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A new measurement method of profile tolerance for the LAMOSTfocal plane

机译:LAMOST焦平面轮廓公差的新测量方法

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There were a few methods taken in the profile tolerance measurement of the LAMOST Focal Plane Plate. One of the methods was to use CMM (Coordinate Measurement Machine) to measure the points on the small Focal Plane Plate and calculate the points whether or not in the tolerance zone. In this process there are some small shortcomings. The measuring point positions on the Focal Plane Plate are not the actual installation location of the optical fiber positioning system. In order to eliminate these principle errors, a measuring mandrel is inserted into the unit-holes, and the precision for the mandrel with the hole is controlled in the high level. Then measure the center of the precise target ball which is placed on the measuring mandrel by CMM. At last, fit a sphere surface with the measuring center points of the target ball and analyze the profile tolerance of the Focal Plane Plate. This process will be more in line with the actual installation location of the optical fiber positioning system. When use this method to judge the profile tolerance can provide the reference date for maintaining the ultra error unit-holes on the Focal Plane Plate. But when insert the measuring mandrel into the unit hole, there are manufacturing errors in the measuring mandrel, target ball and assembly errors. All these errors will bring the influence in the measurement. In the paper, an impact evaluation assesses the intermediate process with all these errors through experiments. And the experiment results show that there are little influence when use the target ball and the measuring mandrel in the measurement of the profile tolerance. Instead, there are more advantages than many past use of measuring methods.
机译:LAMOST焦平面板的轮廓公差测量中采用了几种方法。其中一种方法是使用CMM(坐标测量机)测量小焦平面板上的点,并计算是否在公差带内。在此过程中存在一些小缺点。焦平面板上的测量点位置不是光纤定位系统的实际安装位​​置。为了消除这些原理误差,将测量心轴插入单位孔中,并且将具有孔的心轴的精度控制在较高水平。然后测量由CMM放置在测量心轴上的精确目标球的中心。最后,将球体表面与目标球的测量中心点配合,并分析焦平面板的轮廓公差。此过程将更符合光纤定位系统的实际安装位​​置。使用此方法判断轮廓公差时,可以为在焦平面板上保持超误差单位孔提供参考日期。但是,当将测量心轴插入到单元孔中时,测量心轴会存在制造错误,目标球和组装错误。所有这些误差都会对测量产生影响。在本文中,影响评估通过实验评估了所有这些错误的中间过程。实验结果表明,使用目标球和测量心轴对轮廓公差的测量几乎没有影响。取而代之的是,比过去许多测量方法的使用具有更多的优势。

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