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Evolution of microstructure of an iron aluminide during severe plastic deformation by heavy rolling

机译:重轧严重塑性变形过程中铝化铁组织的演变

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摘要

Severe plastic deformation is generally achievedusing novel techniques such as Equal Channel Angular Pressing (ECAP) or High Pressure Torsion (HPT), but may also be achieved by more conventional methods such as very heavy rolling. Microstructure evolution is examined in an iron aluminide intermetallic rolled to strains up to 3.3 using Transmission Electron Microscopy (TEM) and orientation determinations by Kikuchi line analysis. After the highest strains the microstructure is still characterized as a recovered submicron-scale dislocation structure, with generally low angles across the various boundaries, and a high density of dislocations inside these boundaries. The structures observed show a dependence on orientation of the underlying parent grain, with [001] orientations showing poorer rearrangement to cellular structures than grains with [113–111] orientations.
机译:严重的塑性变形通常使用新颖的技术来实现,例如等通道角挤压(ECAP)或高压扭转(HPT),但是也可以通过更常规的方法来实现,例如非常重的轧制。使用透射电子显微镜(TEM)通过Kikuchi线分析确定取向,在轧制至3.3应变的铝化铁金属间化合物中观察组织演变。在最高应变之后,显微组织仍被表征为恢复的亚微米级位错结构,跨各种边界的角度通常较小,而在这些边界内的位错密度较高。观察到的结构显示出对基础母粒方向的依赖性,与[113-111]方向的晶粒相比,[001]方向显示出对细胞结构的重排较差。

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