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Comparative study of the force action of harvester work tools on potato tubers

机译:马铃薯块茎收割机工作工具的力量作用对比研究

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The quality of the separation of root crops, onions and potatoes is known to primarily depend on the cultivation conditions. As a rule, these cultures are cultivated in mechanically light soils in order to improve the quality of separation, as well asto reduce the traction resistance of the harvester when extracting the root crops from the soil. When harvesting the root crops, it is very important to maintain the soil in a loose (light) state to improve the quality of the separation. Due to the factthat in digging up the root crops, there is a joint flow of strong soil lumps to the separating working bodies, which are difficult to separate on the slit working bodies of the harvester, which increases damage to the root crops when interacting with the soil lumps, the commercial quality of the products is subsequently deteriorated. The existing potato harvesters damage the commercial products as a result of the interaction of the potato tubers with each other, with the working bodies and with the soil lumps. However, the greatest percentage of damage to potato tubers occurs as a result of their interaction with the working bodies of the harvester. Field studies were conducted to determine the places of the greatest impact of the individual workingbodies of the potato harvesters and to carry out subsequent actions for the elimination of these negative impacts in the design of the harvesters. This article presents a methodology for conducting field studies on the assessment of the impact of the working bodies on the scale of damage to potato tubers when harvesting. The results of the comparative studies of the impact of the working bodies of modern potato harvesters, which damage the potato tubers as a result of the interaction with them are presented. We have determined that the greatest scale of impact on the potato tubers during the mechanised harvesting is observed as the transition from the main elevator to the secondary separation devices takes place, irrespective of the design and technological scheme of the harvester, and reaches its minimum value from 6.5 N for the Bolko harvester to 21 N for the AVR-Spirit-6200 harvester.
机译:已知根系作物,洋葱和土豆分离的质量主要取决于培养条件。通常,这些培养物在机械轻微的土壤中培养,以提高分离的质量,同时在从土壤中提取根部作物时,Asto的分离质量也会降低收割机的牵引力。在收获根系作物时,将土壤保持在松散(光)状态以改善分离的质量是非常重要的。由于FAFTTHT挖掘根作作物,将强力土块的关节流到分离的工作体,这难以在收割机的狭缝工作体上分离,这在与之交互时对根系作物造成伤害土壤块,产品的商业质量随后劣化。现有的马铃薯收割机由于马铃薯块茎彼此相互作用而损坏了商业产品,用工作体和土壤块。然而,由于它们与收割机的工作机构的相互作用,因此对马铃薯块茎造成的最大损害百分比。进行了现场研究,以确定马铃薯收割机的个体工作性对最大的作用影响以及对收割机设计中消除这些负面影响的后续行动。本文提出了一种关于在收获时对工作机构对工作机构对土豆毒药毒物损伤量的影响进行评估的现场研究的方法。介绍了现代马铃薯收割机工作机构的影响的比较研究结果,由于与它们的相互作用而损坏马铃薯块茎。我们已经确定,在机械化收集期间对马铃薯块茎的影响最大的影响是由于收割机的设计和技术方案,从主电梯到二次分离装置的过渡,而是从主电梯到二次分离装置的过渡。并且达到其最小值从6.5 n为Bolko Harvester到21 n的AVR-Spirit-6200收割机。

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