首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >A microfluidic device for three-dimensional wear debris imaging in online condition monitoring
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A microfluidic device for three-dimensional wear debris imaging in online condition monitoring

机译:用于在线状态监测的三维磨损成像的微流体装置

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摘要

Three-dimensional morphologies of wear particles are important information sources for machine condition assessment and fault diagnosis. However, existing three-dimensional image acquisition systems, such as laser scanning confocal microscopy and atomic force microscopy, cannot be directly applied in condition-based maintenance of machines. In order to automatically acquire three-dimensional information of wear debris for online condition monitoring, a microfluidic device consisting of an oil flow channel and a video imaging system is developed. This paper focuses on the control of particle motions. A microchannel is designed to ensure the continuous rotation of particles such that their three-dimensional features can be captured. The relationships between running torque and channel height and particle size are analysed to determine the channel height. An infinite fluid field is considered to make sure that the particles rotate around the same axis to capture 360 degree views. Based on this, the cross section of the microchannel is determined at 5mmx0.2mm (heightxwidth) to capture the wear debris under 200 mu m. A CMOS sensor is used to image the particles in multiple views and then three-dimensional features of wear debris (e.g. thickness, height aspect ratio and sphericity) are obtained. Two experiments were carried out to evaluate the performances of the designed system. The results demonstrate that (1) the microfluidic device is effective in capturing multiple view images of wear particles various in sizes and shapes; (2) spatial morphological characteristics of wear particles can be constructed using a sequence of multi-view images.
机译:磨损颗粒的三维形态是机器条件评估和故障诊断的重要信息来源。然而,现有的三维图像采集系统,例如激光扫描共聚焦显微镜和原子力显微镜,不能直接应用于基于条件的机器维护。为了自动获取用于在线状态监测的磨损碎片的三维信息,开发了由油流通道和视频成像系统组成的微流体装置。本文侧重于控制粒子运动。设计微通道以确保颗粒的连续旋转,使得可以捕获它们的三维特征。分析运行扭矩和频道高度和粒度之间的关系以确定信道高度。认为无限流体场确保颗粒围绕相同轴旋转以捕获360度视图。基于此,微通道的横截面以5mmx0.2mm(高度xwidth)测定,以捕获在200μm下的磨损碎片。 CMOS传感器用于在多个视图中与颗粒相像,然后获得磨损碎片的三维特征(例如厚度,高度纵横比和球形)。进行了两个实验,以评估设计系统的性能。结果表明(1)微流体装置有效地捕获尺寸和形状各种磨损颗粒的多视图图像; (2)可以使用一系列多视图图像构建磨损颗粒的空间形态学特性。

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