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Analysis of the two-point wheel-rail contact scenario using the knife-edge-equivalent contact constraint method

机译:用刀刃等效接触约束法分析双点轮轨接触场景

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This paper presents a rigid contact approach to analyse the two-point wheel-rail contact scenario using the simplified constraint-based contact method called Knife-edge Equivalent Contact method (KEC-method). The proposed approach makes use of the computationally efficient online solution of the KEC constraints, where a single-point rail is in contact with an equivalent wheel profile, and provides an exact relation between the location of the contact points in the equivalent and real profiles. In this context, the two-point contact scenario can be easily dealt by linearly softening the KEC-constraints in the vicinity of the two-point contact, that gives a continuous and unique contact point solution between each wheel-rail pair and avoids finite contact point jumps between tread and flange. This allows an efficient kinematic solution of the two-point contact scenario. However, to properly account for a dynamic equivalence of the two-point contact scenario in the computation of the tangential contact forces, the reaction force acting on the wheel when the contact point lies on the tread-flange transition, is transformed into two contact forces acting on the tread and flange respectively maintaining the resultant equilibrium of forces at the wheel. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种刚性接触方法,可以使用称为刀刃等效接触方法(KEC-Method)的简化约束的接触方法来分析双点轮轨接触场景。该方法利用了KEC约束的计算上有效的在线解决方案,其中单点轨与等效轮廓接触,并在等效和实际轮廓中的接触点的位置之间提供精确关系。在这种情况下,通过线性地软化双点触点附近的KEC约束,可以轻松地处理两点接触方案,这在每个轮轨对之间提供连续和独特的接触点解决方案,并避免有限触点点跳跃在胎面和法兰之间。这允许两点联系方式的高效运动求解。然而,为了适当地考虑在切向接触力的计算中的双点接触场景的动态等价,当接触点位于胎面法兰转变上时作用在车轮上的反作用力,转化为两个接触力在分别保持车轮上的力平衡的胎面和法兰上。 (c)2020 elestvier有限公司保留所有权利。

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