Corrigendum to “D. Khassanova, A. Sarsenbayeva and A. Mussin, “The creation a non-contact rotary mechanism powered by close-range ultrasonic energy”, tbusphys, vol. 1, no. 4, p. 0004, Sept. 2023. doi: 10.54355/tbusphys/1.4.2023.0004”
DOI:
https://doi.org/10.54355/tbusphys/1.4.2023.0004cKeywords:
non-contact rotary mechanism, close-range ultrasonic energy, ultrasonic transducers, rotational motion, energy efficiencyAbstract
In the originally published version of this article, inaccuracies and missing details in the Methods section have been identified. The following corrections have been made to improve the accuracy and reproducibility of the research:
- The original text lacked a clear description of the simulation tools, experimental instrumentation, and statistical analyses used in the study.
The updated version now includes details of:
- CAD-based design (SolidWorks 2023), resonance tuning (ANSYS), and impedance circuit modeling (LTspice);
- Experimental setup with sensor specifications (tachometer, torque sensor, DAQ system);
- Statistical treatment of experimental data (mean ± standard deviation, ANOVA, regression analysis) for improved reliability of reported findings.
- Text revisions: Minor phrasing changes were made throughout Section 2 to clarify the sequence of design, fabrication, and validation steps for the non-contact rotary mechanism.
Additionally, the reference “Optical detection of ultrasound / J.P. Monchalin // IEEE Trans. Ultrasonic Ferroelectrics. — 1986. — Vol. 33, No. 5. — P. 485–499.” has been deleted.
These corrections do not alter the results, conclusions, or scientific validity of the article. The revisions were introduced to enhance methodological transparency and reproducibility.
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Copyright (c) 2024 Dilnaz Khassanova, Albina Sarsenbayeva, Alibek Mussin

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.