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Damping estimation of plates joined at a point using statistical energy analysis.

机译:使用统计能量分析在一点处连接的板的阻尼估计。

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摘要

The loss factors and coupling loss factors of a 2-plate, coupled system were estimated using the Statistical Energy Analysis methodology. In particular the Power Input Method (P.I.M.) and the Transient Statistical Energy Analysis Method (T.S.E.A.) were applied to both steady state and transient excitation cases. The effects of various process parameters such as frequency resolution, frequency bandwidths, type of hammer tip and measurement points on the estimated loss factors were also investigated for 3 different levels of damping. Possible reasons for the occurrence of negative coupling loss factor estimations using the T.S.E.A. method have been discovered to be the flexibility of the joint between the plates and the frequency resolution of the measured data.;The effect of frequency resolution and damping on the estimated loss factors was examined both numerically and experimentally. First, a two degree of freedom (2-DOF) system was numerically simulated with varying model loss factors of 0.1%, 7.5% and 75% and frequency resolutions of 0.05 Hz, 0.2Hz and 1 Hz. The estimated loss factors were found to be highly dependent on the frequency resolution only in the lightly damped case. Experiments were then performed on 2 Aluminum plates coupled at a point, varying both the damping (by adding constrained layer damping) and the frequency resolution. It was seen that the coupling loss factors were not dependent on the damping levels, whereas the loss factors increased as the damping increased as expected. As the frequency resolution was decreased the loss factors in some frequency bands, especially the lower frequency bands, tended to negative values. The loss factors estimated, using the power input method, were in good agreement with both shaker and hammer excitations.;Modal density and modes in band were also calculated and compared with the theoretical results. Significant variation between the theoretical values and the experimental values was seen only in the 'No damping' case and only in the lower frequency bands.;The main aims of using the T.S.E.A. method were to interpret the results from the dissertation by M. L. Lai, to find out the practical limitations of the method and to establish the degree of agreement of the asymptotic loss factor estimations with respect to the P.I.M. A numerical simulation was run on a 2-DOF system to show how the loss factor varies with time for a transient hit. It also showed that the theoretical coupling coefficients were off by more than 150% when a double hit occurs. Experiments were conducted to check for the effects of frequency resolution and frequency bandwidth on the estimated coupling loss factors. An increase in the damping levels of the plates caused the number of negativities in the "apparent time varying coupling loss factor" estimates to decrease while simultaneously decreasing the time taken to reach an asymptotic value. Possible reasons for the occurrence of negative coupling loss factors were discussed.
机译:使用统计能量分析方法估算了两板耦合系统的损耗因子和耦合损耗因子。尤其是在稳态和瞬态激励情况下均采用了功率输入法(P.I.M.)和瞬态统计能量分析法(T.S.E.A.)。对于3种不同的阻尼水平,还研究了各种过程参数(如频率分辨率,频率带宽,锤尖类型和测量点)对估计损耗因子的影响。使用T.S.E.A.进行负耦合损耗因子估计的可能原因方法是板之间的连接的灵活性和测量数据的频率分辨率。数值和实验研究了频率分辨率和阻尼对估计损耗因子的影响。首先,对两个自由度(2-DOF)系统进行了数值模拟,模型损耗因子分别为0.1%,7.5%和75%,频率分辨率为0.05 Hz,0.2Hz和1 Hz。发现仅在轻微衰减的情况下,估计的损耗因子才高度依赖于频率分辨率。然后在一个点耦合的2个铝板上进行实验,同时改变阻尼(通过添加约束层阻尼)和频率分辨率。可以看出,耦合损耗因数不取决于阻尼水平,而损耗因数随阻尼的增加而增加。随着频率分辨率的降低,某些频段(尤其是较低频段)的损耗因子趋于负值。使用功率输入法估算的损耗因子与振动器和锤子激励都非常吻合。;还计算了模态密度和模态,并将其与理论结果进行了比较。仅在``无阻尼''情况下且仅在较低频带下才能看到理论值与实验值之间的显着差异;使用T.S.E.A.该方法将解释M. L. Lai的论文的结果,找出该方法的实际局限性,并确定渐近损耗因子估计与P.I.M.的一致性程度。在2自由度系统上进行了数值模拟,以显示损耗因数如何随时间变化而发生瞬变。它还表明,当发生两次撞击时,理论耦合系数相差150%以上。进行实验以检查频率分辨率和频率带宽对估计的耦合损耗因子的影响。板的阻尼水平的增加导致“表观时变耦合损耗因子”估计中的负数减少,同时减少了达到渐近值所需的时间。讨论了产生负耦合损耗因子的可能原因。

著录项

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Engineering Aerospace.
  • 学位 M.S.
  • 年度 2011
  • 页码 139 p.
  • 总页数 139
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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