Analysis of Impact Force in Tensioning Mechanism in MSC.ADAMS with Consideration of Rigid and Flexible Bodies

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This paper presents the calculation of dynamic parameters of virtual prototype of mechanism, which function is the correct tensioning of wedge belt of belt gear. Sudden release of tensioning device usually occurs during the assembly process, large impact forces which form have destructive effect on the device. A part of the paper will be the analysis of input parameters for solution by function Impact. Impact effects will be solved with flexibility of chosen member of the mechanism in mind. The solution will be realized in the environment of software MSC.ADAMS and ANSYS.

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165-173

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November 2015

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© 2015 Trans Tech Publications Ltd. All Rights Reserved

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[1] A. Bąkowski, J. Jaroszewicz, L. Radziszewski, Assessment of the Mechanical Properties of a Diesel Engine Injector, Applied Mechanics and Materials, 630(2014), 334-340.

DOI: 10.4028/www.scientific.net/amm.630.334

Google Scholar

[2] W. J. Stronge, Impact Mechanics, Cambridge University Press, (2004).

Google Scholar

[3] K. L. JOHNSON, Contact Mechanics. Cambridge University Press. Cambridge. (2013).

Google Scholar

[4] GIESBERS, J. 2012. Contact Mechanics in MSC Adams – A technical evaluation of the contact models in multibody Dynamics software MSC Adams: Bachelor Thesis. University of Twente. 2013. 42 strán. Information on http: /purl. utwente. nl/essays/62109.

Google Scholar

[5] Information on http: /atc. sjf. stuba. sk/files/tm2/8_cvic_TM_II_naraz_sustav. pdf.

Google Scholar

[6] V. Dekys, P. Kopas, M. Sapieta, O. Stevka, A detection of deformation mechanisms using infrared thermography and acoustic emission, NOVEL TRENDS IN PRODUCTION DEVICES AND SYSTEMS Book Series: Applied Mechanics and Materials, 474 (2014) 315-320.

DOI: 10.4028/www.scientific.net/amm.474.315

Google Scholar

[7] P. Kopas, M. Vaško, M. Handrik, Computational modeling of the microplasticization state in the nodular cast iron, in: Applied Mechanics and Materials, Vol. 474, 2014, pp.285-290.

DOI: 10.4028/www.scientific.net/amm.474.285

Google Scholar

[8] A. O. Shimanovsky, M. G. Kuznyatsova, Yu. M. Pleskachevskii: The strength analysis of the partitions in road tank reservoirs. In Procedia Engineering, 2012, vol. 48, pp.607-612.

DOI: 10.1016/j.proeng.2012.09.560

Google Scholar

[9] M. Vasko, A. Guran, L. Jakubovičová, P. Kopas, Determination the contact stress depending on the load rate of the NU220 roller bearin, in Komunikacie, Vol. 15, No 2, 2013, pp.88-94.

DOI: 10.26552/com.c.2013.2.88-94

Google Scholar

[10] J. Vavro, J. Vavro, jr., A. Vavrova, P. Kovacikova, Dynamic Analysis of Winding Mechanisms for Manufacturing of Raw Tyres. Hutnické listy. 64, (2011), 189-192.

Google Scholar

[11] M. Zmindak, M. Saga: Structural Optimization of Trusss Structures for Deterministic and Nondeterministic Lodas Using MATLAB. Proceedings of the VII th International Con-ference on Numerical Methods in Continuum Mechanics. High Tatras, (1998).

Google Scholar