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In-situ transmission electron microscopy investigation of compressive deformation in interphase-precipitated carbide-strengthened α-iron single-crystal nanopillars

机译:原位透射电子显微镜研究相间沉淀碳化物增强的α-铁单晶纳米柱的压缩变形

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摘要

Compressive deformation tests were carried out during in-situ transmission electron microscopy to investigate the deformation behaviors of alpha-iron nanopillars with or without interphase-precipitated carbides. Three kinds of alpha-iron nanopillars were prepared from titanium-molybdenum-free and titanium-molybdenum-containing steels: one interphase-precipitated carbide-free and two interphase-precipitated carbide-bearing pillars with carbides of different sizes (4.7 nm and 3.0 nm after holding at 700 degrees C and 650 degrees C, respectively) and different number densities. In-situ observation provided direct evidence that interphase-precipitated nanometer-sized carbides confined the movement of the dislocations, resulting in smaller strain bursts with a significantly higher strength, in contrast to the behaviors of the pillars without carbides. The individual strain bursts in the in-situ stress-strain curves, which were associated with the corresponding dislocation substructures in the three kinds of pillars, are discussed.
机译:在原位透射电子显微镜下进行了压缩变形测试,以研究具有或不具有相间沉淀碳化物的α-铁纳米柱的变形行为。用不含钛钼和含钛钼的钢制备了三种α-铁纳米柱:一种相间无碳化物的碳化钨柱和两种相间含碳化物的碳化物柱,其碳化物尺寸不同(4.7 nm和3.0 nm)分别保持在700摄氏度和650摄氏度)和不同的数字密度。原位观察提供了直接的证据,表明相间沉淀的纳米尺寸碳化物限制了位错的运动,从而导致较小的应变破裂,强度明显更高,这与不含碳化物的柱的行为相反。讨论了与三种柱体中相应的位错亚结构相关的地应力-应变曲线中的单个应变爆发。

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