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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Dislocation structures in 16MND5 pressure vessel steel strained in uniaxial tension at different temperatures from ?196 °C up to 25 °C
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Dislocation structures in 16MND5 pressure vessel steel strained in uniaxial tension at different temperatures from ?196 °C up to 25 °C

机译:16MND5压力容器钢中的位错结构在?196°C至25°C的不同温度下承受单轴张力

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16MND5 ferritic steel specimens are strained in uniaxial tension at different temperatures, from ?196 °C up to 25 °C. The TEM observations made after the tests reveal that strain localization takes place at the scale of lath blocks, where the individual laths undergo bending straining. Noticeably, the lath boundary dislocations represent an important fraction of the initial sources. Within the deformed laths, dislocations are homogeneously distributed at low plastic strain and gradually condense into high density structures, with increasing deformation. Dislocation condensation takes place in the form of cell walls or tilt boundary structures at T 0 °C; in the form of sub-lath size clusters at T ?90 °C. Unlike in pure iron, screw dislocation motion in 16MND5 steel is characterized by very active cross-slip and subsequent formation of cross-kinks. It is believed that this self-locking effect contributes to strain hardening, in addition to dislocation accumulation at the lath boundaries.
机译:16MND5铁素体钢试样在?196°C至25°C的不同温度下承受单轴拉伸。测试后进行的TEM观察表明,应变局部化发生在板条块的尺度上,其中各个板条都经历了弯曲应变。值得注意的是,板条边界位错占初始震源的重要部分。在变形的板条中,位错在低塑性应变下均匀分布,并随着变形的增加逐渐凝结为高密度结构。位错冷凝在T 0°C时以细胞壁或倾斜边界结构的形式发生;在T°90°C时为亚板条大小的团簇。与纯铁不同,16MND5钢中的螺钉错位运动的特征是非常活跃的交叉滑动和随后形成的交叉扭结。据信,这种自锁作用除了在板条边界处的位错积累之外,还有助于应变硬化。

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