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The effect of isolation in controlling the variability of point connected structures with uncertain structural attachments

The effect of isolation in controlling the variability of point connected structures with uncertain structural attachments
The effect of isolation in controlling the variability of point connected structures with uncertain structural attachments
As the demand for the transmission of electric power and communication signals in automotive and aerospace vehicles increases, so does the number of structures comprising simplified one-dimensional attachments, such as electrical cabling, affixed to a host plate like primary structure. These attachments are typically uncertain in their geometric or material properties, potentially affecting the response of the built-up structure. Difficulties then arise in the prediction of the response of the assembly. This study shows how the variability, due to the uncertain attachments, might be reduced by considering flexible connections. A mobility analysis compares systems connected with either rigid links or elastic springs. A frequency is identified at which the assembly dynamically uncouples; the effect on the host response variability due to the uncertain attachment decreases above this frequency with a reduction of the order of 60 dB in the coefficient of variation. This uncoupling or effective isolation frequency can be simply estimated from the mobility of the elastic connection and the properties of the nominal structural attachment. For design purposes, this frequency can be adjusted to achieve a more predictable response above a given frequency.
uncertainty, structural dynamics, coupled structures
0022-2542
2668-2678
Souza, Marcos Ricardo
c76b43db-74a1-43dc-ae25-79530d88d089
Ferguson, Neil
8cb67e30-48e2-491c-9390-d444fa786ac8
Souza, Marcos Ricardo
c76b43db-74a1-43dc-ae25-79530d88d089
Ferguson, Neil
8cb67e30-48e2-491c-9390-d444fa786ac8

Souza, Marcos Ricardo and Ferguson, Neil (2020) The effect of isolation in controlling the variability of point connected structures with uncertain structural attachments. Journal of Mechanical Engineering Science, 235 (15), 2668-2678. (doi:10.1177/095440622093960).

Record type: Article

Abstract

As the demand for the transmission of electric power and communication signals in automotive and aerospace vehicles increases, so does the number of structures comprising simplified one-dimensional attachments, such as electrical cabling, affixed to a host plate like primary structure. These attachments are typically uncertain in their geometric or material properties, potentially affecting the response of the built-up structure. Difficulties then arise in the prediction of the response of the assembly. This study shows how the variability, due to the uncertain attachments, might be reduced by considering flexible connections. A mobility analysis compares systems connected with either rigid links or elastic springs. A frequency is identified at which the assembly dynamically uncouples; the effect on the host response variability due to the uncertain attachment decreases above this frequency with a reduction of the order of 60 dB in the coefficient of variation. This uncoupling or effective isolation frequency can be simply estimated from the mobility of the elastic connection and the properties of the nominal structural attachment. For design purposes, this frequency can be adjusted to achieve a more predictable response above a given frequency.

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IMechEC_Souza-Ferguson-accepted - Accepted Manuscript
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Accepted/In Press date: 14 June 2020
e-pub ahead of print date: 7 July 2020
Keywords: uncertainty, structural dynamics, coupled structures

Identifiers

Local EPrints ID: 441808
URI: http://eprints.soton.ac.uk/id/eprint/441808
ISSN: 0022-2542
PURE UUID: e4bdf576-42f5-44bf-adb3-bd9428642a72
ORCID for Neil Ferguson: ORCID iD orcid.org/0000-0001-5955-7477

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Date deposited: 29 Jun 2020 16:30
Last modified: 17 Mar 2024 05:40

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Contributors

Author: Marcos Ricardo Souza
Author: Neil Ferguson ORCID iD

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