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Metal Working and Dislocation Structures

机译:金属加工和位错结构

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摘要

Microstructural observations are presented for different metals deformed from low to high strain by both traditional and new metal working processes. It is shown that deformation induced dislocation structures can be interpreted and analyzed within a common framework of grain subdivision on a finer and finer scale down to the nanometer dimension, which can be reached at ultrahigh strains. It is demonstrated that classical materials science and engineering principles apply from the largest to the smallest structural scale but also that new and unexpected structures and properties characterize metals with structures on the scale from about 10 nm to 1 μm.
机译:提出了通过传统和新的金属加工工艺从低应变变形到高应变的不同金属的微观结构观察。结果表明,变形诱发的位错结构可以在晶粒细分的共同框架内以越来越细的尺度解释和分析,直至纳米尺度,而超高应变可以达到。结果表明,经典材料科学和工程原理适用于从最大到最小的结构尺寸,但是新的和出乎意料的结构和性能也可以表征具有大约10 nm至1μm尺寸结构的金属。

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