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Friction and Wear Properties of WC-Co Cemented Carbide Sliding against Ti6Al4V Alloy in Nitrogen Gas

机译:WC-Co硬质合金在氮气中对Ti6Al4V合金滑动的摩擦和磨损性能

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Titanium alloys are known for their strong chemical reactivity with surrounding gas due to their high chemical affinity, especially in dry machining. But it is very difficult to study the influence of surrounding gas on the tool-workpiece interface because of the machining processes' complexity. In this paper, rotating pin-on-disc friction tests have been carried out at room temperature in ambient air and nitrogen gas to investigate the friction and wear behavior of WC-Co cemented carbide sliding against Ti6Al4V alloy. Scanning electron microscope (SEM) and Energy dispersive x-ray spectroscopy (EDX) have been used to examine the worn surface of the WC-Co pin and Ti6Al4V disc. The result shows that, compared to air, nitrogen gas brings a slight decrease in coefficient of friction, but a significant deduction in wear of the pin and disc. The SEM observation and EDX analysis indicate a distinct difference in wear mechanism between the pin and disc. Severe grooved wear, squeezing, adhering and tearing interactions are the main mechanisms causing the extensive wear of Ti6Al4V disc. Abrasion, adhesion and "pulling out" are the main mechanisms resulting in the wear of WC-Co pin.
机译:由于其高化学亲和力,特别是在干燥加工中,钛合金具有强大的化学反应性,其具有与周围气体的强烈的化学反应性。但由于加工过程的复杂性,难以研究围绕气体对工具工件界面的影响。在本文中,在室温下在环境空气和氮气中进行了旋转销盘摩擦试验,以研究WC-Co硬质合金滑动对Ti6Al4V合金的摩擦和磨损行为。已经使用扫描电子显微镜(SEM)和能量分散X射线光谱(EDX)检查WC-CO引脚和Ti6Al4V盘的磨损表面。结果表明,与空气相比,氮气会略微降低摩擦系数,但销钉和盘的磨损中的大量扣除。 SEM观察和EDX分析表示销和盘之间的磨损机构的不同差异。严重的沟槽磨损,挤压,粘附和撕裂相互作用是导致Ti6Al4V圆盘大量磨损的主要机制。磨损,粘附和“拉出”是主要机制,导致WC-CO销的磨损。

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