Prospects for the development of undercarriage systems of modern mobile energy devices for agricultural purposes

Z. Godzhaev, A. M. Pogozhina
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Abstract

The final stage of the cultivation of crops is harvesting. The quality of the operation depends on the annual result of the effectiveness of all previous work. It is important not only to harvest well, but to preserve the fertility of the soil and avoid soil compaction. The problem of compression is becoming more acute due to the massive use of heavy wheeled tractors and combines. The degree of soil compaction depends on the type of propulsion unit, the weight of the tractor and the number of passes of the units across the field. The negative impact of undercarriage systems on the soil should be considered when creating new machines based on new layout schemes, to reduce the structural weight, taking into account the dynamics and distribution of the center of mass of the variation in hook load. To reduce pressure and evenly distribute it is possible through the creation of more advanced propulsion and suspension systems. The purpose of this article is to analyze the most promising designs of the mobile agricultural machinery undercarriage systems, which can reduce the specific pressure on the ground, improve the throughput of agricultural machinery and provide a more comfortable planting and harvesting. At the moment, the following main directions of development of agricultural machinery undercarriage systems can be distinguished: pneumatic tracks, twin wheels, half-track, installation of rubber-reinforced tracks (RRT) and torsion as an elastic suspension element. The tests carried out confirmed that the installation of a changeable tracked propulsion unit can reduce the degree of soil compaction by 17-46 %, and the use of twin wheels showed an increase in pulling force by 20 % and a decrease in gauge depth by 40 %. The use of pneumatic trackers allows to increase the permeability of the transport vehicle on soils with a weak bearing capacity and at the same time minimize the damage that it can cause to the supporting base. Recently it is popular to operate the agricultural machinery, which uses rubber-reinforced caterpillar. Its caterpillar operational cycle if higher of 4-5 times comparing to those from metal. In addition, it allows to reduce vibration load and do the work at wet soil conditions. RRT is put both in the all-track version, and in the form of a wheel-caterpillar. This propulsion unit has a triangular shape of rubber tracks is mounted instead of wheels. Currently, individual torsion hangers of track rollers are widely used on tracked tractors. The advantages of the new torsion-balance suspension made it possible to increase the reliability and durability of tracked tractors undercarriage systems.
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现代农用移动能源装置底盘系统的发展展望
农作物栽培的最后阶段是收获。操作的质量取决于以往所有工作的有效性的年度结果。重要的是不仅要收获好,而且要保持土壤的肥力,避免土壤压实。由于重型轮式拖拉机和联合收割机的大量使用,压缩问题变得越来越严重。土壤的压实程度取决于推进装置的类型、拖拉机的重量和推进装置通过田地的次数。根据新的布置方案设计新机器时,应考虑底盘系统对土壤的负面影响,以减轻结构重量,同时考虑钩载荷变化的动力学和质心分布。为了减少压力并使其均匀分布,可以通过创造更先进的推进和悬挂系统来实现。本文的目的是分析最有前途的移动农机底盘系统的设计,它可以减少对地面的比压力,提高农机的吞吐量,提供更舒适的种植和收获。目前,农业机械底盘系统的发展主要有以下几个方向:气动履带、双轮、半履带、安装橡胶增强履带(RRT)和扭转作为弹性悬挂元件。试验证实,安装可变履带推进装置可使土体压实程度降低17- 46%,使用双轮可使拉力增加20%,轨距深度减少40%。使用气动跟踪器可以增加运输车辆在承载能力较弱的土壤上的渗透性,同时最大限度地减少它对支撑基础造成的损害。近年来,使用橡胶加固履带的农业机械是一种比较流行的操作方式。其履带作业周期比金属履带作业周期高4-5倍。此外,它可以减少振动载荷,并在潮湿的土壤条件下工作。RRT既有全履带式的,也有轮式履带式的。这种推进装置有一个三角形的橡胶履带,而不是轮子。目前,履带拖拉机上广泛使用的是单件履带滚轮扭力吊架。新型扭平衡悬架的优点使履带拖拉机起落架系统的可靠性和耐久性得以提高。
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