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hslining

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Effects of size on the mechanical response of metallic glasses investigated through in situ TEM bending and compression experiments

C.Q. Chena, Y.T. Peia and J.T.M. De Hosson, a,

aDepartment of Applied Physics, Materials Innovation Institute (M2i), University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands

Received 9 July 2009;  
revised 28 August 2009;  
accepted 31 August 2009.  
Available online 8 October 2009.

Abstract

Quantitative bending and compression tests on micropillars made of two different amorphous alloys, with tip diameters ranging from 93 to 645 nm, are performed in situ in a transmission electron microscope (TEM). Under microcompression each pillar shows an intermittent plastic flow accommodated by inhomogeneous shear banding. However, the individual shear banding events are strongly size-dependent, i.e. in larger pillars the deformation is controlled by nucleation of shear bands, but in smaller pillars it becomes propagation-controlled. On the other hand, the yield stress is essentially size-independent. Microbending tests show further advantages by amplifying size effects and minimizing artifacts. An interesting finding is that by microbending, a switch from highly inhomogeneous to fully homogeneous deformation is observed at an experimentally accessible size regime near 200 nm, whereas it is not accessible under microcompression, even at a sub-100 nm scale. These size effects are well interpreted by a micromechanical model, leading to a deformation map in the stress-size space. A physical picture of nanoscale shear localization process is also provided.

Keywords: Transmission electron microscopy (TEM); Amorphous metals; Mechanical properties
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hslining

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Effects of size on the mechanical response of metallic glasses investigated through in situ TEM bending and compression experiments
Acta Materialia, Volume 58, Issue 1, January 2010, Pages 189-200
C.Q. Chen, Y.T. Pei, J.T.M. De Hosson

PDF (1504 K)

[ Last edited by hslining on 2009-12-29 at 09:11 ]
2楼2009-12-29 09:09:12
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yjs618

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★★★★★ 五星级,优秀推荐

学习!
好东西
3楼2009-12-31 19:13:24
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gjhao

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非晶的力学性能还是那么热阿呵呵
4楼2010-04-15 22:58:41
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gaomeng217

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很好的资源,谢谢版主啊
5楼2011-01-19 09:39:04
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