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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >On the dynamic behavior of nonlinear lightweight isolator for museum artifacts
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On the dynamic behavior of nonlinear lightweight isolator for museum artifacts

机译:博物馆文物的非线性轻质隔振器的动力学行为

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In earthquake prone areas, museum buildings that contain precious artifacts of our cultural heritage ought to be seismically isolated. Alternatively, a lower cost solution is to seismically isolate certain items of great importance exhibited in the open space or in existing museum buildings, which ought to be designed or strengthened to comply with current codes and regulations. This practice is followed in many instances around the world. The proposed system, adequate for light artifacts up to one tone for a slim design, consists of three plates the one on the top of the other. The bottom plate is fixed and levelled to the museum floor, while the two others are sliding on rails in two mutually orthogonal directions, accommodating any planar motion. The restoring force, for the system developed at the J.P. Getty museum, is provided by springs that are positioned perpendicular to the directions of motion, with their tip rolling on a horizontal V ramp. To avoid impact, when passing from the equilibrium point, a modification is proposed herein considering two alternatives. The first introduces a circular arc within the V ramp and the second uses a symmetric parabolic ramp, which introduces nonlinear features to the behavior in both restoring and damping force. The general equations of motion are determined accounting also for the rolling and sliding of the tip rubber wheel on both geometries. The use of a general parabolic curve leads the system dynamics to a Duffing type oscillator. In addition, a viscous damper in the transverse direction and/or viscous or frictional dampers can be attached along the direction of motion, which in the case of no sliding, determine the overall damping behavior of the isolator. For a specific artifact, the parameters of the system are adjusted aiming at reducing the absolute acceleration transmitted to the artifact for an acceptable displacement capacity. An extensive parametric study is performed to reveal the main features of the behavior and the influence of the different parameters. In addition, the behavior of the system for different earthquake excitations is examined and the key results and conclusions are presented.
机译:在地震多发地区,博物馆建筑中应包含我们文化遗产的珍贵文物,应加以地震隔离。或者,一种低成本的解决方案是在地震中隔离在露天场所或现有博物馆建筑中展示的某些重要物品,这些物品应根据现行法规进行设计或加强。在世界各地的许多情况下都遵循这种做法。所提出的系统适合于轻的伪影,对于一种薄型设计而言,其色调足以达到一种色调,该系统由三个板组成,一个板位于另一个板的顶部。底板固定在博物馆的地板上并保持水平,而另外两个则在轨道上沿相互正交的两个方向滑动,以适应任何平面运动。对于J.P. Getty博物馆开发的系统,恢复力由垂直于运动方向放置的弹簧提供,其尖端在水平V坡道上滚动。为了避免冲击,当从平衡点经过时,在此提出了一种修改方案,其中考虑了两种选择。第一个在V坡道内引入圆弧,第二个使用对称的抛物线坡道,这将非线性特征引入到恢复力和阻尼力中。确定运动的一般方程式时,还要考虑到尖端橡胶轮在两种几何形状上的滚动和滑动。使用一般的抛物线曲线会导致系统动力学成为Duffing型振荡器。此外,可以沿着运动方向安装横向的粘性阻尼器和/或粘性的或摩擦阻尼器,在没有滑动的情况下,这些阻尼器决定了隔离器的整体阻尼性能。对于特定的工件,调整系统参数的目的是为了减少传递给工件的绝对加速度以获得可接受的位移能力。进行了广泛的参数研究,以揭示行为的主要特征以及不同参数的影响。此外,研究了系统在不同地震激励下的行为,并给出了关键的结果和结论。

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