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首页> 外文期刊>International Journal of Solids and Structures >Identification of nonlinear bolted lap-joint parameters by force-state mapping
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Identification of nonlinear bolted lap-joint parameters by force-state mapping

机译:力状态映射识别非线性螺栓搭接参数

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Joints and fasteners often have a significant effect on the dynamical behaviour of assembled mechanical structures and the analytical prediction of structural responses therefore depends upon the accuracy of joint modelling. Detailed constitutive models that fully describe the behaviour of frictional interfaces are often unduly complicated; in which case simpler phenomenological models having parameters identified from vibration tests may be preferable. Unfortunately the direct measurement of forces transmitted between two contacting surfaces and their relative displacements are not possible in practice and it is therefore necessary to rely on measurements remote from joints. In this paper, the parameters of an assumed nonlinear joint model are identified by force-state mapping from time-domain acceleration records in response to single-frequency excitation close to the first natural frequency. The problem of lack of accessibility for measurement at the joint is overcome by casting the governing equation of the system in modal coordinates so that modal parameters are identified to represent the nonlinear behaviour of the joint. A particular result from the experimental programme is the identification of viscous damping coefficients dependent upon displacement amplitude. The significance of this result is that the complex phenomenon of energy dissipation in lap joints can be represented by a simple analytical model capable of producing accurate results. (c) 2007 Elsevier Ltd. All rights reserved.
机译:关节和紧固件通常对组装的机械结构的动力学行为有重大影响,因此结构响应的分析预测取决于关节建模的准确性。完整描述摩擦界面行为的详细本构模型通常过于复杂。在这种情况下,具有从振动测试中识别出的参数的简单现象学模型可能是更好的选择。不幸的是,实际上不可能直接测量两个接触表面之间传递的力及其相对位移,因此有必要依靠远离关节的测量。在本文中,通过力状态映射从时域加速度记录中响应于接近第一个自然频率的单频激励,来确定假定的非线性关节模型的参数。通过将系统的控制方程转换为模态坐标,可以克服模态参数不足的问题,从而确定模态参数以表示关节的非线性行为。实验程序的一个特殊结果是根据位移幅度确定了粘性阻尼系数。该结果的意义在于,搭接接头中能量耗散的复杂现象可以通过能够产生准确结果的简单分析模型来表示。 (c)2007 Elsevier Ltd.保留所有权利。

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