As used in mechanical engineering, the term tractive force can either refer to the total traction a vehicle exerts on a surface, or the amount of the total traction that is parallel to the direction of motion.
In railway engineering, the term tractive effort is often used synonymously with tractive force to describe the pulling or pushing capability of a locomotive. In automotive engineering, the terms are distinctive: tractive effort is generally higher than tractive force by the amount of rolling resistance present, and both terms are higher than the amount of drawbar pull by the total resistance present (including air resistance and grade). The published tractive force value for any vehicle may be theoretical—that is, calculated from known or implied mechanical properties—or obtained via testing under controlled conditions. The discussion herein covers the term's usage in mechanical applications in which the final stage of the power transmission system is one or more wheels in frictional contact with a roadway or railroad track.
The term tractive effort is often qualified as starting tractive effort, continuous tractive effort and maximum tractive effort. These terms apply to different operating conditions, but are related by common mechanical factors: input torque to the driving wheels, the wheel diameter, coefficient of friction (μ) between the driving wheels and supporting surface, and the weight applied to the driving wheels (mg). The product of μ and mg is the factor of adhesion, which determines the maximum torque that can be applied before the onset of wheelspin or wheelslip.
Starting tractive effort Starting tractive effort is the tractive force that can be generated at a standstill. This figure is important on railways because it determines the maximum train weight that a locomotive can set into motion.
Maximum tractive effort Maximum tractive effort is defined as the highest tractive force that can be generated under any condition that is not injurious to the vehicle or machine.
Cette page est générée automatiquement et peut contenir des informations qui ne sont pas correctes, complètes, à jour ou pertinentes par rapport à votre recherche. Il en va de même pour toutes les autres pages de ce site. Veillez à vérifier les informations auprès des sources officielles de l'EPFL.
Explore les équations fondamentales et la modélisation en hydroacoustique pour les installations hydroélectriques, en se concentrant sur la continuité, l'élan et la vitesse de propagation des vagues.
A traction motor is an electric motor used for propulsion of a vehicle, such as locomotives, electric or hydrogen vehicles, or electric multiple unit trains. Traction motors are used in electrically powered railway vehicles (electric multiple units) and other electric vehicles including electric milk floats, trolleybuses, elevators, roller coasters, and conveyors, as well as vehicles with electrical transmission systems (diesel-electric locomotives, electric hybrid vehicles), and battery electric vehicles.
Une locomotive Diesel est une locomotive dont l'énergie de traction provient d'un moteur diesel interne. On en distingue plusieurs types, selon la façon dont la puissance fournie par le moteur est transmise aux essieux. vignette|Locomotive Diesel-électriqueCC 72084 en livrée Arzens d'origine. vignette|upright|262 AD1 et BD1 (PLM) En France, le réseau PLM utilisa dès 1932 quatre locomotives de différents constructeurs résultant d'un concours pour la fourniture de locomotives prototypes destinée à la remonte des rames de voyageur, dans un premier temps, pour étudier les possibilités de la traction Diesel.
vignette|Locomotive 41 018 du Deutsche Reichsbahn vignette|Locomotive 242 A 1 de la SNCF. vignette|Locomotives, par E. A. Schefer Une locomotive à vapeur est un type de locomotive, c'est un engin moteur pour les chemins de fer, mu par une machine à vapeur. Ce type de moteur thermique est le plus couramment utilisé, de la naissance du chemin de fer jusque dans les années 1950. Il reste toujours employé très localement dans certains pays au , notamment pour des trains touristiques ou dans l'industrie minière vu que le carburant y est localement disponible à bas coût.