Investigation of The Effect of Clutch Disc Cushion Spring Bending Radius on Spring Reaction Force

Ömer Yıldız, Caner Eş
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Abstract

In this study, the leaf spring in the clutch disc, one of the lower parts of the clutch, which is one of the most important motion transmission systems of motor vehicles, has been examined. One of the most important parts are ensure the working performance of the clutch and a comfortable gear shift to the user is the leaf spring, which is mounted with rivets inside the clutch disc. There are bends on the leaf spring at acute angles and heights. These bends absorb the axial force that the clutch disc is exposed to and enable the clutch to be realized in the optimum time interval. In this study, the radius of the bends on the leaf spring was changed and the effect of this change on the leaf spring reaction force was investigated. After the tests and finite element analyzes, the enlargement of the bending radius reduces the reaction force of the clamp load against the compression force. The decrease of this force, which is opposite to the direction of the clamp load, increases the functional force of the clamp load and provides more torque transmission.
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离合器盘缓冲弹簧弯曲半径对弹簧反力影响的研究
本文对机动车最重要的运动传动系统之一——离合器下部部件之一的离合器盘中的片簧进行了研究。保证离合器工作性能和用户舒适换挡的最重要部件之一是片簧,它是用铆钉安装在离合器片内部的。在板簧上有锐角和锐角高度的弯曲。这些弯曲吸收轴向力,离合器盘暴露,使离合器实现在最佳的时间间隔。通过改变板簧的弯曲半径,研究了弯曲半径的变化对板簧反力的影响。试验和有限元分析表明,弯曲半径的增大减小了夹紧载荷对压缩力的反作用力。这种力的减小与夹紧载荷的方向相反,增加了夹紧载荷的功能力,提供了更多的扭矩传递。
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