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Effect of Ultrasonic Surface Rolling Process on the Hot Compression Behavior of Inconel 718 Superalloy at 700 °C

机译:超声波表面轧制工艺对700°C时Inconel 718高温合金热压缩行为的影响

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摘要

A series of hot compression tests at the temperature of 700 °C were applied to study the effect of the ultrasonic surface rolling process (USRP) on the hot compression behavior of Inconel 718 superalloy. The results indicated that the USRP-treated samples exhibited a better ability to withstand axial hot compression than the untreated samples. After the hot compression process, the size of the matrix grains was slightly decreased, and the volume fraction of ultra-fine recrystallized grains in the near-surface regions was increased for the USRP-treated samples. In addition, for USRP-treated samples, a large number of γ″ phases with size less than 100 nm were precipitated within the broadened grain boundaries in the near-surface regions rather than the inner grains. The enhanced ability to withstand axial compression at 700 °C for USRP-treated samples was related to the ultra-fine microstructure induced by USRP, combined with the precipitation of nano-γ″ phases within broadened grain boundaries and the increase of ultra-fine recrystallized grains in the near-surface regions during the hot compression process.
机译:进行了一系列在700°C温度下的热压缩试验,以研究超声表面轧制工艺(USRP)对Inconel 718高温合金热压缩行为的影响。结果表明,USRP处理的样品比未处理的样品具有更好的承受轴向热压缩的能力。经过热压处理后,USRP处理的样品的基体晶粒尺寸略有减小,近表面区域中超细重结晶晶粒的体积分数增加。另外,对于USRP处理的样品,在近表面区域而不是内部晶粒中,在宽的晶界内析出了许多尺寸小于100nm的γ''相。 USRP处理的样品在700°C下承受轴向压缩的能力增强与USRP诱导的超细微结构,纳米γ''相在更宽的晶界内的析出以及超细重结晶的增加有关热压缩过程中,在近表面区域会出现颗粒。

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