首页> 外文会议>International Manufacturing Conference in China; 20060921-23; Xi'an(CN) >Influence of Cutter's Helix Angle, Workpiece Hardness, Milling Orientation, and MQL in High-Speed Side Milling of AISI D2
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Influence of Cutter's Helix Angle, Workpiece Hardness, Milling Orientation, and MQL in High-Speed Side Milling of AISI D2

机译:刀具螺旋角,工件硬度,铣削方向和MQL在AISI D2高速侧面铣削中的影响

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摘要

Rapid tool wear is a major demerit of high-speed milling (HSM) applied to cutting of hardened steels, especially the AISI D2. This paper presents an attempt to maximize the tool life by experimentally investigating the effects of cutter's helix angle, workpiece material hardness, milling orientation, and minimum quantity of lubrication upon tool wear in high-speed side milling of AISI D2, using coated carbide cutters. Effects of these four parameters were studied also upon surface roughness. Statistical analysis upon experimental data revealed that milling orientation was the most significant factor for tool life as well as for surface roughness. The paper also describes the mechanisms of wear undergone by the tools, by making use of SEM photographs and EDS micro-analysis. The major wear mechanisms were chipping, adhesion, and diffusion.
机译:快速的工具磨损是高速铣削(HSM)的主要缺点,高速铣削(HSM)应用于淬硬钢,尤其是AISI D2的切削。本文通过使用涂层硬质合金铣刀在AISI D2的高速侧面铣削中,通过实验研究刀具的螺旋角,工件材料的硬度,铣削方向以及最小润滑量对刀具磨损的影响,提出了一种最大化刀具寿命的尝试。还研究了这四个参数对表面粗糙度的影响。对实验数据的统计分析表明,铣削取向是影响刀具寿命以及表面粗糙度的最重要因素。本文还通过利用SEM照片和EDS微观分析描述了工具磨损的机理。主要的磨损机理是碎裂,粘附和扩散。

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