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Analysis of Microstructural Changes with Temperature of Thermally Sprayed WC-Co Coatings by Mechanical Spectroscopy

机译:通过机械光谱分析热喷涂WC-CO涂层温度的微观结构变化分析

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Thermally sprayed hardmetal coatings can be used to improve the wear or fatigue resistance of mechanical parts. Depending on the deposition conditions, their microstructure and phase composition are out of equilibrium at different levels due to the extreme heating/cooling rates. In the present study, the changes that occur with temperature variation are monitored by mechanical spectroscopy. Requirements to specimen of mechanical spectroscopy created the need to prepare WC-17%Co coatings of 1.2 mm thickness by high velocity oxy-fuel (HVOF) spraying. The coatings, separated from the substrate by spark erosion, were tested in a forced torsion pendulum between room temperature and 1570 K at a temperature scanning rate of 1K/min. The mechanical loss spectrum shows different features. At 800 K, a maximum M1 is observed in coincidence with a sudden increase of the elastic modulus. The change of the elastic modulus is due to a densification of the material possibly related to cobalt recrystallization. A relaxation peak located at about 1100 K is typically found in WC-Co hardmetals. It is attributed to the movement of dislocations in the cobalt phase. A sharp peak is observed at 1510 K on heating and at 1410 K on cooling. Such peak is due to the reversible transition from W_3Co_3C at high temperature to W_6Co_6C at low temperature as proven by X-ray diffraction. The reversibility of such transformation was observed for the first time.
机译:热喷涂的硬质合金涂层可用于改善机械部件的磨损或疲劳性。根据沉积条件,由于极端加热/冷却速率,它们的微观结构和相位组成在不同水平下的平衡。在本研究中,通过机械光谱监测温度变化发生的变化。对机械光谱标本的要求产生了通过高速氧燃料(HVOF)喷涂制备1.2mm厚度的WC-17%CO涂层。通过火花腐蚀与基板分离的涂层,在室温和1570k的强制扭转摆在1K / min的温度扫描速率之间测试。机械损失谱显示不同的特征。在800 k下,在弹性模量的突然增加,始终观察到最大M1。弹性模量的变化是由于可能与钴重结晶相关的材料的致密化。位于大约1100 k的松弛峰通常在WC-Co Hardulats中找到。它归因于钴阶段脱位的运动。在加热的1510 k下观察到尖峰,冷却1410K。这种峰是由于通过X射线衍射所经过的低温在低温下从W_3CO_3C到W_6CO_6C的可逆转变。第一次观察到这种转化的可逆性。

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