利用特征正交多项式函数分析考虑剪切效应的各向同性矩形简支板挠度

Sopakirite S., Happiness D.M.
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摘要

板在绝大多数工程结构中使用的宽度和灵活性要求对板在极限和使用极限状态下的强度和刚度进行越来越深入的研究。根据基尔霍夫的假设,薄板受到横向载荷时,弯曲和横向挠度与板厚相比通常较小。然而,对于较厚的板块,基尔霍夫假设的应用存在一个观察到的局限性,因为该理论忽略了横向剪切对板块变形的影响。因此,本研究利用特征正交多项式函数分析检验了诱导剪切对不同宽高比板挠度指数的影响。所得结果表明,本研究与基尔霍夫关于薄膜和薄板的假设非常吻合。然而,中厚板和厚板之间的差异显著,这清楚地表明横向剪切随板厚的增加而产生的影响,进一步验证了Kirchhoff假设对中厚板和厚板的局限性。当宽高比为1.0 - 2.0时,在0.1区间内,得到的结果表明,本研究与Kirchhoff假设的挠度百分比差异分别为-0.040 - 3.508%,0.527 - 3.552%,4.266 - 5.858%和13.980 - 17.011%。本研究对膜板和加筋板的Kirchhoff假设进行了验证,表明了特征正交多项式函数在评价与厚度无关的板挠度时的适用性。
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Deflection of an Isotropic All-Round Simply Supported Rectangular Plates Incorporating Shear Effect Using Characteristic Orthogonal Polynomial Function
The breadth and dexterity with which plates are used in the vast majority of engineering structures necessitates an ever-increasing and deeper study focus on plate strength and stiffness at the ultimate and serviceability limit states of response. From Kirchhoff’s hypothesis, thin plates when subjected to transverse loading, bend and experience transverse deflections that are typically minor in comparison to the plate thickness. However, for thicker plates there is an observed limitation in the application of Kirchhoff’s hypothesis, as this theory ignore the effect of transverse shear on the deformation of plates. This study therefore analytically examines the effect of induced shear on the deflection indices of plates with varying aspect ratios, using the characteristic orthogonal polynomial function. Result obtained shows a close agreement between present study and Kirchhoff’s hypothesis for membrane and thin plates. However, a significant difference was observed for moderately thick plates and thick plates, which clearly shows the effect of transverse shear as the plate thickness increases, which further validates the limitations of Kirchhoff’s hypothesis for moderately thick as well as thick plates. For an aspect ratio of 1.0 – 2.0 at 0.1 interval, results obtained indicated a percentage difference in deflection between the Present study and Kirchhoff’s hypothesis to range between -0.040 – 3.508%, 0.527 – 3.552%, 4.266 – 5.858%, and 13.980 – 17.011% for membrane, stiffened, moderately thick, and thick plates respectively. The validation of the Kirchhoff’s hypothesis for membrane as well as stiffened plates by the present study, indicates the suitability of the application of the characteristic orthogonal polynomial function in the evaluation of the deflection of plates regardless of thickness.
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