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Surface modification of cast inconel 740 superalloy by heat-assisted friction stir processing

机译:热辅助摩擦搅拌工艺对铸铬镍铁合金740高温合金的表面改性

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摘要

Cast In740 Ni-based alloy with large grains generally show remarkable high temperature strength. However, this alloy is still have insufficient surface microstructure-dependent properties. In this study, for improvement of surface properties, surface modification of a cast In740 Ni-based superalloy was successfully performed by friction stir processing using a conventional two-horsepower milling machine and by additional heating to facilitate plastic flow of the hard alloy. Without using a high-power heavy stirring machine, a notable reduction in grain size of 2.9 mu m was achieved and a corresponding 30% increase in Vickers hardness was observed. The microstructure in the stir zone was analyzed in terms of the grain size and precipitate distribution. The result of the potential dynamic polarization test and in-situ acoustic emission monitoring show that electrochemical corrosion resistance was improved by this surface modification process.
机译:大晶粒的铸造In740 Ni基合金通常显示出显着的高温强度。但是,这种合金仍具有不足的表面微观结构依赖性。在这项研究中,为了改善表面性能,使用常规的两马力铣床,通过摩擦搅拌工艺并通过额外加热以促进硬质合金的塑性流动,成功地对铸造的In740 Ni基高温合金进行了表面改性。在不使用大功率重型搅拌机的情况下,晶粒尺寸显着减小了2.9微米,并且观察到维氏硬度相应增加了30%。根据晶粒大小和沉淀物分布分析了搅拌区的微观结构。潜在的动态极化测试和原位声发射监测的结果表明,通过这种表面改性工艺提高了耐电化学腐蚀性能。

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