Theory of sustainable movement of disk harrow

V. Adamchuk, V. Bulgakov, V. Nadykto, V. Kuvachov, Y. Ihnatiev, J. Olt
{"title":"Theory of sustainable movement of disk harrow","authors":"V. Adamchuk, V. Bulgakov, V. Nadykto, V. Kuvachov, Y. Ihnatiev, J. Olt","doi":"10.37204/0131-2189-2021-14-1","DOIUrl":null,"url":null,"abstract":"Annotation\nPurpose. Establishment of theoretical regularities that make it possible to make such a choice of parameter values for a trailed disc harrow, which provides it with the desired directional stability, which, in turn, ensures a high-quality performance of the technological process for the disc-type machine-tractor unit.\nMethods. The methods of the theory of agricultural machines were used for the research, analytical mechanics, higher mathematics, and methods of numerical calculations using a PC.\nResults. According to the results of the study, it has been established that sufficient directional stability of a trailed disc harrow can be ensured with the correct choice of its width of capture, distance from the point of attachment to the center of resistance and the speed of the working movement. The optimal combination of these parameters of the disc harrow determines the maximum performance of the harrow machine-tractor unit with a satisfactory stability of its movement in the horizontal plane, which is provided after their determination using the obtained new analytical dependencies.\nSoil disking is one of the methods of soil cultivation, which ensures its effective crushing, loosening, partial mixing and wrapping. Despite numerous researches of the disc harrow operation process, insufficient attention is still paid to the research of the motion stability of harrow machine-tractor units, especially trailed ones.\nConclusions\n1. Satisfactory directional stability of the trailed disc harrow can be ensured with the correct choice of its working width, distance from the point of hitch to the center of resistance and the speed of the working movement.\n2. The optimal combination of the design parameters of the disc harrow and the speed of the harrow machine-tractor unit, which determines its maximum productivity with satisfactory stability of the disc harrow movement in the horizontal plane, is ensured when they are determined using the new analytical dependencies.\n3. The obtained theoretically mathematical dependencies can be used to solve a similar problem with respect to any other symmetric machine-tractor unit with a trailed technological part.\nKeywords: harrow, tillage, trailed machine-tractor unit, motion stability, differential equations.","PeriodicalId":253322,"journal":{"name":"Mehanization and electrification of agricultural","volume":"2 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"1900-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Mehanization and electrification of agricultural","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.37204/0131-2189-2021-14-1","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

Annotation Purpose. Establishment of theoretical regularities that make it possible to make such a choice of parameter values for a trailed disc harrow, which provides it with the desired directional stability, which, in turn, ensures a high-quality performance of the technological process for the disc-type machine-tractor unit. Methods. The methods of the theory of agricultural machines were used for the research, analytical mechanics, higher mathematics, and methods of numerical calculations using a PC. Results. According to the results of the study, it has been established that sufficient directional stability of a trailed disc harrow can be ensured with the correct choice of its width of capture, distance from the point of attachment to the center of resistance and the speed of the working movement. The optimal combination of these parameters of the disc harrow determines the maximum performance of the harrow machine-tractor unit with a satisfactory stability of its movement in the horizontal plane, which is provided after their determination using the obtained new analytical dependencies. Soil disking is one of the methods of soil cultivation, which ensures its effective crushing, loosening, partial mixing and wrapping. Despite numerous researches of the disc harrow operation process, insufficient attention is still paid to the research of the motion stability of harrow machine-tractor units, especially trailed ones. Conclusions 1. Satisfactory directional stability of the trailed disc harrow can be ensured with the correct choice of its working width, distance from the point of hitch to the center of resistance and the speed of the working movement. 2. The optimal combination of the design parameters of the disc harrow and the speed of the harrow machine-tractor unit, which determines its maximum productivity with satisfactory stability of the disc harrow movement in the horizontal plane, is ensured when they are determined using the new analytical dependencies. 3. The obtained theoretically mathematical dependencies can be used to solve a similar problem with respect to any other symmetric machine-tractor unit with a trailed technological part. Keywords: harrow, tillage, trailed machine-tractor unit, motion stability, differential equations.
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盘耙可持续运动理论
AnnotationPurpose。建立理论规律,使拖盘耙参数值的选择成为可能,从而使拖盘耙具有理想的方向稳定性,从而保证了拖盘机机组工艺过程的高质量性能。农业机械的理论方法被用于研究、分析力学、高等数学和计算机数值计算的方法。研究结果表明,正确选择耙耙的抓取宽度、附着点到阻力中心的距离和工作运动速度,可以保证耙耙具有足够的方向稳定性。盘式耙的这些参数的最佳组合决定了耙机-拖拉机装置的最大性能,其在水平面上的运动具有令人满意的稳定性,这是在使用获得的新的分析依赖关系确定后提供的。土壤盘式耕作是土壤耕作的一种方法,它保证了土壤的有效破碎、松动、局部混合和包裹。尽管对盘耙作业过程的研究很多,但对耙机-拖拉机单元,特别是拖尾耙机-拖拉机单元运动稳定性的研究还不够重视。正确选择拖盘耙的工作宽度、钩点到阻力中心的距离和工作运动速度,可以保证拖盘耙具有满意的方向稳定性。利用新的解析依赖关系确定盘耙的设计参数和耙机-拖拉机单元的速度的最佳组合,保证了盘耙在水平面上的运动具有令人满意的稳定性,从而决定了盘耙的最大生产率。所得到的理论数学依赖关系可用于解决关于任何其他带有拖尾工艺部件的对称机械-拖拉机单元的类似问题。关键词:耙,耕作,拖机拖拉机,运动稳定性,微分方程。
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