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引用本文:������,����־������ܷ�,�����������С����������.CFETR 1/32����һ��ӹ����ļ�������о�[J].核聚变与等离子体物理,2020,39(4):338-342.
作者姓名:������  ����־������ܷ�  �����������С����������
作者单位:(1. ?й??????????????????о???????? 230031?? 2. ?й???????????????? 230022?? 3. ??????????????????? 225800)
摘    要:


Research on laser measurement of machining parts of CFETR 1/32 vacuum vessel
JI Hai-biao,LIU Zhi-hong,WU Jie-feng,MA Jian-guo,FAN Xiao-song,GU Yong-qi.Research on laser measurement of machining parts of CFETR 1/32 vacuum vessel[J].Nuclear Fusion and Plasma Physics,2020,39(4):338-342.
Authors:JI Hai-biao  LIU Zhi-hong  WU Jie-feng  MA Jian-guo  FAN Xiao-song  GU Yong-qi
Institution:(1. Institute of Plasma Physics Chinese Academy of Sciences, Hefei 230031; 2. University of Science and Technology of China, Hefei 230022; 3. Baosheng Group, Yangzhou 225800)
Abstract:The laser tracker is used to determine the locating data of the 1/32 vacuum vessel during its later machining on the machine tool platform. Firstly, the design coordinate system of the workpiece and the base points of assembly are determined by the laser tracker when the workpiece is clamped to the platform of machining tool. Secondly, an auxiliary standard block with XY, YZ, XZ three orthogonal planes features is machined outside the workpiece to establish the machine coordinate system. Then the workpiece and auxiliary standard block are measured simultaneously with the laser tracker to determine the relative positional relationship between the workpiece and the auxiliary standard block. Finally, the machine tool uses the auxiliary standard block as the locating data to complete the machining of the workpiece. Through this method, the machining work of two 1/32 vacuum vessels have been completed, and the machining accuracy is within the range of tolerance requirements, as illustrates the rationality and practicability of the method.
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