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Research Article

Design of a linear-rotary ultrasonic motor for optical focusing inspired by the bionic motion principles of the earthworms

, , , , & ORCID Icon
Pages 346-365 | Received 16 Apr 2022, Accepted 22 May 2022, Published online: 06 Jun 2022

References

  • Liu C, Lin PD. A miniaturized low-power VCM actuator for auto-focusing applications. Opt Express. 2008;16:2533–2540.
  • Jin B, Ren H. Position-movable lens driven by dielectric elastomer actuator. Opt Eng. 2021;55:1–7.
  • Hasan N, Kim H, Mastrangelo CH. Large aperture tunable-focus liquid lens using shape memory alloy spring. Opt Express. 2016;24:13334.
  • Tian X, Liu Y, Deng J, et al. Single-phase drive bending-bending piezoelectric actuator operated under 8-shaped trajectory vibration: concept, computation and experiment evaluation. Mech Syst Signal Process. 2020;139:106637.
  • Zhang S, Liu Y, Gao X, et al. Development of a cross-scale 2-DOF piezoelectric rotary platform based on active friction switching. Int J Mech Sci. 2022;220:107165.
  • Gao X, Deng J, Zhang S, et al. A compact 2-DOF micro/nano manipulator using single miniature piezoelectric tube actuator. IEEE Trans Ind Electron. 2022;69:3928–3937.
  • Zhang S, Liu Y, Deng J, et al. Development of a two-DOF inertial rotary motor using a piezoelectric actuator constructed on four bimorphs. Mech Syst Signal Process. 2021;149:107213.
  • Li X, Yao Z, Li R, et al. Dynamics modeling and control of a V-shaped ultrasonic motor with two Langevin-type transducers. Smart Mater Struct. 2020;29. DOI:10.1088/1361-665X/ab627a.
  • Sanguinetti B, Varcoe BTH. Use of a piezoelectric SQUIGGLE® motor for positioning at 6 K in a cryostat. Cryogenics (Guildf). 2006;46:694–696.
  • Jerez-Mesa R, Travieso-Rodriguez JA, Gomez-Gras G, et al. Development, characterization and test of an ultrasonic vibration-assisted ball burnishing tool. J Mater Process Technol. 2018;257:203–212.
  • Huang H, Zhao H. Non-ideal assembly of the driving unit affecting shape of load-displacement curves. Meas. Sci and Tech. 2015:035601. 10.1088/0957-0233/26/3/035601.
  • Zhang S, Liu Y, Deng J, et al. Development of a low capacitance two-axis piezoelectric tilting mirror used for optical assisted micromanipulation. Mech Syst Signal Process. 2021; 154: 107602.
  • Taylor RM, Robinett W, Chi VL, et al. The nanomanipulator: a virtual-reality interface for a scanning tunneling microscope. Proc 20th Annu Conf Comput Graph Interact Tech SIGGRAPH 1993 Anaheim, CA, USA. 1993;127–134.
  • Deng J, Liu S, Liu Y, et al. A 2-DOF needle insertion device using inertial piezoelectric actuator. IEEE Trans Ind Electron. 2022;69:3918–3927.
  • Liu Y, Li J, Deng J, et al. Arthropod‐metamerism‐inspired resonant piezoelectric millirobot. Adv Intell Syst. 2021;3:2100015.
  • Zhu P, Peng H, Lu X, et al. A steerable miniature legged robot based on piezoelectric bending actuators. Smart Mater Struct. 2020;29. 10.1088/1361-665X/ab74bb.
  • Deng J, Liu Y, Zhang S, et al. Development of a nanopositioning platform with large travel range based on bionic quadruped piezoelectric actuator. IEEE/ASME Trans Mechatronics. 2021; 26: 2059–2070.
  • Ma X, Liu Y, Liu J, et al. Crabbot: a pole-cimbing robot driven by piezoelectric stack IEEE Trans Robot. 2021;38:765–778.
  • Wang L, Jin J, Zhang H, et al. Theoretical analysis and experimental investigation on a novel self-moving linear piezoelectric stepping actuator. Mech Syst Signal Process. 2020;135:106183.
  • Tian X, Liu Y, Deng J, et al. A review on piezoelectric ultrasonic motors for the past decade: classification, operating principle, performance, and future work perspectives. Sens Actuators A Phys. 2020;306:111971.
  • Lee J, Kwon WS, Kim KS, et al. A novel smooth impact drive mechanism actuation method with dual-slider for a compact zoom lens system. Rev Sci Instrum. 2011;82:1–8.
