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Estimation of the Influence of Tool Wear on Force Signals: a Finite Element Approach in AISI1045 Orthogonal Cutting

机译:刀具磨损对力信号影响的估计:AISI1045正交切割中的有限元方法

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Industrial concerns arise regarding the significant cost of cutting tools in machining process. In particular, their improper replacement policy can lead either to scraps, or to early tool replacements, which would waste fine tools. ISO 3685 provides the flank wear end-of-life criterion. Flank wear is also the nominal type of wear for longest tool lifetimes in optimal cutting conditions. Its consequences include bad surface roughness and dimensional discrepancies. In order to aid the replacement decision process, several tool condition monitoring techniques are suggested. Force signals were shown in the literature to be strongly linked with tools flank wear. It can therefore be assumed that force signals are highly relevant for monitoring the condition of cutting tools and providing decision-aid information in the framework of their maintenance and replacement. The objective of this work is to correlate tools flank wear with numerically computed force signals. The present work uses a Finite Element Model with a Coupled Eulerian-Lagrangian approach. The geometry of the tool is changed for different runs of the model, in order to obtain results that are specific to a certain level of wear. The model is assessed by comparison with experimental data gathered earlier on fresh tools. Using the model at constant cutting parameters, force signals under different tool wear states are computed and provide force signals for each studied tool geometry. These signals are qualitatively compared with relevant data from the literature. At this point, no quantitative comparison could be performed on worn tools because the reviewed literature failed to provide similar studies in this material, either numerical or experimental. Therefore, further development of this work should include experimental campaigns aiming at collecting cutting forces signals and assessing the numerical results that were achieved through this work.
机译:有关加工过程中的切削工具的显着成本,产生工业问题。特别是,他们不正当的替代政策可以导致废料或早期工具更换,这将浪费精细工具。 ISO 3685提供侧面磨损寿命终端标准。侧翼磨损也是最佳切削条件下最长工具寿命的标称磨损。其后果包括良好的表面粗糙度和尺寸差异。为了帮助替换决策过程,提出了几种工具状态监测技术。在文献中示出了力信号与工具侧面磨损强烈连接。因此,可以假设力信号对监测切割工具的条件以及在其维护和更换框架中提供决策援助信息的强度信号非常相关。这项工作的目的是将工具侧翼磨损与数值计算的力信号相关联。目前的工作使用具有耦合的Eulerian-Lagrangian方法的有限元模型。为模型的不同运行改变了工具的几何形状,以获得特定于一定级别的磨损的结果。通过比较新鲜工具上提前收集的实验数据的比较评估该模型。使用恒定切割参数的模型,计算不同工具磨损状态下的力信号,并为每个研究的刀具几何提供力信号。这些信号与来自文献的相关数据进行了定性。此时,没有定量比较可以在破旧的工具上进行,因为审查的文献未能在该材料中提供类似的研究,无论是数值还是实验。因此,这项工作的进一步发展应包括旨在收集切割力信号并评估通过这项工作实现的数值结果的实验​​活动。

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