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首页> 外文期刊>Vestnik Mordovskogo Universiteta >Oriented Onion Sowing by a Forked-Roller Sowing Unit
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Oriented Onion Sowing by a Forked-Roller Sowing Unit

机译:分叉式播种机定向洋葱播种

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Introduction: The existing sowing machines do not provide a single feeding of the bulbs with a planting (sowing) unit that leads to a violation of the agrotechnical requirements of planting bulbs. It is necessary to search new solutions to preserve the position of the bulbs in the furrow with the bottom down and their regularly spaced distribution. Materials and Methods: The article presents the design for a prototype for a planting machine equipped with a forked-roller sowing unit for orienting the onion-sowing into a furrow. Testing the forked-roller sowing unit were carried out on a flat area where the physical and mechanical properties of the soil were determined on the days of sowing, and the indices of the quality of the onion-sowing were determined. The study of the effect of the sowing machine speed on the quality of the onion-seed bulb landing was determined by the change in the translational speed of the sowing unit in the range of 0.8 m/s to 1.2 m/s with a variation interval of 0.1 m/s. The indicators of the quality of the planting of the bulbs were determined by the opening of the closed furrow. The results of laboratory-field studies of the planting machine prototype are presented. Results: The results of laboratory-field studies of a planting machine equipped with a forked-roller sowing unit for planting onion bulbs are presented. The optimal technological parameters are determined experimentally. It was determined the number of bulbs that are for up is 51 % and the regularity of planting by the forked-roller sowing unit – 79 %. These figures are provided at the forward speed of the planting machine V M = 0.9–1.0 m/s, the height of the fall of the bulb H A = 0.12 m, and the rotation frequency of the landing drum n Б = 0.47 c -1 . Discussion and Conclusions: The use of a forked-roller sowing unit makes it possible to increase the proportion of onions planted by bottom down by 200 %, and the uniformity of planting bulbs by 19 %, in comparison with a belt sowing unit.
机译:简介:现有的播种机不提供带有种植(播种)单元的鳞茎单次饲喂,这导致违反了种植鳞茎的农业技术要求。有必要寻找新的解决方案,以保持灯泡在槽中的位置(底部朝下)及其规则间隔的分布。材料和方法:本文介绍了一种种植机样机的设计,该样机配备了叉形滚筒播种单元,用于将洋葱播种定向为犁沟。在平坦的区域上进行分叉式滚筒播种单元的测试,在播种当天确定土壤的物理和机械性能,并确定洋葱播种的质量指标。播种机速度对洋葱种子鳞茎着陆质量的影响的研究取决于播种单元的平移速度在0.8 m / s至1.2 m / s范围内的变化间隔0.1 m / s。鳞茎播种质量的指标由封闭的犁沟的打开确定。介绍了种植机样机的实验室研究结果。结果:介绍了配备有用于种植洋葱鳞茎的分叉式滚筒播种单元的种植机的实验室研究结果。最佳工艺参数是通过实验确定的。确定的鳞茎数量为51%,分叉滚筒播种机的播种规律为79%。这些数字是在播种机的前进速度VM = 0.9–1.0 m / s,球茎下降高度HA = 0.12 m和着陆滚筒的旋转频率nБ= 0.47 c 下提供的-1 。讨论与结论:与带式播种单元相比,使用分叉式滚筒播种单元可使自下而下种植的洋葱比例增加200%,使鳞茎的均匀度提高19%。

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