Influence of Suction Hole Diameter of Precision Seed Machine on the Characteristics of Feeding Corn and Sunflower Seeds

IF 0.1 Q4 ENGINEERING, MULTIDISCIPLINARY Engineering Technologies and Systems Pub Date : 2023-03-31 DOI:10.15507/2658-4123.033.202301.021-036
A. Nesmiyan, K. Dubina, Anastasiya P. Zhigailova
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Abstract

Introduction. The study of working processes of row crop seeders, their improvement, increase in productivity and (or) quality of work are topical agroengineering tasks. Aim of the Article. The article deals with developing proposals to optimize the design of vacuum mechanisms for row crop seeders based on the analysis of the laws of the process of dosing sunflower and corn seeds by suction holes of the seed discs. Materials and Methods. The operation characteristics of the vacuum seeding mechanism depend on the diameter of the suction holes and the rarefaction in the vacuum chamber. Hypothetically, it can be assumed that with a constant calculated value of the suction force, it is possible to choose a ratio of these characteristics in which the number of skips and group feeding of seeds will not exceed the tolerance of agro-requirements. Verification of this assumption was carried out experimentally in laboratory conditions. Results. There were found polynomials describing with a fair degree of accuracy the dependence of formation of group feedings of sunflower and corn seeds on the diameter of suction holes. Discussion and Conclusion. The frequency of group feeding of the seeds less than 0.05% will be achieved with suction hole diameters of about 0.8 mm for sunflower and about 1.9 mm for corn. In this case, the values of rarefaction in the vacuum chamber must be 31–56 kPa that exceeds the capabilities of the pneumatic systems of existing row seeders. Accordingly, the modernization of the seeding mechanisms of vacuum row seeders by reducing the diameter of the suction holes should be accompanied by additional improvements aimed at increasing their gripping ability.
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精密播种机吸孔直径对玉米、葵花籽饲喂特性的影响
介绍。研究行播机的工作过程,改进它们,提高生产力和(或)工作质量是农业工程的热门任务。文章的目的。本文在分析向日葵和玉米种子盘吸孔加药过程规律的基础上,提出了对行播机真空机构优化设计的发展建议。材料与方法。真空播种机构的工作特性取决于抽吸孔的直径和真空室的稀薄度。假设,在吸力计算值恒定的情况下,可以在这些特性中选择一个比值,使种子的跳投次数和分组投喂次数不超过农业需求的容忍度。在实验室条件下对这一假设进行了实验验证。发现了多项式,较准确地描述了向日葵和玉米种子群食的形成与吸气孔直径的关系。讨论与结论。葵花的吸孔直径约为0.8 mm,玉米的吸孔直径约为1.9 mm,可实现小于0.05%的种子群喂频率。在这种情况下,真空室的稀薄值必须为31-56 kPa,这超过了现有排播机气动系统的能力。因此,通过减小抽吸孔直径来实现真空排播机播种机播种机现代化的同时,还应进行旨在提高抽吸孔抓握能力的额外改进。
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来源期刊
Engineering Technologies and Systems
Engineering Technologies and Systems ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
29
审稿时长
12 weeks
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