Tehnički vjesnik, Vol. 23 No. 3, 2016.
Prethodno priopćenje
https://doi.org/10.17559/TV-20150618074143
Prediction of tapping forces and torque for 16MnCr5 alloyed steel
Mihajlo Popović
; University of Belgrade, Faculty of Mechanical Engineering, Department for Production Engineering, Kraljice Marije 16, 11120 Beograd 35, Republic of Serbia
Antun Stoić
; Faculty of Mechanical Engineering in Slavonski Brod, J. J. Strossmayer University of Osijek, Trg Ivane Brlić Mažuranić 2, HR-35000 Slavonski Brod, Croatia
Ljubodrag Tanović
; University of Belgrade, Faculty of Mechanical Engineering, Department for Production Engineering, Kraljice Marije 16, 11120 Beograd 35, Republic of Serbia
Sažetak
The paper presents cutting tools geometry analysis for the active part of straight fluted taps and a prediction model for tapping forces and torque. To derive the relation between the angles that define the geometry of the tools, the orientation matrices for taps coordinate systems are defined. Along with analytical model setup, the taps are additionally modelled in CAD package based on main parameters taken from the external database. The cutting coefficients for material combination for the workpiece (16MnCr5) and tool (HSS-E, EMo5Co5) were identified using the orthogonal cutting mechanics which is needed for prediction procedure. Proposed prediction model for tapping forces and torque of the machine tap, in addition to the effects of the major cutting edges, includes an action from minor cutting edges, too. Results of experimental verification for the proposed procedures and models are presented in this paper.
Ključne riječi
CAD; cutting forces; prediction; tool geometry; tapping
Hrčak ID:
160147
URI
Datum izdavanja:
19.6.2016.
Posjeta: 3.832 *