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首页> 外文期刊>Iranian Journal of Science and Technology, Transactions of Mechanical Engineering >A Study of Shrink-Fitting for Optimal Design of Multi-Layer Composite Tubes Subjected to Internal and External Pressure
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A Study of Shrink-Fitting for Optimal Design of Multi-Layer Composite Tubes Subjected to Internal and External Pressure

机译:内外压力作用下多层复合管热缩优化设计研究

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摘要

This paper addresses the effect of shrink-fitting on the optimal design of pressurized multi-layer composite tubes. Analytical solutions for structural response calculations are provided for axially constrained two- and three-layer shrink-fitted tubes under both internal and external pressure. A recently developed numerical evolutionary optimization algorithm is employed for weight and cost minimization of these assemblies. In order to investigate the effect of shrink-fitting, first, optimal material selection and thickness optimization of tightly fitted tubes, under either internal or both internal and external pressure, are accomplished without shrink-fitting. Next, under the same loading and boundary conditions the assemblies are optimized where shrink-fitting parameters are taken into account for weight and cost minimization. The numerical results obtained for multi-layer composite tubes with and without shrink-fitting indicate that more economical or lightweight assemblies can be obtained if shrink-fitting parameters are treated as additional design variables of the optimization problem. Furthermore, it is observed that considering the shrink-fitting parameters for optimal design becomes more advantageous in the test cases with a higher ratio of internal pressure to external pressure.
机译:本文讨论了收缩配合对加压多层复合管的优化设计的影响。为轴向约束的两层和三层热缩管在内部和外部压力下提供了用于结构响应计算的分析解决方案。最近开发的数值进化优化算法被用于使这些组件的重量和成本最小化。为了研究热压配合的效果,首先,在不进行热压配合的情况下,无论是在内部压力还是内部和外部压力下,都可以实现紧配合管的最佳材料选择和厚度优化。接下来,在相同的载荷和边界条件下,对组件进行优化,并考虑到收缩配合参数,以最小化重量和成本。对于具有和没有收缩配合的多层复合管所获得的数值结果表明,如果将收缩配合参数作为优化问题的附加设计变量,则可以获得更经济或更轻便的组件。此外,可以看出,在内部压力与外部压力之比较高的测试案例中,考虑将收缩配合参数用于最佳设计变得更加有利。

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