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On the optimum design of rotating two-layered composite tubes subject to internal heating or pressure

机译:关于内部受热或受压旋转两层复合管的最佳设计

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摘要

Subject of this analytical investigation is a rotating two-layered hollow cylinder under generalized plane strain subject to an elevated temperature at the inner surface or to internal pressure. It is presupposed that the inner cylindrical layer consists of the heavier material, whereas the outer layer is made of a material with lower density, like for example in a steel/aluminum tube. Criterion for the maximum permissible stress is the yield criterion by von Mises, and the device is optimized with respect to its weight. It is found that plasticization may start at different radii, and the study provides not only a comprehensive overview of the elastic limits of composite tubes of the above type but also a straightforward procedure for determining the optimum composition.
机译:该分析研究的主题是旋转的两层空心圆柱体,其在广义平面应变下承受内表面温度升高或内部压力升高。假定内圆柱层由较重的材料组成,而外层由密度较低的材料制成,例如在钢/铝管中。冯·米塞斯(von Mises)的屈服准则是最大允许应力的标准,并且对设备进行了重量优化。发现增塑可能始于不同的半径,并且该研究不仅提供了上述类型的复合管的弹性极限的全面概述,而且提供了确定最佳组成的简单方法。

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