磁轨制动器制动仿真的高效简化数值接触模型

IF 1.9 3区 工程技术 Q3 MECHANICS
Emin Kocbay, Alois Steininger, Andreas Pavicsics, Eray Arslan, Johannes Edelmann
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引用次数: 0

摘要

磁性轨道制动器是一种基于机械接触(摩擦)的制动系统,通常是电磁驱动的,用作铁路运输中的紧急制动器。本文讨论了在准静态制动过程中预测接触体的有效局部力和全局力以及各自的变形的实际相关任务。为此,建立了一种简化、高效、准确的摩擦滑动接触数值模型。为了验证和验证该模型,进行了一些数值实验。首先对所提出的模型和算法进行了测试,并对一个抛物型压头缩进弹性半空间的解析基准问题进行了测试。然后,将开发的模型与参考Abaqus有限元仿真进行比较,以面向应用的制动仿真处理单个制动元件(杆蹄)与导轨之间的接触问题。结果显示并突出了所提出模型的适用性和效率,但也显示了当前的局限性和缺点,暗示了可能的未来扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient and simplified numerical contact model for the braking simulation of a magnetic track brake

The magnetic track brake is a mechanical contact (with friction) based braking system that is typically actuated electromagnetically and used as an emergency brake in railway transport. Within this paper, the practically relevant task of predicting the effective local and global forces of the contacting bodies and the respective deformations during the quasi-static braking process is addressed. Therefore, a simplified, yet efficient and accurate numerical contact model is developed to treat the frictional sliding contact problem. In order to verify and validate the model a couple of numerical experiments are carried out. The proposed model and algorithm are first tested against an analytic benchmark problem of a parabolic indenter indenting an elastic half-space. The developed model is then compared against a reference Abaqus finite element simulation in application-oriented braking simulations that treat the contact problem between a single braking element (pole shoe) and the rail. The results demonstrate and highlight the applicability and efficiency of the proposed model but also show the current limitations and shortcomings that hint at possible future augmentations.

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来源期刊
Meccanica
Meccanica 物理-力学
CiteScore
4.70
自引率
3.70%
发文量
151
审稿时长
7 months
期刊介绍: Meccanica focuses on the methodological framework shared by mechanical scientists when addressing theoretical or applied problems. Original papers address various aspects of mechanical and mathematical modeling, of solution, as well as of analysis of system behavior. The journal explores fundamental and applications issues in established areas of mechanics research as well as in emerging fields; contemporary research on general mechanics, solid and structural mechanics, fluid mechanics, and mechanics of machines; interdisciplinary fields between mechanics and other mathematical and engineering sciences; interaction of mechanics with dynamical systems, advanced materials, control and computation; electromechanics; biomechanics. Articles include full length papers; topical overviews; brief notes; discussions and comments on published papers; book reviews; and an international calendar of conferences. Meccanica, the official journal of the Italian Association of Theoretical and Applied Mechanics, was established in 1966.
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