一种可调振幅和频率的振动容器在薯蓣缓发芽中的潜在应用性能评价

Kifilideen L. Osanyinpeju, A. Aderinlewo, O. Dairo, O. Adetunji, E. Ajisegiri
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引用次数: 0

摘要

建立了在凸轮和从动件机构上工作的变幅变频机械振动容器。本研究对所建立的振动容器在山药缓发芽方面的潜在应用进行了性能评价。振动容器是电动的,机器选用了15000转/分的变速电动机。所建立的机械振动容器的性能参数为振幅和频率不同组合阶段的最大位移百分比和振动速度。理论幅值为5 mm、10 mm和20 mm的凸轮在低频时可实现的最大振动位移百分比分别为89.40%、87.10%和72.7%;中频分别为91.60%、88.40%和81.70%;高频分别为93.20%、90.90%和86.50%。理论幅值为5 mm、10 mm和20 mm的凸轮在低频时可实现的最大振动速度百分比分别为72.6%、71.40%和69.9%;中频分别为79.81%、74.88%和70.96%;高频分别占81.20%、77.52%和73.69%。结果表明,所建立的机械振动容器具有良好的性能。因此,在负载条件下运行时,振动器显示出有效减缓发芽的良好潜力。它可以帮助减缓山药的发芽
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Evaluation on the Utilization of an Established Variable Amplitude and Frequency of Vibrating Container for Potential Application in Slowing Down Sprouting in Yam
A variable amplitude and frequency of mechanical vibrating container working on cam and follower mechanism have been established. This study carried out a performance evaluation on the utilization of the established vibrating container for potential application in slowing down sprouting in yam. The vibrating container is electrically operated and a variable speed electric motor of 15, 000 rpm was selected for the machine. The performance parameters of the established mechanical vibrating container investigated were percentage maximum displacement and velocity of the vibration at different combined stages of amplitudes and frequencies. The percentage achievable maximum displacement of vibration measured for theoretical amplitude of cams of 5 mm, 10 mm and 20 mm were 89.40 %, 87.10 % and 72.7 % respectively for low frequency; 91.60 %, 88.40 % and 81.70 % respectively for medium frequency; and 93.20 %, 90.90 % and 86.50 % respectively for high frequency. The percentage achievable maximum velocity of vibration measured for theoretical amplitude of cams of 5 mm, 10 mm and 20 mm were 72.6 %, 71.40 % and 69.11 % respectively for low frequency; 79.81 %, 74.88 % and 70.96 % respectively for medium frequency; and 81.20 %, 77.52 % and 73.69 % respectively for high frequency. The results show that the established mechanical vibrating container has effective and suitable performances. The vibrator thus shows a good potential to effectively slow down sprouting when operated under load condition. It could help in slowing down sprouting in yams
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