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GDQ ANALYSIS OF UNSTEADY CREEP IN A ROTATING TEMPERATURE-DEPENDENT FGM DISK

机译:旋转温度依赖性FGM磁盘中不稳定蠕变的GDQ分析

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摘要

Primary (unsteady) and secondary (steady) regimes of creep deformation of a rotating disk made of an Al-SiC functionally graded material (FGM) is investigated using the generalized differential quadrature (GDQ) method. The disk is subjected to three different types of the temperature gradient in the radial direction, and a temperature dependence of the material properties is assumed. The primary and secondary creep is described by Norton's law in which the creep parameters depend on the volume fraction distribution of SiC reinforcement particles, temperature, and particle size. It is shown that the creep rates are strongly dependent on the temperature gradient type, prevailing temperature, and content of reinforcing particles at any point of the disk.
机译:使用广义差分正交(GDQ)方法研究由Al-SiC功能梯度料(FGM)制成的旋转盘的蠕变变形的主(不稳定)和次要(稳定)制度。 将盘在径向方向上进行三种不同类型的温度梯度,并且假设材料特性的温度依赖性。 诺顿的法律描述了初级和二次蠕变,其中蠕变参数取决于SiC增强颗粒,温度和粒度的体积分数分布。 结果表明,蠕变速率强烈依赖于在盘的任何点处加固颗粒的温度梯度型,普遍的温度和含量。

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