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Effects of soil compaction level, soil gradation, tine rake angle and velocity on modeling soil-tine interactions

机译:土壤压实度,土壤等级,耙齿前角和速度对模型相互作用的影响

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摘要

A study was carried out to investigate the effects of some selected model parameters such as soil compaction level, soil gradation, tine rake angle and velocity on tine draft force and power. Experiments were conducted in a narrow soil-bin. Two soils with different gradations under dry condition, three tine rake angles, and two tine speeds were tested at different soil compaction levels. Results showed a good correlation with exponential relationship between tine forces, tine power and applied soilcompaction loads for all the test conditions used. Good linear correlations were also found for applied soil compaction load and the corresponding cone penetration resistance. Soil gradation, which is the major factor for soil compaction effect under dry condition, was found effective in changing the tine force and power. The comparison between tines with different rake angles used in the experiments considering the relevant working depths confirmed useful trends. Tine with 90 deg rake angle required higher forces and exerted more power, while the tine with 50 deg rake angle was found to be most effective in terms of soil loosening and power consumption. Tine with 130 deg rake angle was found ineffective for soil tillage, as the vertical force component was very high compared to the other tines resulting in more soil compaction than pulverization. Above results could be effectively used at tillage implement design stage to keep better control over tine draft and lift force characteristics, in which the optimization could lead to save the cost, material, time and energy during tillage.
机译:进行了一项研究,以研究某些选定的模型参数,例如土壤压实度,土壤等级,耙齿前角和速度对耙齿力和功率的影响。实验是在狭窄的土壤箱中进行的。在不同的土壤压实水平下,测试了两种在干燥条件下具有不同等级的土壤,三个齿前角和两个齿速度。结果表明,在所有使用的试验条件下,齿力,齿力和施加的土体压实载荷之间的指数关系均具有良好的相关性。对于施加的土壤压实载荷和相应的锥入阻力也发现了良好的线性相关性。发现土壤分级是干燥条件下土壤压实效果的主要因素,可有效改变叉齿的力和动力。考虑相关工作深度的实验中使用的具有不同前角的尖齿之间的比较证实了有用的趋势。耙角为90度的齿需要更大的力并施加更大的动力,而耙角为50度的齿在土壤松散和功耗方面最有效。发现耙角为130度的铁皮对土壤耕作无效,因为垂直力分量与其他尖齿相比非常高,导致土壤压实比粉碎更紧密。以上结果可在耕作机具设计阶段有效利用,以更好地控制叉齿的吃水力和举升力特性,从而使优化效果节省耕作成本,材料,时间和能源。

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