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首页> 外文期刊>Journal of Sound and Vibration >A planar shock isolation system with high-static-low-dynamic-stiffness characteristic based on cables
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A planar shock isolation system with high-static-low-dynamic-stiffness characteristic based on cables

机译:基于电缆的具有高静低动力刚度特性的平面隔振系统

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In this paper, a simple and designable shock isolation system with ideal high-static-low-dynamic-stiffness (HSLDS) is proposed, which is intended for the horizontal plane shock isolation application. In this system, the isolated object is suspended by several bearing cables and constrained by a number of uniformly distributed pretensioned cables in the horizontal plane, where the low dynamic stiffness of the system is main controlled by the pretension of the planar cables, whilst the high static stiffness is determined by the axial stiffness of the planar cables and their geometric settings. To obtain the HSLDS characteristic of the system, a brief theoretical description of the relationship between the restoring force and displacement is derived. By obtaining the three-order Taylor expansion with sufficient accuracy of the restoring force, influence of planar cable parameters on the low dynamic and high static stiffness is thus given, therefore, the required HSLDS isolator can be easily designed by adjusting the planar cable length, pretension and tensile stiffness. Finally, the isotropy characteristic of the restoring force of the system with different numbers of planar cables is investigated. To evaluate the performance of the system, a rigid isolated object and flexible cables coupling simulation model considering the contacts of the system is established by using multibody dynamics approach. In this model, flexible cables are simulated by 3-node cable element based on the absolute nodal coordinate formulation; the contact between cable and isolated object is simulated based on Hertz contact theory. Finally, the time-domain shock excitation is converted from the design shock spectrum on the basis of BV043/85 criterion. The design procedure of this isolator and some useful guidelines for choosing cable parameters are presented. In addition, a summary about the performance of the isolators with different numbers of cables shocking in an arbitrary direction is given in the conclusion. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了一种简单且可设计的具有理想的高静态低动态刚度(HSLDS)的隔振系统,旨在用于水平面隔振应用。在该系统中,隔离的物体由多条轴承电缆悬挂,并由水平面上的许多均匀分布的预应力电缆约束,其中系统的低动态刚度主要由平面电缆的预应力控制,而较高的动态刚度则由平面电缆的预应力控制。静态刚度取决于平面电缆的轴向刚度及其几何设置。为了获得系统的HSLDS特性,导出了恢复力与位移之间关系的简要理论描述。通过获得具有足够精确度的恢复力的三阶泰勒展开,从而给出了平面电缆参数对低动态刚度和高静态刚度的影响,因此,可以通过调整平面电缆长度轻松设计所需的HSLDS隔离器,预拉伸和拉伸刚度。最后,研究了不同数量的平面电缆的系统恢复力的各向同性特性。为了评估系统的性能,使用多体动力学方法建立了考虑系统接触的刚性隔离对象和柔性电缆耦合仿真模型。在该模型中,基于绝对节点坐标公式,通过3节点电缆元素对柔性电缆进行仿真。根据赫兹接触理论模拟电缆与绝缘物体之间的接触。最后,根据BV043 / 85准则,从设计冲击谱转换时域冲击激励。介绍了该隔离器的设计过程以及一些用于选择电缆参数的有用指南。此外,结论中总结了隔离器在不同数量的电缆上向任意方向震动的性能。 (C)2015 Elsevier Ltd.保留所有权利。

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