SIMULATION OF THE SOIL PROCESSING UNIT WITH THE DEVELOPMENT OF RECOMMENDATIONS FOR THE SELECTION OF WORKING BODIES

I. Gunko, Roman Hrybyk
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Abstract

Analysis of research and development of pre-sowing machines and units shows that there are many trailed, semi-trailer combined units with different design and technical characteristics. In general, the significant disadvantages of these aggregates are the insufficient quality flatness of the microreliefs and the fragmentation of the soil. Compared to the basic complex with the use of a machine, the use of the proposed unit contributes to: a decrease in the density of the soil at the level of 0...20 cm by 15.6...17.1%, an increase in porosity by 34.7...37.9%, which will have agrotechnical significance. The content of the soil aggregate increased by 19.7...33.3%, the sawdust fraction decreased by 1.8...5.9 times. It was determined that the unit should move at a speed of 9...10 km/h. The object of the study is the modeling of the selection of working bodies of the combined tillage unit. The principle of alternation of tools, which are carried out by the tillage machine used in performing the necessary operations, is the basis of the technology of combined tillage. The choice, alternation of methods of soil treatment and adjustment modes depends on the conditions and characteristics of the field. In order for soil tillage machines used for combined tillage to meet the criteria for their efficiency with predetermined quality to perform soil tillage operations, it is necessary to provide optimal modes of adjustment of working bodies. In this regard, it is necessary to develop mounted combined tillage units, which are characterized by simple design and low cost and are able to perform many technically interconnected operations at the same time: high-quality leveling of the microrelief and grinding of the soil to remove plant residues, in a word, to ensure timely and high-quality preparation of the soil for sowing, while reducing energy consumption.
模拟土壤处理单元的发展,为工作机构的选择提供建议
对预播机械和机组的研发分析表明,有许多设计和技术特点不同的拖、半挂车组合机组。总的来说,这些集料的显著缺点是微地形的质量平整度不够和土壤破碎。与使用机器的基本综合体相比,使用拟议的单元有助于:土壤密度降低到0…20 cm增加15.6 ~ 17.1%,孔隙度增加34.7 ~ 37.9%,具有重要的农业技术意义。土壤团聚体含量增加19.7 ~ 33.3%,锯末含量减少1.8 ~ 5.9倍。已确定该单位应以9的速度移动。10公里/小时。研究的对象是联合耕作机组工作体选择的建模问题。轮作原理是联合耕作技术的基础,轮作原理是由耕作机在进行必要的作业时所执行的轮作原理。土壤处理方法和调整方式的选择和交替取决于田地的条件和特点。为了使用于联合耕作的土壤耕作机械达到其效率和预定质量的标准,进行土壤耕作作业,需要提供最优的工作机构调整方式。在这方面,有必要开发挂载式联合耕作装置,其特点是设计简单,成本低,能够同时进行许多技术上相互关联的操作:高质量的微地形平整和土壤研磨以去除植物残留物,总之,确保及时和高质量地准备播种土壤,同时降低能耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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