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首页> 外文期刊>Soil & Tillage Research >Performance evaluation of tillage tines operating under different depths in a sandy clay loam soil.
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Performance evaluation of tillage tines operating under different depths in a sandy clay loam soil.

机译:砂质壤土在不同深度下耕作的耕作性能评估。

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摘要

The study investigated the performance of three model tillage tools (tines). The experimental tillages were made from flat 8 mm plain carbon steel. They were designated T1, T5, and T20, corresponding to tine widths of 1, 5, and 20 cm respectively. Experiments were carried out in a soil bin filled with sandy clay loam soil at average moisture content 11.5% (dry basis) and 600 kPa average cone index. The plastic limit and liquid limit and plasticity index of the soil are 20%, 31% and 11% respectively. Tests were conducted at forward speeds of 0.28, 1.0, and 2.5 m/s. Depths of operation considered were 35, 70, 150, 200 and 250 mm. Draught measurements were made for the different tines and were also calculated using soil mechanics equation. There was reasonable agreement between measured and predicted draught forces. The effects of depth of operation on draught force of the tines were studied and evaluated. It was observed that draught increased at an increasing rate with depth; the relationship was a curvilinear one best fitted by exponential function. The soil disturbance created as a result was also evaluated and reported in this paper. The parameters used to define soil disturbance of a single tine were: ridge-to-ridge distance (RRD), maximum width of soil cut (WFS), maximum width of soil throw (TDW), after furrow depth (df), height of ridge (hr) and rupture distance (f). They all increased as the depth of operation of the tool increased but less proportionately. The critical depth of the tines was also estimated. The results of analysis of variance showed that tool type and operating depth significantly affected draught at 5% level of significance (p<0.05) and that, there was interaction between the two factors.
机译:该研究调查了三种耕作工具(齿)的性能。实验耕作由扁平的8毫米普通碳素钢制成。将它们命名为T1,T5和T20,分别对应于1、5和20 cm的齿形宽度。实验在装满沙质壤土的土壤箱中进行,平均含水量为11.5%(干基),平均圆锥指数为600 kPa。土壤的可塑性极限,液体极限和可塑性指数分别为20%,31%和11%。测试以0.28、1.0和2.5 m / s的前进速度进行。所考虑的操作深度为35、70、150、200和250毫米。对不同的尖齿进行了吃水测量,并使用土壤力学方程式进行了计算。测得的和预计的吃水力之间存在合理的共识。研究和评估了操作深度对叉齿牵伸力的影响。据观察,吃水深度随着增加而增加。该关系是最适合指数函数的曲线关系。本文还评估并报告了由此造成的土壤扰动。用于定义单个尖齿的土壤扰动的参数为:垄间距离(RRD),最大切土宽度(WFS),最大抛土宽度(TDW),犁沟深度(df),脊(hr)和破裂距离( f )。随着工具操作深度的增加,它们都增加了,但是却没有那么成比例。还估计了尖齿的临界深度。方差分析的结果表明,工具类型和操作深度在5%的显着性水平( p <0.05)上显着影响吃水深度,并且两个因素之间存在相互作用。

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