丘陵山区农用自适应调平底盘设计与试验
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国家自然科学基金项目(51405494)


Design and Experiment of Adaptive Leveling Chassis for Hilly Area
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    摘要:

    丘陵山区地形复杂,地面凹凸不平,针对农用车辆行驶稳定性较差、车体倾斜等问题,提出一种自适应调平方法,并根据丘陵山区农用动力底盘作业要求,设计一种自适应调平悬架及应用该悬架的自适应调平底盘。建立虚拟样机三维模型,并导入动力学分析软件ADAMS中进行仿真分析,将底盘仿真过程中的侧倾角和俯仰角与四轮刚性底盘在同等条件下仿真得到的侧倾角和俯仰角对比,自适应调平底盘参考某种作业环境在幅值和波长特定的波形地面上行走作业时,侧倾角和俯仰角之和可降低60%左右。通过对样机土槽试验结果分析,证明自适应调平方法的可行性和仿真分析的正确性。

    Abstract:

    With the improvement of agricultural mechanization in China, the development of agricultural machinery suitable for hilly and mountainous regions has been paid more and more attention;However, due to poor hilly and mountainous regions operating environment, when agricultural vehicles are in the walk, the processes of roll angle and pitch angle have a great change, affecting vehicle stability. The existing agricultural vehicle leveling is mainly through mechanical, electronic, hydraulic and other control technology to achieve, mostly when the body tilts, according to the degree of tilt of the vehicle to calculate the amount of adjustment and leveling, this method is characterized by complex control and high cost. Aiming at the problems, an adaptive leveling method was proposed. And an adaptive leveling suspension and an adaptive leveling chassis with the suspension were designed by using this method. Three-dimensional model was established by using 3D modeling software, and the model was introduced into dynamic analysis software ADAMS for simulation analysis. By analyzing the simulation process, it was possible that the sum of the roll angle and pitch angle of the adaptive leveling chassis can be reduced by about 60% when walking on amplitude and wavelength-specific waveform ground which referenced to a certain operating environment. The test of sample machine was carried out, and the results showed the feasibility of the adaptive leveling method and the correctness of the simulation analysis, that was, the adaptive leveling of the chassis can reduce the sum of roll angle and pitch angle when the chassis was running and can be realized and met the requirements of the agricultural chassis in the hilly area.

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刘平义,彭凤娟,李海涛,王壮壮,魏文军,赵俊朋.丘陵山区农用自适应调平底盘设计与试验[J].农业机械学报,2017,48(12):42-47.

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  • 收稿日期:2017-03-09
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  • 在线发布日期: 2017-12-10
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