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水稻内吸孔直播装置叶轮式导种装置的设计与试验

Design and experiment of impeller seed guide device for rice internal suction hole direct seeding device.

作者信息

Shang Yansong, Zhou Bo, Yang Jitao, Zhang Shun

机构信息

School of Engineering, Anhui Agricultural University, Hefei, 230036, Anhui, China.

Engineering Laboratory of Intelligent Agricultural Machinery Equipment, Hefei, 230036, Anhui, China.

出版信息

Sci Rep. 2024 Jun 10;14(1):13300. doi: 10.1038/s41598-024-64002-x.

Abstract

Multi-grain hole-forming sowing and uniform hole spacing are important agronomic requirements for precise hole-direct seeding of rice.This paper designs a kind of impeller type seed guiding device. The main structural parameters of the impeller seed guide device were analyzed by constructing the kinematics model of the rice seed in the impeller seed guide process. The experiment analysis were carried out with the long-grain rice variety Chuangliangyou 4418 as the seeding object. The optimal structural parameter combination of seeding-guiding device was determined as inner impeller radius 56 mm, blade offset angle 11° and seeding angle 36°. On this basis, the seeding performance test of different seed guiding devices of internal suction seed-metering device was carried out by using rice seeds with different external dimensions. The test results show that the impeller has better cavitation and hole spacing uniformity than the seed guide tube. The average hole diameter is not higher than 21.7 mm, the qualified rate of hole diameter is not lower than 96.1%, and the coefficient of variation of hole spacing is not higher than 10.1%. Compared with the seed guide tube, which is increased by 32%, 16% and 34% respectively, and the average hole distance is about 200 mm in theory.

摘要

多粒成穴播种和均匀穴距是水稻精量穴直播重要的农艺要求。本文设计了一种叶轮式导种装置,通过构建水稻种子在叶轮导种过程中的运动学模型,分析了叶轮式导种装置的主要结构参数。以长粒型水稻品种创两优4418为播种对象进行试验分析,确定了导种装置的最优结构参数组合为内叶轮半径56 mm、叶片偏置角11°、播种角36°。在此基础上,利用不同外形尺寸的水稻种子对内吸式排种器的不同导种装置进行了播种性能试验。试验结果表明,叶轮比导种管具有更好的空穴率和穴距均匀性,平均穴径不高于21.7 mm,穴径合格率不低于96.1%,穴距变异系数不高于10.1%,与导种管相比分别提高了32%、16%和34%,理论平均穴距约为200 mm。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d5a/11639696/7ea720c3c805/41598_2024_64002_Fig1_HTML.jpg

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