Simulation of spring-friction set of freight car truck, taking into account track profile

S. Abdullayev, Natalya Tokmurzina-Kobernyak, G. Ashirbayev, G. Bakyt, Aliya Izbairova
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Abstract

The purpose of this article is the mathematical modeling of a spring-friction set of a freight car trolley depending on the profile of the railway track. The article uses the methodology of the results of the generalized model of power interaction of friction pairs "pressure beam-friction wedge" and "friction wedge-friction bar" of the spring-friction set of the cart 18-578 in the mechanical system "track-car-load," in a particular case cart from which such models of the e of the freight car 18-100 can be obtained. The manuscript contains a software study using a computer simulation of a freight wagon trolley, which complements the experimental studies. The mathematical (symbolic) method in the computer algebra system MathCAD (a type of computer-aided design system) is used to solve the equations of equilibrium of the supercharger beam as a real object. In the course of the experimental study, a computational mathematical model of the force action of friction pairs of spring-absorbing trolley apparatuses was developed, and the results of calculations of the reaction of the friction bar to the friction wedge were mathematically obtained. The optimal parameters were obtained analytically, and the indicators of the angles of inclination of the contact surfaces of the trolley of the freight car were justified.
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考虑轨道轮廓的货运卡车弹簧摩擦组模拟
本文的目的是根据铁路轨道的轮廓建立货运小车弹簧摩擦组的数学模型。文章采用了机械系统 "轨道-车-载荷 "中 18-578 号小车弹簧-摩擦组的摩擦对 "压力梁-摩擦楔 "和 "摩擦楔-摩擦杆 "的动力相互作用广义模型结果的方法,在特定情况下小车可从中获得 18-100 号货运小车 e 的此类模型。手稿中包含一项利用计算机模拟货运车车厢的软件研究,它是对实验研究的补充。计算机代数系统 MathCAD(一种计算机辅助设计系统)中的数学(符号)方法被用来求解作为真实物体的增压器梁的平衡方程。在实验研究过程中,建立了弹簧吸力小车装置摩擦对力作用的计算数学模型,并通过数学计算获得了摩擦杆对摩擦楔的反作用力的计算结果。通过分析得出了最佳参数,并证明了货车小车接触面倾斜角度的指标是合理的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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