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Rapid Design Method Research For Beverage-packaging Production Line

Posted on:2018-09-24Degree:DoctorType:Dissertation
Country:ChinaCandidate:Y ZhangFull Text:PDF
GTID:1311330518977140Subject:Mechanical Manufacturing and Automation
Abstract/Summary:PDF Full Text Request
Based on the National 863 project and the major scientific and technological projects in Zhejiang Province, this paper systematically analyzes and summarizes the characteristics of the product design method of the filling and conveying line, and seeks a rapid design and optimization method for the product. Opposite to the filling conveyor line rapid design model, transmission line equipment fast selection method,buffer allocation method, fast layout design and optimization method and so on, to achieve rapid design and manufacture of filling conveying line conveying line manufacturing enterprises as the filling, shortening filling conveyor line delivery,provide a theoretical basis and methods solid direction to reduce the transmission line design and manufacturing cost etc..Based on the analysis of the challenges faced by the design of the transmission line, this paper expounds the important significance of the rapid design of the filling and conveying line. This paper discusses the research status at home and abroad on the basis of the theory of rapid design, layout design theory, buffer allocation optimization theory and the key technology of integrated product modeling. On this basis, combined with specific research projects, this paper gives the main research content and organizational structure.Aiming at the problem of rapid design of filling and conveying line, this paper analyzes the shortage of traditional filling and conveying line design, and puts forward the design flow of filling and conveying line and the key problems to be solved. Then the integrated model technology of the filling line is discussed. Finally,based on the above analysis, the paper puts forward a fast design method system for filling and conveying line, which lays the foundation for further research.According to the characteristics of the filling and conveying line, this paper analyzes the problem of the selection of the transmission line equipment, and solves the problem of the production line and the equilibrium rate. A particle swarm optimization (PSO) algorithm is proposed for the selection of equipment for filling production line.For filling production line buffer allocation problem, hybrid Markov process modeling and a multi device aggregation method based on the proposed buffer capacity model between system productivity and processing ability, the reliability of equipment and equipment. In the proposed buffer capacity limited constraints, with the highest productivity system as the optimization goal, proposes a particle swarm optimization algorithm based on buffer capacity allocation method; based on the total buffer minimum as the optimization goal, the productivity is larger than a demand for major constraints is proposed based on the external two points for internal search algorithm, a hybrid heuristic algorithm particle swarm optimization algorithm of buffer capacity allocation optimization method.According to the layout design of filling and conveying line, a fast layout design method for filling and conveying line is studied. Then the layout model of the equipment and the workshop and conveying section is established. The conveying line segment design and manufacture of the lowest cost and the highest degree of rules as the optimization goal, equipment and conveying line interval interval as constraint relationship, optimization method is presented for line layout design of differential evolution algorithm based on the filling conveyor.Finally, the rapid design platform technology of filling and conveying line is studied. The 3D layout and assembly drawings are generated by structural design and assembly design. Secondly, a rapid prototyping system for filling and conveying line is developed. This paper introduces the overall structure and function of the software platform, and gives an example to verify the validity of the research.
Keywords/Search Tags:filling conveyor line, rapid design, buffer allocation problem, layout design and optimization
PDF Full Text Request
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