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Nonlinear radial breathing vibrations of CFRP laminated cylindrical shell with non-normal boundary conditions subjected to axial pressure and radial line load at two ends

机译:两端承受轴向压力和径向线载荷的非正常边界条件下CFRP叠层圆柱壳的非线性径向呼吸振动

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摘要

The cylindrical shell structure is an important kind of the primary structures in many engineering community. Under axial excitation and radial line load, the nonlinear radial breathing vibrations of a carbon fiber reinforced polymer (CFRP) laminated cylindrical shell with different temperature is investigated in this paper. Based on von Karman type nonlinear geometric relationship, the first-order shear deformation shell theory is applied to model the kinematics of deformations, and Hamilton's principle is used to drive the differential governing equations. Galerkin method is utilized to obtain the nonlinear ordinary differential governing equations along the radial displacement of the system under the non-normal boundary conditions that one generatrix of the cylindrical shell is clamped and both ends of the shell are free. The bifurcation diagrams, maximum Lyapunov exponent diagrams, phase portraits, the time history diagrams, three-dimensional phase portraits and poincare maps are obtained by using the fourth-order Runge-Kutta algorithm. The influences of the radial line load, the axial excitation as well as the ratio of length to thickness on the nonlinear radial breath vibrations characteristics of the CFRP laminated cylindrical shell are studied in detail by numerical calculations. The results show that the radial line load, axial excitation and ratio of length to thickness can be used to control the nonlinear dynamic motions.
机译:圆柱壳结构是许多工程界重要的一种主要结构。本文研究了在轴向激励和径向载荷作用下,碳纤维增强聚合物(CFRP)层合圆柱壳在不同温度下的非线性径向呼吸振动。基于von Karman型非线性几何关系,采用一阶剪切变形壳理论对变形运动学进行建模,并利用汉密尔顿原理驱动微分控制方程。利用Galerkin方法,在圆柱壳的一个母线被夹住且两端不自由的非法向边界条件下,沿着系统的径向位移获得了非线性常微分方程。分岔图,最大李雅普诺夫指数图,相图,时间历史图,三维相图和庞加莱图是使用四阶Runge-Kutta算法获得的。通过数值计算,详细研究了径向线载荷,轴向激励以及长径比对CFRP叠层圆柱壳非线性径向呼吸振动特性的影响。结果表明,径向线载荷,轴向激励和长度与厚度的比值可用于控制非线性动态运动。

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