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通过正电子湮灭和膨胀测量的互补技术研究块状纳米晶金属中的自由体积。

Free volumes in bulk nanocrystalline metals studied by the complementary techniques of positron annihilation and dilatometry.

作者信息

Würschum Roland, Oberdorfer Bernd, Steyskal Eva-Maria, Sprengel Wolfgang, Puff Werner, Pikart Philip, Hugenschmidt Christoph, Pippan Reinhard

机构信息

Institute of Materials Physics, Graz University of Technology, Petersgasse 16, A-8010 Graz, Austria.

出版信息

Physica B Condens Matter. 2012 Jul 15;407(14):2670-2675. doi: 10.1016/j.physb.2012.01.090.

Abstract

Free-volume type defects, such as vacancies, vacancy-agglomerates, dislocations, and grain boundaries represent a key parameter in the properties of ultrafine-grained and nanocrystalline materials. Such free-volume type defects are introduced in high excess concentration during the processes of structural refinement by severe plastic deformation. The direct method of time-differential dilatometry is applied in the present work to determine the total amount and the kinetics of free volume by measuring the irreversible length change upon annealing of bulk nanocrystalline metals (Fe, Cu, Ni) prepared by high-pressure torsion (HPT). In the case of HPT-deformed Ni and Cu, distinct substages of the length change upon linear heating occur due to the loss of grain boundaries in the wake of crystallite growth. The data on dilatometric length change can be directly related to the fast annealing of free-volume type defects studied by Doppler broadening measurements performed at the high-intensity positron beam of the FRM II (Garching, Munich, Germany).

摘要

自由体积型缺陷,如空位、空位团聚体、位错和晶界,是超细晶粒和纳米晶材料性能的关键参数。在通过严重塑性变形进行结构细化的过程中,此类自由体积型缺陷会以极高的浓度引入。本工作采用时间差示膨胀法,通过测量高压扭转(HPT)制备的块状纳米晶金属(Fe、Cu、Ni)退火时的不可逆长度变化,来确定自由体积的总量和动力学。对于HPT变形的Ni和Cu,由于微晶生长后晶界的消失,在线性加热时长度变化会出现明显的子阶段。膨胀测量的长度变化数据可直接与在德国慕尼黑加兴的FRM II高强度正电子束上进行的多普勒展宽测量所研究的自由体积型缺陷的快速退火相关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea4d/3587340/b8592bc61064/gr1.jpg

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