Development of the shape of the cam profile of mechanical yam vibrator using cycloid motion

Kifilideen L. Osanyinpeju, A. Aderinlewo, O. Dairo, O. Adetunji, E. Ajisegiri
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引用次数: 3

Abstract

At a high frequency of vibration; the cam of a vibrator always encounters the issue of jamming or the follower rolling off or losing contact with the cam when the appropriate design is not carried out. This study, therefore, developed the shape of the cam profile of mechanical yam vibrator using cycloid motion in the South. Displacement equations from the base circle to the cam profile were developed to obtain the shape of the cam using cycloid motion. A vibrometer was used to evaluate the developed 5 mm, 10 mm, and 20 mm cam sizes installed in a mechanical yam vibrator. The maximum displacement recorded for 5 mm, 10 mm and 20 mm cam sizes were 4.47 mm, 8.71 mm, and 14.54 mm respectively for low (1 – 5 Hz) frequency; 4.58 mm, 8.84 mm and 16.34 mm respectively for medium (60 – 100 Hz) frequency; and 4.66 mm, 9.09 mm and 17.30 mm respectively for high (150 – 200 Hz) frequency. This study shows that a cycloid cam would operate smoothly at low, medium, and high frequencies of vibration and function properly for frequency and displacement of vibration up to 200 Hz and 20 mm respectively without jamming and failing. A cycloid cam is therefore recommended for low, medium, and high frequencies motion of vibration.
基于摆线运动的机械振动器凸轮轮廓形状的研究
振动频率高的;在设计不合理的情况下,振动器的凸轮经常会遇到卡壳、从动件滚落或与凸轮失去接触的问题。因此,本研究在南方发展了利用摆线运动的机械振动器凸轮轮廓的形状。建立了从基圆到凸轮轮廓线的位移方程,利用摆线运动得到凸轮的形状。用振动计对安装在机械振动器中的5毫米、10毫米和20毫米凸轮尺寸进行了评估。在低频率(1 - 5 Hz)下,5 mm、10 mm和20 mm凸轮尺寸的最大位移分别为4.47 mm、8.71 mm和14.54 mm;中频(60 ~ 100 Hz)分别为4.58 mm、8.84 mm和16.34 mm;高频率(150 ~ 200 Hz)分别为4.66 mm、9.09 mm和17.30 mm。研究表明,摆线凸轮在低、中、高频振动下均能平稳运行,在200 Hz和20 mm以下的振动频率和位移下均能正常工作,不出现卡簧和故障。因此,建议使用摆线凸轮进行低、中、高频振动运动。
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