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首页> 外文期刊>Journal of Sound and Vibration >LASER VIBROMETERS AND CONTACTING TRANSDUCERS, TARGET ROTATION AND SIX DEGREE-OF-FREEDOM VIBRATION: WHAT DO WE REALLY MEASURE?
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LASER VIBROMETERS AND CONTACTING TRANSDUCERS, TARGET ROTATION AND SIX DEGREE-OF-FREEDOM VIBRATION: WHAT DO WE REALLY MEASURE?

机译:激光振动器和接触式传感器,目标旋转和六自由度振动:我们真正要测量什么?

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This paper presents a comprehensive analysis of the velocity sensed by a single laser vibrometer beam incident in an arbitrary direction on a target that is of substantial interest in engineering — a rotating shaft requiring three translational and three rotational co-ordinates to describe its vibratory motion fully. Six separate "vibration sets", each a combination of motion parameters, appear in the full expression for vibration velocity sensitivity and it is shown not to be possible to resolve individual motion components within each set by arrangement, or even manipulation, of laser beams. To place this non-contact transducer velocity sensitivity model in its proper context, the velocity sensitivity of a contacting transducer under identical conditions is also derived and comparison is made between non-contacting and contacting transducer performance. Specific applications of the laser vibrometer theory to radial and axial vibration measurements are set out and it is shown how estimation of radial vibration components is only possible by post-processing. The theory is easily extended to include measurements made with multiple beams, underlining the model's versatility in enabling determination of the vibration component sensitivity of a measurement with any beam orientation or combination of beam orientations. This will prove beneficial in devising further optical configurations for the measurement of torsional, pitch and yaw vibrations.
机译:本文全面分析了单个激光振动计光束在任意方向上入射到目标上的速度,该目标对工程学具有重大意义-旋转轴需要三个平移坐标和三个旋转坐标来完整描述其振动运动。六个单独的“振动组”(每个运动组是运动参数的组合)出现在振动速度灵敏度的完整表达式中,并且显示不可能通过布置或什至操纵激光束来解决每个组中的各个运动分量。为了将这种非接触式换能器速度灵敏度模型置于适当的上下文中,还得出了在相同条件下的接触式换能器的速度灵敏度,并在非接触式和接触式换能器性能之间进行了比较。阐述了激光振动计理论在径向和轴向振动测量中的特定应用,并显示了如何仅通过后处理就可以估算径向振动分量。可以轻松地将该理论扩展到包括使用多束光束进行的测量,从而强调了该模型的多功能性,从而能够确定任何光束取向或光束取向组合的测量的振动分量灵敏度。在设计进一步的光学配置以测量扭转,俯仰和偏航振动方面,这将被证明是有益的。

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