  • Pueo B. High speed cameras for motion analysis in sports science. J Hum Sport Exerc. 2016;11:53–73.
  • Zhou Y, Chang J, Liao X, et al. Ring-shaped traveling wave ultrasonic motor for high-output power density with suspension stator. Ultrasonics. 2020;102:106040.
  • Frangi A, Corigliano A, Binci M, et al. Finite element modelling of a rotating piezoelectric ultrasonic motor. Ultrasonics. 2005;43:747–755.
  • Lu D, Lin Q, Chen B, et al. A single-modal linear ultrasonic motor based on multi vibration modes of PZT ceramics. Ultrasonics. 2020;107:106158.
  • Ma Y, Choi M, Uchino K. Single-phase driven ultrasonic motor using two orthogonal bending modes of sandwiching piezo-ceramic plates. Rev Sci Instrum. 2016;87(11):115004.
  • Li J, Deng J, Liu Y, et al. A linear piezoelectric actuator based on working principle of three-petal mouth of a rabbit. IEEE Trans Ind Electron. 2022;69:5091–5099.
  • Yi Y, Seemann W, Gausmann R, et al. A method for matching the eigenfrequencies of longitudinal and torsional vibrations in a hybrid piezoelectric motor. J Sound Vib. 2006;295:856–869.
  • Liu Y, Wang L, Gu Z, et al. Development of a two-dimensional linear piezoelectric stepping platform using longitudinal-bending hybrid actuators. IEEE Trans Ind Electron. 2018;66:3030–3040.
  • Asumi K, Fukunaga R, Fujimura T, et al. Miniaturization of a V-shape transducer ultrasonic motor. Jpn J Appl Phys. 2009;48:42–47.
  • Yun CH, Ishii T, Nakamura K, et al. A high power ultrasonic linear motor using a longitudinal and bending hybrid bolt-clamped Langevin type transducer. Japanese J Appl Physics, Part 1 Regul Pap Short Notes Rev Pap. 2001;40:3773–3776.
  • Maeno T. Recent progress of ultrasonic motors in Japan Proc.First Int.Workshop Ultrason.Motors Actuators 2005 Yokohama, Japan. 2005;15–18.
  • Maeno T, Okumura I. How to make high-efficiency ultrasonic motors. 2004;409–412.
  • a HD. Simple ceramic motor … inspiring smaller products. Actuator 2006, 10th Int Conf New Actuators. Bremen, Germany. 2006;14–16.
  • Zhang A, Wang L, Jin J, et al. A novel piezoelectric actuated 2-DOF joint for underwater manipulator: design, simulation, and experimental investigation. Smart Mater Struct. 2021;30:105032.
  • Li H, Deng J, Zhang S, et al. Design and experiment of a three-feet linear ultrasonic motor using third bending hybrid modes. Sens Actuators A Phys. 2021;331:112990.
  • Mashimo T, Toyama S. Rotary-linear piezoelectric actuator using a single stator. IEEE Trans Ultrason Ferroelectr Freq Control. 2009;56:114–120.
  • Izuhara S, Mashimo T. Design and characterization of a thin linear ultrasonic motor for miniature focus systems. Sens Actuators A Phys. 2021;329:112797.
  • Liu Y, Yan J, Wang L, et al. A two-DOF ultrasonic motor using a longitudinal-bending hybrid sandwich transducer. IEEE Trans Ind Electron. 2019;66:3041–3050.
  • Tang Z, Lu J, Wang Z, et al. Development of a new multi-cavity pneumatic-driven earthworm-like soft robot. Robotica. 2020;38:2290–2304.
  • Nguyen T, Frail C. . Utrasonic Transducers:Materials and Design for Sensors, Actuators and Medical Applications. Cambridge: Woodhead Publishing. 2012; ISBN 978-0-85709-630-2(online).
  • Kanda T, Makino A, Oomori Y, et al. A cylindrical micro ultrasonic motor using micro-machined piezoelectric vibrator. dig tech pap -int conf solid state sensors actuators microsystems. TRANSDUCERS ’05. 2005;1. 721–724.
  • Wang Y, Wang L. Design, fabricate, and experimental verification of an ultrasonic linear motor derived from V-type motors[J]. Rev Sci Instrum. 2020;91:045002 .
  • Zhang H, xiang DS, yi ZS, et al. Ultrasonic micro-motor using miniature piezoelectric tube with diameter of 1.0 mm. Ultrasonics. 2006;44:603–606.
  • Wang L, Quan Q, Xue K, et al. Development of a three-DOF piezoelectric actuator using a thin cross-beam vibrator. Int J Mech Sci. 2018;149:54–61.