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stiction的意思,stiction的音标读音解释

2016-05-28 03:59

stiction翻译

静摩擦

音标读音

英式:[s'tɪkʃn]美式:[s'tɪkʃn]

基本意思

n.静摩擦力

形近的词

eviction emiction friction

变形

例句

  1. Research on Surface Effect and Size Effect of Stiction in Mems
    微机电系统中粘附的表面效应和尺寸效应的研究
  2. The presence of nonlinearities, such as stiction, and deadband in a control valve limits the control loop performance.
    控制阀门中非线性的存在,比如迟滞、死区等,限制了控制回路的性能;
  3. About 30% of the control loops oscillation are due to valve problems, and stiction is the most commonly found valve problem in the process industry.
    大约30%的控制回路振荡是由于阀门的问题,而迟滞是过程工业中所发现的最普遍的阀门问题;
  4. Control of Micro Stick-Slip and Stiction in MEMS
    微机电系统中的微观黏滑、黏附与控制
  5. The new method can not only detect the existence of stiction, but also identify the process model at the same time, is very suitable for founding the specific reason of oscillation.
    这种新方法不仅能够检测迟滞的存在,而且能够同时辨识过程对象的模型,非常适合发现控制回路振荡的具体原因。
  6. Using the operate data of closed control loops and the relevant theories and technique of identification to identify the existence of the valve stiction in the control loops.
    运用控制回路在闭环操作时的数据,采用相关辨识理论与技术,闭环辨识控制回路是否存在迟滞。
  7. After investigating the characteristics of lotus leaf surface, which is hydrophobic, his paper design a MEMS functional surface fractal model of friction reduction and anti-stiction.
    从研究具有超疏水能力荷叶表面结构特征出发,设计减摩防粘的MEMS功能表面分形模型。
  8. Study on Stiction of Microstructure in MEMS
    MEMS微结构粘附问题研究
  9. Currently, many scholars have study valve stiction in control loop, and have made a lot of research.
    目前,已经有很多学者研究控制回路中的阀门迟滞特性,并且已经取得了很多的研究成果。
  10. Stiction and Friction in Micro Electro Mechanical Systems
    影响微电子机械系统成品率和可靠性的粘合力和摩擦力
  11. Surface modification of the microstructure materials has been an effective means of improving friction, reducing wear, restraining stiction and enhancing stability of the microsystems.
    微构件材料表面改性被认为是改善摩擦、降低磨损、减少粘附、提高系统稳定性的有效手段。
  12. It elaborates stiction characteristics modeling method from two aspects: the mechanism model and data-driven model.
    本论文从机理模型和数据驱动模型两方面综述了迟滞特性的建模方法。
  13. Stiction or high static friction always causes oscillations in control loops which limits the control loop performance.
    由静摩擦现象引起的控制阀粘滞特性容易导致控制回路振荡,降低了控制系统性能。
  14. After analyzing the two models and their logic problems, this thesis proposed improved method, which can make the two models consistent with the physical properties of the pneumatic actuator valve with stiction properties and ISA standards. 2.
    然后,分析了这两个模型的内部逻辑关系和各自存在的问题,提出改进方案,使得这两个模型的输入和输出都符合气动执行阀粘滞特性的物理特性和ISA标准。
  15. The Research of Core Competence System Construction on Travel Agency Industry in China; Control of Micro Stick-Slip and Stiction in MEMS
    国有旅行社业核心竞争力微观系统经验解析微机电系统中的微观黏滑、黏附与控制
  16. At present, many research efforts have been focused on performance test and mathematical model of MR damper, but the available models cannot capture the stiction phenomenon, inertial effect and temperature-rise effect during vibration.
    目前国内外关于磁流变阻尼器的性能试验和计算模型方面的研究已有不少,但现有的计算模型却不能同时体现磁流变阻尼器的静摩擦现象、惯性效应和振动过程中温升效应。
