首页> 外文期刊>Journal of thermal stresses >DYNAMIC RESPONSE CONTROL OF ROTATING COMPOSITE BOOMS UNDER SOLAR RADIATION
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DYNAMIC RESPONSE CONTROL OF ROTATING COMPOSITE BOOMS UNDER SOLAR RADIATION

机译:太阳辐射下旋转复合材料箱的动力响应控制

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This paper deals with the thermally induced dynamic response analysis of a composite blade rotating at a constant speed. Fiber-reinforced composite thin-walled beam are used in a variety of aerospace applications, including helicopter rotor blades, tilt rotor aircraft, turbine engines, compressor blades, only to name a few. The composite beam is modeled as a tapered thin-walled beam which is subjected to a temperature field. A number of non-classical features such as transverse shear, secondary warping, anisotropy of constituent materials, and rotary inertias have been included in the model. The structure of the blade consists of a host graphite epoxy laminate with spanwise distributed transversely isotropic (PZT-4) sensors and actuators. The discussed results reveal that the thermal environment has a detrimental effect on the blade dynamic response. The active controller is implemented via the combined displacement and velocity feedback control methodology, which can alleviate the deleterious effect associated with the thermally induced dynamic response.
机译:本文研究了以恒定速度旋转的复合材料叶片的热诱导动态响应分析。纤维增强复合材料薄壁梁用于各种航空航天应用,包括直升机旋翼桨叶,倾斜旋翼飞机,涡轮发动机,压缩机叶片,仅举几例。复合梁被建模为受到温度场作用的锥形薄壁梁。该模型包括许多非经典特征,例如横向剪切,二次翘曲,组成材料的各向异性和旋转惯性。叶片的结构由主体石墨环氧层压板组成,该层压板具有沿展向分布的横向各向同性(PZT-4)传感器和执行器。讨论的结果表明,热环境对叶片动力响应具有不利影响。通过组合的位移和速度反馈控制方法实现主动控制器,可以减轻与热感应动态响应相关的有害影响。

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