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Three-dimensional shape measurement based on a combination of gray-code and phase-shift light projection

机译:结合格雷码和相移光投影的三维形状测量

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Blade is the key component of the aero-engine. In generally, it requires precise size and accurate shape, so the three-dimensional shape measurement of the blade is very important. Fringe projection profilometry is generally used to measure the 3D shape of an object, because of the advantages of non-contact operation, full-field acquisition, high resolution, and fast data processing. In this paper, 3D shape measurement method based on surface structured light that combination of gray-code and phase-shift projection is proposed. The wrapped phase of the blade is got by the four-step phase-shift method. In the projection process of the gray-code, due to the ambient light, different surface reflectance and surface physical discontinuous, the edge of gray-code becomes smooth, leading to decode error, so that the gray-code pattern must be binaried before decode. Through the accurate binarization of the blade gray-code pattern, the decoding cycle of the blade is achieved, and the unwrapped phase is achieved by phase unwrapping. Then the unwrapped phase difference between the blade and reference plane is got, the height of the blade can be obtained by the relationship between the phase difference and the height. The experimental and simulation results show that the proposed method can achieve a high precision, high speed and low cost 3D shape measurement of the blade. The measurement accuracy reaches 0.03 mm. The proposed method extends the reliability and practicality of the fringe projection profilometry.
机译:叶片是航空发动机的关键部件。通常,它需要精确的尺寸和精确的形状,因此叶片的三维形状测量非常重要。条纹投影轮廓测量法通常用于测量对象的3D形状,这是因为它具有非接触式操作,全场采集,高分辨率和快速数据处理的优点。本文提出了一种基于表面结构光的格雷码和相移投影相结合的3D形状测量方法。叶片的包裹相位通过四步相移法获得。在格雷码的投影过程中,由于环境光,不同的表面反射率和表面物理不连续,使得格雷码的边缘变得光滑,导致解码错误,因此在解码之前必须对格雷码图案进行二值化处理。 。通过对叶片格雷码图案进行精确的二值化,可以实现叶片的解码周期,并且可以通过相位解缠来实现解缠的相位。然后得到叶片与参考平面之间的未包裹的相位差,通过相位差与高度之间的关系可以得到叶片的高度。实验和仿真结果表明,该方法可以实现叶片的高精度,高速,低成本的3D形状测量。测量精度达到0.03mm。所提出的方法扩展了条纹投影轮廓仪的可靠性和实用性。

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