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首页> 外文期刊>Acta Materialia >MECHANISM OF TWINNING-INDUCED GRAIN BOUNDARY ENGINEERING IN LOW STACKING-FAULT ENERGY MATERIALS
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MECHANISM OF TWINNING-INDUCED GRAIN BOUNDARY ENGINEERING IN LOW STACKING-FAULT ENERGY MATERIALS

机译:低堆垛力能材料中孪生诱发晶界工程的机理

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摘要

The current status of “grain boundary engineering” is overviewed, i.e. the deliberate manipu- lation of grain boundary crystallography in polycrystals in order to produce a material containing grain boundaries which have superior properties compared to average boundaries. A particular focus of attention is annealing twinning in low stacking-fault energy (SFE) materials as a means to achieve this aim, since the role of such twinning in improving the grain boundary network has not hitherto been satisfactorily explained. The twinning is discussed from the viewpoint of strain retention, imposition of crystallographic constraints at grain junctions, “relative specialness” rather than “absolute specialness” and proposal of a new “∑3 regeneration model” to explain how twins can enhance the ∑3 boundary fraction in the network.
机译:概述了“晶界工程”的当前状态,即在多晶中刻意操纵晶界晶体学,以生产一种包含晶界的材料,该材料具有比平均晶界更好的性能。由于迄今为止尚未令人满意地说明这种孪晶在改善晶界网络中的作用,因此特别关注的焦点是在低堆垛层错能量(SFE)材料中对孪晶进行退火,以实现该目的。从应变保留,在晶界处施加晶体学约束,“相对特殊性”而非“绝对特殊性”以及提出新的“ ∑3再生模型”的角度来讨论孪晶如何解释孪晶如何增强∑3边界的角度,讨论了孪晶。网络中的小部分。

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