梳式油麻种子收获机合理参数的实验验证

O. Kozachenko, A. Pakhuchyi, Olexander Shkregal, S. Sorokin, S. Dyakonov, Мykola Gusarenko, V. Kadenko
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摘要

本文报道了采用根上植物梳理法采收亚麻油籽的双滚筒收割机的合理结构和制度参数的实验研究结果。采用预先设定的机壳弯曲形状,对精梳堆在收获机上的分离过程进行了初步的数学建模。通过对收获机堆分选过程的实验研究,确定了稻壳和稻秆颗粒在其区域δ h内排出的质量分数、带种子的种子和蒴果释放δ h的比例以及所消耗的功率P与打蛋器-反射器的旋转频率n 1和精梳滚筒n 2的关系。确定了油亚麻种子梳式收获机的结构模式参数中最重要的参数为:打浆器-反光镜的旋转频率n 1 =892 rpm;梳状滚筒的转动频率,n 2 =652 rpm;风栅位置L=0.62 m,宽度B=0.56 m。在这种情况下,稻壳和稻秆颗粒排出的质量分数为δ h = 47.5%,收获机排出的种子和带种子的蒴果的损失份额分别为δ h = 2.1%,完成该过程所需的功率为P=2.7 kW。统计分析表明,理论数据与实验数据的相关系数为0.88 ~ 0.95;最优值的相对误差为4.6%。理论和实验数据的实际对比和统计对比证实了理论研究所建立的数学模型的充分性。根据我们的实验研究结果,在设计通过根部梳理作物的方法来收获作物的新技术手段时,人们可以争论它们在工程计算中的应用的有用性
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Experimental Substantiation of the Rational Parameters for a Reaping Machine of the Comb Type for Harvesting Oil Flax Seeds
This paper reports the results of the experimental study to substantiate the rational structural and regime parameters of a two-drum reaping machine for harvesting flax oilseeds by the method of combing plants on the root. We have confirmed the results of the preliminary mathematical modeling of the process of separating a combed heap in the reaping machine with a predefined curved shape of the casing. An experimental study of the heap separation process in a reaping machine has established the dependence of the mass fraction of the discharge of husk and stem particles from its region δ h , the proportion of the release of seeds and capsules with seeds δ h, and the consumed power P, on the rotation frequency of the beater-reflector n 1 , and the combing drum n 2 , the position of the air grate L and its width B. The following structural-mode parameters of the comb-type reaping machine for harvesting oil flax seeds have been defined as the most significant ones: the rotation frequency of the beater-reflector, n 1 =892 rpm; the rotation frequency of the comb drum, n 2 =652 rpm; the position of the air grate, L=0.62 m, and its width, B=0.56 m. In this case, the mass fraction of the discharge of husk and stem particles is δ h =47.5 %, the share of the loss of seeds and capsules with seeds from the reaping machine is, respectively, δ h =2.1 %, and the power consumed to perform the process is P=2.7 kW. The statistical analysis has demonstrated that the correlation coefficient between the theoretical and experimental data is 0.88‒0.95; a relative error in the optimal values is 4.6 %. The actual and statistical comparison of the theoretical and experimental data has confirmed the adequacy of the mathematical models built as a result of the theoretical research. Based on the results of our experimental research, one can argue about the usefulness of their application for engineering calculations when designing new technical means for harvesting crops by the method of combing plants on the root
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