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Prediction Method of Lunar Rover's Tractive Performance Based on Similitude Methodology

机译:基于相似度方法的月球车牵引性能预测方法

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In order to analyze low gravity influence to the tractive performance of lunar rover effectively, similitude methodology was introduced to investigate the lunar wheel-soil interaction. The key parameters of the system between lunar soil and rover wheel were selected at first, the terramechanical model of the system under lunar gravity was created according to similarity theorem, then the feasibility of model experiment approach was discussed. Since the cohesion of lunar soil is very low, a simple method was proposed to conduct the model experiment, with this method, both the wheel shape and wheel size are invariable, the rotation speed of model wheel is set as 2.45 times as the rotation speed of prototype wheel, the lunar soil simulant can be used as model experimental soil by remodeling the in-situ lunar soil state under ground gravity. In this case, both the drawbar pull and tractive torque obtained in model experiment are 6 times of their corresponding values under prototype condition, thus this method can be used to study a lunar rover's tractive performance on moon surface. To test and verify this method in the next step, the related verification technique was also introduced.
机译:为了有效地分析低重力对月球车牵引性能的影响,引入了相似方法研究月轮与土壤的相互作用。首先选择了月土与流浪者轮之间系统的关键参数,根据相似性定理建立了月球重力作用下的系统力学模型,然后讨论了模型试验方法的可行性。由于月球土壤的内聚力很低,因此提出了一种简单的方法进行模型试验,该方法既使车轮形状和车轮尺寸不变,又将模型车轮的转速设为转速的2.45倍。在原型轮的基础上,通过重塑地面重力作用下的月球土壤状态,可以将月球土壤模拟物用作模型实验土壤。在这种情况下,模型试验中获得的牵引力和牵引扭矩均为原型条件下对应值的6倍,因此该方法可用于研究月球车在月球表面的牵引性能。为了在下一步中测试和验证此方法,还介绍了相关的验证技术。

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