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Local elastic properties of a metallic glass
Hannes Wagner,1 Dennis Bedorf,1 Stefan K¨¹chemann,1 Moritz Schwabe,1 Bo Zhang,1 Walter Arnold1, 2 & Konrad Samwer1

Nature Materials   Year published: (2011) DOI: doi:10.1038/nmat3024
        The nature of non-crystalline materials causes the local potential energy of a cluster of atoms or molecules to vary significantly in space. Different configurations of an ensemble of atoms in a metallic glass lead therefore to a distribution of elastic constants which also changes in space. This is totally different to their crystalline counterparts, where a long-range order exists in space and therefore a much more unified elastic modulus is expected. Using atomic force acoustic microscopy, we present data which show that the local so-called indentation modulus M indeed exhibits a wide distribution on a scale below 10 nm in amorphous PdCuSi, with ¦¤M/M¡Ö30%. About 104 atoms are probed in an individual measurement. Crystallized PdCuSi shows a variation that is 10¨C30 times smaller and which is determined by the resolution of the microscope and by the polycrystalline structure of the material.

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Originally posted by weijiao at 2011-05-23 11:40:51:
Local elastic properties of a metallic glass
Hannes Wagner,1 Dennis Bedorf,1 Stefan K¨¹chemann,1 Moritz Schwabe,1 Bo Zhang,1 Walter Arnold1, 2 & Konrad Samwer1

Natur ...

Here is the paper!
4Â¥2011-05-23 17:18:10
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