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Fractal Characteristics of Chip Morphology and Tool Wear in High-Speed Turning of Iron-Based Super Alloy

机译:铁基超级合金高速车削中切屑形态的分形特征和刀具磨损

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摘要

Considering that iron-based super alloy is a kind of difficult-to-cut material, it is easy to produce work hardening and serious tool wear during machining. Therefore, this work aims to explore the chip change characteristics and tool wear mechanism during the processing of iron-based super alloy, calculate the fractal dimensions of chip morphology and tool wear morphology, and use fractals to analyze their change trend. Meanwhile, a new cutting tool with a super ZX coating is used for a high-speed dry turning experiment. The results indicate that the morphology of the chip is saw-tooth, and its color changes gradually, due to the oxidation reaction. The main wear mechanisms of the tool involve abrasive wear, adhesive wear, oxidation wear, coating spalling, microcracking and chipping. The fractal dimension of the tool wear surface and chip is increased with the improvement of cutting speed. This work investigates the fractal characteristics of chip morphology and tool wear morphology. The fractal dimension changes regularly with the change of tool wear, which plays an important role in predicting this tool wear. It is also provides some guidance for the efficient processing of an iron-based super alloy.
机译:考虑到铁基超级合金是一种难切削材料,在加工过程中容易产生加工硬化和严重的刀具磨损。因此,本工作旨在探讨铁基超级合金加工过程中的切屑变化特征和刀具磨损机理,计算切屑形态和刀具磨损形态的分形维数,并利用分形来分析其变化趋势。同时,一种具有超级ZX涂层的新型切削刀具用于高速干车削实验。结果表明,由于氧化反应,芯片的形态为锯齿状,其颜色逐渐变化。该工具的主要磨损机制包括磨料磨损,粘着剂磨损,氧化磨损,涂层剥落,微裂纹和碎裂。随着切削速度的提高,刀具磨损表面和切屑的分形维数增加。这项工作研究了切屑形态和刀具磨损形态的分形特征。分形维数随刀具磨损的变化而规律地变化,这在预测刀具磨损方面起着重要作用。它还为有效处理铁基超级合金提供了一些指导。

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