基于地面力学的筛网轮牵引通过性研究
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国家自然科学基金项目(51375199)


Traction Trafficability of Wire Mesh Wheel Based on Terramechanics
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    摘要:

    筛网轮具有质量轻、转向阻力小等优点,但其在松软干沙路面上的牵引通过性研究比较少。本文设计了轻型轮壤土槽测试系统,以车轮沉陷量、驱动扭矩、挂钩牵引力和牵引系数为指标,在土壤松散和自然状态下进行筛网轮和圆柱轮牵引通过性对比试验,基于轮辙非接触测量获取筛网轮表观沉陷量。结果表明:试验条件下,筛网轮实际沉陷量范围分别为13.1~26.3mm(松散状态)和8.1~18.7mm(自然状态),较圆柱轮平均分别增加了26.4%(松散状态)和22.7%(自然状态);随着滑转率的增加,筛网轮表观沉陷量呈现减小趋势,圆柱轮则呈现先增加后减小趋势。车轮驱动扭矩、挂钩牵引力随着滑转率的增加而增加,牵引系数呈现先增加后减小趋势;筛网轮驱动扭矩最大值分别为3.18N·m(松散状态)和3.76N〖DK〗·m(自然状态),筛网轮挂钩牵引力最大值分别为8.46N(松散状态)和9.9N(自然状态),自然状态土壤较松散状态时挂钩牵引力平均提高了16.7%;与筛网轮相比,圆柱轮驱动扭矩较筛网轮平均提高了45.2%,挂钩牵引力则平均提高了30.9%(松散状态)和33.6%(自然状态);筛网轮牵引系数明显较圆柱轮大,自然状态下筛网轮牵引系数最大值为0.29,较松散状态下提高了17.9%。综合考虑车轮沉陷量、牵引系数的影响,筛网轮在干沙路面上比圆柱轮具有更好的牵引通过性。

    Abstract:

    Wire mesh wheel has good trafficability on soft and clammy terrain; however, there were few studies on traction trafficability of wire mesh wheel on dry sand soil. The lightweight wheelssoil testing system was developed. The wheel sinkage, driving torque, drawbar pull and traction efficiency were adopted as testing indexes, and the tests on tractive trafficability of wire mesh wheel and cylindrical wheel were conducted under soft and natural soil state. The apparent sinkage of wire mesh wheel was obtained based on rut noncontact measurement. Results indicated that the real sinkages of wire mesh wheel were ranged from 13.1mm to 26.3mm (soft state) and from 8.1mm to 18.7mm (natural state), compared with those of the cylindrical wheel, the average increasing rate were 264% (soft state) and 22.7% (natural state), respectively. The apparent sinkage of wire mesh wheel was decreased with the increase of slip ratio, while the apparent sinkage of cylindrical wheel was increased firstly and then decreased. As the increase of slip ratio, both the driving torque and drawbar pull were increased, and traction efficiency was increased firstly and then decreased. The maximum driving torques of wire mesh wheel were 3.18N·m(soft state) and 3.76N·m (natural state). The driving torque of cylindrical wheel was larger than that of wire mesh wheel. The maximum drawbar pulls of wire mesh wheel were up to 8.46N (soft state) and 9.9N (natural state), the drawbar pull under natural soil state was increased by 16.7% than that on the soft soil state. The driving torque increasing ratio of cylindrical wheel was 45.2%, and the increasing average ratio was 32.3% for drawbar pull, compared with that of wire mesh wheel. The traction efficiency driving torque of wire mesh wheel was obviously larger than that of cylindrical wheel. The traction efficiency under natural soil state was increased by 17.9% than that on the soft soil state. The test conclusions indicated that the trafficability of wire mesh wheel was better than that of cylindrical wheel on dry sand soil, when comprehensively considered the effect of wheel sinkage and traction efficiency. The research results provided technical methods and basic data for development of lightweight vehicles, ground testing and traction trafficability assessment of wheel.

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黄晗,李建桥,陈百超,邹猛,吴宝.基于地面力学的筛网轮牵引通过性研究[J].农业机械学报,2016,47(s1):464-470. Huang Han, Li Jianqiao, Chen Baichao, Zou Meng, Wu Baoguang. Traction Trafficability of Wire Mesh Wheel Based on Terramechanics[J]. Transactions of the Chinese Society for Agricultural Machinery,2016,47(s1):464-470.

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  • 收稿日期:2016-07-20
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  • 在线发布日期: 2016-10-15
  • 出版日期: 2016-10-15