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Optimizing the composition profile of a functionally graded interlayer using a direct transcription method

机译:使用直接转录方法优化功能梯度中间层的组成特征

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摘要

We consider a three-layer cylinder consisting of a functionally graded interlayer sandwiched between a metallic layer and a ceramic layer, and address the problem of finding the interlayer composition profile minimizing the stresses resulting from material property mismatch and induced in the cylinder by temperature and pressure loading. First, we present various ways of formulating the continuous minimization problem as a thermoelastic optimal control problem, where the control is the volume fraction of either of the constituents of the interlayer, the metal or the ceramic. A direct transcription method is then used to discretize the continuous problem into a finite dimensional nonlinear optimization problem. Lastly, we present a numerical solution to the discretized problem for a specific case. Interestingly, this solution is such that the overall material distribution contains a discontinuity in volume fraction, and therefore in material properties, at the interface between the metal and the graded interlayer
机译:我们考虑了一个三层圆柱体,该圆柱体由夹在金属层和陶瓷层之间的功能梯度中间层组成,解决了寻找层间组成轮廓的问题,该特征使因材料特性不匹配而产生的应力最小化,并且该应力是由于温度和压力在圆柱体内引起的加载中。首先,我们提出将连续最小化问题表述为热弹性最佳控制问题的各种方法,其中控制是中间层,金属或陶瓷中任一成分的体积分数。然后使用直接转录方法将连续问题离散化为有限维非线性优化问题。最后,针对特定情况,我们提出了离散问题的数值解。有趣的是,这种解决方案使得整个材料分布在金属和渐变中间层之间的界面处包含体积分数的不连续性,因此在材料特性方面不连续。

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