首页> 外文会议>ASME international mechanical engineering congress and exposition >THE DEPENDENCE OF 3D SURFACE ROUGHNESS PARAMETERS ON HIGH-SPEED MILLING TECHNOLOGICAL PARAMETERS AND MACHINING STRATEGY
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THE DEPENDENCE OF 3D SURFACE ROUGHNESS PARAMETERS ON HIGH-SPEED MILLING TECHNOLOGICAL PARAMETERS AND MACHINING STRATEGY

机译:3D表面粗糙度参数对高速铣削工艺参数的依赖和加工策略

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High-speed milling is an effective machining method extensively used in modern material processing. This machining method offers increased efficiency, quality and accuracy of the machined surface as well as considerably reducing overall production costs and machining time. This paper outlines comprehensive research into the impact of the technological strategy and processed materials on carefully selected 3D surface roughness parameters. This research provides manufacturers who use high-speed milling with recommendations on how to better obtain the desired surface roughness parameters. More specifically, it covers multifactorial analysis of the following factors: feed rate, manufacturing strategy, overlap and material influences on the most characteristic 3D surface parameters. The results are based on ANOVA - analysis of variance, where differences between groups of means are analysed using a range of statistical models. Subsequent analysis and respective conclusions identify the most significant factors as being the material and highspeed milling manufacturing strategy. Analytically justified recommendations for manufacturers regarding the preferred high-speed milling strategies are provided. The research concluded that the values of the selected 3D surface roughness parameters in high-speed milling depend significantly on the type of material being machined, milling mode and cutting tool overlap as well as feed. In particular, Sa -the arithmetic mean height, is highly sensitive to the milling mode.
机译:高速铣削是一种在现代材料加工中广泛使用的有效加工方法。这种加工方法提高了加工表面的效率,质量和精度,并大大降低了总体生产成本和加工时间。本文概述了有关技术策略和加工材料对精心选择的3D表面粗糙度参数的影响的综合研究。这项研究为使用高速铣削的制造商提供了有关如何更好地获得所需的表面粗糙度参数的建议。更具体地说,它涵盖了以下因素的多因素分析:进给速度,制造策略,重叠和材料对最具特色的3D表面参数的影响。结果基于方差分析-方差分析,其中使用一系列统计模型分析均值组之间的差异。随后的分析和相应的结论确定了最重要的因素是材料和高速铣削制造策略。针对首选的高速铣削策略,为制造商提供了分析上合理的建议。研究得出结论,高速铣削中选定的3D表面粗糙度参数的值在很大程度上取决于所加工材料的类型,铣削模式,切削刀具的重叠以及进给。特别地,Sa-算术平均高度对铣削模式高度敏感。

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