首页> 外文会议>Conference on infrared sensors, devices, and applications VII >Temperature measurements on fast-rotating objects using a thermographic camera with an optomechanical image derotator
【24h】

Temperature measurements on fast-rotating objects using a thermographic camera with an optomechanical image derotator

机译:使用带有光学机械图像灭绝的热量摄像机的快速旋转物体的温度测量

获取原文

摘要

Increasing requirements concerning the quality and lifetime of machine components in industrial and automotive applications require comprehensive investigations of the components in conditions close to the application. Irregularities in heating of mechanical parts reveal regions with increased loading of pressure, draft or friction. In the long run this leads to damage and total failure of the machine. Thermographic measurements of rotating objects, e.g., rolling bearings, brakes, and clutches provide an approach to investigate those defects. However, it is challenging to measure fast-rotating objects accurately. Currently one contact-free approach is performing stroboscopic measurements using an infrared sensor. The data acquisition is triggered so that the image is taken once per revolution. This leads to a huge loss of information on the majority of the movement and to motion blur. The objective of this research is showing the potential of using an optomechanical image derotator together with a thermographic camera. The derotator follows the rotation of the measurement object so that quasi-stationary thermal images during motion can be acquired by the infrared sensor. Unlike conventional derotators which use a glass prism to achieve this effect, the derotator within this work is equipped with a sophisticated reflector assembly. These reflectors are made of aluminum to transfer infrared radiation emitted by the rotating object. Because of the resulting stationary thermal image, the operation can be monitored continuously even for fast-rotating objects. The field of view can also be set to a small off-axis region of interest which then can be investigated with higher resolution or frame rate. To depict the potential of this approach, thermographic measurements on a rolling bearings in different operating states are presented.
机译:提高有关工业和汽车应用中机器组件的质量和寿命的要求需要在接近应用程序的条件下进行全面的组件。机械零件加热中的不规则性揭示了增加压力,牵引或摩擦的地区。从长远来看,这导致机器的损坏和总失效。旋转物体的热敏测量,例如滚动轴承,制动器和离合器提供了一种研究这些缺陷的方法。但是,准确测量快速旋转物体是挑战性的。目前,一种无联系方法正在使用红外传感器进行频闪测量。数据采集​​被触发,以便每次旋转拍摄一次图像。这导致了关于大多数运动和运动模糊的信息损失。该研究的目的是展示使用光学力学图像灭直方体与热量摄像机的潜力。灭失剂遵循测量对象的旋转,从而可以通过红外传感器获取运动期间的准固定式热图像。与使用玻璃棱镜的常规脱洞来实现这种效果,该工作中的灭绝具有复杂的反射器组件。这些反射器由铝制成以传递由旋转物体发出的红外辐射。由于产生的稳定性热图像,即使对于快速旋转物体,也可以连续地监测操作。视野也可以设置为小轴的偏离轴的兴趣区域,然后可以以更高的分辨率或帧速率进行调查。为了描绘这种方法的潜力,提出了不同操作状态的滚动轴承上的热成像测量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号