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Experimental and Analytical Study of Torsional Vibration under Multiaxial Loading in Time Domain

Experimental and Analytical Study of Torsional Vibration under Multiaxial Loading in Time Domain
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摘要 The torsional vibration of power transmission shaft is a phenomenon whose analytical modeling can be represented by a differential equation of motion proposed by technical literature. The solutions of these equations need coefficients and parameters that, usually, must be experimentally estimated. This work uses a resistive electric SG (strain gage) to dynamically determine strains produced in the shaft due to harmonic oscillatory motion under multiaxial loading. This movement is simulated on a prototype specially developed for this purpose. It comprises a pulley attached to the end of a stepped cantilevered shaft, which is clamped at the opposite end. In this configuration, a cam generates a torque to the system, springs regulate the stiffness and the damping coefficient of the assembly, as well as they can be suitably adjusted to produce an underdamped condition. The main advantage, highlighted in this study, refers to a major simplification. Although the system under study shows multiple degrees of freedom (torsion and bending), the shape and the positioning of linking SGs with the resistor bridge (Wheatstone Bridge), allow "to evaluate the loading effects independently, as if only one degree of freedom of the system exists at a time domain. Strains graphs for two forms of cyclic torsional oscillation, analytical and experimental, were successfully generated.
出处 《Journal of Mechanics Engineering and Automation》 2016年第3期148-157,共10页 机械工程与自动化(英文版)
关键词 Underdamped system free and forced response torsional vibration strain gauges. 扭转振动 多轴载荷 时间域 实验 运动微分方程 调节系统 惠斯登电桥 技术文献
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参考文献12

  • 1Wu, J. J. 2007. "Torsional Vibration Analyses of a Damped Shafting System Using Tapered Shaft Element." Journal of Sound and Vibration 306: 946-54. 被引量:1
  • 2Chen, Y. Z. 2001. "Torsional Free Vibration of a Cylinder with Varying Cross-Section and Adhesive Masses." Journal of Sound and Vibration 241 (3): 503-12. 被引量:1
  • 3Castro, L. R., Vie" ViUeb, P., and Lipinskia, P. 2006. "Correction of Dynamic Effects on Force Measurements Made with Piezoelectric Dynamometers." International Journal of Machine Tools & Manufacture 46: 1707-15. 被引量:1
  • 4Quin, J., Yu, D., Liu, Y., Wang, G., and Cai L. 2006. "Low Frequency Torsional Vibration Gaps in the Shaft with Locally Resonant Structures." Physics Letters A 348 410-5. 被引量:1
  • 5Gaspari, D., and Aristodeno, M. 2005. "Torsional and Flexure Analysis of Orthotropic Beams by a Boundary Element Model." Engineering Analysis with Boundary Elements 29: 850-8. 被引量:1
  • 6Huang, D. G. 2007. "Characteristics of Torsional Vibrations of a Shaft with Unbalance." Journal of Sound and Vibration 308: 692-8. 被引量:1
  • 7Han, Q., Zhao, J., and Chu, F. 2012. "Dynamic Analysis of a Geared Rotor System Considering a Slant Crack on the Shaft." Journal of Sound and Vibration 331 : 5803-23. 被引量:1
  • 8Saka, Z., and Yilmaz, Y. 1992. "Torsional Vibrations of Shafts." Mech. Mack Theory 27 (3): 225-33. 被引量:1
  • 9Xiang, L., Yang, S., and Gan, C. 2012. "Torsional Vibration Measurements on Rotating Shaft System Using Laser Doppler Vibrometer." Optics and Lasers in Engineering 50:1596-60 1. 被引量:1
  • 10Salarieh, H., and Ghorashi, M. 2006. "Free Vibration of TimoshenkoBeam with Finite Mass Rigid Tip Load and Flexural-Torsional Coupling." International Journal of Mechanical Sciences 48: 763-79. 被引量:1

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