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Fundamental study on countermeasures against subharmonic vibration of order 1/2 in automatic transmissions for cars

机译:汽车自动变速器次级振动对策的基本研究

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In automatic transmissions for cars, a damper is installed in the lock-up clutch to absorb torsional vibrations caused by combustion in the engine. Although a damper with low stiffness reduces the torsional vibration, low-stiffness springs are difficult to use because of space limitations. To address this problem, dampers have been designed using a piecewise-linear spring having three different stages of stiffness. However, a nonlinear subharmonic vibration of order 1/2 occurs because of the nonlinearity of the piecewise-linear spring in the damper. In this study, we experimentally and analytically examined a countermeasure against the subharmonic vibration by increasing the stages of the piecewise-linear spring using the one-degree-of-freedom system model. We found that the gap between the switching points of the piecewise-linear spring was the key to vibration reduction. The experimental results agreed with results of the numerical analyses.
机译:在汽车的自动变速器中,安装在锁定离合器中的阻尼器,以吸收由发动机中燃烧引起的扭转振动。尽管具有低刚度的阻尼器减少了扭转振动,但由于空间限制,难以使用低刚度弹簧。为了解决这个问题,使用了具有三个不同刚度阶段的分段线弹簧设计了阻尼器。然而,由于阻尼器中的分段线弹簧的非线性,发生了1/2的非线性次谐振动。在这项研究中,我们通过一种自由度系统模型增加分段 - 线性弹簧的阶段来实验和分析地检查了对郊谐振振动的对策。我们发现分段 - 线性弹簧的切换点之间的间隙是减振的键。实验结果同意了数值分析的结果。

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