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A laser triangulation sensor for vibrational structural analysis and diagnostics

机译:用于振动结构分析和诊断的激光三角测量传感器

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The industrial progress has reached a level in which it is necessary to understand the behavior of mechanical components and to monitor their conditions without disassembling them. Nowadays, a suitable methodology is based on vibrational analysis usually performed through acceleration signals measured directly on the system to be tested. However, in the last years, the industrial scenario has deeply changed due to the need for time reduction, in particular, for the control operations at the end of the productive line. The genuine methods based on acceleration measurements, for example, through piezoelectric accelerometers, came into conflict with the industrial need as the sensors used for the quality control have to be easily and fastly mounted and unmounted. A valid alternative is represented by the exploitation of laser triangulation sensors that are able to measure the dynamic displacement in a contactless way, strongly reducing the (un)mounting time. The target of this paper is to highlight pros and cons of the contactless displacement analysis through laser triangulation sensors with respect to the contact one through genuine accelerometers by means of a comparison between the results obtained both for experimental modal analysis and vibrational diagnostics of rotating machines.
机译:工业进步已经达到了一个水平,其中有必要了解机械部件的行为,并在没有拆卸它们的情况下监控其条件。如今,合适的方法基于通常通过直接测量的系统测量的加速信号进行振动分析。然而,在过去几年中,由于需要减少时间,工业场景深入了解了生产线结束时的控制操作。例如,通过压电加速度计的基于加速度测量的真正方法与工业需求发生冲突,因为用于质量控制的传感器必须容易且速溶地安装和卸下。有效的替代方案是由激光三角测量传感器的开发来表示能够以非接触式方式测量动态位移的,强大地减少(UN)安装时间。本文的目标是通过对旋转机器的实验模态分析和振动诊断的结果之间的比较来突出通过激光三角测量传感器通过激光三角测量传感器通过激光三角测量传感器通过激光三角测量传感器来突出非接触式移位分析。

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