陈学庚, 钟陆明. 气吸式排种器带式导种装置的设计与试验[J]. 农业工程学报, 2012, 28(22): 8-15.
    引用本文: 陈学庚, 钟陆明. 气吸式排种器带式导种装置的设计与试验[J]. 农业工程学报, 2012, 28(22): 8-15.
    Chen Xuegeng, Zhong Luming. Design and test on belt-type seed delivery of air-suction metering device[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(22): 8-15.
    Citation: Chen Xuegeng, Zhong Luming. Design and test on belt-type seed delivery of air-suction metering device[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(22): 8-15.

    气吸式排种器带式导种装置的设计与试验

    Design and test on belt-type seed delivery of air-suction metering device

    • 摘要: 针对免耕播种机双圆盘式开沟器投种点高,种子播入土壤中粒距变异系数大,合格指数低的缺陷,该文在对气吸式排种器成穴时间平衡分析的基础上,设计开发了一种与取种盘转速、播种机行走速度相关,且传动与投种机构一体的带式导种装置,并确定了该气吸式排种器带式导种装置的主要结构参数。在综合试验因素对株距合格率,重播率和漏播率影响不同的基础上,确定影响排种质量的主次顺序为投种点高度、取种盘转速和负压室压力,较优参数组合为投种点高度100 mm,取种盘转速30 r/min和负压室压力3.5 kPa。此时粒距合格率为98.50%、漏播率为0.48%、重播率为1.02%。通过试验验证,试验值与理论值误差分别为0.11%、0.17%和0.08%,符合试验要求。该文为气吸式排种器的参数优化与排种质量进一步提升提供了理论依据。

       

      Abstract: According to the weakness of the high seed dropping position, the big variability of seed-spaces in soil and the low qualification rate of the double driving discs furrow opener of no-tillage planter, a new belt type seed delivery device was designed and developed. Based on the analysis of the cavitation time of suction seed metering device, the new belt-type seed device combined transmission and dropping seed institutions, which was related with the speed of seed metering device and the speed of planter. Also its main structural parameters were determined. Comprehensive impact factors affected the three test indicators differently, the primary and secondary order of influencing factors for seeding quality was determined, and the results showed that the order was the height of the throwing point, speed of the take seed plate and the suction pressure. The optimum parameter combination was that the height of the throwing point was 100 mm, the speed of the take seed plate was 30r / min and the suction pressure was 3.5kPa. At these conditions, particles away from a pass rate were 98.50%, the leakage sowing rate was 0.48% and replay rate was 1.02%. Through experimental verification, the error of experimental and theoretical results was 0.11%、0.17% and 0.08%, which met the needs of the test requirements. The research provides a reference for further improving quality and optimizing the parameter for air-suction metering device.

       

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