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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Degradation modes and tool wear mechanisms in finish and rough machining of Ti17 Titanium alloy under high-pressure water jet assistance
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Degradation modes and tool wear mechanisms in finish and rough machining of Ti17 Titanium alloy under high-pressure water jet assistance

机译:高压水喷射辅助下Ti17钛合金精加工和粗加工中的降解方式和刀具磨损机理

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This article presents the results of an experimental study on the Ti17 titanium alloy, which was carried out to analyze tool wear and the degradation mechanisms of an uncoated tungsten carbide tool insert. Two machining conditions, roughing and finishing, have been studied under different lubrication conditions. The experimental procedure included measurement of the cutting forces and the surface roughness. Different techniques have been used to explain the tool wear mechanisms. Distribution maps of the elemental composition of the titanium alloy and the tool inserts have been created using Energy Dispersive X-ray Spectroscopy (EDS). An area of material deposition on the tool rake face, characterized by a high titanium concentration has been observed. The width of this area and the concentration of titanium, decrease when increasing water jet pressure. The study shows that wear mechanisms, with and without high-pressure water jet assistance (HPWJA) are not the same. For example, for the roughing condition using conventional lubrication, the temperature in the cutting area becomes very high, this causes plastic deformation of the cutting edge which results in its rapid collapse. By contrast, this problem disappears when machining with HPWJA. In addition, the evolution of flank wear (VB) is stabilized with high-pressure lubrication. In this case, the most critical degradation mode is due to notch wear (VBn) leading to the sudden rupture of the cutting edge.
机译:本文介绍了对Ti17钛合金进行实验研究的结果,该研究旨在分析未磨损的碳化钨刀具刀片的刀具磨损和降解机理。研究了在不同润滑条件下的两种加工条件,即粗加工和精加工。实验程序包括测量切削力和表面粗糙度。已经使用了不同的技术来解释工具的磨损机理。使用能量色散X射线光谱仪(EDS)创建了钛合金和工具刀片的元素组成分布图。已经观察到工具前刀面上的材料沉积区域,其特征在于高钛浓度。当增加水喷射压力时,该区域的宽度和钛的浓度会减小。研究表明,带和不带高压水喷射辅助装置(HPWJA)的磨损机理都不相同。例如,对于使用常规润滑的粗加工条件,切削区域中的温度变得非常高,这会导致切削刃发生塑性变形,从而导致切削刃快速塌陷。相反,使用HPWJA进行加工时,该问题消失了。此外,通过高压润滑可稳定侧面磨损(VB)的发展。在这种情况下,最关键的退化模式是由于切口磨损(VBn)导致切削刃突然断裂。

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