Parameter optimization for a vibration attenuation system on ambulance stretchers
Abstract
In this work a parameter optimization method is applied to determine the best values of damping and stiffness properties which will minimize the magnitude of the vertical acceleration of the ambulance stretcher. Thus, an 8-DOF vehicle dynamic model was developed to be used for the parameter optimization method. Subsequently, the results obtained by the model were compared to a full vehicle multi-body model of Carsim software. Damping and stiffness properties, which are obtained by a parameter optimization method, contribute to reducing the magnitude of the vertical acceleration of the ambulance stretcher. The approach developed in this study provides sources for designing a mechanism to reduce the vertical acceleration to which the patient is exposed during transportation in an ambulance. Copyright © 2021 Fernando Malvezzi, et al.
- Ambulance stretchers
- Parametric optimization
- Ride comfort
- Vibration
- Ambulances
- Stiffness
- Stretchers
- Ambulance stretchers
- Damping property
- Parameter optimization
- Parameter optimization methods
- Parametric optimization
- Ride comforts
- Stiffness properties
- Vertical accelerations
- Vibration
- Vibration attenuation
- Damping
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85106888888&doi=10.21595%2fvp.2021.21994&partnerID=40&md5=7190955763fc12704cd9b5e365edf1fbhttps://repositorio.maua.br/handle/MAUA/757
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