Rationale for the Design of the Stand for Dynamic Testing of Drive Wheels of Agricultural Transport and Technological Machines

IF 0.1 Q4 ENGINEERING, MULTIDISCIPLINARY Engineering Technologies and Systems Pub Date : 2022-03-30 DOI:10.15507/2658-4123.032.202201.071-089
A. S. Ulanov, V. Kupryashkin, N. I. Naumkin, S. Timokhin, A. Gusev, Vladimir V. Kupryashkin
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Abstract

Introduction. The development of agricultural production technical support implies the creation of new working tools and machines for soil treatment, and their improvement and research. This process is continuously associated with the use of soil channels and experimental facilities that help to determine the nature of interaction of working elements and wheeled drivers of agricultural machinery, including means of small-scale mechanization, with the soil. The purpose of this study is to provide the rationale for the design of the stand for testing the working elements of tillage units and wheels of transport and technological machines in the agro-industrial complex. Materials and Methods. In order to obtain reliable experimental data on the interaction of wheeled propellers of small-scale mechanization with the soil, the analysis of the basic design of the experimental stand to study the working elements of agricultural machinery was conducted. The requirements for the experimental stand were defined. The experimental-measuring complex “Soil Channel” was developed and manufactured on the basis of production facilities of the Prof. Leshchankin Chair of Mobile Power Tools and Agricultural Machinery of the Institute of Mechanics and Power Engineering of National Research Mordovia State University. Results. The analysis of ensuring the stability of translational motion of the experimental stand movable module is given, the technical solution to ensure the uniformity of its motion is substantiated and the choice of the electromagnetic powder brake type size is made. The kinematic diagram and a prototype of the movable module of the experimental stand for the investigation of the driving wheels of power tillers are developed. Discussion and Conclusion. Improvement of the soil channel design by introducing a removable module into it, will provide tests not only of active, traction and traction-driven working tools of tillage machines, but will also allow studying the nature of interaction of their driving wheels with the soil, carrying out simultaneous control of traction force and slipping. These data can be used for modernization of existing machines and working tools, and for developing new units.
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农业运输机械驱动轮动力试验台架的设计原理
介绍。农业生产技术支持的发展意味着新的土壤处理工具和机器的创造,以及它们的改进和研究。这一过程一直与土壤通道和实验设施的使用有关,这些设施有助于确定农业机械(包括小型机械化手段)的工作元件和轮式驾驶员与土壤相互作用的性质。本研究的目的是为测试农工综合体中耕作单元和运输和技术机器的车轮的工作元件的台架设计提供理论依据。材料与方法。为了获得可靠的小型机械化轮式螺旋桨与土壤相互作用的试验数据,对研究农机工作要素的试验台的基本设计进行了分析。确定了实验台架的要求。实验测量综合体“土壤通道”是在莫尔多维亚国立理工大学力学与动力工程研究所移动电动工具和农业机械Leshchankin教授讲座的生产设备的基础上开发和制造的。对保证实验台活动模块平移运动的稳定性进行了分析,提出了保证其运动均匀性的技术解决方案,并对电磁粉末制动器的型号尺寸进行了选择。研制了动力分蘖机驱动轮研究试验台活动模块的运动学图和样机。讨论与结论。通过引入可移动模块改进土壤通道设计,不仅可以测试耕作机械的主动、牵引和牵引驱动的工作工具,还可以研究其驱动轮与土壤相互作用的性质,同时控制牵引力和滑动。这些数据可用于现有机器和工具的现代化,并用于开发新装置。
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来源期刊
Engineering Technologies and Systems
Engineering Technologies and Systems ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
29
审稿时长
12 weeks
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