山地履带式底盘坡地牵引性能预测模型构建与试验
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国家重点研发计划项目(2022YFD2001300、2023YFD1000800)和国家农业重大项目(NK20221603)


Development and Validation of Traction Performance for Mountain Tracked Chassis on Slopes
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    摘要:

    为准确有效预测丘陵山区复杂作业环境下履带式底盘牵引性能,本文基于履带式底盘接地压力分布规律建立其牵引性能预测模型并开展试验验证。基于坡度与底盘参数提出了一种多峰非线性分布的接地压力分布数学模型,在不同坡度与位姿下开展接地压力测试试验,结果表明其预测平均误差为4.7%,模型能够较好地预测履带式底盘在坡地环境下接地压力分布情况;基于接地压力模型及履带-地面的相互作用规律,通过考虑土壤特性、坡度及履带式底盘姿态调整重心位置变化等因素,进一步构建了由均布垂直载荷驱动力特性部分与非均布载荷控制部分共同组成的履带底盘牵引力-滑转率预测模型;基于3类履带底盘开展等高线行驶和纵向爬坡工况牵引性能试验以对预测模型进行验证,结果表明:模型预测平均误差为3.6%、5.4%和6.3%,总体预测误差较小,可为丘陵山地履带式底盘适用性设计与机动性能优化提供理论依据和数据支撑。

    Abstract:

    In order to accurately and effectively predict the traction performance of tracked undercarriages under the complex operating environment in hilly and mountainous areas, a prediction model for the traction performance of tracked undercarriages was established and experimentally verified based on the law of grounding pressure distribution. Firstly, a mathematical model of ground pressure distribution with multi-peak non-linear distribution was proposed by considering the slope angle and chassis parameters, and the ground pressure test was carried out at different slopes and postures, and the results showed that the average error of its prediction was about 4.7%, the model can better predict the distribution of grounding pressure of crawler chassis in slope environment. Secondly, based on the grounding pressure model and the track-ground interaction law, by considering the soil characteristics, slope and the change of the position of the center of gravity for the attitude adjustment of the crawler chassis, the traction-slip rate prediction model of the crawler chassis composed of the driving force characteristics of the evenly distributed vertical load and the non-uniform load control part was further constructed. Finally, the traction performance tests of contour driving and longitudinal climbing conditions were carried out based on the three types of crawler chassis to verify the prediction model, and the results showed that the average prediction error of the model was 3.6%, 5.4% and 6.3%, respectively, and the overall prediction error was small, which could provide theoretical basis and data support for the design and development of the applicability of the tracked chassis in hilly and mountainous areas and the optimization of maneuverability.

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刘琪,纪宇轩,杨福增,张龙海,杜子星,刘志杰,朱晓岩.山地履带式底盘坡地牵引性能预测模型构建与试验[J].农业机械学报,2025,56(5):597-607. LIU Qi, JI Yuxuan, YANG Fuzeng, ZHANG Longhai, DU Zixing, LIU Zhijie, ZHU Xiaoyan. Development and Validation of Traction Performance for Mountain Tracked Chassis on Slopes[J]. Transactions of the Chinese Society for Agricultural Machinery,2025,56(5):597-607.

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  • 收稿日期:2024-03-03
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  • 在线发布日期: 2025-05-10
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