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Equivalent plastic strain gradient plasticity with grain boundary hardening and comparison to discrete dislocation dynamics

机译:具有晶界硬化的等效塑性应变梯度可塑性及与离散位错动力学的比较

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The gradient crystal plasticity framework of Wulfinghoff et al. (Wulfinghoff et al. 2013 Int. J. Plasticity 51, 33-46. (doi:10.1016/j.ijplas.2013.07.001)), incorporating an equivalent plastic strain gamma eq and grain boundary (GB) yielding, is extended with GB hardening. By comparison to averaged results from many discrete dislocation dynamics (DDD) simulations of an aluminium-type tricrystal under tensile loading, the new hardening parameter of the continuum model is calibrated. Although the GBs in the discrete simulations are impenetrable, an infinite GB yield strength, corresponding to microhard GB conditions, is not applicable in the continuum model. A combination of a finite GB yield strength with an isotropic bulk Voce hardening relation alone also fails to model the plastic strain profiles obtained by DDD. Instead, a finite GB yield strength in combination with GB hardening depending on the equivalent plastic strain at the GBs is shown to give a better agreement to DDD results. The differences in the plastic strain profiles obtained in DDD simulations by using different orientations of the central grain could not be captured. This indicates that the misorientation-dependent elastic interaction of dislocations reaching over the GBs should also be included in the continuum model.
机译:Wulfinghoff等人的梯度晶体可塑性框架。 (Wulfinghoff et al.2013 Int.J.Plasticity 51,33-46。(doi:10.1016 / j.ijplas.2013.07.001))扩展了等效塑性应变γeq和晶界(GB)屈服GB硬化。通过与铝型三晶体在拉伸载荷下的许多离散位错动力学(DDD)模拟的平均结果进行比较,对连续模型的新硬化参数进行了校准。尽管离散模拟中的GB值是不可穿透的,但是对应于微硬GB条件的无限GB屈服强度不适用于连续模型。仅将有限的GB屈服强度与各向同性的块状Voce硬化关系结合起来,也无法对通过DDD获得的塑性应变曲线进行建模。取而代之的是,有限的GB屈服强度与GB硬化相结合(取决于GB处的等效塑性应变)显示出与DDD结果更好的一致性。在DDD模拟中通过使用中心晶粒的不同方向获得的塑性应变曲线中的差异无法捕获。这表明在连续模型中也应包括与错位有关的,取向错位的弹性相互作用。

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