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首页> 外文期刊>Soil & Tillage Research >Rubber track systems for conventional tractors - effects on soil compaction and traction.
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Rubber track systems for conventional tractors - effects on soil compaction and traction.

机译:传统拖拉机的橡胶履带系统-对土壤压实和牵引的影响。

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摘要

Traditionally, tractors have been built either for tracks or wheels, with tracks mainly on heavy tractors with high power. Today, it is possible to retrofit four separate track units on a conventional agricultural tractor, creating interesting possibilities for agriculture. The objective of the present study was to compare soil compaction and traction for tracks, single and dual wheels mounted on the same tractor type. Measurements were made on two clay soils (Eutric Cambisols) in Sweden in 2009, using an 85 kW tractor with a total weight of 7700 kg. The rubber track system consisted of four tracks mounted on the conventional wheel axles of the tractor. The measured stresses were similar for the tracks and dual wheels at all depths studied (15, 30 and 50 cm), but were considerably higher for the single wheels at all depths. Simulations of soil stresses correlated closely to measured values for the tracks and the dual wheels, but underestimated soil stresses in the topsoil compared to measured values for the single wheel. Bulk density and penetration resistance were consistently highest and saturated hydraulic conductivity lowest after wheeling with single wheels, while there were no statistically significant differences between tracks and dual wheels. With single wheels and the tractor loaded, saturated hydraulic conductivity decreased to 0.01 m h-1 from 0.13 m h-1 in the control, while bulk density increased from 1.24 to 1.36 Mg m-3. The stress distribution in the driving direction was relatively even along the front and rear tracks, which is an advantage compared with a long single track, which often has an uneven longitudinal stress distribution. Slip was significantly higher for the dual and single wheels compared with tracks. To utilise the large contact area of the tracks, the tractor should have a low weight in relation to the engine power.Digital Object Identifier http://dx.doi.org/10.1016/j.still.2011.09.004
机译:传统上,拖拉机是为履带或车轮制造的,履带主要安装在具有高功率的重型拖拉机上。如今,可以在传统的农用拖拉机上改装四个独立的履带单元,从而为农业创造了有趣的可能性。本研究的目的是比较安装在相同拖拉机类型上的履带,单轮和双轮的土壤压实度和牵引力。 2009年在瑞典的两种黏土(Eutric Cambisols)上使用一台总功率为7700 kg的85 kW拖拉机进行了测量。橡胶履带系统由安装在拖拉机常规轮轴上的四个履带组成。在所研究的所有深度(15、30和50 cm),履带和双轮的测得应力均相似,但在所有深度的单轮均测得更高。土壤应力的模拟与履带和双轮的测量值密切相关,但是与单轮的测量值相比,表土中的土壤应力被低估了。单轮车轮行驶后,堆密度和渗透阻力始终是最高的,而饱和水力传导率最低,而履带和双轮车轮之间没有统计学显着差异。在单轮和拖拉机加载的情况下,饱和导水率从对照中的0.13 mh -1 降低到0.01 mh -1 ,而堆积密度从1.24 Mg m增加到1.36 Mg m -3 。沿前后轨道在行驶方向上的应力分布相对均匀,这与长单轨道(通常具有不均匀的纵向应力分布)相比是一个优势。与履带相比,双轮和单轮的滑移率明显更高。要利用较大的履带接触面积,拖拉机的重量应相对于发动机功率较小。数字对象标识符http://dx.doi.org/10.1016/j.still.2011.09.004

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