Modeling and optimization of dead metal zone to reduce cutting forces in micro milling of hardened AISI D2 steel,

B Harish, Babu and K, VenkataRao and B Sathish, Ben (2021) Modeling and optimization of dead metal zone to reduce cutting forces in micro milling of hardened AISI D2 steel,. Journal of the Brazilian Society of Mechanical Sciences and Engineering,, 43 (142). ISSN 1678-5878

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Abstract

Improving machining performance with reduced power consumption is a big challenge for the manufacturer to reduce production cost. Since the dead metal zone (DMZ) directly afects the cutting forces, the present study aims to optimize the
DMZ to reduce the cutting and thrust forces in the micro-milling of hardened AISI D2 steel using teaching–learning-based
optimization technique (TLBO). Finite element model for DMZ geometry and mechanistic models for cutting and thrust
forces are developed, integrated and estimated the cutting and thrust forces. The estimated forces are compared with experimental results and a good agreement found between them. In the next stage, process parameters (cutting speed and feed per tooth) and tool parameters (nose radius and rake angle) are optimized using TLBO technique to minimize DMZ geometry
keeping the surface roughness (≤2 µm), tool wear (≤30 µm) and amplitude of cutter vibration (≤30 µm) as constraints. The
optimal working condition is as follows: a spindle speed of 2225 rpm, a feed per tooth of 5.0 µm, and a nose radius of 7.6 µm
and rake angle of 3.0°. Under the optimal working condition, side length of DMZ and DMZ angle is found as 13.8 mm and
5.74°, respectively, and the cutting and thrust forces are estimated as 3.27 and 2.37 N, respectively. These cutting and thrust forces are about 21.3–65.7 and 34.8–55.3%, respectively, less than the experimental results.

Item Type: Article
Subjects: AC Rearch Cluster
Depositing User: Unnamed user with email techsupport@mosys.org
Date Deposited: 11 Dec 2023 06:18
Last Modified: 11 Dec 2023 06:18
URI: https://ir.vignan.ac.in/id/eprint/452

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