  17. The changes of stiction and tip deflection are researched.
    研究了在不同电压加载方式下,悬臂梁粘连点、端部位移的变化,以及这种变化对驱动电压的影响。
  18. The results showed that 4 control loops have stiction properties in the 51 control loops, and the effectiveness of these methods. 4.
    结果显示51个控制回路中有4个控制回路的气动执行阀存在粘滞特性,验证了这些方法的有效性。
  19. The stiction property of control valve is the most common non-linear characteristics. It affects the performance of the control system.
    控制阀的粘滞特性Sticiton是非线性特性中最为常见的,会不同程度地影响控制系统的性能。
  20. The influence of gas force and oil stiction on performance of refrigeration compressor and its valves
    气体力和油粘着对制冷压缩机及其气阀特性的影响
  21. Currently there are mainly two valve stiction models: the traditional physical model and the Kano model, but they all have their own limitations.
    目前,阀门迟滞的模型主要有两种:传统的物理模型和Kano模型,但是它们都有自身的局限性。
  22. Micro stick-slip and stiction failure are familiar phenomena in microelectromechanical systems due to the dominant role of various surface forces including electrostatic force, van der Waals force and capillary force.
    微观黏滑和黏附失效是微机电系统中的常见现象,该现象主要是由于受包括静电力、范德华力及毛细力等各种表面力所起的主导作用而产生的。
  23. The failure mechanism of MEMS has delayed its rapid development, and the electrostatic stiction is one of the very important failure mechanism.
    但是在微观尺度下特有的失效机制影响着微机电系统的快速发展,静电粘滞是其中一个非常重要的失效机制。
  24. Management of Severe Intrauterine Adhesion Combination of Sacculus and Hyaluronic Acid after Trans-cervical Resection of Adhesion Control of Micro Stick-Slip and Stiction in MEMS
    重度宫腔黏连分离术后宫腔放置球囊加透明质酸钠预防再黏连的临床观察微机电系统中的微观黏滑、黏附与控制
  25. In this project, a new theoretical model based on metal-insulator-semiconductor ( MIS) structures was established for stiction modeling to investigate the charging and discharging mechanism within the dielectric of MEMS capacitive switches.
    本文中,为了研究开关电介质的充放电机制,我们建立一个新的基于金属-绝缘体-半导体(MIS)结构的理论模型。
  26. The improved models and stiction parameters identification method is used for analyzing 51 PID control loops in the delayed coking plant from a petrochemical company.
    以某石化企业延迟焦化车间底层51个PID控制回路为应用对象,利用本文所提出的气动执行阀粘滞特性的改进模型和参数辨识方法,离线分析各个气动执行阀粘滞特性。
  27. Stiction is also one of the most difficult problems to overcome in the valve. It will cause the control loop oscillation, lead to product quality decline, increase energy consumption and accelerate equipment wear and so on.
    迟滞同时也是控制阀门中最难克服的问题之一,它会引起控制回路的振荡,导致产品质量下降,能耗增加,设备磨损加快等问题。
  28. Because of some faults such as poor controller tuning in control-loops, control valve stiction, process nonlinearity, poor process and control system design, external input disturbance and other reasons, the plant-wide oscillations occur regularly in process industries.
    过程工业中由于控制回路参数调校不当,阀门粘滞,过程非线性,控制系统设计低劣,外部输入干扰等原因,往往导致了整个过程系统的厂级范围大规模的振荡。
  29. The position and length of cantilever stiction change with static driven voltage, so the voltage displacement characteristic depends on load history.
    在静电力作用下,悬臂梁粘连的位置和长度会改变,使得执行器的电压位移特性严重依赖加载历史。
  30. Stiction during the releasing sacrifice layers of silicon condenser microphone is a serious problem in micro-electromechanical systems ( MEMS).
    粘连是硅微电容传声器释放牺牲层过程中不容忽视的一个严重问题,大大降低了器件的成品率。

百科解释

网络意思

stiction的相关作文