Alipour Atefeh, Reese Stefanie, Svendsen Bob, Wulfinghoff Stephan
Institute for Materials Science, Kiel University, 24105 Kiel, Germany.
Institute of Applied Mechanics, RWTH Aachen, Mies-van-der-Rohe-Str. 1, Aachen 52074, Germany.
Proc Math Phys Eng Sci. 2020 Mar;476(2235):20190581. doi: 10.1098/rspa.2019.0581. Epub 2020 Mar 11.
The main goal of the current work is to present a grain boundary model based on the mismatch between adjacent grains in a geometrically nonlinear crystal viscoplasticity framework including the effect of the dislocation density tensor. To this end, the geometrically nonlinear crystal viscoplasticity theory by Alipour (Alipour A . 2019 , 17-35. (doi:10.1016/j.ijplas.2019.01.009)) is extended by a more complex free energy and a geometrical transmissibility parameter is used to evaluate the dislocation transmission at the grain boundaries which includes the orientations of slip directions and slip plane normals. Then, the grain boundary strength is evaluated based on the misorientation between neighbouring grains using the transmissibility parameter. In some examples, the effect of mismatch in adjacent grains on the grain boundary strength, the dislocation transmission at the grain boundaries and the Hall-Petch slope is discussed by a comparison of two-dimensional random-oriented polycrystals and textured polycrystals under shear deformation.
当前工作的主要目标是在包含位错密度张量效应的几何非线性晶体粘塑性框架内,基于相邻晶粒间的失配提出一种晶界模型。为此,Alipour提出的几何非线性晶体粘塑性理论(Alipour A. 2019, 17 - 35. (doi:10.1016/j.ijplas.2019.01.009))通过一个更复杂的自由能进行了扩展,并使用一个几何传递性参数来评估晶界处的位错传输,该参数包括滑移方向和滑移面法线的取向。然后,利用传递性参数基于相邻晶粒间的取向差来评估晶界强度。在一些示例中,通过比较二维随机取向多晶体和织构多晶体在剪切变形下的情况,讨论了相邻晶粒间失配对晶界强度、晶界处的位错传输以及霍尔 - 佩奇斜率的影响。