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Active buckling control of an imperfect beam-column with circular cross-section using piezo-elastic supports and integral LQR control

机译:具有圆形横截面的圆形横截面的主动屈曲控制,使用压电载体支撑和积分LQR控制

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For slender beam-columns loaded by axial compressive forces, active buckling control provides a possibility to increase the maximum bearable axial load above that of a purely passive structure. In this paper, the potential of active buckling control of an imperfect beam-column with circular cross-section using piezo-elastic supports is investigated numerically. Imperfections are given by an initial deformation of the beam-column caused by a constant imperfection force. With the piezo-elastic supports, active bending moments in arbitrary directions orthogonal to the beam-column's longitudinal axis can be applied at both beam-column's ends. The imperfect beam-column is loaded by a gradually increasing axial compressive force resulting in a lateral deformation of the beam-column. First, a finite element model of the imperfect structure for numerical simulation of the active buckling control is presented. Second, an integral linear-quadratic regulator (LQR) that compensates the deformation via the piezo-elastic supports is derived for a reduced modal model of the ideal beam-column. With the proposed active buckling control it is possible to stabilize the imperfect beam-column in arbitrary lateral direction for axial loads above the theoretical critical buckling load and the maximum bearable load of the passive structure.
机译:对于由轴向压缩力装载的细长梁柱,主动屈曲控制提供了增加高于纯无源结构的最大可耐受轴向载荷的可能性。在本文中,在数值上研究了使用压电弹性支撑件的圆形横截面的不完美光束柱的主动屈曲控制的电位。通过恒定缺陷力引起的光束柱的初始变形给出了缺陷。利用压电弹性支撑件,可以在两个光束柱的末端施加与光束柱的纵向轴正交的任意方向的主动弯曲矩。不完全光束柱通过逐渐增加的轴向压缩力加载,导致光束柱的横向变形。首先,提出了一种有限元模型,用于有源屈曲控制的数值模拟的不完美结构。其次,通过压电 - 弹性支撑件补偿变形的整体线性二次调节器(LQR)用于理想光束柱的减少的模型模型。利用所提出的主动屈曲控制,可以将不完美的横梁柱稳定在任意横向方向上,用于高于理论关键屈曲负载的轴向载荷和被动结构的最大可覆盖载荷。

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