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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Influence of tool wear on machining forces and tool deflections during micro milling
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Influence of tool wear on machining forces and tool deflections during micro milling

机译:微型铣削过程中刀具磨损对加工力和刀具变形的影响

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摘要

Tool wear on the cutting edges of micro end mills is an important issue affecting process outputs such as tool deflections and surface roughness, especially when difficult-to-cut materials such as titanium alloys, stainless steel, etc. are machined at micro scale. An understanding of the interactions between tool wear, machining forces, tool deflections, and surface roughness is important in order to maintain component quality requirements. However, in literature, the number of studies concerning tool wear in micro end mills is limited. The goal of the paper is to better understand tool wear patterns (flank wear, edge rounding) of micro end mills and their relationship to machining parameters. In this study, first, the influence of tool wear on micro milling forces and surface roughness parameters is analyzed and favorable micro milling process parameters are identified. It is shown that, when machining with worn end mills, forces are affected by the tool wear patterns. Then, the influence of increased milling forces due to tool wear on tool deflections and tool breakage is studied using both experimental techniques and finite element analysis. The finite element model-based tool deflection and tool breakage predictions are validated through experiments. The results of this study can be used in process parameter selection in pocket micro milling operations and tool condition monitoring systems.
机译:微型立铣刀切削刃上的刀具磨损是影响工艺输出(例如刀具变形和表面粗糙度)的重要问题,尤其是当难切削的材料(例如钛合金,不锈钢等)以微尺度加工时。为了保持零件质量要求,了解刀具磨损,加工力,刀具变形和表面粗糙度之间的相互作用非常重要。但是,在文献中,有关微型立铣刀中刀具磨损的研究数量有限。本文的目的是更好地了解微型立铣刀的刀具磨损模式(后刀面磨损,倒圆角)及其与加工参数的关系。在这项研究中,首先,分析了刀具磨损对微铣削力和表面粗糙度参数的影响,并确定了有利的微铣削工艺参数。结果表明,在使用磨损的立铣刀进行加工时,力会受到刀具磨损方式的影响。然后,使用实验技术和有限元分析研究了由于刀具磨损而导致的铣削力增加对刀具变形和刀具破损的影响。通过实验验证了基于有限元模型的刀具变形和刀具破损预测。这项研究的结果可用于袖珍微铣削操作和刀具状态监视系统中的工艺参数选择。

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