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A Non-Contact Measuring System for In-Situ Surface Characterization Based on Laser Confocal Microscopy

机译:基于激光共聚焦显微镜的非接触式原位表面表征测量系统

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摘要

The characterization of surface topographic features on a component is typically quantified using two-dimensional roughness descriptors which are captured by off-line desktop instruments. Ideally any measurement system should be integrated into the manufacturing process to provide in-situ measurement and real-time feedback. A non-contact in-situ surface topography measuring system is proposed in this paper. The proposed system utilizes a laser confocal sensor in both lateral and vertical scanning modes to measure the height of the target features. The roughness parameters are calculated in the developed data processing software according to ISO 4287. To reduce the inherent disadvantage of confocal microscopy, e.g., scattering noise at steep angles and background noise from specular reflection from the optical elements, the developed system has been calibrated and a linear correction factor has been applied in this study. A particular challenge identified for this work is the in-situ measurement of features generated by a robotized surface finishing system. The proposed system was integrated onto a robotic arm with the measuring distance and angle adjusted during measurement based on a CAD model of the component in question. Experimental data confirms the capability of this system to measure the surface roughness within the Ra range of 0.2–7 μm (bandwidth λc/λs of 300), with a relative accuracy of 5%.
机译:通常使用二维粗糙度描述符(由离线台式仪器捕获)来量化部件上表面形貌特征的特征。理想情况下,任何测量系统都应集成到制造过程中,以提供现场测量和实时反馈。本文提出了一种非接触式原位表面形貌测量系统。所提出的系统在横向和纵向扫描模式下均使用激光共聚焦传感器来测量目标特征的高度。粗糙度参数是根据ISO 4287在开发的数据处理软件中计算的。为减少共聚焦显微镜的固有缺点,例如陡角的散射噪声和光学元件的镜面反射产生的背景噪声,已对开发的系统进行了校准和校准。在这项研究中已经应用了线性校正因子。这项工作面临的一个特殊挑战是对机器人表面精加工系统产生的特征进行原位测量。所提出的系统已集成到机械臂上,并根据相关组件的CAD模型在测量过程中调整了测量距离和角度。实验数据证实了该系统具有测量Ra范围为0.2–7μm(带宽λc/λs为300)的表面粗糙度的能力,相对精度为5%。

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