FOR MEMS APPLICATIONS
     用于微机械器件的Fe-Ni合金电镀沉积膜的性能
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     MICROMACHINING TECHNOLOGIES —KEY TECHNOLOGIES FOR MICROMACHINED DEVICES AND MICRO ELECTRO MECHANICAL SYSTEMS
     用于微机械器件和微电子机械系统的关键技术——微机械技术
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     Micromachining technologies, the key technologies in research and production of micromachined devices and micro electro mechanical systems, are not easy to manage.
     微机械技术是研究,生产微机械器件和微电子机械系统的关键技术,熟练掌握并不容易。
短句来源
     Nanofabrication in electrical field by Scanning Probe Microscope(SPM) can fabricate electrical devices and mechanical structures in nanometer scale.
     利用扫描探针显微镜(SPM)能够实现纳米级电子器件和机械器件的加工。
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     Electromechanical/Mechanical Devices
     机电与机械器件
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     Electromechanical & Mechanical Devices
     机电与机械器件
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     and mechanical exfoliation.
     机械剥蚀。
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     Software Machinery
     软件机械
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     Protection Devices
     保护器件
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  mechanical devices
It is unlikely that mechanical energy and mechanical devices such as "power-stroke motor" are used in the conveying function of RNA polymerase, as well as other molecular machines.
      
The theory of quantum computing requires implementation of classical algorithms using quantum-mechanical devices, and random walk is an obvious candidate.
      
This is the rationale for the developement of mechanical devices to prevent distal embolization.
      
Although an agreement could be reached with respect to general measures and drug treatment, no agreement on mechanical devices, pacemakers and surgical interventions has been reached.
      
This difficulty can potentially be solved by using mechanical devices to move the food, or by mixing inert food with live prey.
      
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A new type of zine oxide(ZnO)thin film devices can be realized utilizing piezoelectric and surface micromachine technology. In this paper,theoretical analysis of ZnO thin film surface micromachine devices is presented,The piezoelectric effects of ZnO,the stress distributions of micromachine structure.and the relationship between piezoelectric charge and deviee size are given. The results may be useful for device design.

利用压电薄膜和表面微机械技术可实现新型的氧化锌簿膜器件。本文分析了氧化锌薄膜表面微机械器件中氧化锌的压电效应,微机械结构的应力分布,以及压电感应电荷与器件尺寸的关系。这些结果可为器件的设计提供理论依据。

The micromachining technology that emerged in the late 1980s is able to provide microsized sensors and actuators. These micro transducers can be integrated with signal conditioning and processing circuitry to form microelectromechanical systems (MEMS) that can perform realtime distributed control. This capability opens up new territory for flow control research. However, because of the large surfacetovolume ratio in micronscale configurations, surface effects dominate the fluid flowing through these...

The micromachining technology that emerged in the late 1980s is able to provide microsized sensors and actuators. These micro transducers can be integrated with signal conditioning and processing circuitry to form microelectromechanical systems (MEMS) that can perform realtime distributed control. This capability opens up new territory for flow control research. However, because of the large surfacetovolume ratio in micronscale configurations, surface effects dominate the fluid flowing through these miniature mechanical devices. For this reason, we need to reexamine the surface forces in the momentum equation. Because of the small size, gas flows experience large Knudsen numbers and, therefore, boundary conditions need to be modified. In addition to being an enabling technology, MEMS also provides many challenges for fundamental flowscience research.

出现于80年代后期的微机械工艺技术可提供微米尺度的传感器和致动器.这些微型转换器与信号调节和处理电路集成后,组成了可执行分布式实时控制的微电子机械系统(MEMS).这种性能为流动控制研究开辟了一个崭新的领域.另一方面,由于微米尺度结构中表面积与体积之比很大,在流体流经这些微小机械器件时,表面效应占据了主导地位.为此需要重新审视动量方程中的各类表面力项.由于它们非常小,气体流动具有很大的Knudsen数,所以边界条件也应加以修正.总之,微电子机械系统(MEMS)不但是一项实用技术,也为流动机理的基础研究提出了许多挑战.

A computer controlled micro flow measuring and controlling system is present on the base of preparing some completed micro flow devices such as micropump and microvalve in this paper. All these micro flow devices are introduced, and the feasibility of this system is analyzed also.

本文在一些成功的微流体器件的设计加工基础上,提出了一种计算机控制的微流量测量与控制系统,对各个微机械器件做了介绍,并分析了系统的可行性。

 
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