Since flexible bushings are used as the interface between the suspension arms and the chassis, the extra degrees of freedom make the design process a complex task. While the use of a multi-body model is common practice in the industry, a dedicated computational tool can be more practical and straightforward, especially when undertaking the design of a new suspension concept from the ground up. This paper presents a quasi-static method for calculating suspension compliance under the action of forces and moments, enabling real-time simulations. The algorithm proposed in this paper was devised with a threefold purpose: integrating elasto-kinematics into the kinematic design tool previously created by the authors, integrating real-time vehicle dynamics simulation, and overcoming the limitations of the traditional approach based on the superposition principle. Finally, a comparison of the proposed model with one based on the lookup-table and superposition principle is presented.

A Comprehensive Method for Computing Suspension Elasto-kinematics With Non-linear Compliance

Magri P.;Gadola M.;Chindamo D.;Sandrini G.;Candela A.
2024-01-01

Abstract

Since flexible bushings are used as the interface between the suspension arms and the chassis, the extra degrees of freedom make the design process a complex task. While the use of a multi-body model is common practice in the industry, a dedicated computational tool can be more practical and straightforward, especially when undertaking the design of a new suspension concept from the ground up. This paper presents a quasi-static method for calculating suspension compliance under the action of forces and moments, enabling real-time simulations. The algorithm proposed in this paper was devised with a threefold purpose: integrating elasto-kinematics into the kinematic design tool previously created by the authors, integrating real-time vehicle dynamics simulation, and overcoming the limitations of the traditional approach based on the superposition principle. Finally, a comparison of the proposed model with one based on the lookup-table and superposition principle is presented.
2024
Lecture Notes in Mechanical Engineering
Ateneo di appartenenza
Esperti anonimi
Inglese
16th International Symposium on Advanced Vehicle Control, AVEC 2024
2024
ita
336
342
7
9783031703911
9783031703928
Springer Science and Business Media Deutschland GmbH
Bushing; Compliance; Elasto-kinematics; Kinematics; Simulation; Suspension; Vehicle Dynamics
https://link.springer.com/chapter/10.1007/978-3-031-70392-8_48
no
Goal 9: Industry, Innovation, and Infrastructure
open
Magri, P.; Gadola, M.; Chindamo, D.; Sandrini, G.; Candela, A.
273
info:eu-repo/semantics/conferenceObject
5
4 Contributo in Atti di Convegno (Proceeding)::4.1 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/614431
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