王良老師簡介
王良
研究方向:壓電驅(qū)動與能量俘獲
東北電力大學(xué)博士、副教授、碩士生導(dǎo)師
獎勵榮譽(yù)
[1] 吉林省技術(shù)發(fā)明二等獎
[2] 吉林省自然科學(xué)學(xué)術(shù)成果三等獎
[3] 吉林省優(yōu)秀碩士學(xué)位學(xué)術(shù)論文
[4] 機(jī)械工程全國博士生學(xué)術(shù)論壇優(yōu)秀論文
科研項(xiàng)目
[1] 吉林省科技發(fā)展計(jì)劃項(xiàng)目人才專項(xiàng)
[2] 吉林省教育廳科學(xué)技術(shù)研究規(guī)劃項(xiàng)目
發(fā)明專利
[1] 王良, 等. 一種基于兩級杠桿放大機(jī)構(gòu)的壓電粘滑驅(qū)動器, 專利號 ZL202111152529.1
[2] 王良, 等. 兩平行彎曲振子復(fù)合致動步進(jìn)式壓電驅(qū)動器及其工作方法, 專利號 ZL202111155880.6
[3] 王良, 等. 貼片式盤形結(jié)構(gòu)旋轉(zhuǎn)直線超聲電機(jī), 專利號 ZL201410114364.2
[4] 王良, 等. 疊層式彎曲型壓電陶瓷驅(qū)動器, 專利號 ZL201710245054.8
[5] 王良, 等. 一種多層式旋轉(zhuǎn)型壓電微位移驅(qū)動器, 專利號 ZL201810148211.8
[6] 王良, 等. 縱-彎復(fù)合蠕動式精密壓電驅(qū)動器及其激勵方法, 專利號 ZL201710245051.4
學(xué)術(shù)論文
[1] Liang Wang, et al., A friction regulation hybrid driving method for backward motion restraint of the smooth impact drive mechanism, Smart Materials and Structures, 2016, 25: 085033.
[2] Liang Wang, et al., A novel single-mode linear piezoelectric ultrasonic motor based on asymmetric structure, Ultrasonics, 2018, 89: 137-142.
[3] Liang Wang, et al., Development of a three-DOF piezoelectric actuator using a thin cross-beam vibrator, International Journal of Mechanical Sciences, 2018, 149: 54-61.
[4] Liang Wang, et al., Development of a resonant type piezoelectric stepping motor using longitudinal and bending hybrid bolt-clamped transducer, Sensors and Actuators A-Physical, 2019, 285: 182-189.
[5] Liang Wang, et al., Design and fabrication of a high-speed linear piezoelectric actuator with nanometer resolution using a cantilever transducer, Smart Materials and Structures, 2019, 28: 055035.
[6] Liang Wang, et al., A review of recent studies on non-resonant piezoelectric actuators, Mechanical Systems and Signal Processing, 2019, 133: 106254.
[7] Liang Wang, et al., A non-resonant sandwich type bidirectional stepping piezoelectric actuator driven by oblique two-dimensional trajectory: design, analysis and experiment evaluation, Mechanical Systems and Signal Processing, 2020, 135: 106424.
[8] Liang Wang, et al., Design and experimental verification of a bolt-clamped piezoelectric actuator based on clamping and driving mechanism, Mechanical Systems and Signal Processing, 2021, 146: 107065.
[9] Liang Wang, et al., A compact cantilever type ultrasonic motor with nanometer resolution: design and
performance evaluation, IEEE Transactions on Industrial Electronics, 2021, 68(1): 734-743.
[10] Liang Wang, et al., Design and performance of a compact stick-slip type piezoelectric actuator based on right triangle flexible stator, Smart Materials and Structures, 2022, 31(5): 055013.
[11] Liang Wang, et al., Development and evaluation of a new piezoelectric stick-slip actuator using stair type flexure hinge, Journal of Intelligent Material Systems and Structures, 2023, 34(6): 664-671.
[12] Liang Wang*, et al., Development of a piezoelectric actuator based on stick-slip principle inspired by the predation of snake, Review of Scientific Instruments, 2023, 94(2): 025003.
[13] Liang Wang, et al., Development of a novel piezoelectric actuator based on stick-slip principle by using asymmetric constraint, Micromachines, 2023, 14(6): 1140.
[14] Liang Wang*, et al., Design and evaluation of a stick-slip piezoelectric actuator with flexure hinge mechanism inspired by the earthworm, Review of Scientific Instruments, 2023, 94: 085002.
[15] Liang Wang*, et al., Design and evaluation of a magnetically coupled piezoelectric energy harvester with parallel connection, Review of Scientific Instruments, 2023, 94: 085001.
主講課程
機(jī)械設(shè)計(jì)基礎(chǔ)
有限元及 ANSYS