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首页> 外文期刊>Acta astronautica >Investigations on the influences of elastic foundations on the aerothermoelastic flutter and thermal buckling properties of lattice sandwich panels in supersonic airflow
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Investigations on the influences of elastic foundations on the aerothermoelastic flutter and thermal buckling properties of lattice sandwich panels in supersonic airflow

机译:超声速气流中弹性地基对格子夹层板空气热弹性颤振和热屈曲性能的影响

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摘要

The lattice sandwich panels supported on elastic mediums are often applied in the construction of aerospace structures because of the low specific weight, excellent bending rigidity and outstanding vibration properties. This elastic medium can be any spring materials including damping tapes or heat shields which are attached to one side of the sandwich panel. Therefore, in this paper, aerothermoelastic flutter and thermal buckling characteristics of sandwich panels with the pyramidal lattice core resting on elastic foundations in supersonic airflow are studied. The influences of geometrical parameters and elastic foundation on the panel flutter and thermal buckling of the structures are analyzed in detail. In the structural modeling, the first-order shear deformation theory is applied, and the effective material properties of the lattice core are used. The aerodynamic pressure is evaluated by the supersonic piston theory. Hamilton's principle and the assumed modes method are applied to formulate the equation of motion. The highlight point of this investigation is that an effective thermal buckling suppression method utilizing the elastic foundation is proposed, based on which the thermal buckling of the structure can be completely eliminated with the natural frequencies remaining unchanged when the shearing layer parameter is equal to the thermal load. Through the numerical results, the influences of the elastic foundation, aspect ratio, core-to-facesheet thickness ratio, and inclination angle of the core truss on the aerothermoelastic behaviors of the lattice sandwich panel are analyzed, and the thermal buckling elimination effects are also examined.
机译:支撑在弹性介质上的格子夹层板由于其低的比重,优异的抗弯刚度和出色的振动性能而常用于航空航天结构的构造。该弹性介质可以是任何弹簧材料,包括附在夹心板一侧的阻尼带或隔热罩。因此,本文研究了超声速气流中金字塔形晶格芯置于弹性基础上的夹芯板的热弹性弹动和热屈曲特性。详细分析了几何参数和弹性基础对面板颤振和结构热屈曲的影响。在结构建模中,应用了一阶剪切变形理论,并利用了晶格芯的有效材料特性。气动压力通过超音速活塞理论进行评估。采用汉密尔顿原理和假定模态方法来制定运动方程。这项研究的重点是提出了一种有效的利用弹性基础的热屈曲抑制方法,在此基础上,当剪力层参数等于热应力时,固有频率保持不变,可以完全消除结构的热屈曲。加载。通过数值结果,分析了弹性基础,长宽比,芯板厚度比和芯桁架的倾斜角度对格构夹芯板的热弹性行为的影响,并且还消除了热屈曲的影响。检查。

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