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Warping torsion of FGM beams with spatially varying material properties

机译:具有空间变化材料特性的FGM梁的翘曲扭转

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This contribution extends the author's previous research results concerning effect of spatially varying material properties on warping torsion of beams with open cross-section made of Functionally Graded Material (FGM). The author's FGM WT beam finite element is used in the calculations of the primary quantities. The secondary deformations due to the angle of twist is considered. The warping part of the first derivative of the twist angle, caused by the bimoment, is accounted as an additional degree of freedom at the beam nodes. The author's Reference Beam Method, (RBM), is used for homogenization of the spatially varying material properties in the real beam onto effective constant or longitudinally varying stiffnesses for the homogenized beam. Enhanced equations for calculation of the normal and shear stresses with the influence of the deformation effect caused by the primary and secondary torsion moment are established. These equations also contain effect of the warping ordinate function and its gradients that depend on spatially varying material properties. The focus of the numerical investigation is on non-uniform torsional analysis of straight FGM cantilever beams with I-cross-section. An effect of the warping ordinate function and its gradients on the normal and shear stresses is evaluated and discussed. A significant effect of the spatial variability of material properties on the deformation as well as on the stress state in the FGM beams with I-cross-section, has been found. The real beams with spatially varying material properties are modelled with only a single FGM WT beam finite element. Obtained results for the primary and secondary variables are compared with the ones calculated by a very fine mesh of standard 3D-solid finite elements. A very good agreement of all the results has been achieved.
机译:这一贡献扩展了作者之前的研究成果,即空间变化的材料特性对功能梯度材料(FGM)开放截面梁翘曲扭转的影响。作者的FGM WT束有限元用于初级量的计算。考虑了由于扭转角度引起的二次变形。由双矩引起的扭转角一阶导数的翘曲部分被解释为光束节点处的附加自由度。作者的参考梁法(RBM)用于将真实梁中空间变化的材料属性均匀化为均质梁的有效恒定或纵向变化刚度。建立了法向应力和剪切应力的增强方程,计算了一次和二次扭转力矩引起的变形效应的影响。这些方程还包含翘曲纵坐标函数及其梯度的影响,这些梯度取决于空间变化的材料属性。数值研究的重点是工字截面直FGM悬臂梁的非均匀扭转分析。评估并讨论了翘曲纵坐标函数及其梯度对法向应力和剪切应力的影响。研究发现,材料特性的空间变异性对工字截面FGM梁的变形和应力状态有显著影响。仅使用单个 FGM WT 梁有限元对具有空间变化材料属性的真实梁进行建模。将获得的一级和二级变量的结果与由标准三维实体有限元的非常精细网格计算的结果进行比较。所有结果都达成了很好的一致意见。

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