Design and development of a dynamometer for the simulation of the cutting forces in milling
by Adel Amin Ammar, Mohamed Jallouli, Zoubeir Bouaziz
International Journal of Automation and Control (IJAAC), Vol. 5, No. 1, 2011

Abstract: The cutting forces produced during the machining of metals exert a direct influence upon the machining stability, the tool wear and the quality of the machined surface. In this paper, a dynamometer of the cutting forces measurement in milling has been designed and constructed. The latter is based on the utilisation of two extended octagonal rings upon which are stuck strain gauges able to measure the forces in three directions. The signals of the forces have been captured and treated by means a data acquisition system which has also been conceived. The dynamometer has been submitted to a series of tests in order to determine its static and dynamic characteristics. The calibration of this dynamometer has been verified by the finite element method while using the simulation software COSMOS/M. The obtained results have proved that the dynamometer could be used reliably to measure the static and dynamic forces.

Online publication date: Fri, 17-Apr-2015

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