Dataset of experimental measurements for the Orion beam structure

This data article comprises experimental data to investigate the nonlinear dynamic behavior of the Orion beam structure, which consists of two duraluminum beams assembled by bolted joints. To retain contact on a small area between both beams, this new lap-joint configuration proposes contact patches...

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Autores principales: Rafael de Oliveira Teloli, Pauline Butaud, Gaël Chevallier, Samuel da Silva
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Lenguaje:EN
Publicado: Elsevier 2021
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spelling oai:doaj.org-article:1cff6cad53a04638b958fecefe2759892021-11-28T04:33:25ZDataset of experimental measurements for the Orion beam structure2352-340910.1016/j.dib.2021.107627https://doaj.org/article/1cff6cad53a04638b958fecefe2759892021-12-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2352340921009021https://doaj.org/toc/2352-3409This data article comprises experimental data to investigate the nonlinear dynamic behavior of the Orion beam structure, which consists of two duraluminum beams assembled by bolted joints. To retain contact on a small area between both beams, this new lap-joint configuration proposes contact patches at each bolt connection. The Orion beam suggests an assembly configuration that associates bolts dedicated to ‘static’ functions and to those to perform ‘damping’ functions. This ensures a significant increase in the structural damping without degrading the structural stiffness. Experiments have been performed on the laboratory ple Vibration and Acoustic, located at FEMTO-ST Institute, CNRS/UFC/ENSMM/UTBM, Department of Applied Mechanics, 24 chemin de lEpitaphe, 25000 Besanon, France.This data aim to provide the geometrical step and all the experimental measurements performed on our lap-joint for several excitation amplitudes and tightening torques, as far as possible and with the degree of uncertainties of the measurements. By doing so, we intend to provide experimental data, as precise and reliable as possible, which are required to progress on the numerical modelling of the dry friction damping in assembly structures.This Data in Brief article is an additional research item alongside the following paper published in the Mechanical Systems and Signal Processing journal: R. O. Teloli, P. Butaud, G. Chevallier and S. da Silva, Good practices for designing and experimental testing of dynamically excited jointed structures: the Orion beam.Rafael de Oliveira TeloliPauline ButaudGaël ChevallierSamuel da SilvaElsevierarticleOrion beamFrictional dampingExperimental practicesContact mechanicsBolted jointComputer applications to medicine. Medical informaticsR858-859.7Science (General)Q1-390ENData in Brief, Vol 39, Iss , Pp 107627- (2021)
institution DOAJ
collection DOAJ
language EN
topic Orion beam
Frictional damping
Experimental practices
Contact mechanics
Bolted joint
Computer applications to medicine. Medical informatics
R858-859.7
Science (General)
Q1-390
spellingShingle Orion beam
Frictional damping
Experimental practices
Contact mechanics
Bolted joint
Computer applications to medicine. Medical informatics
R858-859.7
Science (General)
Q1-390
Rafael de Oliveira Teloli
Pauline Butaud
Gaël Chevallier
Samuel da Silva
Dataset of experimental measurements for the Orion beam structure
description This data article comprises experimental data to investigate the nonlinear dynamic behavior of the Orion beam structure, which consists of two duraluminum beams assembled by bolted joints. To retain contact on a small area between both beams, this new lap-joint configuration proposes contact patches at each bolt connection. The Orion beam suggests an assembly configuration that associates bolts dedicated to ‘static’ functions and to those to perform ‘damping’ functions. This ensures a significant increase in the structural damping without degrading the structural stiffness. Experiments have been performed on the laboratory ple Vibration and Acoustic, located at FEMTO-ST Institute, CNRS/UFC/ENSMM/UTBM, Department of Applied Mechanics, 24 chemin de lEpitaphe, 25000 Besanon, France.This data aim to provide the geometrical step and all the experimental measurements performed on our lap-joint for several excitation amplitudes and tightening torques, as far as possible and with the degree of uncertainties of the measurements. By doing so, we intend to provide experimental data, as precise and reliable as possible, which are required to progress on the numerical modelling of the dry friction damping in assembly structures.This Data in Brief article is an additional research item alongside the following paper published in the Mechanical Systems and Signal Processing journal: R. O. Teloli, P. Butaud, G. Chevallier and S. da Silva, Good practices for designing and experimental testing of dynamically excited jointed structures: the Orion beam.
format article
author Rafael de Oliveira Teloli
Pauline Butaud
Gaël Chevallier
Samuel da Silva
author_facet Rafael de Oliveira Teloli
Pauline Butaud
Gaël Chevallier
Samuel da Silva
author_sort Rafael de Oliveira Teloli
title Dataset of experimental measurements for the Orion beam structure
title_short Dataset of experimental measurements for the Orion beam structure
title_full Dataset of experimental measurements for the Orion beam structure
title_fullStr Dataset of experimental measurements for the Orion beam structure
title_full_unstemmed Dataset of experimental measurements for the Orion beam structure
title_sort dataset of experimental measurements for the orion beam structure
publisher Elsevier
publishDate 2021
url https://doaj.org/article/1cff6cad53a04638b958fecefe275989
work_keys_str_mv AT rafaeldeoliveirateloli datasetofexperimentalmeasurementsfortheorionbeamstructure
AT paulinebutaud datasetofexperimentalmeasurementsfortheorionbeamstructure
AT gaelchevallier datasetofexperimentalmeasurementsfortheorionbeamstructure
AT samueldasilva datasetofexperimentalmeasurementsfortheorionbeamstructure
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