Mechanistic Models for prediction of cutting forces and power consumption considering chip Geometry

V Umasai Vara, Prasad and K Venkata, Rao and PBGSN, Murthy (2021) Mechanistic Models for prediction of cutting forces and power consumption considering chip Geometry. Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering, 235 (2). pp. 479-488. ISSN 2041-3009

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Abstract

A novel approach for modeling and simulation of cutting force and power consumption in relation to chip geometry has
been proposed in end milling of AISI D2 steel. It is carried out in two stages: experimental work and finite element method based numerical simulation. In the first stage, experiments are conducted on the AISI D2 steel at two levels of spindle rotational speed, axial depth of cuts and four levels of feed per tooth using 10 mm and 8 mm diameter mill cutters. Cutting forces and amplitude of cutter vibration are measured in X and Y directions. Mechanistic models in terms of chip geometry and cutting force coefficients are developed to predict cutting forces and power consumption relative to chip geometry at 30, 60 and 90 of cutter rotation. In the second stage, numerical simulation is carried out
to predict cutting forces and power consumption relative to chip geometry at 30, 60 and 90 of cutter rotation and compared with estimated values of cutting forces and power consumption. The maximum error between the two approaches for the cutting forces in X and Y directions and power consumption is estimated as 10.80%, 8.33% and 7.70% respectively. At spindle rotational speed of 2000 rpm, 0.3 mm of axial depth of cut and 50 mm of feed per tooth, the cutting forces and cutting power consumption are found minimum.

Item Type: Article
Subjects: AC Rearch Cluster
Depositing User: Unnamed user with email techsupport@mosys.org
Date Deposited: 11 Dec 2023 06:20
Last Modified: 11 Dec 2023 06:20
URI: https://ir.vignan.ac.in/id/eprint/453

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