Electromechanical system in ultra-precision cutting machine tool and its application in processing of Fresnel lens mold
Guangxue Jingmi Gongcheng/Optics and Precision Engineering, ISSN: 1004-924X, Vol: 23, Page: 410-416
2015
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Citation Benchmarking is provided by Scopus and SciVal and is different from the metrics context provided by PlumX Metrics.
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Article Description
For processing micro groove Fresnel lens mold, the cutting technology and electromechanical system of an ultra precision cutting machine tool with a B rotary axis were designed. Mechanical modules of the machine tool were presented, and a motor drive and an encoder feedback system were designed. By applying linear motor direct drive, the Heidaenhain nano-scale linear encoder signal subdivided by the motor driver was used for closed-loop feedback. Electric control system of the ultra precision cutting machine tool was designed, of which the NC system was open whole soft type PA NC. The straightness error of a guide is 0.15 μm/200 m. For the B rotary axis, its positioning accuracy is 3″, and the rotary displacement resolution is 0.036″. In the cutting experiments, flat surface (Ф280 mm), semi-sphere (Ф100 mm), complex curved surface was machined. And the Fresnel lens mold was processed by the method of rotary B-axis. The experiments show that the surface roughness R of flat surface is 5 nm, and the surface roughness R of Fresnel lens mold is 7.3 nm. The results show that it is feasible that the process technology of Fresnel lens mold is based on the high precision rotary B-axis.
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