首页> 外文期刊>Journal of mechanics of materials and structures >SLIP DAMPING OF A PRESS-FIT JOINT UNDER NONUNIFORM PRESSURE DISTRIBUTION ALONG THE INTERFACE
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SLIP DAMPING OF A PRESS-FIT JOINT UNDER NONUNIFORM PRESSURE DISTRIBUTION ALONG THE INTERFACE

机译:沿界面不均匀的压力分布下压配合的滑动阻尼

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摘要

The energy dissipation and the damping capacity of a press-fit joint under a vertical load are investigated using the continuum elastic beam model. The clamping pressure is considered to be of power law with distance along the contact interface and the corresponding relative displacements under vertical load are derived. Expression of the minimum critical vertical load inducing relative slip along the contact interface is determined. The hysteresis curves of the vertical forces as a function of the relative displacement at the contact interface are obtained for different pressure distribution laws and the associated energy dissipations are presented. The damping ratio of the assembled structure is further evaluated. It is shown that peak values of damping ratio exist for different pressure distribution laws and the normal load at which the peak damping ratio occurs is a function of the pressure distribution law. Three-dimensional finite element analysis validation is performed, which shows good agreement with model predictions.
机译:使用连续的弹性束模型研究了垂直载荷下压配合的能量耗散和阻尼能力。夹紧压力被认为是沿接触界面的距离的动力法,并且导出垂直载荷下的相应相对位移。确定了沿接触界面的最小关键垂直载荷的表达。为不同的压力分布规律获得作为接触界面处相对位移的函数的垂直力的滞后曲线,并且呈现相关的能量耗散。进一步评估组装结构的阻尼比。结果表明,不同的压力分布法存在阻尼比的峰值,并且发生峰值阻尼比的正常负载是压力分布法的函数。执行三维有限元分析验证,其显示与模型预测的良好一致。

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