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THE MICROSTRUCTURE, TEXTURE AND MECHANICAL PROPERTIES OF AS-ECAE INTERSTITIAL-FREE STEEL AND COPPER

机译:AS-ECAE间隙钢和铜的微观结构,质地和力学性能

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A comparison between the microstructure, texture and mechanical properties of bcc interstitial-free (IF) steel and fcc copper (Cu) for up to N = 8 passes Equal Channel Angular Extrusion (ECAE) via route B_C processing was undertaken. Transmission Electron Microscopy (TEM) and Electron Back-Scattering Diffraction (EBSD) studies revealed that the deformation microstructures of both metals evolves from low-angled microbands and dislocation cells after N=2 passes towards more equiaxed, homogeneous subgrain/grain structures comprising higher-angles of misorientation after N = 8 passes. In both metals, the percentage rise in 23 and random boundaries are attributed to mechanisms that favour low-energy boundary configurations during ECAE. Texture evolution involves gradual changes in individual component strengths during multi-pass ECAE. The bcc and fcc textures are correlated by interchanging the Miller indices of the slip plane and slip direction between the two cubic crystal systems. The uniaxial tensile curves of both materials are representative of significant cold-working and depict higher 0.2% proof stresses, a small period of uniform elongation, necking and lastly, failure via geometrical softening. Constitutive modelling suggests that rather than a change in deformation mechanism, the preservation of ductility up to N = 8 passes is associated with an increase in the mean free path of dislocations;;with slip via dislocation glide remaining as the dominant carrier of plastic strain in both metals.
机译:通过路径B_C处理进行了高达N = 8的BCC间隙(IF)钢和FCC铜(Cu)的微观结构,纹理和FCC铜(Cu)之间的微观结构,纹理和机械性能之间的比较。通过路径B_C处理通过等通道角挤出(ECAE)。透射电子显微镜(TEM)和电子背散射衍射(EBSD)研究表明,在n = 2通过后,两种金属的变形微观结构从低角度的微生物和位错细胞流向更高的均匀粒子/晶粒结构后,从低角度的微生物和位错细胞中出现。 n = 8次通过后的错误角度。在两个金属中,23和随机边界的百分比上升归因于ECAE期间有利于低能量边界配置的机制。纹理演变涉及多通体中各个组分强度的逐渐变化。通过在两个立方晶系统之间的滑动平面和滑动方向的铣削和滑动方向的铣削和滑动方向进行相关联的BCC和FCC纹理。两种材料的单轴拉伸曲线代表显着的冷加工,并描绘较高的0.2%的抗照应力,均匀的伸长率,颈缩,颈缩,通过几何软化失效。本构型建模表明,而不是变形机制的变化,延展性的保存至n = 8次通过与脱位的平均自由路径的增加有关;;通过位错滑动剩余的位错滑动作为塑性菌株的主导载体金属。

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