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Design of an active seed throwing and cleaning unit for pneumatic rice seed metering device

机译:气动水稻排种器的主动抛种清洗单元设计

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To address the clogging of the rice seed metering device after a long period of operation without affecting the precision of normal seeding, an active seed throwing and cleaning unit was designed based on the fact that magnets of the same pole were mutually exclusive. The working principle of the two devices was analysed theoretically, and a mechanical model was created according to the relationship between the repulsion forces of magnets and the spring forces of springs. The super hybrid rice Y-2 You 900 with 22.5% moisture content (wet basis) was used as the test object. The whole factor experiments were carried out under different negative pressures, rotational speeds of the suction plates, and lengths of probes. The results indicated that under any test conditions, the active seed throwing and cleaning unit worked normally. The results of high-speed photography showed that the rate of seed cleaning was 100%. The results also showed that the optimal negative pressure was 0.8 kPa. The probability of 1-3 seeds per hill for the seed metering device was approximately 95% under the optimal negative pressure. The optimal length of the probe was found to be 2 mm. The average qualified rate of hill space was 96.04% under the optimal length of probe, the longer the length of the probe, the lower the qualified rate of hill space. It also showed that an active seed throwing and cleaning unit could effectively avoid the hole clogging caused by the long-term operation and had no influence on the normal operation of the pneumatic rice seed metering device. The active seed throwing and cleaning unit improved the stability of the seed metering device, and the research provided a reference for the optimal design of seed throwing and cleaning structures of the pneumatic rice seed metering device.
机译:为了解决水稻种子计量装置长时间运行后的堵塞而又不影响正常播种的精度的问题,基于同一极的磁铁相互排斥的事实,设计了一种主动式抛秧和清洗装置。从理论上分析了这两种装置的工作原理,并根据磁体的排斥力与弹簧的弹力之间的关系建立了力学模型。使用水分含量为22.5%(湿基)的超级杂交稻Y-2 You 900作为测试对象。全因子实验是在不同的负压,吸盘转速和探针长度下进行的。结果表明,在任何测试条件下,主动式抛晶清洗单元均能正常工作。高速摄影的结果表明,种子清洗率为100%。结果还表明,最佳负压为0.8 kPa。在最佳负压下,种子计量装置每山出1-3个种子的概率约为95%。发现探针的最佳长度为2mm。在最佳探针长度下,平均丘陵空间合格率为96.04%,探针长度越长,丘陵空间合格率越低。还表明,主动抛种清洗装置能有效避免长期运行造成的孔洞堵塞,对气动水稻种种计量装置的正常运行没有影响。主动式抛秧清理装置提高了种子计量装置的稳定性,为气动稻种计量抛秧装置的优化设计提供了参考。

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