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Correlating surface roughness, tool wear and tool vibration in the milling process of hardened steel using long slender tools

机译:使用长的细长刀具在淬硬钢的铣削过程中将表面粗糙度,刀具磨损和刀具振动相关联

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摘要

High speed milling is an operation frequently used in finishing and semi-finishing of dies and molds. However, when it is necessary to produce molds with deep cavities and/or with small corner radius, long tools with small diameters are required. This represents a challenge for manufacturing professionals: how to minimize tool vibration using a tool with such low rigidity and obtain good workpiece surface quality and long tool lives. This paper attempts to answer this question. Milling experiments on hardened AISI H13 steel were carried out using integral and indexable insert tools with different tool overhangs and different diameters. Tool wear, workpiece surface roughness and cutting forces were measured and these parameters were correlated with the frequency response function (FRF) obtained with the tools fixed in the machine tool. The main conclusion of this study is that good workpiece surface roughness allied to long tool lives for long tools with small diameters can be achieved, provided the tooth passing frequency used in the milling process (and its harmonics) does not produce high FRF values.
机译:高速铣削是经常用于模具的精加工和半精加工的工序。但是,当需要生产具有深型腔和/或小拐角半径的模具时,需要使用直径较小的长模具。这对制造专业人士而言是一个挑战:如何使用具有如此低刚度的刀具来最大程度地减少刀具振动,并获得良好的工件表面质量和较长的刀具寿命。本文试图回答这个问题。使用具有不同工具悬垂和不同直径的整体式和可转位刀片工具对AISI H13硬化钢进行了铣削实验。测量工具磨损,工件表面粗糙度和切削力,并将这些参数与通过固定在机床中的工具获得的频率响应函数(FRF)相关联。这项研究的主要结论是,只要铣削过程中使用的齿通过频率(及其谐波)不会产生高FRF值,就可以实现良好的工件表面粗糙度,从而延长长寿命的小直径刀具。

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