Multi-body dynamics modeling and driving performance evaluation of oil recovery vehicle

Ji-Tae Kim, Dongu Im, Hyuek-Jin Choi, Jaewon Oh, Jaho Seo, Young-Jun Park
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Abstract

In this study, the design and driving performance evaluation of a driving system for driving on deformable terrain was performed using terramechanics theory and multi-body dynamics simulation. For the design of the driving system, the mechanical interaction of track-terrain was analyzed using a Bekker-based model. Based on the analyzed results, the design of a track suitable for the deformable terrain to be driven and selection of a power source (engine, transmission, etc.) were carried out. A multi-body simulation model of the tracked vehicle reflecting the designed track and the selected power source was developed, and a ground model reflecting the mechanical property of terrain was also developed to analyze the mechanical interaction of the track-terrain through simulation. In addition, each link constituting the track was modeled as a 6 DOF spring/damper system to consider the track's tension force and load distribution under the track, and through this, different ground pressure and soil thrust were applied according to the motion state of each link. Finally, driving performance analyses were performed using the developed tracked vehicle, and as a result, it was confirmed that the driving requirements of the tracked vehicle were satisfied.
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采油车多体动力学建模及行驶性能评价
基于地形力学理论和多体动力学仿真,对可变形地形驱动系统进行了设计和性能评价。针对驱动系统的设计,采用基于bekker的模型对履带-地形的力学相互作用进行了分析。在分析结果的基础上,设计了适合于变形地形的履带,并进行了动力源(发动机、传动装置等)的选择。建立了反映设计轨道和选定动力源的履带车辆多体仿真模型,建立了反映地形力学特性的地面模型,通过仿真分析履带-地形的力学相互作用。此外,将构成轨道的各环节建模为6自由度弹簧/阻尼器系统,考虑轨道下的张力和载荷分布,根据各环节的运动状态施加不同的地压力和土推力。最后,对所研制的履带车辆进行了驾驶性能分析,验证了履带车辆的驾驶性能满足要求。
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来源期刊
CiteScore
4.10
自引率
11.10%
发文量
38
审稿时长
>12 weeks
期刊介绍: The Journal of Multi-body Dynamics is a multi-disciplinary forum covering all aspects of mechanical design and dynamic analysis of multi-body systems. It is essential reading for academic and industrial research and development departments active in the mechanical design, monitoring and dynamic analysis of multi-body systems.
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