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Application of the Complementary Functions Method to an Accurate Elasticity Solution for the Radially Functionally Graded (FG) Rotating Disks with Continuously Variable Thickness and Density

机译:互补函数方法在厚度和密度连续变化的径向功能梯度(FG)转盘的精确弹性解中的应用

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In this work, elastic stress and deformation distribution through the radial direction of FG rotating disks are accurately calculated by employing the complementary functions method. A parabolic variation of the thickness is used for the concave, linear and convex thickness profiles. The inner and outer surfaces of the FG disk are assumed to be ceramic-rich and metal-rich, respectively. Between these two surfaces material properties vary radially according to Mori-Tanaka grading rule. After confirming the present results with the analytical results for the uniform disk with power-law graded rule, the effect due to many parameters such as angular velocity, metal-ceramic pairs, and material grading index on the stresses and displacements is investigated.
机译:在这项工作中,采用互补函数法可以精确地计算出FG转盘沿径向的弹性应力和变形分布。厚度的抛物线变化用于凹形,线性和凸形厚度轮廓。假定FG磁盘的内表面和外表面分别富含陶瓷和金属。在这两个表面之间,材料属性根据Mori-Tanaka渐变规则径向变化。在用幂律分级规则对均匀圆盘的分析结果确认了当前结果之后,研究了由于许多参数(例如角速度,金属陶瓷对和材料分级指数)对应力和位移的影响。

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