考虑土壤流变特性的拖拉机驱动轮与土壤的相互作用

R.M. Makharoblidze, I.M. Lagvilava, B.B. Basilashvili, Z.K. Makharoblidze
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引用次数: 8

摘要

这项工作提供了拖拉机驱动轮与土壤相互作用的数学模型。采用流变模型作为土体剪切变形的规律,作为土体线性变形的主要规律。推导了驱动轮切向力和牵引系数的计算公式。数值算例和图表表明,理论结果与实验数据非常接近。可变形车轮的牵引力系数与地面的依赖关系可以分析地面流变指标和车轮滚动的几何和状态参数的影响,并使用更接地气的方法来分析轮式拖拉机的动力学问题。从公式中可以看出,弹性轮克服摩擦力、剪切力和地面切削力所需的切向牵引力和牵引力系数取决于作用在车轮上的法向载荷mg、车轮参数、地面流变特性和运动状态。
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Interact of the tractor driving wheels with the soil by considering the rheological properties of soils

The work offers a mathematical model of interaction of the tractor driving wheels with the soil. A rheological model is used as a law of shear deformation of soils as the principal law of linear deformation. Calculation formulae of tangential force and traction coefficient of the driving wheels are deduced. A numerical example and graphs are used to demonstrate that the theoretical results are quite close to the experimental data. Dependence of the traction coefficient of the deformable wheel with the ground allows analyzing the impact of rheological indicators of grounds and geometric and regime parameter of a wheel rolling and using a more grounded approach to the analysis of the problematic issues of dynamics of wheeled tractors. As it can be seen from formulae the tangential traction force and traction coefficient of an elastic wheel necessary to overcome the forces of friction, shear and ground cutting depend on normal load mg, acting on the wheel, wheel parameters rheological properties of the ground and movement regime.

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