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contributor authorSung Pil Jung
contributor authorTae Won Park
contributor authorYoung Guk Kim
contributor authorJin Sung Paik
date accessioned2017-05-09T00:48:42Z
date available2017-05-09T00:48:42Z
date copyrightOctober, 2012
date issued2012
identifier issn1555-1415
identifier otherJCNDDM-28998#041006_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/148315
description abstractThis paper presents a model of the catenary and pantograph and an analysis of their dynamic interaction, using the finite element method. An analytical procedure to calculate the length of droppers is introduced. The calculated dropper length is applied to the catenary model and the static deformation due to gravity is simulated. The presag result of the contact wire is validated by comparison with the design specification. The wave propagation speed of the catenary model is acquired by applying the impact force to the contact wire. The result, regarding the wave propagation speed, agrees well with the reference speed as defined by the UIC code. On the contrary, the pantograph model is unified with the finite element catenary model, and the dynamic interaction of the catenary-pantograph is simulated. An optimization technique to find the material properties of the pantograph model is proposed. Based on the following performance test data, the optimum values of the material properties are found by using the response surface analysis method. The reliability of the pantograph-catenary model is verified by comparing the contact force results obtained from the simulation and test. When the pantograph drives at 305 km/h, 370 km/h, and 430 km/h, the contact force variation and the possibility of loss of contact are discussed.
publisherThe American Society of Mechanical Engineers (ASME)
titleEstimation of Dynamic Contact Force Between a Pantograph and Catenary Using the Finite Element Method
typeJournal Paper
journal volume7
journal issue4
journal titleJournal of Computational and Nonlinear Dynamics
identifier doi10.1115/1.4006733
journal fristpage41006
identifier eissn1555-1423
keywordsWire
keywordsForce
keywordsOptimization
keywordsDesign
keywordsWave propagation
keywordsSimulation
keywordsMaterials properties
keywordsStress AND Finite element methods
treeJournal of Computational and Nonlinear Dynamics:;2012:;volume( 007 ):;issue: 004
contenttypeFulltext


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