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      Variational formulation of generalized interfaces for finite deformation elasticity

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      Author(s)
      Javili, Ali
      Date
      2018
      Source Title
      Mathematics and Mechanics of Solids
      Print ISSN
      1081-2865
      Electronic ISSN
      1741-3028
      Publisher
      SAGE Publications
      Volume
      23
      Issue
      9
      Pages
      1303 - 1322
      Language
      English
      Type
      Article
      Item Usage Stats
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      Abstract
      The objective of this contribution is to formulate generalized interfaces in a variationally consistent manner within a finite deformation continuum mechanics setting. The general interface model is a zero-thickness model that represents the finite thickness “interphase” between different constituents in a heterogeneous material. The interphase may be the transition zone between inclusion and matrix in composites or the grain boundaries in polycrystalline solids. The term “general” indicates that the interface model here accounts for both jumps of the deformation as well as the traction across the interface. Both the cohesive zone model and elastic interface model can be understood as two limits of the current interface model. Furthermore, some aspects of material modeling of generalized interfaces are elaborated and a consistent model is proposed. Finally, the proposed theory is elucidated via a series of numerical examples. © 2017, The Author(s) 2017.
      Keywords
      Finite deformation
      General imperfect interface
      Size effect
      Variational elasticity
      Permalink
      http://hdl.handle.net/11693/36442
      Published Version (Please cite this version)
      http://dx.doi.org/10.1177/1081286517719938
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