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Elasto-Plastic Analysis of Cylindrical Vessel with Arbitrary Material Gradation Subjected to Thermo-Mechanical Loading Via DTM

机译:借助DTM对受热机械载荷作用的任意材料分级的圆柱容器进行弹塑性分析

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For the first time, the response of the functionally graded (FG) hollow cylinder vessel with arbitrary material gradation in radial direction subjected to thermo-mechanical loads is investigated by employing differential transformation method (DTM). The coordinate transformation and proper scale factor are applied to eliminate redundant terms in DTM; as a result, fast convergence with less computational effort is observed. The elasticity modulus, thermal expansion coefficient, thermal conductivity and yield stress are assumed to be arbitrary functions of radius. The thick-walled FG reservoir is in steady-state condition, and strain hardening in plastic zone is neglected by using elastic-perfectly plastic behavior assumptions. The incompressible plastic deformation and plane-strain condition are considered to obtain radial displacement in the plastic zones. The effects of various parameters on commencement and propagation of possible plastic zones, yield pressure and yield temperature gradient are investigated. The analytical solutions for FG cylindrical container with conventional power law gradation are presented. In the case of arbitrary material gradation, the validity of the numerical procedure is proved by observing convergence and good agreement between results of DTM and results of finite element software Abaqus.
机译:首次采用微分变换法(DTM)研究了径向上具有任意材料梯度的功能梯度(FG)空心圆柱容器在热机械载荷下的响应。应用坐标变换和适当的比例因子以消除DTM中的多余项;结果,观察到快速收敛且计算量较小。假定弹性模量,热膨胀系数,导热系数和屈服应力是半径的任意函数。厚壁FG储层处于稳态,通过使用弹性完全塑性行为假设,可忽略塑性区的应变硬化。考虑了不可压缩的塑性变形和平面应变条件,以在塑性区获得径向位移。研究了各种参数对可能的塑性区的开始和传播,屈服压力和屈服温度梯度的影响。提出了具有常规功率定律的FG圆柱容器的解析解。在任意材料渐变的情况下,通过观察DTM结果与有限元软件Abaqus结果之间的收敛性和良好一致性,证明了数值程序的有效性。

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