Abstract

In order to solve the bottleneck problem of the mixed-flow assembly production line of the precision carving machine manufacturing enterprise, the optimization of the mixed-flow production line in the sheet metal workshop of the precision carving machine manufacturing factory was discussed. The authoritative literatures were synthesized and the advantages and disadvantages of the algorithms and simulations were analyzed. Assembly line production is the general trend of the manufacturing industry, and as a high-precision equipment production line, precision carving machines tend to be intelligent and virtualized. In this paper, an adaptive genetic algorithm is applied to solve specific problems in the sheet metal workshop. The mixed flow production line of various parts in the sheet metal workshop is optimized and researched, and the optimized results are finally obtained. After studying this problem with the multi-objective optimization mathematical model and genetic algorithm proposed in this paper, the production cycle is 26.5 hours, and the assembly line smoothness index is 93.67%.

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