水稻气力式排种器投种轨迹试验与分析
为研究水稻气力式排种器的稻种在送种正压作用下脱离排种盘后的轨迹以及投种成穴性,该文采用高速摄影技术分析了投种轨迹的变化规律及其影响因素,并对投种后的穴径进行了测量通过实际投种轨迹的均值优化理论方程,得到了不同条件下的优化方程。以"培杂泰丰"超级杂交稻种子为研究对象,采用多因素试验方法,分析了不同转速、不同送种正压下,稻种投影面正面与侧面轨迹与投种穴径的变化。试验结果表明:正面投种轨迹随排种盘转速的提高其水平位移增大,但整体偏移均小于5mm。当送种正压为0.1kPa时,其落种轨迹的稳定性较好,投种正面水平位移基本稳定在45~65mm,当送种正压为0.2kPa时,投种轨迹分布不均,稳定性较差;侧面...
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Published in | 农业工程学报 Vol. 31; no. 12; pp. 23 - 30 |
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Main Author | |
Format | Journal Article |
Language | Chinese |
Published |
南方粮油作物协同创新中心,长沙 410128
2015
华南农业大学南方农业机械与装备关键技术教育部重点实验室,广州,510642%华南农业大学南方农业机械与装备关键技术教育部重点实验室,广州 510642 |
Subjects | |
Online Access | Get full text |
ISSN | 1002-6819 |
DOI | 10.11975/j.issn.1002-6819.2015.12.004 |
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Summary: | 为研究水稻气力式排种器的稻种在送种正压作用下脱离排种盘后的轨迹以及投种成穴性,该文采用高速摄影技术分析了投种轨迹的变化规律及其影响因素,并对投种后的穴径进行了测量通过实际投种轨迹的均值优化理论方程,得到了不同条件下的优化方程。以"培杂泰丰"超级杂交稻种子为研究对象,采用多因素试验方法,分析了不同转速、不同送种正压下,稻种投影面正面与侧面轨迹与投种穴径的变化。试验结果表明:正面投种轨迹随排种盘转速的提高其水平位移增大,但整体偏移均小于5mm。当送种正压为0.1kPa时,其落种轨迹的稳定性较好,投种正面水平位移基本稳定在45~65mm,当送种正压为0.2kPa时,投种轨迹分布不均,稳定性较差;侧面投种轨迹受排种盘转速影响较小,增大送种正压会增大稻种侧面的水平位移,当送种正压为0.1kPa时,其投种侧面水平位移稳定分布在0~15mm,当送种正压为0.2kPa时,投种轨迹分布波动较大;穴径随转速与送种正压的提升,其大于50mm的概率也增多,排种盘转速为30r/min、送种正压为0.1kPa时,成穴性最好,其合格率为96.9%。投种高度控制在离地面10cm左右为最佳。该文从理论的角度分析了投种轨迹,得到了成穴性最优的条件,为水稻气力式排种器最优成穴条件与排种管的设计提供参考。 |
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Bibliography: | 11-2047/S agricultural machinery; seed; pneumatic equipment; rice; pneumatic metering device; dropping trajectories; hill sowing; high speed photography Xing He, Zang Ying, Cao Xiaoman, Wang Zaiman, Luo Xiwen, Zeng Shan, Huang Miao (1. Key Laboratory of Key Technology on Agricultural Machine and Equipment, Ministry of Education, South China Agricultural University, Guangzhou 510642, China; 2. Collaborative Innovation Center for Grain and Oil Crops in South China, Changsha 410128, China) Compared to rice mechanistic metering device,rice pneumatic metering device has advantages of low number of sowing seeds,high precision of seed metering and low seed-injuring rate.Because the precision of seed metering is difficult to control and the performance of hill sowing is poor,rice pneumatic metering device is difficult to be widely used in field direct-seeding.The control of the precision of seed metering is the key to design metering device.Analysis of the process of dropping seeds helps improve the precision of seed me |
ISSN: | 1002-6819 |
DOI: | 10.11975/j.issn.1002-6819.2015.12.004 |