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Design and study on lightweight organic fertilizer distributor

机译:轻质有机肥分配器的设计与研究

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Long-term large-scale use of chemical fertilizers will destroy soil fertility, reduce fertilizer efficiency of chemical fertilizers, and lead to crop yield reduction. The application of organic fertilizer can improve soil fertility, provide favorable conditions for crop growth, and promote crop yield. In order to improve the utilization rate and operation efficiency of organic fertilizer in hilly areas and promote the sustainable development of agriculture, this paper designs and studies a lightweight organic fertilizer distributor combined with the current situation of fertilization in hilly areas of China. The lightweight organic fertilizer distributor studied in this paper adopts the top-row row fertilizer method, which mainly consists of the top-row fertilizer apparatus with horizontal scrapers, the horizontal scraper elevating mechanism, the control system and the subsidiary mechanism. In this paper, the mechanical model of horizontal scraper is established and the mathematical model of fertilizer output of fertilizer dispenser is built by analyzing the principle of fertilizer dispensing. The design of each hardware circuit has been completed and the fertilizer control algorithm of the fertilizer applicator has been determined. The performance test of the fertilizer dispenser and the performance test of the whole fertilizer dispenser are carried out. The results show that the control system works steadily and reliably. When the forward speed of the fertilizer applicator is normal (0.5-1.2 m/s) and the set amount of fertilizer application is 900-2100 kg/hm(2), the fertilization amount is accurate, the maximum deviation between the actual amount of fertilizer application and the set amount of fertilizer application is less than 10%; the fertilization uniformity is good and the variation coefficient of uniformity is less than 7%, the actual amount of fertilizer application per unit area, the uniformity of fertilizer application and the forward speed of the fertilizer applicator are good. It has nothing to do with the design requirements.
机译:长期大规模使用化肥将破坏土壤肥力,降低化肥肥料效率,导致作物产量减少。有机肥的应用可以提高土壤肥力,为作物生长提供有利条件,促进作物产量。为了提高丘陵地区有机肥的利用率和运行效率,促进农业可持续发展,本文设计和研究轻型有机肥分配器与中国丘陵地区的当前施肥状况相结合。本文研究的轻质有机肥料分配器采用顶部排排肥料方法,主要由具有水平刮板,水平刮刀升降机构,控制系统和附属机构的顶部排肥料组成。本文建立了水平刮刀的机械模型,采用肥料分配原理建立了肥料分配器肥料输出的数学模型。已经完成了每个硬件电路的设计,并确定了施肥器的肥料控制算法。进行了肥料分配器的性能试验和整个肥料分配器的性能试验。结果表明,控制系统稳步可靠地工作。当施肥器的前进速度正常(0.5-1.2米/秒)和施肥量的设定量为900-2100千克/小时(2)时,施肥量是准确的,实际数量之间的最大偏差肥料应用和设定量的肥料应用程度小于10%;施肥均匀性好,均匀性变异系数小于7%,每单位面积的施肥量的实际量,肥料应用的均匀性和肥料涂抹器的前进速度好。它与设计要求无关。

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