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Analysis of the stress-deformed condition of the disassembly parabolic antenna

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Published under licence by IOP Publishing Ltd
, , Citation M N Odinets et al 2018 J. Phys.: Conf. Ser. 944 012084 DOI 10.1088/1742-6596/944/1/012084

1742-6596/944/1/012084

Abstract

Active development of satellite communications and computer-aided design systems raises the problem of designing parabolic antennas on a new round of development. The aim of the work was to investigate the influence of the design of the mirror of a parabolic antenna on its endurance under wind load. The research task was an automated analysis of the stress-deformed condition of various designs of computer models of a paraboloid mirror (segmented or holistic) at modeling the exploitation conditions.

The peculiarity of the research was that the assembly model of the antenna's mirror was subjected to rigid connections on the contacting surfaces of the segments and only then the finite element grid was generated. The analysis showed the advantage of the design of the demountable antenna, which consists of cyclic segments, in front of the construction of the holistic antenna. Calculation of the stress-deformed condition of the antennas allows us to conclude that dividing the design of the antenna's mirror on parabolic and cyclic segments increases it strength and rigidity. In the future, this can be used to minimize the mass of antenna and the dimensions of the disassembled antenna. The presented way of modeling a mirror of a parabolic antenna using to the method of the finite-element analysis can be used in the production of antennas.

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10.1088/1742-6596/944/1/012084