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Effects of Material Constructions on Supersonic Flutter Characteristics for Composite Rectangular Plates Reinforced with Carbon Nano-structures

机译:用碳纳米结构加固复合矩形板超音速颤动特性的材料结构的影响

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摘要

In this paper effects of material constructions on natural frequencies and critical aerodynamic pressures are investigated. It is assumed that the rectangular plate is made of a polymeric matrix reinforced with graphene nanoplatelets or carbon nanotubes. A general closed analytical method of solution is presented. It is demonstrated that three parameters define entirely the location of the critical flutter pressure. The influence of material properties and transverse shear effects is characterized by a set of multipliers. They can be easily adopted in design procedures.
机译:在本文中,研究了材料结构对自然频率和临界空气动力学压力的影响。假设矩形板由用石墨烯纳米片或碳纳米管加强的聚合物基质制成。提出了一般的封闭解析方法。据证明,三个参数完全定义临界颤动压力的位置。材料性能和横向剪切效应的影响特征在于一组乘法器。它们可以轻松地在设计程序中采用。

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