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Experimental and numerical investigation on structural effects of laser pulses for modal parameter measurement

机译:模态参数测量激光脉冲结构效应的实验与数值研究

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In this paper it has been described part of the research devoted to the development of a complete non-intrusive experimental modal analysis procedure based on laser techniques both for excitation and for measurement. In particular, attention has been focused on the thermal effects generated by laser pulses on the excited structure. An analytical model of the energy exchange between the light pulse and the target surface is proposed together with a finite element model of thermal and mechanical behaviour of the structure under excitation. Both the models (analytical and numerical) have been experimentally validated by measuring the thermal and the vibration responses induced by the laser pulses. The experimental part of the study has been performed on a cantilever beam excited with laser pulses from an Nd: YAG source (532 nm, 100mJ/pulse) using an high-speed infrared camera and a scanning laser Doppler vibrometer. Results from this work can be used to improve understanding concerning the features of laser excitation and to establish a mechanical equivalent system of forces and moments, useful in order to increase the accuracy in the measurements of modal parameters when laser pulses are used as excitation sources.
机译:在本文中,已经描述了一部分研究,该研究致力于开发基于激光技术的完整的非侵入式实验模态分析程序,用于激发和测量。特别地,注意力已经集中在由激光脉冲在受激结构上产生的热效应上。提出了光脉冲与目标表面之间能量交换的解析模型,以及结构在激发下的热和机械行为的有限元模型。通过测量由激光脉冲引起的热响应和振动响应,两种模型(解析模型和数值模型)均已通过实验验证。该研究的实验部分是使用高速红外摄像机和扫描激光多普勒振动计,对来自Nd:YAG源(532 nm,100mJ /脉冲)的激光脉冲激发的悬臂梁进行的。这项工作的结果可用于增进对激光激发特征的理解,并建立力和力矩的机械等效系统,这对于提高将激光脉冲用作激发源时模态参数的测量精度非常有用。

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