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Investigation of in-flight particle characteristics of HVOF sprayed MCrAlY coatings

机译:HVOF喷涂MCrAlY涂层的机载粒子特性研究

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摘要

The MCrAlY type coatings provide oxidation protection and good adhesion between the ceramic topcoat and the substrate. The high velocity oxy fuel (HVOF) process is currently being introduced to make the bond coats instead of conventional low pressure plasma spraying due to lower cost. In this research, the METJET-III HVOF liquid fuel system was used to produce MCrAlY coatings and the Tecnar DPV2000 was used to investigate in-flight particle temperature, velocity and diameter. To examine the coating-build, the wipe test was used to reveal the particle deformation on the substrate with different spraying parameters and correlated impact behaviour with particle properties. It was found that increasing of total fuel plus oxygen flow rate, percent stoichiometry and stand-off distances did not dramatically change the particle temperature. Increasing of percent stoichiometry and stand off distance led to reduction in particle velocity while increasing of the total fuel plus oxygen flow rate led to increase in the particle velocity. The average particle velocity below 640 m/s seems to make less splat formation than the average particle velocity above 750 m/s. Compiling results of the coating microstructure, the splat formation and the in-flight particle measurements revealed the effect of spraying parameters on the coating characteristics.
机译:MCrAlY型涂层可提供氧化保护并在陶瓷面漆和基材之间提供良好的附着力。由于成本较低,目前正在引入高速氧燃料(HVOF)工艺来代替传统的低压等离子喷涂来制造粘结涂层。在这项研究中,使用METJET-III HVOF液体燃料系统生产MCrAlY涂层,并使用Tecnar DPV2000研究飞行中的颗粒温度,速度和直径。为了检查涂层的构造,使用擦拭试验来揭示在不同喷涂参数下基材上的颗粒变形以及相关的冲击行为与颗粒性能。发现增加总燃料加氧气流速,化学计量百分比和间隔距离不会显着改变颗粒温度。化学计量比的增加和间隔距离的增加导致粒子速度的降低,而总燃料和氧气流速的增加导致粒子速度的提高。低于640 m / s的平均粒子速度似乎比750 m / s以上的平均粒子速度产生更少的飞溅。涂层微观结构,飞溅形成和飞行中颗粒测量的汇编结果揭示了喷涂参数对涂层特性的影响。

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