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首页> 外文期刊>Acta Technologica Agriculturae >Influence of Rheological Properties of a Soil Layer Adjacent to the Working Body Cutting Element on the Mechanism of Soil Cultivation
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Influence of Rheological Properties of a Soil Layer Adjacent to the Working Body Cutting Element on the Mechanism of Soil Cultivation

机译:邻近切削体的土层流变特性对土壤耕作机理的影响

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On the basis of rheological characteristics, stress fields and deformations, new methods of improving the mechanism of soil cultivation are substantiated in this article. The mechanism of soil destruction is observed. Paper investigates the process of changing the stressed-deformed state of the soil under the influence of the working body. To study the viscoelastic properties of black earth soil, the method of amplitude sweeping with a measuring system of parallel high planes was applied using a modular rheometer MCR-302 (Anton Paar, Austria). Range of linear viscoelasticity of virgin soil was found to reach 0.1% deformation; range of linear viscoelasticity of cultivated field area is smaller by an order of magnitude – to 0.02% deformation. Structure destruction (the point of equality of modules) of virgin soil occurs at 20% deformation; structure of long steam soil destructs at 8% deformation. Technique of measuring the isobar zones distribution in horizontal and vertical planes by means of special strain gauges of the LPX 5000 model was developed. To reproduce the force pattern of the working bodies’ effect on soil environment, the measuring complex MIC 400D is used; stress-strain state of the soil is defined.
机译:根据流变特性,应力场和变形,提出了改善土壤耕作机理的新方法。观察到土壤破坏的机理。论文研究了在工作体影响下改变土壤应力变形状态的过程。为了研究黑土的粘弹性,使用模块化流变仪MCR-302(奥地利安东帕尔)采用了平行高平面测量系统的振幅扫描方法。发现原始土的线性粘弹性范围达到0.1%变形;耕地面积的线性粘弹性范围缩小了一个数量级–变形为0.02%。原始土壤的结构破坏(模块的均等点)发生在20%的变形下;长蒸汽土的结构在8%变形时会破坏。开发了通过LPX 5000模型的特殊应变仪测量水平和垂直平面上等压线区域分布的技术。为了重现工作体对土壤环境的作用力模式,使用了测量复杂的MIC 400D。定义了土壤的应力应变状态。

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