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Characterizing buckling behavior of matrix-cracked hybrid plates containing CNTR-FG layers

机译:含有CNTR-FG层的基质破裂杂交板的屈曲行为

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摘要

In this paper, the effect of matrix cracks on the buckling of a hybrid laminated plate is investigated. The plate is composed of carbon nanotube reinforced functionally graded (CNTR-FG) layers and conventional fiber reinforced composite (FRC) layers. Different distributions of single walled carbon nanotubes (SWCNTs) through the thickness of layers are considered. The cracks are modeled as aligned slit cracks across the ply thickness and transverse to the laminate plane, and the distribution of cracks is assumed statistically homogeneous corresponding to an average crack density. The first-order shear deformation theory (FSDT) is employed to incorporate the effects of rotary inertia and transverse shear deformation, and the meshless kp-Ritz method is used to obtain the buckling solutions. Detailed parametric studies are conducted to investigate the effects of matrix crack density, CNTs distributions, CNT volume fraction, plate aspect ratio and plate length-to-thickness ratio, boundary conditions and number of layers on buckling behaviors of hybrid laminated plates containing CNTR-FG layers.
机译:本文研究了基质裂缝对混合层压板屈曲的影响。该板由碳纳米管增强功能梯度(CNTR-FG)层和常规纤维增强复合物(FRC)层组成。考虑了通过层厚度的单壁碳纳米管(SWCNTS)的不同分布。裂缝被建模为穿过帘布层厚度的对齐的狭缝裂缝,并且横向于层压平面,并且假设静态均匀的裂缝分布对应于平均裂缝密度。采用一阶剪切变形理论(FSDT)来掺入旋转惯性和横向剪切变形的影响,并且啮合的KP-RITZ方法用于获得屈曲溶液。进行详细的参数研究以研究基质裂纹密度,CNT分布,CNT体积分数,板纵横比和板长度到厚度比,边界条件和层数含有CNTR-FG的屈曲行为上的屈曲行为层。

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