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作 者:李建桥[1] 黄晗[1] 党兆龙[2] 邹猛[1] 王洋[1]
机构地区:[1]吉林大学工程仿生教育部重点实验室,长春130022 [2]中国空间技术研究院,北京100094
出 处:《吉林大学学报(工学版)》2015年第1期167-173,共7页Journal of Jilin University:Engineering and Technology Edition
基 金:国家自然科学基金项目(50875107)
摘 要:针对月面低重力环境,采用轮上载荷为20~60 N的轻载荷条件,以车轮轮上载荷和速度为试验因素,车轮沉陷为试验指标设计正交试验方案,在模拟月壤3种不同状态下进行筛网轮土槽试验,采集车轮实际沉陷值,并利用激光轮辙形貌测量装置扫描轮辙,采集表观沉陷值。通过回归分析,拟合得到模拟月壤不同状态下筛网轮沉陷关于轮上载荷和速度的二元线性回归方程,方程拟合较好,置信度均为0.99,且相关系数均在0.9以上。对比车轮实际测量沉陷值和回归方程计算沉陷值,二者相对误差范围为0.34%~8.24%。轮辙的表观沉陷与相应的实际沉陷变化趋势一致,且二者沉陷差值随轮上载荷增加呈现线性增加规律,本文结果可为通过轮辙表观沉陷预测车轮实际沉陷提供依据。Experiments were performed to investigate the sinkage of wire mesh wheel under light load (in the range of 20 N to 60 N), which mimic the low gravity environment on lunar surface. The wheel load and wheel speed are taken as the experimental factors, the wheel sinkage is taken as the experimental index, and orthogonal experiment design method is adopted. The experiments were carried out on a single-wheel test bed for the wire wheels under three simulant regolith conditions. The actual wheel sinkages were collected, and the apparent sinkages were measured using a rut morphology laser scanning device. Using regression analysis, three linear regression equations were worked out with confidence degree of 0. 99 and square correlation coefficients all above 0. 9. The relative error between the actual wheel sinkage and the calculated sinkage by the regression equations ranged from 0. 34% to 8. 24%. The variation trend of the laser scanned apparent sinkage was in consistent with the actual sinkage. The linear relationship between the sinkage and the wheel load was obvious. This study verified that the actual sinkage can be predicted from the apparent sinkage.
关 键 词:航天器结构与设计 轻载荷 筛网轮 车轮沉陷 表观沉陷 模拟月壤
分 类 号:V476.3[航空宇航科学与技术—飞行器设计] U461.5[机械工程—车辆工程]
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