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Denuded Zones, Diffusional Creep, and Grain Boundary Sliding

机译:剥蚀区,扩散蠕变和晶界滑动

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摘要

The appearance of denuded zones following low stress creep in particle-containing crystalline materials is both a microstructural prediction and observation often cited as irrefutable evidence for the Nabarro-Herring (N-H) mechanism of diffusional creep. The denuded zones are predicted to be at grain boundaries that are orthogonal to the direction of the applied stress. Furthermore, their dimensions should account for the accumulated plastic flow.In the present article, the evidence for such denuded zones is critically examined. These zones have been observed during creep of magnesium, aluminum, and nickel-base alloys. The investigation casts serious doubts on the apparently compelling evidence for the link between denuded zones and diffusional creep. Specifically, denuded zones are clearly observed under conditions that are explicitly not diffusional creep. Additionally, the denuded zones are often found in directions that are not orthogonal to the applied stress.Other mechanisms that can account for the observations of denuded zones are discussed. It is proposed that grain boundary sliding accommodated by slip is the rate-controlling process in the stress range where denuded zones have been observed. It is likely that the denuded zones are created by dissolution of precipitates at grain boundaries that are simultaneously sliding and migrating during creep.
机译:低应力蠕变在含颗粒的晶体材料中出现后,剥蚀区的出现既是微观结构预测,又是观察,通常被认为是Nabarro-Herring(N-H)扩散蠕变机理的不可辩驳的证据。预计剥蚀区位于与外加应力方向正交的晶界处。此外,它们的尺寸应考虑到累积的塑性流动。在本文中,对这种剥落区域的证据进行了严格的检查。在镁,铝和镍基合金的蠕变过程中已观察到这些区域。这项调查使人们对裸露区域与扩散蠕变之间联系的明显证据产生了严重怀疑。具体而言,在明显不是扩散蠕变的条件下,可以清楚地观察到剥蚀区。此外,通常在与施加应力不正交的方向上发现了剥蚀区。讨论了可以解释剥蚀区观察结果的其他机制。有人提出,滑移所能容纳的晶界滑动是在观察到剥蚀区的应力范围内的速率控制过程。可能是由于析出物在晶界处的溶解而形成了剥蚀区,这些晶界在蠕变过程中同时滑动和迁移。

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