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SOM-SEM-EDS Identification of Tool Wear Mechanisms in the Dry-Machining of Aerospace Titanium Alloys

机译:航空航天钛合金干加工工具磨损机构的Som-Sem-EDS识别

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Titanium based alloys, mainly UNS R56400 (Ti6A14V), are increasingly being applied in the airship building industry due to its excellent physicochemical properties. Machining operations are usually required in the manufacturing processes of Ti based aerospace structural elements. However, high reactivity of Ti provokes a quick tool wear. So, in order to reach an economically acceptable production level, it is necessary to minimize the costs associated to tool wear. In this work, Scanning Electron Microscopy (SEM), Stereoscopic Optical Microscopy (SOM) and Energy Dispersive Spectroscopy (EDS) have been used for both analysing and identifying secondary adhesion mechanisms that are taking place when an aeronautical titanium alloy is machined. Special severe cutting conditions have been applied. Thus, titanium alloy have been dry machined with TiN coated WC-Co tools. Results obtained have shown that tool wear is controlled by a secondary adhesion mechanism, which presents two stages. A first stage is constituted by a TiO{sub}x multi-film formed onto the tool surfaces. A second step involves the mechanical adhesion of the alloy material to those surfaces. When this material is removed, tool particles are dragged off causing tool wear.
机译:由于其优异的物理化学性质,钛基合金主要是UNS R56400(TI6A14V),越来越多地应用于飞艇建设行业。在基于Ti的航空航天结构元件的制造过程中通常需要加工操作。然而,Ti的高反应性引起了快速的工具磨损。因此,为了达到经济上可接受的生产水平,有必要最大限度地减少与工具磨损相关的成本。在该工作中,扫描电子显微镜(SEM),立体光学显微镜(SOM)和能量分散光谱(EDS)已经用于分析和识别在机械加工航空钛合金时进行的二次粘附机构。应用了特殊的严重切削条件。因此,钛合金已经用锡涂覆的WC-CO工具干式加工。所得到的结果表明,刀具磨损由二次粘合机构控制,其呈现两个阶段。第一阶段由形成在工具表面上的TiO {Sub} x多膜构成。第二步包括合金材料与那些表面的机械粘附。当除去该材料时,拖动刀具颗粒导致工具磨损。

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