轴向吸风鼓式排种装置的设计与试验

Yu Zhang, Chengliang Zhang, Y. Hu, Long Chen, Wenrong Yang, Hai Dong Zhang
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引用次数: 0

摘要

本研究研制了一种轴向气吸式鼓式排种装置,无需专用真空泵及相关管道设施,大大简化了气吸式鼓式排种装置的结构,旨在解决传统气吸式鼓式排种装置结构复杂、维护困难的问题。利用SOLIDWORKS软件建立排种装置的几何模型。此外,对基于CFD的排种装置进行了数值模拟试验,验证了排种装置理论运行的可行性。对排种装置进行加工,搭建试验台架进行物理试验,验证了排种装置实际运行的可行性。台架试验结果表明,当风机转速达到2100 rpm时,排种装置对番茄种子、辣椒种子和茄子种子的吸附率分别达到86.39%、87.22%和93.06%以上。此外,当风机转速达到2400 rpm时,排种器对番茄种子、辣椒种子、茄子种子的吸附率均达到95%以上,说明该排种器设计简单,但吸种性能良好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design And Experiment of Axial Air-Suction Drum Seed-Metering Device
This study developed an axial air-suction drum seed-metering device without a special vacuum pump and associated pipeline facilities, greatly simplifying the structure of the air-suction drum seed-metering device, which aimed to solve the problems of complex structure and difficult maintenance of traditional air suction drum seed-metering device. The geometric model of the seed-metering device was established by SOLIDWORKS. In addition, numerical simulation tests were carried out on the seed-metering device based on CFD to verify the feasibility of the theoretical operation of the seed-metering device. The seed-metering device was processed and a test bench was built for physical testing, which verified the feasibility of the actual operation of the seed-metering device. The bench test results showed that when the fan speed reached 2100 rpm, the adsorption rate of the seed-metering device on tomato seeds, pepper seeds, and eggplant seeds reached more than 86.39%,87.22%, and 93.06%, respectively. Besides, when the fan speed reached 2400 rpm, the adsorption rate of the seed-metering device on tomato seeds, hot pepper seeds, and eggplant seeds all reached more than 95%, which demonstrated that the seed-metering device has good seed suction performance despite its straightforward design.
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