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Structural design and parameter determination for fluted-roller fertilizer applicator

机译:槽槽施肥器的结构设计与参数测定

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The instability of the motion layer of fertilizer particle influences the precision and the accuracy of the amount of fertilizer application in the working process of fluted-roller fertilizer applicator. The characteristics of the motion layer were investigated, and a systematic scheme was proposed for designing the structures of fertilizer-filling cavity, fertilizer-filling surface and fertilizer-delivery cavity. The key parameters of the structure were studied by discrete element method. It was figured out that to ensure the smooth operation of fertilizer applicator, the fertilizer-filling angle was 105 degrees, fertilizer-contact angle should be large than 100 degrees, and the fertilizer-resistance angle should be smaller than 35 degrees. Moreover, the stability of fertilizer motion morphology was investigated to verify the design. The results showed that when the roll rotational speed was larger than 120 deg/s, compared with the conventional design the CV of the amount of fertilizer application was reduced from 1.5%-3.5% to 0.5%-1.0%, and the accuracy of the fertilizer discharge was improved with the square of the correlation coefficient between the amount of fertilizer application and the roll rotational speed was larger than 0.999. It was deduced from the results that the precision and accuracy of the amount of fertilizer application are improved via eliminating the driving layer and enhancing the stable filling and conveying of the forced layer.
机译:肥料粒子运动层的不稳定性影响了槽辊施肥器工作过程中施肥量的精度和准确性。研究了运动层的特征,提出了一种系统方案,用于设计肥料填充腔,肥料填充表面和肥料输送腔的结构。通过离散元件方法研究了结构的关键参数。它被认为是为了确保施肥器的平稳运行,肥料灌装角度为105度,肥料 - 接触角应大于100度,肥料抵抗角应小于35度。此外,研究了肥料运动形态的稳定性以验证设计。结果表明,当辊转速大于120℃时,与传统设计相比,施肥量的CV从1.5%-3.5%降低至0.5%-1.0%,以及准确性肥料放电随着肥料应用量与轧制转速大于0.999之间的相关系数的平方。从结果推导出来,通过消除驱动层并增强强制层的稳定填充和输送来改善肥料应用量的精度和准确性。

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