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Indexed by:期刊论文
Date of Publication:2014-01-01
Journal:International Journal of Machining and Machinability of Materials
Included Journals:EI、Scopus
Volume:15
Issue:3-4
Page Number:157-173
ISSN No.:17485711
Abstract:Precision processing of miniaturised circuits on the surface of three-dimensional (3-D) structure is of great importance for the telecommunication equipment. Laser micro-machining technologies have led the way in the development of innovative solutions in manufacturing high-accuracy circuits. In this paper, fine strip-line of planar helical antenna on the copper clad polyimide (CCPI) is fabricated based on the application of nanosecond pulse laser. In order to obtain the optimised processing parameters for planar helical antenna, ablation experiments of single grooves are performed and the effect of process parameters, such as laser wavelength, single pulse energy density, repetition frequency, scanning speed, laser spot overlap coefficient and milling times, are quantitively analysed. And the strip-line of planar helical antenna is processed under the optimised condition (laser single pulse energy density is 25 J/cm2, frequency is 30 kHz, laser spot overlap coefficient is 0.9, and milling times is 1). Experimental results indicate that the minimum width of micro-strip can reach 50 m, and form error of strip-line edge processed by nanosecond pulse laser is less than 10 m, which could match the geometric accuracy requirement of the micro-strip antenna. Copyright ? 2014 Inderscience Enterprises Ltd.