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Shaft misalignment detection by thermal imaging of support bearings

机译:通过支撑轴承的热成像检测轴不对中

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Traditionally misalignments in shafting systems have been determined by a vibration signature analysis. These misalignments are also responsible for temperature rise at the bearings and couplings. In this paper an experimental study has been made to early detect the presence of misalignment in systems, by measuring the temperature of the shaft couplings using a thermal imaging camera. The effects of load, speed and misalignment on the types of couplings and their temperature rise has been studied. It has been found that by monitoring the rate of temperature rise within the time constant of a coupling system, misalignment between shafts can be detected. In this study the experimentally measured time constant is found to be in the range of estimated time constant of the system from one-dimensional heat transfer models. In order to detect the misalignment in the system the temperature measurement of the coupling has to be done before it reaches its steady state value. Vibration measurements using both accelerometers and single point laser vibrometer at the bearing locations under different load and speed conditions have also been done to correlate with the thermal imaging. It has been found that the measured transient spatial temperature distribution on the couplings also indicate the presence of misalignment in the shafting system. The methodology proposed in this paper can be used in automated detection systems using thermography to detect misalignments from remote locations, where conventional vibration monitoring may be difficult.
机译:传统上,轴系中的未对准是通过振动信号分析来确定的。这些未对准还会导致轴承和联轴器的温度升高。在本文中,已经进行了一项实验研究,以通过使用热像仪测量联轴器的温度来早期检测系统中是否存在未对准。研究了负载,速度和未对准对联轴器类型及其温升的影响。已经发现,通过在联接系统的时间常数内监视温度的上升速率,可以检测到轴之间的未对准。在这项研究中,实验测量的时间常数发现在一维传热模型估计的系统时间常数范围内。为了检测系统中的未对准,必须在耦合器达到其稳态值之前进行温度测量。还已经使用加速度计和单点激光振动计在不同负载和速度条件下在轴承位置进行了振动测量,以与热成像相关。已经发现,在联轴器上测得的瞬态空间温度分布也表明在轴系中存在未对准。本文提出的方法可用于使用热成像的自动检测系统,以检测可能难以进行常规振动监测的偏远地区的位置偏差。

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