首页> 外文会议>Asian Pacific Conference on Fracture and Strength;APCFS; 20061122-25;20061122-25; Sanya(CN);Sanya(CN) >Effect of Original Microstructure on the Hot Compression Behavior of Superalloy 718
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Effect of Original Microstructure on the Hot Compression Behavior of Superalloy 718

机译:原始组织对高温合金718热压缩行为的影响

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Hot compression tests at different temperatures and strain rates were performed on superalloy 718 annealed at 1100 ℃ for 30 min as well as 950 ℃ for 30 min in order to investigate the effect of the original microstructure on the hot deformation behavior. The results show that the δ phase precipitated on the grain boundaries of superalloy 718 prior to hot deformation leads to a decrease of the flow stress, which can be attributed to the drop of the matrix strength. The activation energy (Q) for hot deformation of the fine-grained material with δ phase on the grain boundaries is determined to be 381 kJ/mol, which is much lower than that of the coarse-grained material without δ phase (472 kJ/mol). It is suggested that the initial δ phase precipitated on the grain boundaries of the annealed material affect the thermal activation process of hot deformation for superalloy 718, resulting in the decrease of activation energy.
机译:为了研究原始组织对热变形行为的影响,对高温1100℃和950℃30分钟的高温合金718进行了不同温度和应变速率的热压缩试验。结果表明,在热变形之前析出在高温合金718晶界上的δ相导致流动应力的减小,这可以归因于基体强度的降低。确定在晶界上具有δ相的细晶粒材料热变形的活化能(Q)为381 kJ / mol,远低于没有δ相的粗晶粒材料的热活化能(472 kJ / mol)。摩尔)。建议在退火材料的晶界上析出的初始δ相会影响高温合金718的热变形的热活化过程,导致活化能降低。

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