Research on the influence of lifting mass on dynamic responses of telescopic cranes considering boom deformation

107 views

Authors

  • Le Van Duong (Corresponding Author) Military Technical Academy
  • Chu Van Dat Military Technical Academy
  • Bui Duc Nho General Department of Military Technology

DOI:

https://doi.org/10.54939/1859-1043.j.mst.89.2023.166-172

Keywords:

Telescopic cranes; Crane modeling; Crane dynamics; Control of cranes.

Abstract

 The paper studies the influence of lifting mass on the dynamic responses (DRs) of telescopic cranes with consideration of boom deformation. The companion coordinate method with Ritz-Galerkin approximation is used to build the model and the differential equations describing the DRs of a telescopic crane with four elastic joints. In the generated dynamic model, the stiffness and damping coefficients of the cable and the hydraulic cylinder for lifting and lowering the boom are considered. Based on this, the paper investigates the dependence of the DPs of the telescopic crane when lifting and lowering the boom on the lifting mass. The investigation results are the system dynamic responses such as the displacement, velocity, acceleration of the boom oscillation, and the tension of the cable hanging the payload, which is the basis for improving the operating quality and serving the control problem of the crane.

References

[1]. Nguyễn Văn Khang, “Dao động kỹ thuật,” (in lần thứ 4), NXB Khoa học và Kỹ thuật, Hà Nội (2005).

[2]. Nguyễn Văn Khang, “Động lực học hệ nhiều vật,”, NXB Khoa học và Kỹ thuật, Hà Nội, (2017).

[3]. Bozhidar GRIGOROV, Rosen MITREV, “Dynamic behavior of a hydraulic crane operating a freely suspended payload,” J. Zhejiang Univ-Sci A (Appl Phys & Eng), 18(4):268-281, (2017). DOI: https://doi.org/10.1631/jzus.A1600292

[4]. A. Maczynski, S. Wojciech, “Dynamics of a Mobile Crane and Optimisation of the Slewing Motion of Its Upper Structure,” Nonlinear Dynamics, 32: 259–290, (2003). DOI: https://doi.org/10.1023/A:1024480318414

[5]. Radomir Mijailović, “Modelling the dynamic behaviour of the truck-crane,” Transport, Volume 26, Issue 4, (2011). DOI: https://doi.org/10.3846/16484142.2011.642946

[6]. Arkadiusz Trąbka, “Dynamics of telescopic cranes with flexible structural components,” International Journal of Mechanical Sciences, 88: 162–174, (2014). DOI: https://doi.org/10.1016/j.ijmecsci.2014.07.009

[7]. Bogdan Posiadala, Dawid Cekus, “Discrete model of vibration of truck crane telescopic boom with consideration of the hydraulic cylinder of crane radius change in the rotary plane,” Automation in Construction, 17: 245–250, (2008). DOI: https://doi.org/10.1016/j.autcon.2007.05.004

[8]. Hiroki Fujita, Hiroyuki Sugiyama, “Development of flexible telescopic boom model using absolute nodal coordinate formulation sliding joint constraints with LuGre friction,” Theoretical & Applied mechanics letters, 2, 063005, (2012). DOI: https://doi.org/10.1063/2.1206305

Published

25-08-2023

How to Cite

Le, V. D., V. D. Chu, and D. N. Bui. “Research on the Influence of Lifting Mass on Dynamic Responses of Telescopic Cranes Considering Boom Deformation”. Journal of Military Science and Technology, vol. 89, no. 89, Aug. 2023, pp. 166-72, doi:10.54939/1859-1043.j.mst.89.2023.166-172.

Issue

Section

Research Articles

Categories