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不同倒角刀具车削AISI4340时切削死区形成机理的研究

Study on the Formation Mechanism of Cutting Dead Metal Zone for Turning AISI4340 with Different Chamfering Tools.

作者信息

Wu Shujing, Wang Dazhong, Zhang Jiajia, Nadykto Alexey B

机构信息

School of Chemistry and Chemical Engineering, Shanghai University of Engineering Science, Shanghai 201620, China.

Department of Cutting Tools and Machining Technologies, Moscow State University of Technology Stankin, Moscow 127055, Russia.

出版信息

Micromachines (Basel). 2022 Jul 21;13(7):1156. doi: 10.3390/mi13071156.

Abstract

Tools with chamfered edges are often used in high speed machining of hard materials because they provide compelling cutting toughness and reduced tool wear. Chamfered tools are also responsible for the dead metal zone (DMZ). Through numerical simulation of orthogonal cutting with AISI 4340 steel, this paper examines the mechanism of the DMZ, the cutting speed, the impacts of the chamfer angle, and the coefficient of friction on the generation of the DMZ. The analysis is based upon the Arbitrary Lagrangian-Eulerian (ALE) finite element method (FEM) for the continuous process of chip formation. The different chamfered angles, cutting speeds, and friction coefficient conditions are utilized in the simulation. The research demonstrates that a zone of trapped material called DMZ has been formed beneath the chamfer and serves as an effective cutting edge of the tool. Additionally, the dead metal zone DMZ becomes smaller while the cutting speed increases or the friction coefficient decreases. The machining forces rise with increasing chamfer angles, rise with increasing friction coefficients, and fall with increasing cutting speed in both the cutting and thrust directions. In this paper, the effect of different chamfering tools on AISI 4340 steel using carbide tools in the simulation environment is studied. It has certain reference significance for studying the formation mechanism of the dead zone of difficult-to-machine materials such as AISI4340 and improving the processing efficiency and workpiece surface quality.

摘要

具有倒角刃口的刀具常用于硬材料的高速加工,因为它们具有出色的切削韧性并能减少刀具磨损。倒角刀具也会导致死区(DMZ)的形成。通过对AISI 4340钢进行正交切削的数值模拟,本文研究了死区的形成机制、切削速度、倒角角度的影响以及摩擦系数对死区产生的影响。该分析基于任意拉格朗日-欧拉(ALE)有限元方法(FEM)来模拟切屑形成的连续过程。模拟中采用了不同的倒角角度、切削速度和摩擦系数条件。研究表明,在倒角下方形成了一个称为死区的被困材料区域,它充当了刀具的有效切削刃。此外,随着切削速度的增加或摩擦系数的减小,死区会变小。在切削和推力方向上,加工力随着倒角角度的增加而增大,随着摩擦系数的增加而增大,随着切削速度的增加而减小。本文在模拟环境中研究了使用硬质合金刀具的不同倒角刀具对AISI 4340钢的影响。这对于研究AISI4340等难加工材料死区的形成机理以及提高加工效率和工件表面质量具有一定的参考意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cc2/9324414/ced5e8519752/micromachines-13-01156-g001.jpg

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