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Flutter analysis of hybrid metal-composite low aspect ratio trapezoidal wings in supersonic flow
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作者 shokrollahi saeed Shafaghat Salman 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2017年第1期196-203,共8页
An effective 3D supersonic Mach box approach in combination with non-classical hybrid metal-composite plate theory has been used to investigate flutter boundaries of trapezoidal low aspect ratio wings. The wing struct... An effective 3D supersonic Mach box approach in combination with non-classical hybrid metal-composite plate theory has been used to investigate flutter boundaries of trapezoidal low aspect ratio wings. The wing structure is composed of two main components including aluminum material(in-board section) and laminated composite material(out-board section). A global Ritz method is used with simple polynomials being employed as the trial functions. The most important objective of the present research is to study the effect of composite to metal proportion of hybrid wing structure on flutter boundaries in low supersonic regime. In addition, the effect of some important geometrical parameters such as sweep angle, taper ratio and aspect ratio on flutter boundaries were studied. The results obtained by present approach for special cases like pure metallic wings and results for high supersonic regime based on piston theory show a good agreement with those obtained by other investigators. 展开更多
关键词 Assumed mode method FLUTTER Hybrid trapezoidal plateMach box method Supersonic flow
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