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首页> 外文期刊>Agricultural Engineering International: CIGR Ejournal >Design, construction and evaluation of preliminarily machine for removing sunflower seeds from the head using air-jet impingement
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Design, construction and evaluation of preliminarily machine for removing sunflower seeds from the head using air-jet impingement

机译:喷气冲击从头部去除向日葵种子的初步设备的设计,构造和评估

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To design a sunflower machine for removing seeds from sunflower head (SH) based on air-jet impingement, preliminarily model of such machine was designed, constructed and evaluated. Effects of the seed location, angle of impingement, distance between nozzle outlet and sunflower head, and rotational velocity of sunflower head on percentage of extracted seeds were examined. In order to examine the effects of air-jet parameters on percentage of removed seeds in different locations of seed on sunflower head, sunflower heads were divided into three regions, namely central region, middle region and side region. Results indicated that in all three regions, with increasing rotational velocity from 10 to 30 rev/min, percentages of removed seeds from the SH decreased. Results also indicated that in all three regions, with increasing distance between nozzle outlet and SH surface from 10 to 20 mm and decreasing distance between nozzle outlet and SH surface from 40 to 20 mm, percentage of removed seeds from the SH by air-jet increased. Results indicated that in side region, with decreasing angle of impingement from 90% to 30%, of removed seeds from the SH by air-jet increased and in middle and central regions, with increasing angle of impingement from 30o to 60o and decreasing angle of impingement from 90o to 60o, percentages of removed seeds from the SH by air-jet increased. Also in all tests, no seed damaged due to air-jet impinging was observed.
机译:为了设计一种基于喷气冲击从向日葵头(SH)去除种子的向日葵机器,初步设计,构造和评估了该机器的模型。研究了种子位置,撞击角度,喷嘴出口与向日葵头之间的距离以及向日葵头的旋转速度对提取种子百分比的影响。为了检验空气喷射参数对向日葵头种子不同位置的去除种子百分比的影响,将向日葵头分为三个区域,即中央区域,中间区域和侧面区域。结果表明,在所有三个区域中,随着转速从10转/分钟增加到30转/分钟,从SH去除种子的百分比降低。结果还表明,在所有三个区域中,随着喷嘴出口与SH表面之间的距离从10毫米增加到20毫米,喷嘴出口与SH表面之间的距离从40毫米减小到20毫米,通过喷气从SH去除的种子的百分比增加。结果表明,在侧面区域,随着撞击角度从90%减小到30%,通过喷气从SH移走的种子增加,而在中部和中央区域,随着撞击角度从30o增大到60o且减小角度,从90o撞击到60o,通过喷气从SH去除种子的百分比增加。同样在所有测试中,未观察到由于喷气冲击而损坏的种子。

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