Telescopic Boom Design and Finite Element Analysis Based on ABAQUS

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Abstract:

This document mainly studies the cross-section shape of the box-type telescopic boom. First, the basic structure of the telescopic boom was analyzed, and then, the finite element analysis of the quadrilateral and hexagonal telescopic booms were conducted based on ABAQUS with the same section height, width, thickness, as well as the same constraints and loads condition. The stress-strain diagram was obtained. Comparing to the quadrilateral boom, the hexagonal telescopic boom loads higher, weights lighter, and performs better.

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215-220

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December 2014

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© 2015 Trans Tech Publications Ltd. All Rights Reserved

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[1] C. Q. Zeng, Telescopic Crane Structure Optimization Design and Finite Element Analysis. Taiyuan University of Science and Technology, (2010).

Google Scholar

[2] D. K. Damian, and K. Jacek, Static and Dynamic Analysis of Telescopic Boom of Self-Propelled Tunneling Machine, Journal Of Theoretical And Applied Mechanics, vol. 50, pp.47-59, (2012).

Google Scholar

[3] H. F. Yan, W. P. Wang, Z. Wang, H. X. Zhang, H. Zhang, and X. P. An, Finite Element Analysis and Stress Testing for Telescopic Boom of Telehandler, Applied Mechanics and Materials, vol. 321-324, pp.1757-1760, (2013).

DOI: 10.4028/www.scientific.net/amm.321-324.1757

Google Scholar

[4] G. N. Xu, G. G. Gao, and Z. C. Guo, Analysis on Nonlinear Buckling Failure influence factors of Telescopic Boom System Based on Arc-length and FEM Method, Applied Mechanics and Materials, vol. 532, pp.291-296, (2014).

DOI: 10.4028/www.scientific.net/amm.532.291

Google Scholar

[5] Z. Yan, Study for Hexagonal Telescopic Boom, Hoisting and Conveying Machinery, pp.2-7, (1985).

Google Scholar

[6] P. Cheng, Telescopic Boom Truck Crane Finite Element Analysis and Optimization Design. Taiyuan University of Science and Technology, (2012).

Google Scholar

[7] Z. B. Wang, and A. M. Li, Design and optimization analysis on boom structure of 100 t telescopic boom crawler crane, Computer Aided Engineering, vol. 21, pp.16-18, 22, (2012).

Google Scholar

[8] L. Yu, and H. Lin, Study on Optimal Section for Crane Telescopic Booms, Chinese Journal of Construction Machinery pp.65-69, (2013).

Google Scholar

[9] Q. Y. Guo, and F. Z. Qu, The Structure Design of Hexagonal Telescopic Boom, Hoisting and Conveying Machinery, pp.34-36, (2007).

Google Scholar

[10] H. F. Yan, W. P. Wang, Z. Wang, H. X. Zhang, H. Zhang, and X. P. An, Finite Element Analysis and Stress Testing for Telescopic Boom of Telehandler, Applied Mechanics and Materials, vol. 321-324, pp.1757-1760, (2013).

DOI: 10.4028/www.scientific.net/amm.321-324.1757

Google Scholar