Title of article
Contributions of atomic diffusion and plastic deformation to the diffusion bonding of metallic glass to crystalline aluminum alloy
Author/Authors
Chen، نويسنده , , H.Y. and Cao، نويسنده , , J. and Liu، نويسنده , , J.K and Song، نويسنده , , X.G. and Feng، نويسنده , , J.C.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
5
From page
179
To page
183
Abstract
A mathematical model was established to estimate the contributions of different mechanisms to the diffusion bonding of Zr-based bulk metallic glass to crystalline aluminum alloy. Additionally, the fraction of contact area with oxide film ϕ was introduced into the model since oxide film is the main barrier to atomic bonding across interface at lower temperature. The model calculation displayed that the plastic deformation of Al alloy dominated the void formation stage, while the homogeneous plastic flow of BMG played a major role in the void shrinkage stage. The joints bonded by two different methods were used to verify the model. The experimental strength of joints achieved by pre-friction assisted diffusion bonding and Ar ion assisted diffusion bonding had a sound fit with the theoretical strength curves of ϕ = 28% and 22.5%, respectively.
Keywords
aluminum alloy , Bulk metallic glass , Oxide film , Diffusion bonding
Journal title
Computational Materials Science
Serial Year
2013
Journal title
Computational Materials Science
Record number
1690593
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