会议专题

Optimization Design of Hydraulic Scrap Iron&Steel Grasping Crane Based on Virtual Prototype

In order to solve the problem of consumed power due to the unreasonableness of structure size dimension on the basis of the experience design, this paper proposes a method by applying virtual prototype technique based on ADAMS, a virtual prototype model of such fixed hydraulic scrap iron&steel grasping crane based on virtual is developed, and the accuracy of the model can be proved by comparing the theoretical locus of mathematical models with simulation ones; To enhance the mechanisms operational performance and reduce the movement of the driving power, set the locus range under technical parameters and the installation size of hydraulic cylinders as optimize constraints. The size and hinge position of the luffing mechanism are respectively optimized with OPTDES-SQP algorithm. The results show that the research method is practical, the luffing mechanism achieves the purpose of optimization, and the forces of hydraulic cylinders have decreased obviously.

Virtual Prototype Technique Scrap Iron&Steel Grasping Crane Luffing mechanism Simulation Optimization

ZHU Da-lin QIN Jin-yi WANG Hong-mei HUANG Jin ZHANG Ming-song

College of Mechanical & Material Engineering China Three Gorges University Yi Chang, China

国际会议

2011 IEEE 2nd International Conference on Computing,Control and Industrial Engineering(CCIE 2011)(第二届计算、控制与工业工程国际会议)

武汉

英文

242-245

2011-08-20(万方平台首次上网日期,不代表论文的发表时间)