Method of the strength analysis of a track-type tractor undercarriage with the use of multibody simulation and fininte element analysis

V. Gorelov, A. Komissarov, D. Vdovin, S. V. Gaev, M. Vyaznikov, I. Taratorkin
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Abstract

The wide use of the finite element method for the strength analysis of the undercarriage elements requires a reliable method of the load's calculation. Conventional analytical method of the load's calculation does not take into account their redistribution due to the kinematics and dynamics of the elements. An alternative option is the numerical dynamic analysis with the use of the spatial dynamical models taking into account kinematics and flexibility of the undercarriage elements. The article describes a method of the strength analysis of a tracked vehicle undercarriage for the case of a track-type tractor with gross weight 72 ton. The method is based on the combination of the undercarriage multibody model for the simulation of the loads in typical operation modes and finite element models of its parts for calculation of the strain-stress and margin of safety in each load case. The undercarriage is described as a set of rigid bodies connected by springs and dampers at all interaction points between the undercarriage elements, the track-shoes, and the ground. The loads on the undercarriage are calculated by the numerical integration of the equations of motion. The time histories of the loads are used for the detection of the static strength critical load cases. Each critical load is transmitted to the finite element models of the analyzed undercarriage parts for the subsequent strength analysis. The method is demonstrated for the «tractor forward pitch during the lifting of the earthmoving blade» and «tractor moving over a single rail» load cases. The article shows the analysis of the time histories of the bogie loads. The authors discuss issues of the load transmission from the multibody model to the finite element models of the undercarriage parts and demonstrate some results of the strength analysis of the bogie.
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基于多体仿真和有限元分析的履带式拖拉机底盘强度分析方法
有限元法在底盘构件强度分析中的广泛应用,需要一种可靠的载荷计算方法。传统的载荷计算分析方法没有考虑到由于单元的运动学和动力学而引起的重分布。另一种选择是利用空间动力学模型进行数值动力学分析,同时考虑起落架元件的运动学和灵活性。本文以总重72吨的履带式拖拉机为例,介绍了一种履带式车辆底盘强度分析方法。该方法采用底盘多体模型对典型工况下的载荷进行模拟,并结合底盘各部件的有限元模型计算各工况下的应变应力和安全裕度。起落架被描述为一组刚体,在起落架元件、履带鞋和地面之间的所有相互作用点上由弹簧和阻尼器连接。通过运动方程的数值积分计算了底盘上的载荷。荷载时程用于检测静强度临界荷载工况。每个临界载荷被传递到被分析起落架部件的有限元模型中,用于后续的强度分析。该方法演示了«拖拉机前俯仰期间抬升土方叶片»和«拖拉机移动在单轨»负载情况。本文对转向架载荷的时程进行了分析。讨论了由多体模型向有限元模型的载荷传递问题,并给出了转向架强度分析的一些结果。
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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