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Applied multifocus 3D microscopy

机译:应用多焦点3D显微镜

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摘要

The depth from focus measurement principle relies on the detection of the optimal focusing distance for measuring the depth map of an object and finding its 3D shape. The principle is most effective at microscopic ranges where it is usually found implemented around a z-controlled microscope and sometimes named multifocus 3D microscopy. As such, the method competes with many other 3D measurement methods showing both advantages and disadvantages. Multifocus 3D microscopy is presented and compared to chromatic aberation, confocal microscopy, white light interferometry. Then, this paper discusses two applications of multifocus 3D microscopy for measuring wood respectively metallic parts in the sub-millimeter range. The first application amis at measuring the topography of wood samples for surface quality control. The wood samples surface topography is evaluated with data obtained from both confocal microscopy and multifocus 3D microscopy. The profiles and a standard roughness factor are compared. The second application concerns the measurement of burrs on metallic parts. Possibilities and limits of multifocus 3D microscopy are presented and discussed.
机译:焦点测量原理的深度依赖于检测用于测量物体的深度图和找到其3D形状的最佳聚焦距离。该原理在微观范围内最有效,在那里通常发现围绕z控制显微镜和有时命名多焦点3D显微镜。因此,该方法与众多其他3D测量方法竞争,显示出既有优缺点。提出了多焦点3D显微镜,并与色增加,共聚焦显微镜,白光干涉测量法进行了比较。然后,本文讨论了多焦点3D显微镜的两种应用,用于测量木材的金属部件在亚毫米范围内。第一个应用AMIS测量木材样品的地形进行表面质量控制。用来自共聚焦显微镜和多焦点3D显微镜获得的数据评估木样品表面形貌。比较曲线和标准粗糙度因子。第二个应用程序涉及金属部件上的毛刺测量。呈现和讨论了多焦点3D显微镜的可能性和限制。

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