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作 者:郑燕武[1,2] 柴晓艳[1,2] 马鲁豪 梅克明 ZHENG Yan-wu;CHAI Xiao-yan;MA Lu-hao;MEI Ke-ming(Tianjin Key Laboratory of the Design and Intelligent Control of the Advanced Mechatronical System,Tianjin University of Technology,Tianjin 300384,China;School of Mechanical Engineering,Tianjin University of Technology,Tianjin 300384,China)
机构地区:[1]天津理工大学天津市先进机电系统设计与智能控制重点实验室,天津300384 [2]天津理工大学机械工程学院,天津300384
出 处:《重型机械》2018年第5期51-55,共5页Heavy Machinery
基 金:2014年天津市中小型创新基金项目--全自动钢管端面铣头倒棱机;编号14ZXCXGX00334
摘 要:通过ADAMS软件对自动送料机构进行了虚拟样机建模和仿真分析。首先,运用SolidWorks对主要杆件建模并找到其重心位置,以便将重心添加在虚拟样机建模中,增加仿真分析的可靠度;然后运用ADAMS运行过程函数实现了对升降机构和推进机构液压缸的运动控制,完成了两个机构分步工作的真实过程;最后运用ADAMS后处理模块对倒棱机自动送料机构进行了研究,得到了升降力、推进力、功率、能耗和各个主要铰链处载荷的测量曲线,为自动送料机构的优化设计、各杆件的校核、动力源的选择提供了参考依据。Virtual prototyping and sinmlation analysis of automatic feeding mechanisnl are carried out by ADAMS/View. Firstly, the main bar is modeled by SolidWorks and its center of gravity is found. The center of gravity is added to the virtual model to increase the simulation reliability. Then, the ADAMS running process function is used to realize motion control of hydraulic cylinder for the lifting and the propulsion of mechanism, which makes two mechanisms step by step operate. Finally, the ADAMS post-processing module is used to study the automatic feeding meehanism, and the lifting force, propulsion, power, energy loss and chain load of the main hinge are obtained. The measurement curve and date provides a reference for the optimization design of the automatic feeding mechanism, the main bar checking and the selection power supply.
分 类 号:TG333.2[金属学及工艺—金属压力加工]
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