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Rapid reverse engineering system of a free surface

机译:自由表面的快速逆向工程系统

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Measuring the shape of a model is important for reverse engineering. The rapid measurement of a free surface and the rapid reconstruction of graphics has been studied. The rectangle grating projection method was applied to the rapid measurement of the free surface of an object. Fourier transforms of a light field in which rectangular gratings were projected on a measured free surface was processed. Phase offset was acquired by computing the modulated raster phase distribution of the measured free surface and a reference plane. As a result, by analysis of the light route of the rectangular grating projection, the relation between phase offset and height of measured free surface was acquired. Sequentially, the height information of the measured object was computed. For rapid reconstruction, a rectangle region of each scatter data point on the parameter plane was constructed. The coordinates of each grating point were computed from the region boundary and the grating space. The measured scattered data were interpolated with a special Hermite algorithm, and the height of each grating point in each functionary field was computed. The new surface with rectangle gridding was formed by the accumulation of several overlapped rectangles. The method was applied to the rapid reverse engineering of an automobile engine cover, and shown to result in great improvement.
机译:测量模型的形状对于逆向工程很重要。已经研究了自由表面的快速测量和图形的快速重建。矩形光栅投影法被应用于物体自由表面的快速测量。处理了其中将矩形光栅投射在测量的自由表面上的光场的傅立叶变换。通过计算测得的自由表面和参考平面的调制光栅相位分布来获取相位偏移。结果,通过分析矩形光栅投影的光路,获得了相位偏移与所测量的自由表面的高度之间的关系。顺序地,计算出被测物的高度信息。为了快速重建,构造了参数平面上每个散点数据点的矩形区域。从区域边界和光栅空间计算出每个光栅点的坐标。使用特殊的Hermite算法对测得的散射数据进行插值,并计算每个功能场中每个光栅点的高度。矩形网格化的新表面是由几个重叠矩形的积累形成的。该方法被应用于汽车发动机罩的快速逆向工程,并且显示出很大的改进。

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