磨粉骨料能量指标评价

I. Gunko, Serhii Burlaka
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引用次数: 0

摘要

对旱作和地表耕作工具的分析表明,农业机械市场缺乏能够在一台机器上可靠、高效地完成两种耕作的通用单元。为了评估单元基线模型的有效性,进行了实地研究,在此期间确定了耕作质量的关键农艺指标。研究表明,未开垦土壤的速度超过6.5公里/小时,土壤开裂程度-超过80%。在12厘米深的小耕中,作业速度超过7.0公里/小时。使用额外的工作机构将允许在单元基本模型的基础上为特定汽车形成更窄的选择。所提出的犁铧机组的优化设计参数,除犁铧宽度为4.5 m外,还包括相同宽度的滚轮,用于平整犁铧表面,料斗容量为4 m3。工艺技术参数:犁深α = 0.2 m,土壤阻力系数Km = 30 kN/m2,工作面积Lp = 1000 m,表面处理会降低产量。提出了农业区划功能的能量模型。研究表明,通过优化拖拉机重量与发动机功率的比例,可以提高农业单位的生产率。在正常湿度为8 km / h,允许滑移率为10%的条件下,1.4级轮式拖拉机的最佳参数为工作重量m = 4790 kg,发动机功率N = 69.0 kW。在这种情况下,推力将对应于第二个推力类。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EVALUATION OF ENERGY INDICATORS OF GRUNDING AGGREGATE
The analysis of tools for uncultivated and surface tillage shows that the market of agricultural machinery lacks universal units that can reliably and efficiently perform both types of tillage with one machine. To assess the validity of the unit baseline model, field studies were conducted, during which key agronomic indicators of tillage quality were identified. Studies have shown that the rate of uncultivated soil exceeds 6.5 km / h, and the degree of soil cracking - more than 80%. At small tillage to a depth of 12 cm at operating speeds over 7.0 km / h. The use of additional working bodies will allow to form on the basis of the basic model of the unit narrower options for a particular car. The optimal design parameters of the proposed plowing unit, in addition to the plow width of 4.5 m, include rollers of the same width to level the plow surface and the capacity of the fertilizer hopper 4 m3. Technical parameters in the process: plow depth α = 0.2 m, soil resistance coefficient Km = 30 kN/m2, working area Lp = 1000 m. surface treatment will reduce yields. The energy model of functioning of the agricultural subdivision is presented. Studies have shown that by optimizing the ratio of tractor weight to engine power, you can increase the productivity of agricultural units. For stubble cultivation with a normal humidity of 8 km / h, with a permissible slip of 10%, the optimal parameters for a class 1.4 wheeled tractor will be the working weight m = 4790 kg and engine power N = 69.0 kW. In this case, the thrust will correspond to the 2nd thrust class.
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