To determine the optimal tilt angle of the lattice holes of the bottom of the inclined chamber

V. Ozhereliev, V. Nikitin
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Abstract

According to the results of laboratory experiments, the optimal angle of inclination of the holes of the lattice bottom of the inclined chamber of the combine harvester is established, which provides maximum separation of free grain from the combed grain heap before it enters the grind chamber. This allows you to minimize the intake of free grain to the threshing device, securely eliminating the probability of crushing the working bodies grind. Studies were carried out on wheat varieties «Moscow 56». The grain moisture content was about 12%. The speed of the conveyor 3 m/s and the angle of inclination to the horizon of 45° correspond to similar parameters for most modern combine harvesters. The angle of inclination of the lattice bottom opening had seven levels of variation within 0-90°. The feed of the combed grain heap was about 10 kg/s with a content of 80 % free grain. The length of the removable grating bottom was 0.95 m, and its rectangular holes had a size of 160×8 mm. To eliminate the effect on the output parameter, the area of the «live section» of the holes of the lattice bottom in all series of the experiment was taken the same. Thus, results of scientific researches, increasing of the angle of inclination amounts of free grain passed through the holes of the bottom lattice is reduced, and the number came down from his grain, on the contrary, increases. The maximum separation of free grain 68,7 % corresponds to the angle of inclination of the holes equal to 0°. To ensure complete separation of free grain from the combed grain heap, the length of the separating surface must be at least 1,18 m. This technical solution can be implemented, for example, in the inclined chamber of the grain harvester KZS-1218 «Polissya GS-12», which has a length of about 1,3 m.
确定斜室底部格孔的最佳倾斜角
根据室内实验结果,确定了联合收割机倾斜仓格底孔的最佳倾斜角,使精梳后的谷粒堆在进入磨仓前能最大限度地分离出自由谷粒。这样可以最大限度地减少脱粒装置的自由颗粒的摄入量,安全地消除粉碎工作体研磨的可能性。对小麦品种“莫斯科56号”进行了研究。籽粒含水量约为12%。输送机的速度为3米/秒,倾角为45°,与大多数现代联合收割机的参数相似。晶格底开口的倾斜角在0-90°范围内有7级变化。精梳谷堆的投料量约为10 kg/s,游离谷粒含量为80%。可移动光栅底部长度为0.95 m,矩形孔尺寸为160×8 mm。为了消除对输出参数的影响,在所有系列的实验中,晶格底部孔的“活截面”面积取相同。因此,科学研究结果表明,随着倾角的增加,通过底部晶格孔的自由颗粒数量减少,相反,从他的颗粒数量增加。当孔倾角为0°时,自由晶粒最大分离率为68.7%。为保证游离粒与精梳粒堆完全分离,分离面长度必须至少为1.18 m。例如,该技术解决方案可以在KZS-1218“Polissya GS-12”谷物收割机的倾斜室中实施,其长度约为1.3米。
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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