基于ADAMS的摆动抛光磨头动态特性仿真研究
发布时间:2018-10-08 12:38
【摘要】:瓷砖的抛光质量主要受抛光磨头运动特性的影响,为提高其抛光质量、降低碎砖率,建立抛光磨头的整体模型并进行虚拟装配,通过ADAMS软件对抛光磨头虚拟样机进行了动态特性仿真分析,得出其运动特性变化曲线。结果表明,主、从动摆杆运动特性相似。综合磨头转速与磨块动态特性之间的定性关系,给出最佳磨头转速范围。仿真分析结果为研究抛光磨头的动态响应和振动抑制提供了有益的参考。
[Abstract]:The polishing quality of ceramic tile is mainly affected by the movement characteristic of polishing grinding head. In order to improve the polishing quality and reduce the broken tile rate, the whole model of polishing grinding head is established and virtual assembly is carried out. The dynamic characteristics of polishing grinding head virtual prototype were simulated and analyzed by ADAMS software, and the change curve of its motion characteristics was obtained. The results show that the kinematic characteristics of the principal and follower pendulum bars are similar. Based on the qualitative relationship between the grinding head speed and the dynamic characteristics of the grinding block, the optimum range of the grinding head speed is given. The simulation results provide a useful reference for studying the dynamic response and vibration suppression of polishing abrasives.
【作者单位】: 安徽理工大学机械工程学院;
【基金】:国家自然科学基金(51405004)
【分类号】:TQ174.6
本文编号:2256782
[Abstract]:The polishing quality of ceramic tile is mainly affected by the movement characteristic of polishing grinding head. In order to improve the polishing quality and reduce the broken tile rate, the whole model of polishing grinding head is established and virtual assembly is carried out. The dynamic characteristics of polishing grinding head virtual prototype were simulated and analyzed by ADAMS software, and the change curve of its motion characteristics was obtained. The results show that the kinematic characteristics of the principal and follower pendulum bars are similar. Based on the qualitative relationship between the grinding head speed and the dynamic characteristics of the grinding block, the optimum range of the grinding head speed is given. The simulation results provide a useful reference for studying the dynamic response and vibration suppression of polishing abrasives.
【作者单位】: 安徽理工大学机械工程学院;
【基金】:国家自然科学基金(51405004)
【分类号】:TQ174.6
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