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A fast method for solving conformal rolling contact problems

delete2023-10-11
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PRE
AI
Y
Yu Chen
B
Binbin Liu
B
Boyang An *
王平 封面图
王平 (Ping Wang)
S
Stefano Bruni
DOI:10.1080/00423114.2023.2268226delete
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摘要

摘要

En 中文
For conformal contact situations, some of the assumptions employed in classical contact theories, such as the flatness of the contact area, lose their validity. Existing conformal contact models are challenged by either accuracy or computational efficiency. With the aim of achieving a balanced trade-off between these contrasting requirements, this paper proposes a new simplified method to solve conformal rolling contact problems, which is based on fast non-Hertzian contact model INFCON and FaStrip. Numerical experiments are performed for two typical wheel/rail conformal contact scenarios to assess the performance of the proposed method, taking as the reference the CONTACT method for conformal contacts. The comparative analyses show that the proposed method is in good agreement with the reference method in terms of the determination of the contact stresses, total forces, and the prediction of wear, whereas the traditional half-space approach fails to capture the main features of the conformal contacts. In addition, the high computational efficiency of the proposed method shows the potential for application in vehicle dynamic simulation and damage analysis.
Keyword:
Wheel-rail contact
conformal contact
non-Hertzian contact
vehicle dynamics
wear

期刊

V
Vehicle System Dynamics
IF:
3.9
论文数:
3.1K
被引数:
8.9K

机构

S
Southwest Jiaotong University
学者数:
2.9W
论文数: 2.1W
被引数: 2.3W
P
Polytechnic University of Milan
学者数:
2.0W
论文数: 1.8W
被引数: 24
引用论文

引用论文

On the influence of conformity on wheel-rail rolling contact mechanics
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errBlanco-Lorenzo, Julio; Santamaria, Javier; Vadillo, Ernesto G.; Correa, Nekane
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An alternative to FASTSIM for tangential solution of the wheel-rail contact
err2016-03-07
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PREAI
errSichani, Matin Sh.; Enblom, Roger; Berg, Mats
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