Effect of Trapezoidal Shapes on the Thermal Buckling Behaviour of Perforated Composite Plates

IF 1.5 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
R. Maharudra, T. Rajanna, B. Arya
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引用次数: 2

Abstract

Abstract Thermal buckling study on the symmetric laminated composite trapezoidal plate with a circular cutout subjected to a uniform increase in temperature for various boundary conditions is explored in this paper. In a mathematical model, the first-order shear deformation principle is employed in accordance with the variational energy system. For acquiring the thermal buckling temperature, a nine-node heterosis plate relation has been used in the finite element formulation. By correlating the present findings with accessible literature, the effectiveness of the present formulation is verified. The impact of different parameters, such as trapezoidal shape, cutout size, ply-orientation, plate edge conditions and plate width to thickness ratio have been considered to study the effect of each parameters on the buckling characteristics of plate under various temperatures. It is observed from the study that each parametric investigation significantly affect the thermal buckling behaviour of trapezoidal plates.
梯形形状对多孔复合材料板热屈曲行为的影响
摘要本文研究了带圆形切口的对称层合复合材料梯形板在不同边界条件下温度均匀升高的热屈曲问题。在数学模型中,根据变分能量系统,采用一阶剪切变形原理。为了获得热屈曲温度,在有限元公式中采用了九节点异形板关系。通过将本研究结果与可访问的文献相关联,验证了本公式的有效性。考虑了梯形形状、切口尺寸、夹板方向、板边条件和板宽厚比等不同参数的影响,研究了各参数对不同温度下板屈曲特性的影响。研究发现,各参数对梯形板的热屈曲行为有显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Advances in Materials Science
Advances in Materials Science MATERIALS SCIENCE, MULTIDISCIPLINARY-
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