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首页> 外文期刊>Механика композитных материалов: Науч.-теорет. журн. >STRESS ANALYSIS FOR A THICK RECTANGULAR PLATE OF A COMPOSITE MATERIAL WITH A SPATIALLY PERIODICALLY CURVED STRUCTURE UNDER FORCED VIBRATION
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STRESS ANALYSIS FOR A THICK RECTANGULAR PLATE OF A COMPOSITE MATERIAL WITH A SPATIALLY PERIODICALLY CURVED STRUCTURE UNDER FORCED VIBRATION

机译:周期性振动下空间呈周期性弯曲的复合材料厚矩形板的应力分析

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摘要

Natural and forced vibrations of a thick rectangular plate fabricated from a composite material with a spatially periodically curved structure are investigated with the use of exact three-dimensional equations of motion of the theory of elastic anisotropic bodies. The investigations are carried out within the framework of the continuum approach developed by Akbarov and Guz'. It is supposed that the plate is clamped at all its edges and is loaded on the upper face by uniformly distributed normal forces periodically changing with time. The influence of curving parameters on the fundamental frequency of the plate and on the distribution of the normal stress acting in the thickness direction under forced vibration is studied. The corresponding boundary-value problems are solved numerically by employing the three-dimensional FEM modeling.
机译:使用具有各向异性弹性体理论的精确三维运动方程,研究了由具有空间周期性弯曲结构的复合材料制成的厚矩形板的自然振动和强迫振动。调查是在Akbarov和Guz'开发的连续方法的框架内进行的。可以认为,该板在其所有边缘处都被夹紧,并通过均匀分布的法向力加载到上表面,该法向力随时间周期性地变化。研究了弯曲参数对板基频和强迫振动作用下沿厚度方向作用的法向应力分布的影响。通过采用三维有限元建模,数值求解了相应的边值问题。

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