Analysis of Chip Morphology in Heavy Milling of 508III Steel Considering Different Tool Wear Conditions

Materials Pub Date : 2024-08-08 DOI:10.3390/ma17163948
Rui Guan, Yaonan Cheng, Jing Xue, Shilong Zhou, Xingwei Zhou, Wenjie Zhai
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Abstract

During the process of chip formation, the chip is subjected to extrusion pressure, friction, heat, and a strong chemical reaction. The chip’s macro and micro morphology, to a certain extent, reflect the condition of the tool during the cutting procedure. Therefore, researching the macroscopic and microscopic morphology of the chip’s surface in response to different tool wear conditions is of great significance to reproducing the cutting condition and analyzing the tool wear mechanism. This paper focuses on the chips formed by milling the difficult-to-machine material 508III high-strength steel. Firstly, the 508III steel milling experiment is carried out at the actual machining site to collect chip data under different tool wear conditions. Next, the free surface morphology of chips and the bottom surface morphology of chips are analyzed. Further, the chip edges are investigated, and their causes are analyzed. Finally, heavy milling 508III steel chip curl morphology analysis is performed. The research results play important roles in revealing the mechanism of tool wear and the relationship between chip morphology and tool wear. This information can be used to provide theoretical and technical support for monitoring the tool wear status based on chip morphology.
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考虑不同刀具磨损条件的 508III 钢重铣切屑形态分析
在切屑形成的过程中,切屑受到挤压力、摩擦力、热量和强烈的化学反应的作用。切屑的宏观和微观形态在一定程度上反映了切削过程中刀具的状况。因此,研究不同刀具磨损条件下切屑表面的宏观和微观形貌,对于再现切削状态和分析刀具磨损机理具有重要意义。本文重点研究了难加工材料 508III 高强度钢在铣削过程中形成的切屑。首先,在实际加工现场进行 508III 钢铣削实验,收集不同刀具磨损条件下的切屑数据。接着,分析了切屑的自由表面形态和切屑的底面形态。此外,还对切屑边缘进行了研究,并分析了其产生的原因。最后,进行了重型铣削 508III 钢切屑卷曲形态分析。研究结果对揭示刀具磨损机理以及切屑形态与刀具磨损之间的关系具有重要作用。这些信息可为基于切屑形态监测刀具磨损状态提供理论和技术支持。
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