Finite Element Analysis Of Influence Of Flank Wear Evolution On Forces In Orthogonal Cutting Of 42CrMo4 Steel

Marek Madajewski, Zbigniew Nowakowski
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Abstract

Abstract This paper presents analysis of flank wear influence on forces in orthogonal turning of 42CrMo4 steel and evaluates capacity of finite element model to provide such force values. Data about magnitude of feed and cutting force were obtained from measurements with force tensiometer in experimental test as well as from finite element analysis of chip formation process in ABAQUS/Explicit software. For studies an insert with complex rake face was selected and flank wear was simulated by grinding operation on its flank face. The aim of grinding inset surface was to obtain even flat wear along cutting edge, which after the measurement could be modeled with CAD program and applied in FE analysis for selected range of wear width. By comparing both sets of force values as function of flank wear in given cutting conditions FEA model was validated and it was established that it can be applied to analyze other physical aspects of machining. Force analysis found that progression of wear causes increase in cutting force magnitude and steep boost to feed force magnitude. Analysis of Fc/Ff force ratio revealed that flank wear has significant impact on resultant force in orthogonal cutting and magnitude of this force components in cutting and feed direction. Surge in force values can result in transfer of substantial loads to machine-tool interface.
42CrMo4钢正交切削中侧面磨损演变对切削力影响的有限元分析
摘要本文分析了42CrMo4钢正交车削过程中侧面磨损对车削力的影响,并评价了有限元模型提供该受力值的能力。进给力和切削力的大小数据来源于实验测试中的力张力计测量以及ABAQUS/Explicit软件对切屑形成过程的有限元分析。研究选择了一种具有复杂前刀面的刀片,并对其后刀面进行了磨削加工,模拟了刀片的磨损情况。镶齿面磨削的目的是获得沿切削刃均匀的平面磨损,测量后可以用CAD程序对其进行建模,并在选定的磨损宽度范围内进行有限元分析。在给定切削条件下,通过比较两组力值与齿面磨损的关系,验证了有限元模型的有效性,并建立了该模型可用于分析加工的其他物理方面。力分析发现,随着磨损的增加,切削力的大小增大,进给力的大小急剧增大。Fc/Ff力比分析表明,齿面磨损对正交切削合力以及切削方向和进给方向合力分量的大小有显著影响。力值的波动会导致大量载荷传递到机床界面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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