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Thermoelastic creep analysis of a functionally graded various thickness rotating disk with temperature-dependent material properties

机译:具有温度依赖性材料特性的功能梯度不同厚度旋转盘的热弹性蠕变分析

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摘要

A semi-analytical solution for rotating axisymmetric disks made of functionally graded materials was previously proposed by Hosseini Kordkheili and Naghdabadi [1]. In the present work the solution is employed to study thermoelastic creep behavior of the functionally graded rotating disks with variable thickness in to the time domain. The rate type governing differential equations for the considered structure are derived and analytically solved in terms of rate of strain as a reduced to a set of linear algebraic equations. The advantage of this method is to avoid simplifications and restrictions which are normally associated with other creep solution techniques in the literature. The thermal and structural properties of the base metal are also considered as a function of temperature. It is noted that ignoring the temperature dependency of these properties caused up to 200% errors in the creep solution results. Also, results for the strain rates presented due to centrifugal force and thermal loadings for different disk cross section profiles as well as different boundary conditions. Results obtained within this solution are verified with those available in the literature for easier cases.
机译:Hosseini Kordkheili和Naghdabadi先前曾提出过一种由功能梯度材料制成的旋转轴对称圆盘的半解析解法[1]。在目前的工作中,该解决方案被用来研究在时域中具有可变厚度的功能梯度转盘的热弹性蠕变行为。推导所考虑结构的速率类型控制微分方程,并根据应变率简化为一组线性代数方程,并进行解析求解。该方法的优点是避免了通常与文献中其他蠕变解决方案技术相关的简化和限制。贱金属的热和结构性质也被认为是温度的函数。要注意的是,忽略这些特性的温度依赖性会导致蠕变结果中的误差高达200%。同样,对于不同的圆盘横截面轮廓以及不同的边界条件,由于离心力和热负荷而产生的应变率结果。对于更简单的情况,该解决方案中获得的结果与文献中提供的结果进行了验证。

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