Probabilistic Model of the Kinematics of the Device for Reducing Elongation of Flax Fiber Stems in the Tape

IF 0.1 Q4 ENGINEERING, MULTIDISCIPLINARY Engineering Technologies and Systems Pub Date : 2022-03-30 DOI:10.15507/2658-4123.032.202201.126-144
Aleksandr N. Zintsov, M. M. Kovalev, G. Perov
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引用次数: 2

Abstract

Introduction. The main reason for the crisis state of flax growing is the losses of the flax fiber portions when it is extracted from the crop. This is due to excessive elongation of the stems in the layer. It was found that the most convenient way to reduce elongation in the field conditions when turning over flax strips by striking the butt portions in the direction of the stems. The authors propose to use for this purpose a pickup flax turner with a conveyor-type inclined flax butting machine. The purpose of the research is to increase the efficiency of flax tapes leveling process by butting flax stems. Materials and Methods. It is noted that the maximum effect will be provided by a counterimpact in the direction of the flax stems. For this purpose, the speed of motion of the butting surface relative to the retted straw transversely to the flax stems should have a constant zero value. The specified mode can be realized by a conveyor with roller activators. In the article, the random nature of the working conditions of machine units in the field was noted that is an additional obstacle for processing the flax tapes by the suggested method. Therefore, it is recommended to use probabilistic and graph-analytical methods of calculation when designing flax butting machines. Results. Using the graph-analytical method, a probabilistic model linking the kinematics of the proposed device with the probability of causing counter-strikes on the flax butts was obtained. It was found that two-roller activators in combination with inclination of butting surface will provide pronounced impacts, increase speed and probability of their application. Parameters and operating modes of inclined conveyor-type butting machine were substantiated experimentally. Discussion and Conclusion. Application of the proposed method, taking into account the results obtained, will reduce the elongation of flax stems in strips by 5.6% for one turning over and the yield of long fiber by 2.5–3.0%.
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降低胶带中亚麻纤维茎伸长装置运动学的概率模型
介绍。造成亚麻种植危机的主要原因是提取亚麻纤维部分的损失。这是由于茎在层中过度伸长。结果表明,在田间条件下,将亚麻条翻倒时,最方便的降低伸长率的方法是沿茎秆方向击打亚麻条的对接部分。作者建议为此目的使用带有传送带式倾斜亚麻对接机的拾取亚麻机。本研究的目的是为了提高亚麻带整平工艺的效率。材料与方法。值得注意的是,最大的效果将由亚麻茎方向的反作用力提供。为此目的,相对于软化秸秆的对接面与亚麻茎的横向运动速度应具有恒定的零值。指定的模式可以通过带辊激活器的输送机来实现。在文章中,指出了现场机器单元工作条件的随机性,这是采用所建议的方法加工亚麻带的另一个障碍。因此,建议在设计亚麻对接机时采用概率法和图解析法进行计算。利用图形分析方法,建立了将该装置的运动学与对亚麻接头产生反击的概率联系起来的概率模型。研究发现,双辊活化剂与对接面倾角相结合,会产生明显的影响,提高其应用速度和可能性。对斜输送式对接机的参数和工作方式进行了实验验证。讨论与结论。应用该方法,考虑到所获得的结果,亚麻条的伸长率每翻一次可降低5.6%,长纤维的收率可降低2.5-3.0%。
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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来源期刊
Engineering Technologies and Systems
Engineering Technologies and Systems ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
29
审稿时长
12 weeks
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