小麦宽苗带精量播种施肥机设计与试验
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国家重点研发计划项目(2016YFD020060704)


Design and Test of Wide Seedling Strip Wheat Precision Planter
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    摘要:

    为解决小麦宽苗带播种均匀性差和开沟阻力大的问题,设计了一种窝眼轮式精量排种、内四等分输种管间隔输种的小麦宽苗带精量播种施肥机。对关键部件进行了理论分析,并对旋耕覆土过程进行了离散元仿真研究,在此基础上进行了排种器台架试验和整机田间试验。台架试验结果表明,窝眼轮转速为35r/min时,行内播种均匀性变异系数、各行排量一致性变异系数、种子破碎率分别为9.31%、2.30%和0.38%。田间试验结果表明,窝眼轮式排种器配套内四等分输种管提高了种子在苗带上的分布均匀性,播种均匀性变异系数为11.55%,苗带平均宽度为8.2cm,正转旋耕装置能有效清理苗带、避免秸秆杂草堵塞;利用旋耕抛土原理能够实现对种、肥的分层覆土,播种和施肥平均深度分别为3.2cm和9.4cm,种肥深度垂直间距平均值为6.2cm,变异系数分别为4.15%、2.97%和5.48%,较好地实现了种肥分层,整机设计满足大田播种农艺要求。

    Abstract:

    In order to solve the problem of poor uniformity and large trench resistance in the wide seedling strip wheat planter, a wheat precision planter based on cell wheel seed-metering device and seed conveying tube with inner-quartering part was designed. The planter could implement the following function at one time: seedling belt cleaning, fertilization, wide strip seeding, active covering soil and compacting and so on. The diameter of cell wheel seed-metering device was 60mm, the number of cell columns was 4, and the number of each cell columns was 20. The cells were arranged in a horizontal staggered condition. In order to ensure uniform distribution of seed in the seedling strip, the inner-quartering seed conveying tube was designed. The tube can convey seeds in interval space. The outlet of the seed conveying tube was 32°. The seed and fertilizer were ordered covering by soil, which was thrown by rotary tillage. The rotating speed was 260r/min. To ensure the capacity of soil covering, the position of seed and fertilizer conveying tube and fertilizer was devised by kinematic analysis of soil. The distance range rotary shaft from seed and fertilizer tube was 0.36m and 0.50m, respectively. The experiment of seed-metering device and the planter was conducted. The results of laboratory test showed that the coefficient of variation of inline uniformity, the coefficient of variation of row displacement, and the seed fragmentation rate were 9.31%, 2.30% and 0.38%, respectively, under condition that the rotation speed of cell wheel was 35r/min. Field test showed that the coefficient of variation of uniformity in the wide seedling strip was 11.55%, and the average width of wide seedling strip was 8.2cm. The results also showed that the rotary tillage could clean stubble well and avoid the problem of congestion by rank grass. At the same time, by using the principle of rotary tillage and throwing soil, and soil covered the seed and fertilizer with layered, the average depths of sowing and fertilization were 3.2cm and 9.4cm, respectively. And the average vertical spacing between seed and fertilizer was 6.2cm. The variation coefficients of sowing depth and fertilizing depth were 4.15% and 2.97%, respectively, and the variation coefficient of the distance between seed and fertilizer was 5.48%, which met the national standard and agronomic requirements.

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姜萌,刘彩玲,魏丹,都鑫,蔡培原,宋建农.小麦宽苗带精量播种施肥机设计与试验[J].农业机械学报,2019,50(11):53-62.

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  • 收稿日期:2019-04-10
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  • 在线发布日期: 2019-11-10
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