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Effect of Aspect Ratio on the Deformation Behavior of Dislocation-Free Ni

机译:纵横比对无位错位的变形行为的影响

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摘要

This study concentrates on several factors which govern the nanoscale plasticity of in situ compressed dislocation-free Ni3Al nanocubes: cube size, aspect ratio and the presence of grooves. The yield strength of dislocation-free Ni3Al nanocubes exhibits an apparent size dependence. The size dependence is strong when cubes are smaller than 300 nm. Compared with the strength of bulk Ni3Al single crystals, the strength of nanocubes is two orders of magnitude higher, which clearly demonstrates that there is a size effect. Nanocube plasticity strongly depends on the alignment and the shape of the cubes. Deformed aligned nanocubes either display only a few localized deformation events (slip lines) or were homogenously compressed into flats due to multiple slip dislocation-mediated plasticity. For an aligned cube, crack initiation at the intersection of a slip line with a groove in the cube surface was observed. In case of a double cube, crack initiation occurs at surface irregularities, while subsequent crack propagation occurs along one or more slip planes.
机译:本研究专注于几个因素,该因素控制原位压缩脱位Ni3A1纳米孔的纳米级可塑性:立方体尺寸,纵横比和凹槽的存在。不脱位Ni3Al纳米孔的屈服强度表现出表观尺寸依赖性。当立方体小于300nm时,尺寸依赖性很强。与散装Ni3Al单晶的强度相比,纳米尺寸的强度是两个数量级,这清楚地表明存在尺寸效果。 NanoCube可塑性强烈取决于立方体的对准和形状。变形对齐的纳米尺寸仅显示少量局部变形事件(滑线)或由于多次滑移位错介导的塑性而均匀地压缩成平板。对于对准的立方体,观察到在立方体表面中具有凹槽的滑管的交叉线的裂纹开始。在双立方体的情况下,在表面不规则性下发生裂纹开始,而随后的裂纹传播沿一个或多个滑架发生。

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