Simulation programs and mathematical calculations, to determine the Suspension system of the Formula Student electric vehicle, by means of kinematic Objective of this work is to carry out the dynamic and kinematic study of the The components must be resistant so that they do not fail under static and Suspension must incorporate a good kinematic design to keep the tire as perpendicularĪs possible to the pavement, to maintain optimal cushioning and adequateĮlasticity rates to keep the tire on the ground at all times. Which is why they are widely used by Formula 1 and Formula Student cars. Suspension systems are simple in design, easy to adjust, resistant, have goodĪdaptability and can be light if they are made with composite materials, Main suspension design in competition is the deformable parallelogram (doubléĪ-arm or double wishbone), which can have three forms of springdamper assemblyĪctivation, which are: direct, by means of a push-rod, or pull rod. The design, so that the car can be competitive. Of the suspension that allow for improvements either in the development or in Vehicles in terms of safety and comfort, there is a need to carry out studies That the suspension plays a very important role in the performance of the Had problems with some mechanical and electrical systems among the mechanicalĭifficulties is the lack of adjustments in the settings and the suspensionĭamping, as well as a failure located in a member of the lower control arm of To the results of last year, in the dynamic events the electric car has Vehicle for the UK Formula Student Electric competition in 2017. The first one was a combustionĬar for the 2014 competition in the UK, while the second was an electric Salesiana to develop two single-seater cars. Student have motivated the UPS Racing Team of Universidad Politécnica Technological advances and the level of competitiveness generated by Formula Regulations, to then compete with other students around the world. Type vehicle that successfully meets the tests stipulated in the respective University students to design, build and test the performance of a formula Objective is to promote the best training of young engineers, challenging Ĭompetition organized by the SAE (Society of Automotive Engineers) whose main Suspensión system of an electric single seater competition Formula (GIIT), Automotive Mechanical Engineering Major, Universidad Politécnica Single seater, Suspension, Dynamics, Kinematics. Monoplaza en términos de confort y seguridad. Parámetros que mejoren el sistema de suspensión y a la vez el desempeño del Con el estudio se busca evaluar el rendimiento de la suspensiónĮn función del reglamento de la competencia, con el fin de establecer Suspensión en el cual se realiza una determinación analítica del movimiento,Ĭargas y vibraciones por medio de software de simulación y de cálculos EsteĮstudio involucra un análisis de la cinemática y dinámica del sistema de Suspensión de un monoplaza de competencia eléctrico Formula Student. En este documento se detalla el estudio del sistema de Monoplazas para que se desenvuelvan con éxito ante las exigencias de laĬompetencia. Tecnológicos con el fin de mejorar cada vez más el rendimiento de los Suspension system and at the same time the performance of the car in terms ofįormula Student ha desencadenado en una serie de estudios y avances Regulations of the competition, to establish parameters that improve the Study is to evaluate the performance of the suspension according to the Means of simulation software and mathematical calculations. This study involves anĪnalysis of the kinematics and dynamics of the suspension system in which anĪnalytical determination of movement, loads and vibrations is carried out by This document details the study of the suspension system ofĪ Formula Student electric competition single seater. Seaters, so that its operation is successful according to the requirements of Technological advances in order to improve the performance of the single Generated by the Formula Student, has generated a series of studies and
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