4.6 Article

An adaptive wing for a small-aircraft application with a configuration of fibre Bragg grating sensors

Journal

SMART MATERIALS & STRUCTURES
Volume 19, Issue 8, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/0964-1726/19/8/085009

Keywords

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Funding

  1. Polish Ministry of Science and Higher Education [R10 006 03, N N501 317137]

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In this paper a concept of an adaptive wing for small-aircraft applications with an array of fibre Bragg grating (FBG) sensors has been presented and discussed. In this concept the shape of the wing can be controlled and altered thanks to the wing design and the use of integrated shape memory alloy actuators. The concept has been tested numerically by the use of the finite element method. For numerical calculations the commercial finite element package ABAQUS (R) has been employed. A finite element model of the wing has been prepared in order to estimate the values of the wing twisting angles and distributions of the twist for various activation scenarios. Based on the results of numerical analysis the locations and numbers of the FBG sensors have also been determined. The results of numerical calculations obtained by the authors confirmed the usefulness of the assumed wing control strategy. Based on them and the concept developed of the adaptive wing, a wing demonstration stand has been designed and built. The stand has been used to verify experimentally the performance of the adaptive wing and the usefulness of the FBG sensors for evaluation of the wing condition.

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