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Design of carbon/epoxy-aluminum hybrid upper arm of the pantograph of high-speed trains using adhesive bonding technique

Authors
Jeon, Seung-WooCho, Yong HyeonHan, Min-GuChang, Seung-Hwan
Issue Date
Sep-2016
Publisher
ELSEVIER SCI LTD
Keywords
Pantograph; Thermal analysis; Adhesive bonding; Weight reduction; Stiffness
Citation
COMPOSITE STRUCTURES, v.152, pp 538 - 545
Pages
8
Journal Title
COMPOSITE STRUCTURES
Volume
152
Start Page
538
End Page
545
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/1807
DOI
10.1016/j.compstruct.2016.05.079
ISSN
0263-8223
1879-1085
Abstract
The upper arm of a steel pantograph was replaced by a high stiffness carbon/epoxy composite-aluminum hybrid structure to enhance the mechanical performance of a pantograph for high-speed trains. By considering driving conditions such as high voltage discharge and a wide range of environmental temperatures, the composite laminates were applied to the inner surface of an aluminum pipe by using adhesive bonding with an epoxy adhesive. The bending stiffness of the slender arm structure was the most important mechanical performance criterion; therefore, only simple stacking sequences ([0](10T), [+/- 5](5T), [+/- 10](5T)), which guarantee the higher bending stiffness, were tried to determine the mechanical performance such as maximum deflection and natural frequency. Thermal stress due to environmental temperature (-35 degrees C to 65 degrees C) was also evaluated by finite element analysis. The generated stresses in the bonding layers were closely investigated, and it was found that the maximum stress was below 60% of the material strength of the epoxy adhesive under various temperature conditions. (C) 2016 Elsevier Ltd. All rights reserved.
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Chang, Seung-Hwan
공과대학 (기계공학부)
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