膜片驅動 的英文怎麼說

中文拼音 [piāndòng]
膜片驅動 英文
diaphragm operated drive
  • : 名詞1. [生物學] (像薄皮的組織) membrane 2. (像膜的薄皮) film; thin coating
  • : 片構詞成分。
  • : 動詞1. (趕) drive (a horse, car, etc. ) 2. (快跑) run quickly 3. (趕走) expel; disperse
  • 驅動 : [機械工程] drive; prime mover
  1. The mathematic models of dc servomotor and clutch operation mechanism have been built. and controller has been designed. simulation results indicate that the operation mechanism and controller has good performance

    建立了伺服電機數學模型和基於彈簧的離合器機械執行系統模型,設計了伺服電機離合器執行機構及控制器,模擬結果表明,採用本文設計的離合器執行機構及控制器,響應快,控制精度高,滿足車輛起步的要求。
  2. The radius of the micropump is 3mm, the radius of the films of micropump is 2mm, the thickness of the films of the micropump is 5 m, the thickness of the pzt chip is 10 m, the tall of the micropump is 1000 m, the drive voltage is 50v, the drive frequency of the micropump is 4000hz

    泵體半徑為3mm ,泵半徑為2mm ,泵厚度為5 m , pzt厚度為10 m ,泵體高度為1000 m ,方波電壓為50v ,頻率為4000hz 。
  3. This thesis built the model of micropump, the deformation of the micropump membrane and the volume change of the micropump chamber under piezoelectric - drive were simulated by finite element method ( fem ). the effects of the membrane thickness, shape and piezoelectric voltage on the volume change of membrane were analyzed. the relation between intrinsic frequency and membrane thickness was also discussed

    建立了微泵的有限元模型,採用直接耦合法模擬分析了微泵在壓電下產生的形變和由此引起的微泵腔體體積的變化,得出了厚度、形狀、和壓電電壓對微泵腔體體積變化的影響。
  4. The concrete design method of the votating speed difference frequency fuzzy controller is studied in detail. based on single - chip microcomputer 8031, using table look - up method, votating speed difference frequency fuzzy controller applied to induction motors is implemented. simulation result demonstrates that the control result for the producing plastic flat yarn of votating speed difference frequency fuzzy control to the speed of induction motors is idealer

    本文對轉差頻率模糊控制器的具體設計方法進行了討論:以單機為核心,用查表法實現異步電機轉差頻率模糊控制;最後,結合工廠塑料平拉絲機電機參數對系統進行了模擬,分析了轉差頻率模糊控制對異步電機轉速的控制效果,結果是比較理想的。
  5. A sensing magnetic field and displacement type of giant magneostrictive microdisplacement actuator with the functional of sensing driving magnetic field and microdisplacement is developed, and the design theories and approaches being applicable this type of microdisplacement actuator are pointed out : a circular diaphragm type of flexible construction that acts as integration mechanism of microdisplacement transferring and sensing of giant magnetostrictive microdisplacement actuator is adopted, sheet flexure theory of elasticity mechanics and approach of finite element are applied to design and calculate it, corresponding deflection and analytic formula and distribution curve of stress are given, and the specific achieving approaches of measuring principle and magnetic field sensing function of driving field in giant magnetostricitive rod are pointed out the magnetic field sensing function of the actuator is used to practically measure driving magnetic field of actuator and to obtain the relationship of driving magnetic field and coil current, which is also analyzed and studied

    其中,採用圓形式柔性結構作為超磁致伸縮微位移執行器的微位移傳遞、感知一體化機構,應用彈性力學中的薄板彎曲理論、有限元方法對其進行了設計、計算,並給出了相應的撓度和應力解析式及分佈曲線;應用電磁理論給出了超磁致伸縮棒內磁場的測量原理及磁場感知功能的具體實現方法,並利用執行器的磁場感知功能對其磁場進行了實際測量,得出了磁場與線圈電流之間的關系,並對其進行了分析和研究;對執行器內部的電磁路和偏置磁路結構進行了設計計算與實驗研究,為了減小線圈的發熱,對其形狀進行了優化設計。
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