• on large-strain finite element solutions of higher-order gradient crystal plasticity

    نویسندگان :
    جزئیات بیشتر مقاله
    • تاریخ ارائه: 1392/01/01
    • تاریخ انتشار در تی پی بین: 1392/01/01
    • تعداد بازدید: 822
    • تعداد پرسش و پاسخ ها: 0
    • شماره تماس دبیرخانه رویداد: -
     a finite-strain higher-order gradient crystal plasticity model accounting for the backstress effect originating from the existence of geometrically necessary dislocations (gnds) is applied to plane strain finite element analysis. different element types are tested to seek out an element formulation that is reliable and useful for solving problems involving severe plastic deformation. in the present finite element formulation, the gnd density rates are chosen to be additional nodal degrees of freedom. different orders of shape functions are employed for the interpolation of displacement rates and gnd density rates. their effects on solutions are examined in detail by considering three boundary value problems: a simple shear of a constrained layer (a film), a compression problem with loading surfaces impenetrable to dislocations, and a tension problem involving shear band formation. in all the cases, the formulation in which eight-node elements with reduced integration and four-node elements with full integration are used respectively for displacement rates and the gnd density rates gives reasonable solutions. in addition to the discussion on the choice of finite elements, detailed behavior in gradient-dependent solids, such as the accumulation of gnd density and the distribution of backstress on each slip system, is investigated by utilizing the reliable computational results obtained.

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