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Investigation of surface topography and its deterioration resulting from tool wear evolution when dry turning of titanium alloy Ti-6Al-4V

机译:干式合金Ti-6AL-4V干式转向时刀具磨损刀具磨损造成的表面形貌及其劣化研究

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摘要

Tool wear inevitably occurs in dry cutting titanium alloy Ti-6Al-4V, and it causes the machined surface deterioration. This research aimed to synthetically investigate surface topography characterization with emphasizing tool flank wear effects in dry turning titanium alloy Ti-6Al-4V. The surface analysis techniques including three dimension (3D) surface parameters and surface defects were implemented to assess surface topographies by using confocal laser scanning microscope and scanning electron microscope. A detailed comparison of 3D surface topography in terms of amplitude, spatial, hybrid, functional, and volume parameters was analyzed under various tool wear stages. The undesirable surface defects, such as feed marks, plowing grooves, side flow, plastic flow, and adhered material particles, surface tearing, surface burning, scratch marks were discussed on the basis of tool wear patterns and additional thermo-mechanical loads. Experimental findings indicated that a good correlation was presented between surface topography evolution and tool wear effects.
机译:在干切削钛合金Ti-6AL-4V中不可避免地磨损,造成加工表面劣化。该研究旨在综合研究表面形貌表征,并在干式转弯钛合金Ti-6Al-4V中强调工具侧面磨损作用。实施包括三维(3D)表面参数和表面缺陷的表面分析技术以通过使用共聚焦激光扫描显微镜和扫描电子显微镜评估表面拓扑。在各种工具磨损阶段分析了3D表面形貌的详细比较。在工具磨损图案和额外的热机械负载的基础上讨论了不希望的表面缺陷,例如饲料标记,犁槽,侧面流量,塑料流动和粘附材料颗粒,表面撕裂,表面燃烧,刮擦痕迹。实验结果表明,表面形貌演化和工具磨损效果之间呈现了良好的相关性。

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