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基于生物金屬纖維的微小流量氣動(dòng)閥
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Micro-flux Pneumatic Servo Valve
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    摘要:

    設(shè)計(jì)了一種新型氣動(dòng)微型伺服閥,。該伺服閥的電-機(jī)械轉(zhuǎn)換由一種新型的形狀記憶合金(SMA)—生物金屬纖維(BMF)實(shí)現(xiàn),。通過實(shí)驗(yàn),,研究了BMF100的輸出位移與負(fù)載特性,,在0.1 N載荷,、10 V驅(qū)動(dòng)電壓范圍內(nèi),,其電壓滯環(huán)為0.2 V,;在1.0 N載荷,、11 V驅(qū)動(dòng)電壓范圍內(nèi),,其電壓滯環(huán)為0.4 V。利用CATIA軟件建立了伺服閥的三維模型,,利用有限元分析方法對閥芯的應(yīng)力及應(yīng)變特性進(jìn)行了仿真研究,。伺服閥階躍響應(yīng)仿真研究表明,伺服閥輸出壓力的上升時(shí)間為0.3 s,,輸出流量的上升時(shí)間為

    Abstract:

    1.6 s,。Utilizing a new type shape memory alloy(SMA)biometal-fiberR(BMF) as the convertor from electrical energy to mechanical energy, a pneumatic micro-servo valve was developed. Input-output characteristics of BMF100, including displacement output and load output were investigated by the experiments. The voltage hysteresis of BMF100 was 0.2V at 0.1N load and 10V maximum driving voltage, and the value was 0.4V at 1.0N load and 11V maximum driving voltage. 3-D model of servo valve was simulated by the software of CATIA. As an important part, the allowable stress and strain of coniform core of valve was studied by the numerical simulation of finite element method with software of ANSYS. Response time of pressure output of the valve was 0.3s. The result shows that it is feasible to use BMF as the convertor from electrical energy to mechanical energy of pneumatic servo micro-valve.

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鄂世舉,高春甫,徐現(xiàn)榮.基于生物金屬纖維的微小流量氣動(dòng)閥[J].農(nóng)業(yè)機(jī)械學(xué)報(bào),2010,41(5):218-221. Micro-flux Pneumatic Servo Valve[J]. Transactions of the Chinese Society for Agricultural Machinery,2010,41(5):218-221.

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