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The effect of tyres and a rubber track at high axle loads on soil compaction-Part 2: Multi-axle machine studies

机译:高轴负载下轮胎和橡胶履带对土壤压实的影响-第2部分:多轴机器研究

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摘要

This paper reports on a study of the effect of the passage of multi-axle harvesting machines on the soil physical properties. In particular, it investigates the effect of the rear tyre of a combine harvester on the amount of soil compaction subsequent to the passage of the front tyre/track. The work was conducted in controlled laboratory conditions to determine the effect of a simulated self-propelled combine harvester with a total machine weight of 30–33 t. This was assessed by embedding talcum powder tracer lines in the soil to measure soil displacement and soil density changes. Dry bulk density and penetrometer resistance were also measured. The results showed that the benefit of the rubber track found by Ansorge and Godwin [2007a. The effect of tyres and a rubber track at high axle loads on soil compaction: Part 1: Single Axle Studies. Biosystems Engineering 98 (1), 115–126] was maintained after the additional passage of the rear tyre. After the passage of a track the effect of rear tyre size was insignificant, but the rear tyre size had a significant influence on soil density when following a leading tyre. This was due to a higher strength layer at the soil surface created by the track which was able to withstand the load of the subsequent passes and protect the soil below from further compaction. Results similar to those found for a tracked machine were also achieved by three passes of a 900 mm section width tyre at 5 t load and 0.5 bar inflation pressure. The track results for the 33 t machine were very similar to those of a smaller combine harvester with a total load of 11 t and similar rut width. The study confirmed the benefit of tracks with regard to soil compaction and emphasised the fact that total axle loads and machine weights are less important than how the loads are distributed to the soil.
机译:本文报道了多轴收割机通过对土壤物理性质的影响的研究。特别是,它研究了联合收割机的后轮胎对前轮胎/履带通过后土壤压实度的影响。这项工作是在受控的实验室条件下进行的,以确定机器总重量为30-33 t的模拟自走式联合收割机的效果。通过将滑石粉示踪剂线嵌入土壤中以测量土壤的位移和土壤密度的变化来评估。还测量了干堆积密度和耐渗度计。结果表明,Ansorge和Godwin [2007a。]发现了橡胶跑道的好处。高轴负载下轮胎和橡胶履带对土壤压实的影响:第1部分:单轴研究。后轮胎再通过一次后,维持了Biosystems Engineering 98(1),115-126]。履带通过后轮胎尺寸的影响微不足道,但是当跟随前轮胎时,后轮胎尺寸对土壤密度有显着影响。这是由于轨道在土壤表面形成了较高的强度,能够承受后续通过的载荷,并保护下方的土壤免于进一步压实。通过对900 mm截面宽度的轮胎在5 t载荷和0.5 bar充气压力下进行三遍测试,也获得了与履带机相似的结果。 33 t机器的跟踪结果与总负荷为11 t的车辙宽度较小的小型联合收割机的跟踪结果非常相似。这项研究证实了履带在土壤压实方面的好处,并强调了这样一个事实,即总的轴负载和机器重量比负载如何分配到土壤更不重要。

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  • 作者

    Ansorge Dirk; Godwin R. J.;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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