{"title":"DEVELOPMENT IN CAD OF A THREE-DIMENSIONAL MODEL OF A FOREST PLANTING MACHINES","authors":"M. Drapalyuk, T. Morozov, L. Bukhtoyarov, N.Yu. Yurev","doi":"10.34220/mmeitsic2021_56-61","DOIUrl":null,"url":null,"abstract":"Currently, the reforestation process has a number of disadvantages, such as the need to use manual labor during the distribution and planting of seedlings; mechanisms for planting seedlings are often equipped with tractors as traction means. The creation of furrows and the preparation of the soil immediately before planting affects the energy consumption of the implements’ drives. At the moment, the inefficiency of planting work is high, since the planting of seedlings with a closed root system occurs in conjunction with a plow. All these factors, when calculated for a long-term period, lead to greater energy consumption when carrying out this type of work. This article discusses approaches to the mechanization of the planting process. Using the experience of planting seedlings with a closed root system (CCS) manually and analyzing the methods of mechanization of planting, it is possible to obtain maximum efficiency when carrying out this type of work. Based on the material studied, a prototype of a planting device suitable for the technology of discrete planting of seedlings with ZKS was selected. Solid modeling of the working body in the Solidworks computer-aided design system has been carried out. When designing the model, the possibility of its production using additive technology using the FDM printing method was envisaged.","PeriodicalId":18702,"journal":{"name":"Modern machines, equipment and IT solutions for industrial complex: theory and practice : materials of the All-Russian scientific and practical conference, Voronezh, June 17, 2021 / ed. T.L. Ishchenko, D.A. Parinov, N.V. Truskova","volume":"25 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2021-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Modern machines, equipment and IT solutions for industrial complex: theory and practice : materials of the All-Russian scientific and practical conference, Voronezh, June 17, 2021 / ed. T.L. Ishchenko, D.A. Parinov, N.V. Truskova","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.34220/mmeitsic2021_56-61","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

Currently, the reforestation process has a number of disadvantages, such as the need to use manual labor during the distribution and planting of seedlings; mechanisms for planting seedlings are often equipped with tractors as traction means. The creation of furrows and the preparation of the soil immediately before planting affects the energy consumption of the implements’ drives. At the moment, the inefficiency of planting work is high, since the planting of seedlings with a closed root system occurs in conjunction with a plow. All these factors, when calculated for a long-term period, lead to greater energy consumption when carrying out this type of work. This article discusses approaches to the mechanization of the planting process. Using the experience of planting seedlings with a closed root system (CCS) manually and analyzing the methods of mechanization of planting, it is possible to obtain maximum efficiency when carrying out this type of work. Based on the material studied, a prototype of a planting device suitable for the technology of discrete planting of seedlings with ZKS was selected. Solid modeling of the working body in the Solidworks computer-aided design system has been carried out. When designing the model, the possibility of its production using additive technology using the FDM printing method was envisaged.
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在cad中开发了森林种植机的三维模型
目前,再造林过程有许多缺点,例如在分配和种植幼苗期间需要使用人工;栽植秧苗的机构往往配备拖拉机作为牵引手段。在播种之前,犁沟的形成和土壤的准备会影响农具驱动的能量消耗。目前,种植工作的低效率很高,因为种植具有封闭根系的幼苗是与犁一起发生的。所有这些因素,在长期计算时,导致在进行这类工作时更大的能源消耗。本文讨论了种植过程机械化的途径。利用人工封闭根系(CCS)育苗的经验,分析种植机械化的方法,可以在进行这类工作时获得最大的效率。在研究材料的基础上,选择了一种适合ZKS离散育苗技术的育苗装置样机。在Solidworks计算机辅助设计系统中对工作体进行了实体建模。在设计模型时,设想了使用FDM打印方法使用添加剂技术进行生产的可能性。
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