Characterization and Design of A Hollow Cylindrical Ultrasonic Motor

Fuente: arXiv
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Autores principales: Zhao, Zhanyue, Wang, Yang, Bales, Charles, Ruiz-Cadalso, Daniel, Zheng, Howard, Furlong-Vazquez, Cosme, Fischer, Gregory
Formato: Preprint
Publicado: 2024
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author Zhao, Zhanyue
Wang, Yang
Bales, Charles
Ruiz-Cadalso, Daniel
Zheng, Howard
Furlong-Vazquez, Cosme
Fischer, Gregory
author_facet Zhao, Zhanyue
Wang, Yang
Bales, Charles
Ruiz-Cadalso, Daniel
Zheng, Howard
Furlong-Vazquez, Cosme
Fischer, Gregory
contents Piezoelectric ultrasonic motors perform the advantages of compact design, faster reaction time, and simpler setup compared to other motion units such as pneumatic and hydraulic motors, especially its non-ferromagnetic property makes it a perfect match in MRI-compatible robotics systems compared to traditional DC motors. Hollow shaft motors address the advantages of being lightweight and comparable to solid shafts of the same diameter, low rotational inertia, high tolerance to rotational imbalance due to low weight, and tolerance to high temperature due to low specific mass. This article presents a prototype of a hollow cylindrical ultrasonic motor (HCM) to perform direct drive, eliminate mechanical non-linearity, and reduce the size and complexity of the actuator or end effector assembly. Two equivalent HCMs are presented in this work, and under 50g prepressure on the rotor, it performed 383.3333rpm rotation speed and 57.3504mNm torque output when applying 282$V_{pp}$ driving voltage.
format Preprint
id arxiv_https___arxiv_org_abs_2409_07690
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Characterization and Design of A Hollow Cylindrical Ultrasonic Motor
Zhao, Zhanyue
Wang, Yang
Bales, Charles
Ruiz-Cadalso, Daniel
Zheng, Howard
Furlong-Vazquez, Cosme
Fischer, Gregory
Robotics
Piezoelectric ultrasonic motors perform the advantages of compact design, faster reaction time, and simpler setup compared to other motion units such as pneumatic and hydraulic motors, especially its non-ferromagnetic property makes it a perfect match in MRI-compatible robotics systems compared to traditional DC motors. Hollow shaft motors address the advantages of being lightweight and comparable to solid shafts of the same diameter, low rotational inertia, high tolerance to rotational imbalance due to low weight, and tolerance to high temperature due to low specific mass. This article presents a prototype of a hollow cylindrical ultrasonic motor (HCM) to perform direct drive, eliminate mechanical non-linearity, and reduce the size and complexity of the actuator or end effector assembly. Two equivalent HCMs are presented in this work, and under 50g prepressure on the rotor, it performed 383.3333rpm rotation speed and 57.3504mNm torque output when applying 282$V_{pp}$ driving voltage.
title Characterization and Design of A Hollow Cylindrical Ultrasonic Motor
topic Robotics
url https://arxiv.org/abs/2409.07690