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首页> 外文期刊>Journal of vibration and control: JVC >Investigation into the effect of surface roughness on the damping of tack-welded structures using the response surface methodology approach
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Investigation into the effect of surface roughness on the damping of tack-welded structures using the response surface methodology approach

机译:使用响应表面方法研究表面粗糙度对点焊结构阻尼的影响

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摘要

In the present work, the response surface methodology (RSM) approach has been used to investigate the mechanism of interface slip damping in layered tack-welded structures with varying surface roughness. Many experiments have been conducted on a number of mild steel specimens with various roughness conditions at the interfaces to study their effect on the damping capacity of the layered and jointed welded structures. The response is modeled using the RSM approach on experimental data. The significant coefficients are obtained by performing the analysis of variance at a 5% level of significance. The natural frequency and amplitude of excitation, kinematic coefficient of friction, surface roughness and relative dynamic slip at the interfaces have been observed to play vital roles on the damping capacity of such structures. The model sufficiency has been found to be satisfactory as the coefficient of determination (R~2) and adjusted R~2-statistic (R ~2adj) are found to be 96.9% and 96.8%, respectively.
机译:在当前的工作中,响应表面方法(RSM)方法已用于研究具有不同表面粗糙度的分层定位焊接结构中界面滑动阻尼的机理。已经对许多在界面处具有不同粗糙度条件的低碳钢样本进行了许多实验,以研究它们对层状和接头焊接结构的阻尼能力的影响。使用RSM方法对实验数据进行响应建模。有效系数是通过对显着性水平为5%的方差进行分析而获得的。已经观察到激励的固有频率和振幅,运动学摩擦系数,表面粗糙度和界面处的相对动态滑移对此类结构的阻尼能力起着至关重要的作用。由于确定系数(R〜2)和调整后的R〜2统计量(R〜2adj)分别为96.9%和96.8%,因此模型的充分性令人满意。

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