甜菜根种植过程中旋转叶片装置定向参数的论证

Vladimir Aleksandrovich Ovtov, Natalya Sergeevna Chirkova, Kirill Andreevich Gorshkov, Pavel Denisovich Tsurenko
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摘要

现有的甜菜种子市场表明,从事甜菜种植的俄罗斯农业实体严重依赖外国农业公司(主要来自欧洲联盟)的杂交品种供应。首先,这是因为在过去的几十年里,国家在育种和种子生产的物质和技术基础上的资本投入微不足道,这导致了所使用的种子技术的老化。众所周知,在糖和饲料用甜菜种子生产的工艺过程中,劳动强度最大的操作是种植,其机械化程度最低,需要大量的人力用于选择、定位块根作物,并将其供应到种植机器的种植球果中,然后将尖头朝下埋入土壤中。目前用于种植甜菜根作物的种植机是MV-2.8,由4人维修。因此,在没有种植者参与的情况下,进行根茎作物定向和投料机械化种植球果的相关研究是有意义的。本文介绍了一种种植机旋转叶片装置的三维模型,用于定位圆锥根作物并将其送入种植装置的种植锥中。同时叶片长度为280 mm,厚度为11.9 mm,最大挠度不超过3 mm,保证了块根作物的定向和对种植装置种植锥的供应。
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Justification of the parameters of the rotary vane device for the orientation of beetroot during their planting
The existing market of sugar beet seeds shows a significant dependence of Russian agricultural entities engaged in the cultivation of sugar beet on the supply of hybrids of foreign agricultural firms, mainly from the European Union. First of all, this is due to the fact that over the past decades, capital investments in the material and technical base of breeding and seed production on the part of the state were insignificant, which led to the aging of the seed technology used. As is known, the most labor-intensive operation of the technological process associated with the production of sugar and fodder beet seeds is their planting, which is least mechanized and requires a lot of human labor spent on the selection, orientation of root crops and supply them into the planted cones of planting machines with subsequent embedding in the soil with the sharp end down. Currently, a planting machine MV-2.8 is used for planting sugar beet root crops, which is serviced by four people. Consequently, research related to the mechanization of orientation and feeding of root crops into planting cones without the participation of planters is relevant. The article presents a 3D model of a rotary vane device of a planting machine for orienting conical root crops and feeding them into the planting cones of the planting apparatus. At the same time, with a vane length of 280 mm, its thickness will be 11.9 mm, and the greatest deflection is no more than 3 mm, which will ensure the orientation of root crops and their supply to the planting cones of the planting apparatus.
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