首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Microstructure evolution and dynamic softening mechanisms during high-temperature deformation of a precipitate hardening Ni-based superalloy
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Microstructure evolution and dynamic softening mechanisms during high-temperature deformation of a precipitate hardening Ni-based superalloy

机译:高温沉淀沉淀的高温高压合金高温变形过程中的微观结构演化与动态软化机制

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摘要

Hot compression tests have been performed to study the microstructure evolution of as-forged precipitate hardening Ni-based superalloy in the temperature range 1060–1180?°C and strain rate range 0.001–10s?1. The dynamic softening mechanisms and nucleation mechanisms of dynamic recrystallization of deformed specimen in both γ single and γ+γ′ phase region as well as a wide range of strain rates were discussed using electron backscatter diffraction (EBSD) and transmission electron microscopy (TEM) technique. The results suggest that discontinuous dynamic recrystallization (DDRX), characterized by grain boundary bulging, takes place under all studied deformation conditions in this alloy. At relatively high deformation temperatures and low strain rates, the process of dynamic softening, that is as a result of the continuous original boundary migration induced the increased grain size as well as decreased dislocation substructures and subgrain boundaries, is identified by microstructural observations. The DDRX is promoted when the strain rate is increased. At relatively low deformation temperatures, the movement and rearrangement of dislocations in original grains as well as the migration of DRX grain boundaries are hindered by the presence of γ′ precipitates, indicating that DDRX and particle-induced continuous dynamic recrystallization (PI-CDRX) can occur simultaneously.
机译:已经进行了热压缩试验以研究在1060-1180°C的温度范围内的锻造沉淀物硬化沉淀物的微观结构演变和0.001-10s≤0.001-10sα1。使用电子反向散射衍射(EBSD)和透射电子显微镜(TEM)技术讨论了γ单和γ+γ'相位区域中变形样品的动态软化机制和变形样品的动态再结晶的核切选机制,以及透射电子显微镜(TEM)技术。结果表明,在该合金中的所有研究的变形条件下发生了晶界凸出的不连续的动态再结晶(DDRX)。在相对较高的变形温度和低应变速率下,通过微观结构观察鉴定了由于连续原始边界迁移的动态软化过程,即由于连续的原始边界迁移而导致增加的晶粒尺寸以及降低的位错子结构和粒子边界。当应变率增加时,促进了DDRX。在相对较低的变形温度下,通过存在γ'沉淀物的存在,在原始晶粒中的移动和重排以及DRX晶界的迁移,表明DDRX和颗粒诱导的连续动态再结晶(PI-CDRX)可以同时发生。

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