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基于ADAMS的滚筒式输送机构的传动速率优化
引用本文:刘菲,曾文浩,杨永泰,邹炎火,汪凤翔. 基于ADAMS的滚筒式输送机构的传动速率优化[J]. 机床与液压, 2019, 47(2): 135-138
作者姓名:刘菲  曾文浩  杨永泰  邹炎火  汪凤翔
作者单位:中北大学机电工程学院, 山西太原030051;中国科学院海西研究院泉州装备制造研究所, 福建泉州362200;中国科学院海西研究院泉州装备制造研究所,福建泉州,362200
基金项目:福建省科技重大专项(2015HZ0003-1);福建省科技厅STS计划配套项目(2016T31020042)
摘    要:传动速率是多级输送机构的一个重要的设计参数,也是输送效率的主要影响因素。构建一种瓷砖生产线的滚筒式输送机构模型,基于多刚体系统动力学理论,利用ADAMS对瓷砖在输送机构上的输运过程进行运动学仿真,得到传动速率对瓷砖输运状态的影响。针对瓷砖在输送过程中出现的堆叠与偏转延时问题,提出了最大自转角度和连续输运两个判据,在此基础上得到瓷砖输送机构的最优传动速率。试验结果表明了优化结果的正确性,为输送机构的传动速率优化设计提供了一定参考价值和理论依据,有较强的实用性。

关 键 词:滚筒式输送机构  传动速率  优化  运动学仿真

Optimization of Transmission Rate for Roller Conveyor Based on ADAMS
LIU Fei,ZENG Wenhao,YANG Yongtai,ZOU Yanhuo,WANG Fengxiang. Optimization of Transmission Rate for Roller Conveyor Based on ADAMS[J]. Machine Tool & Hydraulics, 2019, 47(2): 135-138
Authors:LIU Fei  ZENG Wenhao  YANG Yongtai  ZOU Yanhuo  WANG Fengxiang
Affiliation:(College of Mechatronic Engineering,North University of China,Taiyuan Shanxi 030051,China;Quanzhou Institute of Equipment Manufacturing,Haixi Institutes,Chinese Academy of Sciences,Quanzhou Fujian 362200,China)
Abstract:Transmission ratio is an important design parameter of multi stage conveying mechanism,which is also the main influence factor of conveying efficiency.A roller conveyor mechanism model of a tile production line was constructed.Based on the theory of multi rigid body system dynamics,the transport process of the tiles on the convey mechanism was simulated by ADAMS.The influence of the transmission rate on the transport condition of the tile was obtained.In addition,two criteria for maximum rotation angle and continuous transport were proposed for stacking and deflection delay problems in the process of tiles.On this basis,the optimal transmission rate of the tile conveyor was obtained.The results show that the optimization results are correct and provide a certain reference value and theoretical basis for the optimal design of the transmission rate of the convey mechanism,and have a strong practicality.
Keywords:Roller conveyor  Transmission rate  Optimization  Kinematics simulation
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