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Principle and Experimental Verification of Caudal-fin-type Piezoelectric-stack Pump with Variable-cross-section Oscillating Vibrator 被引量:12
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作者 HU Xiaoqi ZHANG Jianhui +3 位作者 HUANG Yi XIA Qixiao HUANG Weiqing ZHAO Chunsheng 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第1期128-136,共9页
In the traditional flow-resistance-differential (FRD) type valve-less piezoelectric pump,the generated outflow and pressure are discontinuous because of the inherent periodicity and fluctuation of the pump.To overcome... In the traditional flow-resistance-differential (FRD) type valve-less piezoelectric pump,the generated outflow and pressure are discontinuous because of the inherent periodicity and fluctuation of the pump.To overcome these drawbacks,utilizing the bending vibration of piezoelectric bimorph to drive fluid was conducted.However,our investigation on the current status of this piezoelectric bimorph pump shows that larger driving force and vibration amplitude are required for fluid pumping;the pumping can be realized through the centrifugal force;and the mechanism of fluid pumping is no longer further studied.Based on these cases,the paper designed a piezoelectric-stack pump with variable-cross-section oscillating (VCSO) vibrator by imitating the swing of the caudal-fin of tuna,and the pump is neither the rotating type nor the volumetric type according to the taxonomy.The interaction between the oscillating vibrator and the fluid parcel is firstly analyzed from the viewpoint of momentum conservation,and the analytical expression of pump flow rate is obtained.Then the modal and harmonic response analyses on the vibrator immerged in water are carried out.From the analyses the first two orders resonance frequencies are 832 Hz and 1 939 Hz,respectively,and the peak value of the tip amplitude is 0.6 mm.Laser Doppler vibrometer is used to measure both the frequency and vibration amplitude,and the determined first two orders resonance frequencies are 617 Hz and 1 356 Hz,respectively.The measured tip amplitude reaches to the peak value of 0.3 mm.At last,experimental measurement for the flow rates with different driving frequencies is conducted.The results show that the flow rate can reach 560 mL/min at 1 370 Hz when the pump runs under the backpressure of 30 mm water column.And the flow rate is as much as 560% of that of experiment results carried out by researchers from Brazil.The proposed pump innovates in both theory and taxonomy;in addition,the pump overcomes the drawbacks such as large flow fluctuation and low flow rate in the traditional FRD type pumps,which will help to broaden the application of the valve-less piezoelectric pump. 展开更多
关键词 caudal-fin-type variable-cross-section piezoelectric-stack valve-less PUMP
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仿尾鳍式变截面摆动振子无阀压电叠堆泵的结构设计 被引量:8
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作者 胡笑奇 张建辉 +2 位作者 黄毅 夏齐霄 黄卫清 《光学精密工程》 EI CAS CSCD 北大核心 2011年第6期1334-1343,共10页
受具有高速巡游速度的金枪鱼的启发,提出了一种微脉动、大流量、仿尾鳍变截面振子无阀压电泵。以压电叠堆为激励源,设计了仿尾鳍变截面振子,实验验证了振子的二阶弯振和金枪鱼高速巡游的摆动模式一致。利用有限元分析软件ANSYS分析了振... 受具有高速巡游速度的金枪鱼的启发,提出了一种微脉动、大流量、仿尾鳍变截面振子无阀压电泵。以压电叠堆为激励源,设计了仿尾鳍变截面振子,实验验证了振子的二阶弯振和金枪鱼高速巡游的摆动模式一致。利用有限元分析软件ANSYS分析了振子的模态振型,提出了模态分离更好的Y型振子。为避免压电叠堆受力不均匀而受到损坏,采用钢球和隔离块作为压电叠堆传递力和振动的媒介,实现了压电叠堆和泵腔内液体的干湿分离。设计了二级杠杆/柔铰机构,放大了振子端部柔性叶片摆动幅度。最后,研制了样机,并进行了不同驱动频率下的仿尾鳍式变截面摆动振子无阀压电叠堆泵的流量测量,结果表明,在80V正弦电压的激励下,激励频率为1 350Hz时泵的流量达到峰值(400ml/min)。本设计方案能够有效地提高泵的性能,满足工程实践中对大流量无阀压电泵的需求。 展开更多
关键词 无阀压电泵 仿尾鳍式 变截面摆动振子 压电叠堆
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