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Quantitative three-dimensional measurements of vibration amplitudes and phases as a function of frequency by digital speckle pattern interferometry

机译:数字散斑图干涉法定量测量振动振幅和相位作为频率的函数的三维

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Abstract: Vibration measurements by interferometry can be realized with continuous or pulsed lasers. A convenient and less expensive way to measure displacements relative to vibrating objects is to use an acousto-optic modulator in the object beam of an interferometer using a continuous laser. Stroboscopic illumination of vibrating objects can freeze moving speckle patterns when the stroboscopic and vibration frequencies are synchronous. This supposes a monofrequency excitation. We have developed a method for measuring the complex displacement response of vibrating objects at any frequency. The use of spatial phase-shifting and temporal phase-shifting allows consistent measurements of vibration amplitudes and phases without changing the phase of the excitation force. We call 'spatial phase-shifting' a method using the phase-shift of the reference beam in an interferometer and 'time phase-shifting' an original technique based on the relative change of phase between the stroboscopic illumination and the excitation force. Three spatial phase-shift steps and the impact of the choice of the phase-shift amounts in the developed algorithm is discussed. Recording of vibration amplitudes and phases at successive frequencies enabled us to measure the frequency response of objects and to analyze how eigenmodes appear. !11
机译:摘要:干涉法测量振动可以用连续或脉冲激光实现。测量相对于振动物体的位移的一种方便且较便宜的方法是在使用连续激光的干涉仪的物体光束中使用声光调制器。当频闪和振动频率同步时,振动物体的频闪照明会冻结运动的斑点图案。这假设是单频激励。我们已经开发出一种用于测量任何频率下振动物体的复杂位移响应的方法。使用空间相移和时间相移可以对振动幅度和相位进行一致的测量,而无需改变激励力的相位。我们将“空间相移”称为一种基于干涉仪中参考光束的相移的方法,将“时间相移”称为基于频闪照明和激发力之间的相对相位变化的原始技术。讨论了三个空间相移步骤以及相移量选择对所开发算法的影响。记录连续频率下的振动幅度和相位,使我们能够测量物体的频率响应并分析本征模如何出现。 !11

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