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DYNAMICS MODELING AND ANALYSIS OF THE NEW HY-VO SILENT CHAIN AND INVOLUTE SPROCKET

机译:新型HY-VO静音链和渐进式链轮的动力学建模与分析

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This paper uses the multi-body dynamics simulation software ADAMS, establishes the dynamics modeling of the new Hy-Vo silent chain meshing with involute sprockets, based on the analysis of the meshing mechanism of the new Hy-Vo silent chain and sprocket, the reasonable structural parameters of the new Hy-Vo silent chain are defined, and the meshing simulation of the new of Hy-Vo silent chain drive is conducted. Simulation results show that the meshing mechanism of th new Hy-Vo silent chain and involute sprockets is a new kind of meshing mechanism, due to the dual function of the variable pitch feature and meshing with involute sprockets alternately using outer and inner flanks of the link plates, which can significantly reduce the polygon effect, the meshing simulation of the new Hy-Vo silent chain and sprockets will provide an effective means of dynamic design for the Hy-Vo silent chain drive with different pitch, different number of teeth.
机译:本文利用多体动力学仿真软件ADAMS,建立了新型渐开线Hy-Vo无声链轮啮合的动力学模型,在分析新型Hy-Vo无声链轮与链轮啮合机理的基础上,提出了合理的方法。定义了新型Hy-Vo静默链的结构参数,并进行了新型Hy-Vo静默链传动的啮合仿真。仿真结果表明,新型Hy-Vo无声链与渐开线链轮的啮合机制是一种新型的啮合机制,这归因于变桨距特性的双重作用,并且通过链节的内外齿交替与渐开线链轮啮合。新型的Hy-Vo静音链条和链轮的啮合仿真可以显着减少多边形效应,而啮合仿真将为具有不同节距,不同齿数的Hy-Vo静音链条传动提供有效的动态设计手段。

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