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Comparative study of push and pull systems considering quality performance in a cell-based job shop environment

机译:在基于单元的车间环境中考虑质量性能的推拉系统的比较研究

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摘要

Simulation experiments were used to investigate the influences of quality performance on the performance difference between push and pull systems in a cell-based job shop environment. Quality performance was represented by two factors, i.e. mean magnitude of step shifts (MMSS) and mean frequency of step shifts (MFSS). Shop performance was based on the average and standard deviation of flow time. Results show that push systems are superior to pull systems, regardless of quality performance and set-up time reduction (STR) effected by cellular manufacturing. Therefore, to justify the adoption of pull systems, their potentials beyond material flow control (e.g. in promoting continuous improvement) need to be realized. In addition, the larger the STR, the more effective the quality performance improvement. With a large STR (of 80%), reduction of MMSS or (and) MFSS can improve the average (standard deviation) of flow time. In particular, reduction of MFSS tends to be more effective for a pull system with a larger STR. Accordingly, for a pull system in a cell-based job shop environment, substantial set-up time reduction is critical not only for efficient process operations, but also for effective quality performance improvement.
机译:仿真实验用于研究基于单元的车间环境中质量性能对推拉系统之间性能差异的影响。质量绩效由两个因素表示,即平均步幅(MMSS)和平均步频(MFSS)。车间性能基于流动时间的平均值和标准偏差。结果表明,推力系统优于推力系统,而不受蜂窝制造影响的质量性能和设置时间减少(STR)的影响。因此,为了证明采用牵引系统是合理的,它们的潜力超出了物料流控制范围(例如,促进持续改进)。另外,STR越大,质量性能改善越有效。使用较大的STR(为80%),减少MMSS或(和)MFSS可以改善流动时间的平均值(标准偏差)。特别是,对于具有较大STR的牵引系统,降低MFSS趋于更有效。因此,对于基于单元的车间环境中的拉动系统,大幅减少设置时间不仅对于有效的过程操作至关重要,而且对于有效的质量性能改善也至关重要。

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