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Process analysis and test of manufacturing of sleeve spring-type torsional vibration damper

机译:套筒弹簧式扭振阻尼器制造过程分析与测试

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摘要

In diesel engines, engine torque fluctuation inevitably produces torsional vibration. A sleeve spring-type damper commonly is used to reduce this vibration. In this paper, closed form equations to predict the spring constant of a sleeve spring and the torsional characteristics of a torsional vibration damper are proposed for calculation of the stiffness of the damper. The equations were verified through finite element analysis (FEA) and experiments. In addition, the stability of the sleeve spring-type torsional vibration damper was verified in an analysis of the inner star and outer star (the core components of the damper). A two-roll bending process, proposed in this paper, was determined to be the most suitable for manufacture of the sleeve springs. A closed form equation to calculate the forming radius, taking account of the springback effect, was derived, and a FEA method used to analyze the elasto-plastic problem was verified through an analysis of a 90° bending process. The results of the analysis were in good agreement with the experiment. It is recommended that our proposed method, an advanced technique that can significantly reduce production costs, replace the conventional forming process.
机译:在柴油发动机中,发动机扭矩波动不可避免地产生扭转振动。通常使用套筒弹簧型减震器来减小这种振动。在本文中,提出了用于预测套筒弹簧的弹簧常数的闭合形式方程和扭转减振器的扭转特性,以计算减振器的刚度。通过有限元分析(FEA)和实验对方程进行了验证。此外,通过对内星形和外星形(阻尼器的核心部件)的分析,验证了套筒弹簧型扭转振动阻尼器的稳定性。本文提出的两辊弯曲工艺被确定为最适合制造套筒弹簧的过程。推导了考虑回弹效应的闭合形状方程,用于计算成形半径,并通过对90°弯曲过程的分析,验证了用于分析弹塑性问题的FEA方法。分析结果与实验吻合良好。建议我们提出的方法(一种可以显着降低生产成本的先进技术)代替传统的成型工艺。

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