【24h】

Moire measuring technology for three-dimensional profile of the object

机译:物体三维轮廓的莫尔测量技术

获取原文

摘要

An optical system is designed to get projection of the transmission grating, the deformed grating is obtained on surface of the object. The image of the deformed grating is given by the lens, the reference grating is put on the place of the image, and then the moire fringe is obtained. The amplify principle of the moire fringe is used to measure the profile of the object. The optical principle of the projection is analyzed. And the relation between the phase and the height of object is deduced. From the different point of geometry opticsl and the physics opticsl, the optical system is analyzed, the factors that influence the image equality and the measuring result are obtained. So the betterment of improving the measuring precision is brought forward, and in the later information processing, because of the diffuse reflection, the image equality is not very well. In order to get a good image, the digital filter is used to filter the noise and smooth the image firstly. Then in order to improve the measure precision, the subdivision technology is applied. The Fourier transform profilometry and phase shifting technology is used in the calculation. A detail analyses is done both in time field and frequency field. And the method of improving the measuring precision is put forward. A good digital filter algorithm is brought forward in the Fourier transform profilometry. In the phase shifting technology, the detail formula of three-step and four-step is given At last the phase that is relational with the high information of the object is get, but the phase is disconnected phase, after the unwrapping algorithm, the disconnected phase is changed to be the continuous phase. Taking use of the relation between the phase and height, the height is obtained. Then the three-dimensional profile of the measured object can be reconstructed. The system is very convenient for non-contact measure of profile of some objects.
机译:设计了一个光学系统来获取透射光栅的投影,在物体表面获得变形的光栅。由透镜给出变形光栅的图像,将参考光栅放在图像的位置,然后获得莫尔条纹。莫尔条纹的放大原理用于测量物体的轮廓。分析了投影的光学原理。并推导了相位与物体高度的关系。从几何光学和物理光学的不同角度,对光学系统进行了分析,得出了影响图像均匀性和测量结果的因素。因此提出了提高测量精度的改进,并且在以后的信息处理中,由于漫反射,图像的均质性不是很好。为了获得良好的图像,首先使用数字滤波器对噪声进行滤波并平滑图像。然后为了提​​高测量精度,应用了细分技术。计算中使用了傅里叶变换轮廓仪和相移技术。在时间字段和频率字段中都进行了详细的分析。提出了提高测量精度的方法。傅立叶变换轮廓分析法提出了一种很好的数字滤波算法。在相移技术中,给出了三步法和四步法的详细公式。相变为连续相。利用相位和高度之间的关系,获得高度。然后可以重建被测物体的三维轮廓。该系统非常方便地用于非接触式测量某些物体的轮廓。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号