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Influence of varying axle load and type pressure on soil stresses and resulting compaction

机译:不同轴荷载与型压力对土壤应力的影响及压实

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In a series of field experiments we measured the stresses in sand beneath single front and dual rear tyres of John Deere 8300 tractor, using earth stress cells installed beneath the tyres. The stress in the sand increased both with increasing tyre inflation pressure (constant axle load) and with increasing axle load (constant tyre pressure). Analysis of the experiments using a finite element model showed that the stresses in the top 60-70cm of soil depended mainly on the tyre/soil contact pressure; the influence of the lugs was particularly important. Stresses deeper than that depended mainly on the total load applied to the surface, increasing with increasing axle load. The model was used to simulate compaction in clay soils. Compaction predicted beneath the tyres depended on the strength of the soil, which in turn depends on the moisture content. However, tyre/soil contact pressure and axle load were still important.
机译:在一系列现场实验中,我们使用安装在轮胎下方的地球应力电池,测量了John Deere 8300拖拉机的单个前后轮胎下方的沙子中的应力。砂中的应力随着轮胎充气压力(恒定轴载)和增加的轴载(恒定轮胎压力)而增加。使用有限元模型的实验分析表明,占地面积60-70厘米的土壤中的应力主要取决于轮胎/土壤接触压力;凸耳的影响尤为重要。压力比主要依赖于施加到表面的总负荷,随着轴载的增加而增加。该模型用于模拟粘土土壤中的压实。压实预测轮胎下方取决于土壤的强度,这反过来取决于水分含量。然而,轮胎/土壤接触压力和轴载仍然很重要。

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