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Soil compaction of four-wheel drive and tracked tractors under various draft loads

机译:四轮驱动和履带拖拉机在各种牵引载荷下的土壤压实

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The soil response to traffic loads as affected by tire inflation pressure, track width and drawbar pull was measured. The change in soil physical properties caused by a John Deere 8870 tractor at two tire pressure settings and Caterpillar Challenger 65 and 75 tractors with 64 and 89 cm wide belt tracks, were measured at two load levels; no draft (tractor only) and tractor pulling a 12.5 m field cultivator. The Ohio State University Soil Physical Properties Measurement System was used to measure cone penetration resistance, air permeability, air- filled porosity, and bulk density. The results show the dual overinflated tires caused the greatest change, followed by the Caterpillar Challenger 65 track, then the Caterpillar Challenger 75 track, and finally dual correctly inflated tires caused the least effect on soil physical properties. These results were consistent at each depth. The effects of the two draft levels give the same ranking of the tractive units. In general, the percentage change of soil physical properties from untrafficked to trafficked was very similar for the load and no load comparison.
机译:测量了通过轮胎充气压力,轨道宽度和牵引杆拉动的交通负荷的土壤反应。在两个轮胎压力设定和毛毛虫挑战者65和75拖拉机的两个轮胎压力设置和带有64和89cm宽带轨道的宽带轨道引起的土壤物理特性的变化是在两个载荷水平测量的;没有草案(仅限拖拉机)和拖拉机拉动12.5米的耕地机。俄亥俄州大学土壤物理性质测量系统用于测量锥形渗透性,透气性,空气孔隙率和散装密度。结果表明,双溢流轮胎引起最大的变化,其次是毛毛虫挑战者65轨道,然后是毛毛虫挑战者75轨道,最后双正确膨胀的轮胎对土壤物理性质的影响最小。这些结果在每个深度处一致。两个草案水平的影响给出了牵引力单位的相同排名。一般而言,对被贩运的土壤物理性质的百分比变化与负载非常相似,没有负载比较。

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