Validation through finite element simulation of the behaviour of a polyurethane shock absorber under in-service and extreme conditions
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Identificadores
URI: https://hdl.handle.net/10902/27134DOI: 10.1520/JTE102940
ISSN: 0090-3973
ISSN: 1945-7553
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2010-07Derechos
© ASTM
Publicado en
Journal of Testing and Evaluation 2010,39(1),33-38
Editorial
American Society for Testing and Materials
Enlace a la publicación
Palabras clave
Finite elements
Cellular polyurethane elastomer
ABAQUS
Dynamic simulation
Non-linear behaviour
Resumen/Abstract
ABSTRACT: The safety rules for the construction and installation of lifts, currently in force in Europe, include several requirements concerning the behaviour of the shock absorbers when stopping an elevator. In this paper, a finite element model simulating the behaviour of a cellular polyurethane shock absorber has been developed. The material mechanical behaviour was simulated by means of an elastomeric foam theoretical model, previously calibrated in a former paper. Several in-service and extreme condition scenarios have been analysed with this numerical model, thus verifying the fulfilment of the requirements of the standard.
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