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Experimental Study on the Influence on Vibration Characteristics of Thin Cylindrical Shell with Hard Coating under Cantilever Boundary Condition

机译:悬臂边界条件下硬涂层薄圆柱壳振动特性影响的实验研究

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摘要

This research has experimentally investigated the influence on vibration characteristics of thin cantilever cylindrical shell (TCS) with hard coating under cantilever boundary condition. Firstly, the theoretical model of TCS with hard coating is established to calculate its natural frequencies and modal shapes so as to roughly understand vibration characteristic of TCS when it is coated with hard coating material. Then, by considering its nonlinear stiffness and damping influences, an experiment system is established to accurately measure vibration parameters of the shell, and the corresponding test methods and identification techniques are also proposed. Finally, based on the measured data, the influences on natural frequencies, modal shapes, damping ratios, and vibration responses of TCS with hard coating are analyzed and discussed in detail. It can be found that hard coating can play an important role in vibration reduction of TCS, and for the most modes of TCS, hard coating will result in the decrease of natural frequencies, but the decreased level is not very big, and its damping effects on the higher frequency range of the shell are weak and ineffective. Therefore, in order to make better use of this coating material, we must carefully choose the concerned antivibration frequency range of the shell; otherwise it may lead to some negative effects.
机译:本研究实验研究了悬臂边界条件下用硬涂层对薄悬臂圆柱壳(TCS)振动特性的影响。首先,建立具有硬涂层的TCS的理论模型,以计算其天然频率和模态形状,以便在涂有硬涂层材料时大致了解TCS的振动特性。然后,通过考虑其非线性刚度和阻尼影响,建立实验系统以精确测量壳体的振动参数,并且还提出了相应的测试方法和识别技术。最后,基于测量数据,分析并详细地讨论了对具有硬涂层的TCS的自然频率,模态形状,阻尼比和振动响应的影响。可以发现,硬涂层可以在TCS的减振中发挥重要作用,并且对于TCS的最多,硬涂层将导致自然频率的降低,但下降水平不是很大,而且其阻尼效应在较高的壳体范围内,壳体较弱,无效。因此,为了更好地利用这种涂层材料,我们必须仔细选择壳体的有关的抗激励频率范围;否则可能会导致一些负面影响。

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