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Feasibility study of low force robotic friction stir process and its effect on cavitation erosion and electrochemical corrosion for Ni Al bronze alloys

机译:低力机器人摩擦搅拌工艺对镍铝青铜合金空化腐蚀和电化学腐蚀影响的可行性研究

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摘要

Robotic friction stir processing (FSP) has not been widely researched to date. This is perhaps due to the limited force capabilities of industrial robots in comparison with dedicated commercial FSP equipment. When operating a FSP machine, the force used to plunge the tools may range from 5000 to 8000 N which is currently beyond the capability of most robots. However, the capacity of robotic manipulators is increasing, so low force friction stir processing is becoming feasible. The ability of the robot arm to apply a controlled force that is normal to a 3-dimensional surface without the need to reorient the workpiece makes it a very useful tool for FSP of complex components. In this analysis, a robot arm with a capacity of 2500 N is used to improve the surface properties of nickel aluminum bronze (NAB) using low force FSP. Multiple passes were applied to the surface of the test sample for a more consistent spread of the stir zone. The sample was then microhardness tested and demonstrated a 62 pct increase in surface hardness. Cavitation erosion testing of the original and processed surfaces was also performed as per ASTM G-32. The erosion rate of the processed NAB sample was 44 pct of the rate experienced by the original cast NAB sample. Finally, the corrosion potentials of FSP NAB were measured at 45 mV less anodic than the unprocessed material, indicating that the processed material is more noble relative to the cast NAB sample.
机译:迄今为止,机器人摩擦搅拌处理(FSP)尚未得到广泛研究。这可能是由于工业机器人与专用的商用FSP设备相比受力能力有限。当操作FSP机器时,用来插入工具的力可能在5000到8000 N的范围内,目前这超出了大多数机器人的能力。然而,机械手的能力正在增加,因此低力摩擦搅拌处理变得可行。机械臂无需重新定向工件即可施加垂直于三维表面的受控力的能力使其成为用于复杂零件FSP的非常有用的工具。在此分析中,使用容量为2500 N的机械手使用低力FSP改善镍铝青铜(NAB)的表面性能。将多次通过施加到测试样品的表面,以使搅拌区更均匀地散布。然后样品测试了微硬度并且证明了表面硬度增加了62 pct。还按照ASTM G-32对原始表面和加工过的表面进行了气蚀试验。被处理的NAB样品的腐蚀速率是原始铸造NAB样品所经历的速率的44%。最后,FSP NAB的腐蚀电位在阳极上比未处理的材料低45 mV,这表明相对于铸造的NAB样品,处理后的材料更贵重。

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