基于工程离散元法的勺轮式菠菜种子计量装置关键部件的设计与优化

Agronomy Pub Date : 2024-09-14 DOI:10.3390/agronomy14092096
Gang Zheng, Bing Qi, Wenyi Zhang, Weixing Shao, Lei Zhang, Yunxia Wang, Youqiang Ding
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引用次数: 0

摘要

针对人工按需播种菠菜存在的工作强度大、播种效率低、成本高等问题,提出了一种菠菜种子机械化精量播种装置,该装置基于一个勺轮,包括一个具有两个相交表面的组合单元。设计了关键结构,并使用 SolidWorks 软件(2022 年)进行了运动分析。此外,还使用 EDEM 仿真软件(2022)模拟了播种过程。选择勺子数量、勺子半径和播种轮速度作为影响因素,合格指数、复播指数和缺失指数作为评价指标。进行了基于箱-贝肯设计的响应面法试验,并对试验结果进行了分析,得出了种子计量装置的最佳参数组合。田间试验结果表明,当转速为 18 rpm、每个种勺半径为 2.5 mm、种勺数量为 50 个时,平均合格指数为 90.89%,重播指数为 8.22%,漏播指数为 0.89%。试验结果满足菠菜种子播种的生产技术要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Engineering Discrete Element Method-Based Design and Optimization of the Key Components of a Spoon-Wheel Spinach Seed-Metering Device
In view of issues affecting manual on-demand sowing of spinach, such as high working intensity, low seeding efficiency, and high cost, a mechanized precision seeding device for spinach seeds is proposed, based on a spoon-wheel including a combined cell with two intersecting surfaces. The key structure was designed, and motion analysis was conducted employing SolidWorks software (2022). Additionally, the seeding process was simulated using EDEM simulation software (2022). The number of spoons, the radius of the spoons, and the speed of the seed wheel were chosen as the influencing factors, while the qualified index, reseeding index, and missing index were utilized as the evaluation indexes. A response surface method test based on the Box–Behnken design was carried out, and the test results were analyzed to obtain the optimal parameter combination for the seed-metering device. The field test results showed that when the rotation speed was 18 rpm, the radius of each seed spoon was 2.5 mm, and the number of seed spoons was 50, the average qualified index was 90.89%, the reseeding index was 8.22%, and the missed seeding index was 0.89%. The test results satisfy the technical production requirements for spinach seed sowing.
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