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Optimum design of mounting components of a mass property measurement system

机译:质量特性测量系统的安装组件的优化设计

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Measurement of inertia properties of aerospace vehicle and submarine are vital to meet the intended motion objectives. The Moment of Inertia (MOI) is calculated by measuring the frequency of free torsional oscillation of the object mounted on a nearly friction less air bearing. For getting accurate measurement and to nullify the effect of undesired vibrations, the stiffness of the different components of the mounting and fixture (torsion rod, flexure) should be maintained appropriately. The optimum design of torsion rod and flexure is based on ensuring desired natural frequencies in different modes. Initiating with an analytical approach, the actual dimensions of the components are determined based on natural frequencies obtained by finite element analysis of the components. Simulated results are verified with experimental results. (C) 2015 Elsevier Ltd. All rights reserved.
机译:航空航天器和潜艇的惯性特性的测量对于实现预期的运动目标至关重要。惯性矩(MOI)是通过测量安装在几乎没有摩擦的空气轴承上的物体的自由扭转振动的频率来计算的。为了获得准确的测量结果并消除不希望的振动的影响,应适当保持安装和固定装置不同组件(扭杆,挠曲)的刚度。扭杆和挠曲的最佳设计是基于确保不同模式下所需的固有频率。通过分析方法开始,基于通过有限元分析获得的固有频率确定组件的实际尺寸。仿真结果与实验结果进行了验证。 (C)2015 Elsevier Ltd.保留所有权利。

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