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高地隙三角履带底盘多体动力学建模与试验
引用本文:扈凯,张文毅,李坤,刘宏俊,祁兵. 高地隙三角履带底盘多体动力学建模与试验[J]. 农业机械学报, 2021, 52(7): 386-394
作者姓名:扈凯  张文毅  李坤  刘宏俊  祁兵
作者单位:农业农村部南京农业机械化研究所,南京210014
基金项目:农业农村部南京农业机械化研究所所级重点项目(CAAS-NRAM-SJ-201903)和国家重点研发计划项目(2017YFD0700704)
摘    要:三角履带底盘具有高地隙、接地压力小、机动性好等优点,多体动力学分析是研究履带底盘运动特性的重要方法.以高地隙三角履带底盘为研究对象,建立了履带底盘各组件和车体总成的拓扑结构模型,分析了各部分之间的约束和运动关系;采用运动学和动力学手段分析了履带底盘行驶和爬坡的运动过程,构建了承重轮与履带接触模型、履带张紧力模型和履带-...

关 键 词:三角履带  农机底盘  多体动力学  拓扑结构  试验
收稿时间:2021-04-08

Multi-body Dynamics Modeling and Experiment of Triangular Tracked Chassis with High Ground Clearance
HU Kai,ZHANG Wenyi,LI Kun,LIU Hongjun,QI Bing. Multi-body Dynamics Modeling and Experiment of Triangular Tracked Chassis with High Ground Clearance[J]. Transactions of the Chinese Society for Agricultural Machinery, 2021, 52(7): 386-394
Authors:HU Kai  ZHANG Wenyi  LI Kun  LIU Hongjun  QI Bing
Affiliation:Nanjing Research Institute of Agricultural Mechanization, Ministry of Agriculture and Rural Affairs
Abstract:Triangular crawler chassis has the advantages of high ground clearance, low grounding pressure, good maneuverability, etc. Multi-body dynamics analysis is an important method to study the dynamic characteristics of crawler chassis. The triangular crawler chassis with high ground clearance was studied and its topological structure model and car body assembly were constructed. The constraints and motion relationship between the various parts were analyzed. The motion state of the tracked chassis in the driving and climbing process was studied. The contact model between load bearing wheel and crawler, the crawler tension model and the contact model between crawler and soft ground were deduced and analyzed. The road spectra of class B-level road (cement hard ground pavement) and class E-level road (farmland soft soil surface) were established by harmonic superposition method. Then multi-body dynamics simulation and experiment verification were conducted. The results showed that the average speed error rate of the established model was less than 1.50%. The distance offset error of hard road was 5.68%, and that of soft soil road was 4.89%. The average pitch angle error was no more than 3%. The data indicated that the established multi-body dynamics model of triangular crawler chassis had high accuracy. The research conclusions and methods can be extended to the dynamic investigation of other tracked chassis.
Keywords:triangular crawler  chassis of agricultural machinery  multi-body dynamics  topological structure  experiment
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