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Assessment of wear micromechanisms on a laser textured cemented carbide tool during abrasive-like machining by FIB/FESEM

机译:通过FIB / FESEM在磨料加工过程中评估激光纹理碳化物工具的磨损微机械

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The combined use of focused ion beam (FIB) milling and field-emission scanning electron microscopy inspection (FESEM) is a unique and successful approach for assessment of near-surface phenomena at specific and selected locations. In this study, a FIB/FESEM dual-beam platform was implemented to docment and analyze the wear micromechanisms on a laser-surface textured (LST) hardmetal (HM) tool. In particular, changes in surface and microstructural integrity of the laser-sculptured pyramids (effective cutting microfeatures) were characterized after testing the LST-HM tool against a steel workpiece in a workbench designed to simulate an external honing process. It was demonstrated that: (1) laser-surface texturing does not degrade the intrinsic surface integrity and tool effectiveness of HM pyramids; and (2) there exists a correlation between the wear and loading of shaped pyramids at the local level. Hence, the enhanced performance of the laser-textured tool should consider the pyramid geometry aspects rather than the microstructure assemblage of the HM grade used, at least for attempted abrasive applications.
机译:聚焦离子束(FIB)铣削和现场排放扫描电子显微镜检查(FESEM)的结合使用是在特定和选定位置评估近表面现象的独特且成功的方法。在这项研究中,FIB / FESEM双梁平台被实施到文档并分析激光表面纹理(LST)硬质合金(HM)工具上的磨损微机械。特别地,在测试外部珩磨过程的工作台上测试LST-HM工具,以设计为模拟外部珩磨过程的钢制工具,表征了激光雕塑金字塔(有效切割微泡)的表面和微观结构完整性的变化。据证明:(1)激光表面纹理不会降低HM金字塔的内在表面完整性和工具效果; (2)在局部层的磨损和装载之间存在相关性。因此,激光纹理工具的增强性能应考虑金字塔几何方面,而不是用于所使用的HM级的微观结构组合,至少用于尝试的磨料应用。

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