New Design of Hy-Vo Chain Based on the Ultra-Small Rolling Radius

Author:

An Lichi,Cheng YabingORCID,Li Jiabao,Xu Weilong

Abstract

To improve the system meshing performance and the chain stability, a totally new type Hy-Vo chain with an ultra-small rolling radius is proposed in this research. According to the rolling theory of the rocker pin, the design method and the meshing system for the new Hy-Vo chain are proposed. Based on the analysis model of polygonal action, by calculating a specific example, it is proved that the variable pitch characteristic of the new Hy-Vo chain is controllable. Through comparing the system center distance fluctuations for the new and the classical Hy-Vo chain, it is shown that both the system fluctuation difference and the system running deviation are all smaller for the new Hy-Vo chain. Combined with the analysis of Multi Flexible Body Dynamics (MFBD), for the new Hy-Vo chain plate and the rocker pin, the stress distribution is more uniform, and the chain life is longer. As a result, the new Hy-Vo chain with the ultra-small rolling radius has a better meshing performance and fatigue resistance, as well as better process economy. Moreover, the new design proposed in this paper is not only a novel structure for the Hy-Vo chain drive, but it also reveals the meshing mechanism and the controllable variable pitch characteristic.

Funder

National Natural Science Foundation of China

Science and Technology Development Project of Jilin Province

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Industrial and Manufacturing Engineering,Control and Optimization,Mechanical Engineering,Computer Science (miscellaneous),Control and Systems Engineering

Reference30 articles.

1. Kinematic and Static Force Analysis of Rocker-Pin Jointed Silent Chains with Involute Sprockets

2. Design Method of Dual Phase Hy-Vo Silent Chain Transmission System

3. Optimization Design of Variable Pitch Characteristic Parameters for Hy-Vo Chain in Dual Phase Transmission System;Cheng;J. Chin. Soc. Mech. Eng.,2017

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