Studying the Innovative Flax Pulling Process in Apparatuses with Transverse Pulling Channels

IF 0.1 Q4 ENGINEERING, MULTIDISCIPLINARY Engineering Technologies and Systems Pub Date : 2022-09-30 DOI:10.15507/2658-4123.032.202203.355-372
R. Rostovtsev, M. M. Kovalev, G. Perov, S.V. Prosolov
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引用次数: 1

Abstract

Introduction. During fiber-flax harvesting, the working tools of pulling units actively interact with the flax plants. The flax pulling unit with transverse tape-disc pulling channels is characterized by the separation of technological plant flows resulting in the loss of seeds and damage to the flax stems. The aim of the work is the theoretical and experimental substantiation of changes in the design of the pulling units with transverse tape-disc pulling channels by eliminating the separation of technological plant flows during flax pulling. Materials and Methods. Experimental studies to substantiate the parameters and modes of the pulling unit operation were carried out according to available and newly developed methodologies, while the evaluation of flax products was carried out according to current GOSTs (Russian National standards). There was determined the influence of the flax ripeness stages, flax yield, and a type of pulling unit on the indicators of separation of technological plant flows and on seed losses. The influence of the pulling unit type, operating width of the pulling section, and the pulling unit speed on the indicators of processing flax straw was also established. Results. There was obtained the dependence for determining the flax stem base elongation, taking into account the seed boll cohesion. The design of the modernized flax pulling unit was used to assess the effect of reducing the flax stem base elongation and eliminating the separation of technological plant flows during pulling on the reduction of seed loss and increase in the yield of flax longs. In the improved flax harvester, the frame elements are positioned behind the pulling unit. Thanks to the modernization of the pulling unit, the flax straw was of higher quality: 1.5 numbers at THLN-1.9M and 1.25 numbers at THLN-1.9P. Discussion and Conclusion. The modernized pulling unit THLN-1,9M during flax harvesting in the stage of early yellow ripeness, compared with the unit THLN-1,9P, can reduce seed loss by 1.4-2.0%, increased output of long fiber by 1.3%. The production of flax longs increases to 0.45 of its number.
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横向拉拔装置中创新的亚麻拉拔工艺研究
介绍。在收获纤维亚麻的过程中,牵引装置的工作工具与亚麻植物积极互动。带盘式横向牵引通道的亚麻牵引装置的特点是分离工艺植物流,造成种子的损失和亚麻茎的损伤。该工作的目的是通过消除在亚麻牵引过程中工艺植物流的分离,对具有横向带盘牵引通道的牵引装置设计的变化进行理论和实验证实。材料与方法。根据现有的和新开发的方法进行了实验研究,以证实牵引装置操作的参数和模式,而亚麻产品的评价是根据现行的GOSTs(俄罗斯国家标准)进行的。确定了亚麻的成熟期、产量和牵引装置类型对工艺植株流分离指标和种子损失量的影响。确定了拉拔装置类型、拉拔段操作宽度和拉拔装置速度对加工亚麻秸秆各项指标的影响。得到了在考虑种铃黏聚性的情况下测定亚麻茎基部伸长的依赖关系。通过对现代化亚麻拔节装置的设计,评价了降低亚麻茎基伸长和消除拔节过程中工艺流分离对减少亚麻种子损失和提高亚麻产量的影响。在改进的亚麻收割机中,框架元件位于牵引单元的后面。由于拉拔装置的现代化,亚麻秸秆的质量更高:在THLN-1.9M时为1.5个,在THLN-1.9P时为1.25个。讨论与结论。现代化的thln - 1,9m抽拔装置在亚麻早黄熟阶段收获时,与thln - 1,9p抽拔装置相比,可减少种子损失1.4-2.0%,增加长纤维产量1.3%。亚麻的产量增加到其数量的0.45%。
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来源期刊
Engineering Technologies and Systems
Engineering Technologies and Systems ENGINEERING, MULTIDISCIPLINARY-
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33.30%
发文量
29
审稿时长
12 weeks
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