变弹性基上圆板的轴对称弯曲

M. Surianinov, Y. Krutii, O. Klymenko, Vladyslav Vakulenko, Serhii Rudakov
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摘要

提出了一种横向荷载作用下变层理系数弹性温克勒基环形板的直接积分计算方法。为了验证所提出方法的结果,采用了在PC LIRA-SAPR中实现的有限元方法。考虑了两个计算例子。分析结果表明,本文方法与有限元法计算的圆板挠度值基本吻合,弯矩值相差达9.3%。此外,偏差的差异只出现在小数点后第四位(有时甚至是第五位)。我们注意到,直接积分法在求解许多具有精确解的可变形固体力学问题时已经证明了很高的精度。所得弯矩值的差异与PC LIRA-SAPR有限元网格的半自动击破有关。这种说法是基于网格在周向加厚时,两种方法在确定径向弯矩和周向弯矩时的结果有很大的收敛性。
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Axisymmetric Bending of Circular Plates on a Variable Elastic Base
An algorithm of direct integration method for calculation of annular plates lying on elastic Winkler base with variable bedding coefficient under the action of transverse load is proposed. To verify the results obtained by the proposed method, the finite element method implemented in PC LIRA-SAPR is used. Two examples of calculations are considered. Analysis of the results shows that the values of deflections practically coincide in calculations of a circular plate by the author's method and by the finite-element method, and discrepancy between the values of bending moments reaches 9.3 %. Moreover, the discrepancy in deflections appears only in the fourth (and sometimes even in the fifth) decimal place. It is noted that the method of direct integration has demonstrated very high accuracy in solving numerous problems of deformable solid mechanics that have exact solutions. The discrepancy in the values of bending moments obtained here is related to the semi-automatic breakdown of the finite-element mesh in PC LIRA-SAPR. This statement is based on the fact that when the mesh is thickened in the circumferential direction, the results obtained by the two methods in determining the radial and circumferential bending moments converge considerably.
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