A compact multi-degree-of-freedom piezoelectric motor with large travel capability.

IF 1.7 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Review of Scientific Instruments Pub Date : 2025-04-01 DOI:10.1063/5.0240886
Syed Asad Maqbool, Muhammad Touqeer, Behnam Esmaeilzadeh, Shiwei Yang, Wenjie Meng, Jihao Wang, Qiyuan Feng, Yubin Hou, Qingyou Lu
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Abstract

This study introduces a novel multi-degree-of-freedom (MDOF) piezoelectric motor (PEM) for high precision and a 10 × 10 mm2 large travel range within a rigid and compact structure (33 × 33 × 30 mm3). The motor consists of four piezoelectric tubes (PTs) arranged and mounted parallel to each other to enable controlled movement along both the X and Y axes by using a sawtooth waveform with a time-delay control strategy. The design features a moving plate clamped between two upper and two lower sapphire balls, with the balls supported by CuBe springs, ensuring symmetric and precise movement. Applying individual driving signals to each PT induces bending deformation sequentially in the same direction, followed by simultaneous recovery to the original position, thereby enabling the movement of the moving plate. Experimental results demonstrated that the motor operated effectively at a signal frequency of 150 Hz, with a minimum driving voltage of 18 V required for detectable motion. The motor exhibited the capability to produce step sizes from 0.53 to 6.23 µm with a linear relationship between driving voltage (±30 to ±180 V) and step size, ensuring consistent performance. The hysteresis analysis revealed minimal energy loss, with hysteresis ratios of 5.2% on the X axis and 4.16% on the Y axis, indicating the motor's high precision and efficiency. Additionally, the motor sustained a load of 120 g while traversing a 10 × 10 mm2 area, and continuous operation for 12 h revealed no significant performance degradation. The compact and reliable design of this novel MDOF PEM holds potential for applications in confined spaces, such as small-bore superconducting magnets, enabling precise large-area atomic resolution imaging and magnetic property measurements.

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具有大行程能力的紧凑型多自由度压电电机。
本研究介绍了一种新型的多自由度(MDOF)压电电机(PEM),在刚性紧凑的结构(33 × 33 × 30 mm3)中具有高精度和10 × 10 mm2大行程范围。该电机由四个相互平行排列和安装的压电管(PTs)组成,通过使用带有延时控制策略的锯齿形波形,实现沿X轴和Y轴的控制运动。这款腕表的设计特色是在上下两颗蓝宝石球之间夹有一块活动板,球由CuBe弹簧支撑,确保运动的对称和精确。对每个PT分别施加驱动信号,依次引起同一方向的弯曲变形,同时恢复到原来的位置,从而使运动板运动。实验结果表明,该电机在150 Hz的信号频率下有效工作,可检测运动所需的最小驱动电压为18 V。该电机能够产生0.53至6.23 μ m的步长,驱动电压(±30至±180 V)与步长呈线性关系,确保了一致的性能。磁滞分析表明,该电机的能量损失最小,X轴磁滞率为5.2%,Y轴磁滞率为4.16%,具有较高的精度和效率。此外,电机在穿越10 × 10 mm2区域时承受120 g的负载,连续运行12小时,性能没有明显下降。这种新型的MDOF PEM设计紧凑可靠,具有在密闭空间(如小口径超导磁体)应用的潜力,可以实现精确的大面积原子分辨率成像和磁性测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Review of Scientific Instruments
Review of Scientific Instruments 工程技术-物理:应用
CiteScore
3.00
自引率
12.50%
发文量
758
审稿时长
2.6 months
期刊介绍: Review of Scientific Instruments, is committed to the publication of advances in scientific instruments, apparatuses, and techniques. RSI seeks to meet the needs of engineers and scientists in physics, chemistry, and the life sciences.
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