JUSTIFICATION OF THE MAIN DESIGN PARAMETERS OF THE ROTARY WORKING BODY OF ROOT HARVEST MACHINES

S. Hrushetskiy, Oleh Omelyanov
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Abstract

Potato is one of the most common crops in Ukraine, most domestic farms are engaged in its production - from the population to large agricultural firms. Moreover, about 95% of the potato produced falls on household plots, which are characterized by the widespread use of manual labor in most technological harvesting operations and low mechanization of the harvesting process as a whole. Harvesting remains the most resource-intensive process in potato production, because today, as you know, the share of energy and labor costs of harvesting processes is 50-60% and 60-70%, respectively. From a brief analytical review of the works devoted to the study of under-digging-separating working bodies of root-tuber harvesters, it can be seen that by now significant theoretical and experimental material has already been accumulated, revealing the patterns of interaction processes of working bodies of various designs with tuberous mass. However, despite this, to date, it has not been possible to create a sufficiently efficient, reliable, low-energy, which will satisfy all agrotechnical requirements for root and tuber harvesters, and the problem of developing such a device is still relevant. Accordingly, the purpose of the study was to conduct a comparative analysis to take the minimum amount of soil together with tubers and provide the possibility of better crushing of the reservoir to facilitate separation and basic parameters while increasing operational productivity, technological reliability of the digging working body and reducing its traction resistance. Based on the results of the research, a new rotary root and tuber harvester has been developed, due to the proposed tooth discs with cutting edges of the lugs and changing the shape of the plowshare of the root and tuber harvester to cylindric, as well as a flat moldboard surface to a rod-separating device, which provides the possibility of better crushing the layer and separating the tubers from the soil rubberized rotor tines for easier separation on the rotary soil separator with rubber tines during harvesting with a rotary root harvester. The proposed scheme of a rotary root and tuber harvester reduces the supply of soil and the separation of tubers from the soil by rubberized rotor fingers to rotary separating working bodies and improves the separation of tubers, thereby reducing their mechanical damage, providing better storage of potatoes, reducing the number of separating devices, and increasing the productivity of the unit. The new rotary working body proposed in the work, taking into account agrotechnical recommendations, should have a rounded surface structure made of high-strength rubber, with cone-shaped protrusions placed at an angle to the circle inscribed in the base. For research, as the main parameters of the rotor, we take its outer diameter Dр, the angle of inclination of the protrusions βв, their height Нв, length Lв, the radius of curvature Rв, the height of the vertices bв and the total number of protrusions Nв on the outer diameter Dр, as well as the thickness of the rotor B and the landing parameter. holes.
对根收获机旋转体的主要设计参数进行了论证
马铃薯是乌克兰最常见的作物之一,从人口到大型农业公司,大多数国内农场都从事其生产。此外,大约95%的马铃薯产量落在家庭地块上,其特点是在大多数技术收获作业中广泛使用体力劳动,整个收获过程的机械化程度较低。收获仍然是马铃薯生产中资源最密集的过程,因为今天,如你所知,收获过程的能源和劳动力成本分别为50-60%和60-70%。通过对块茎采收机下掘分离工作体研究工作的简要分析回顾,可以看出,到目前为止,已经积累了大量的理论和实验材料,揭示了各种设计的工作体与块茎块的相互作用过程规律。然而,尽管如此,到目前为止,还不可能创造出一种足够有效、可靠、低能量,能够满足所有农业技术要求的根和块茎收割机,开发这种设备的问题仍然是相关的。因此,本研究的目的是进行对比分析,以最小的土壤和块茎,为水库提供更好的破碎可能性,以方便分离和基本参数,同时提高挖掘工作体的作业生产率和技术可靠性,降低其牵引阻力。在此基础上,提出了一种新型的旋转式根管收割机,由于提出了带齿瓣的齿片,并将根管收割机的犁头形状改为圆柱形,并且将一个平坦的模板表面用于杆分离装置,因此开发了一种新型的根管收割机。它提供了更好地粉碎层并将块茎从土壤橡胶转子上分离的可能性,以便在使用旋转根收割机收获期间更容易地在带有橡胶转子的旋转土壤分离器上分离。所提出的旋转式根块茎收获机方案,减少了土壤的供给,通过橡胶转子手指将块茎从土壤中分离到旋转式分离工作机构,提高了块茎的分离,从而减少了块茎的机械损伤,提供了更好的马铃薯储存,减少了分离装置的数量,提高了机组的生产率。考虑到农业技术建议,在工作中提出的新旋转工作体应具有由高强度橡胶制成的圆形表面结构,锥形突起与底座上的圆呈一定角度。在研究中,我们取转子的外径dtu、凸点倾斜角β tu、凸点高度Нв、凸点长度ltu、曲率半径rtu、顶点高度btu、外径dtu上凸点总数ntu,以及转子的厚度B和着陆参数作为转子的主要参数。洞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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