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Wear Mechanisms During Sliding of Ti64 Balls Against Bare and HFCVD Polycrystalline-Diamond-Coated WC-Co Exchangeable Inserts

机译:Ti64球对裸露和HFCVD多晶金刚石涂层的WC-Co可交换刀片的滑动过程中的磨损机理

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Diamond coatings present the state-of-the-art surface finish of tools for machining titanium and its alloys. However, the influence of this coating on the wear mechanism has not been elucidated yet. In this paper, ball-on-disc wear tests against 6-mm-diameter Ti6Al4V balls had been performed to characterize the wear performance of a polycrystalline diamond (PCD) coating produced by hot filament chemical vapor deposition and of bare tungsten carbide (WC-Co). The wear scars were evaluated by scanning electron microscopy and energy-dispersive X-ray spectrum. The PCD coating exhibited lower friction coefficient and mass loss than those of the WC-Co under same testing condition. The oxidation was inevitable in both PCD and WC-Co wear process. For WC-Co, abrasive wear was the main wear mechanism. In contrast to that, the PCD coating was worn by microcuts in the ball-on-disc test, and oxidized Ti64 debris also caused a great effect on its wear mechanism.
机译:金刚石涂层代表了用于加工钛及其合金的工具的最先进的表面光洁度。然而,该涂层对磨损机理的影响尚未阐明。在本文中,已经对直径6毫米的Ti6Al4V球进行了圆盘磨损试验,以表征通过热丝化学气相沉积生产的多晶金刚石(PCD)涂层和裸碳化钨(WC- Co)。通过扫描电子显微镜和能量色散X射线光谱评估磨损痕迹。在相同的测试条件下,PCD涂层的摩擦系数和质量损失均低于WC-Co。在PCD和WC-Co磨损过程中,氧化都是不可避免的。对于WC-Co,主要的磨损机制是磨料磨损。与此相反,PCD涂层在圆盘试验中被微切口磨损,并且氧化的Ti64碎片也对其磨损机理产生了很大影响。

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