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NONLINEAR RESPONSE OF AN INEXTENSIBLE, CANTILEVERED BEAM SUBJECTED TO A NONCONSERVATIVE FOLLOWER FORCE

机译:不伸展的悬臂梁的非线性响应,经受非切除从动力的梁

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The dynamic stability of a cantilevered beam actuated by a nonconservative follower force has previously been studied for its interesting dynamical properties and its applications to engineering designs such as thrusters. However, most of the literature considers a linear model. A modest number of papers considers a nonlinear model. Here, a system of nonlinear equations is derived from a new energy approach for an inextensible cantilevered beam with a follower force acting upon it. The equations are solved in time, and agreement is shown with published results for the critical force including the effects of damping (as determined by a linear model). This model readily allows the determination of both in-plane and out-of-plane deflections as well as the constraint force. With this novel transparency into the system dynamics, the nonlinear post-critical limit cycle oscillations are studied including a concentration on the force which enforces the inextensibility constraint.
机译:先前已经研究了由非可操作从动力致动的悬臂梁的动态稳定性,以实现其有趣的动态特性及其对工程设计,例如推进器的应用。然而,大多数文献都考虑了线性模型。适度数量的论文认为非线性模型。这里,非线性方程系统源自具有与作用在其上的从动力的不可伸展的悬臂梁的新能量方法。等式及时解决,并显示了包括临界力的公开结果,包括阻尼的效应(通过线性模型确定)。该模型容易允许确定平面内和平面外偏转以及约束力。利用这种新颖的透明度进入系统动态,研究了非线性关键关键局限性周期振荡,包括强制执行不良限制的力的浓度。

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