Author:
Lu Xiaohong,Wang FuRui,Jia Zhenyuan,Liang Steven Y.
Abstract
Purpose
Cutting tool wear is known to affect tool life, surface quality, cutting forces and production time. Micro-milling of difficult-to-cut materials like Inconel 718 leads to significant flank wear on the cutting tool. To ensure the respect of final part specifications and to study cutting forces and tool catastrophic failure, flank wear (VB) has to be controlled. This paper aims to achieve flank wear prediction during micro-milling process, which fills the void of the commercial finite element software.
Design/methodology/approach
Based on tool geometry structure and DEFORM finite element simulation, flank wear of the micro tool during micro-milling process is obtained. Finally, experiments of micro-milling Inconel 718 validate the accuracy of the proposed method for predicting flank wear of the micro tool during micro-milling Inconel 718.
Findings
A new prediction method for flank wear of the micro tool during micro-milling Inconel 718 based on the assumption that the wear volume can be assumed as a cone-shaped body is proposed. Compared with the existing experiment techniques for predicting tool wear during micro-milling process, the proposed method is simple to operate and is cost-effective. The existing finite element investigations on micro tool wear prediction mainly focus on micro tool axial wear depth, which affects size accuracy of machined workpiece seriously.
Originality/value
The research can provide significant knowledge on the usage of finite element method in predicting tool wear condition during micro-milling process. In addition, the method presented in this paper can provide support for studying the effect of tool flank wear on cutting forces during micro-milling process.
Subject
Surfaces, Coatings and Films,General Energy,Mechanical Engineering
Reference18 articles.
1. Study on the cabide tool wear mechanisms in micro milling stair-shape target of LiF crystal;International Journal of Advanced Manufacturing Technology,2015
2. Experimental evaluation and modeling analysis of micromilling of hardened H13 tool steels;Journal of Manufacturing Science and Engineering,2011
3. Thermal and mechanical modeling analysis of laser-assisted micro-milling of difficult-to-machine alloys;Journal of Materials Processing Technology,2012
4. Mechanical properties and cutting performance of Cr-Al-N hybrid coated micro-tool for micro high-speed machining of flexible fine die;Current Applied Physics,2012
5. Wear behavior of coated tools in laser assisted micro-milling of hardened steel;Wear,2012
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