Critical speeds analysis of spinning laminated composite shaft based on isogeometric analysis

Z. Kheladi, S. M. Hamza-cherif, M. E. A. Ghernaout
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Abstract

Abstract This article presents the critical speed analysis of spinning laminated composite shaft under the different coupling mechanism effects based on isogeometric analysis. The analysis of the layered tubular composite shaft is usually performed using shell elements, but the present study concerns with the equivalent single layer theory (ESLT) obtained from the transformation of the cylindrical coordinates to the Cartesian coordinates and therefore, it avoids the use of non-uniform rational Bsplines. The results obtained are in good agreement with the modified EMBT and the modified SHBT. It is found that the proposed approach can yield highly accurate solutions compared with other existing methods available in the literature. In addition, the numerical results of critical speeds are obtained and investigated under the Poisson’s effects and different mechanism coupling effects, length-to-mean diameter ratios, and stacking sequence of layers.
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基于等几何分析的旋压复合材料轴临界转速分析
基于等几何分析方法,对不同耦合机制作用下旋压复合材料轴的临界转速进行了分析。层状管状复合轴的分析通常使用壳单元进行,但本研究采用等效单层理论(ESLT),将柱坐标转换为笛卡尔坐标,从而避免使用非均匀有理b样条。所得结果与改性EMBT和改性SHBT相吻合。与文献中现有的方法相比,所提出的方法可以产生高度精确的解。此外,在泊松效应和不同机制耦合效应、长径比、层层叠加顺序等条件下,得到了临界速度的数值计算结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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