首页> 外文期刊>South African journal of industrial engineering >EXPLOITING DETERMINISTIC MAINTENANCE OPPORTUNITY WINDOWS CREATED BY CONSERVATIVE ENGINEERING DESIGN RULES THAT RESULT IN FREE TIME LOCKED INTO LARGE HIGH-SPEED COUPLED PRODUCTION LINES WITH FINITE BUFFERS
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EXPLOITING DETERMINISTIC MAINTENANCE OPPORTUNITY WINDOWS CREATED BY CONSERVATIVE ENGINEERING DESIGN RULES THAT RESULT IN FREE TIME LOCKED INTO LARGE HIGH-SPEED COUPLED PRODUCTION LINES WITH FINITE BUFFERS

机译:探索由保守的工程设计规则创建的确定性维护机会窗口,这些规则导致自由时间锁定到大型有限缓冲器的高速耦合生产线中

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摘要

Conservative engineering design rules for large serial coupled production processes result in machines having locked-in free time (also called ‘critical downtime’ or ‘maintenance opportunity windows’), which cause idle time if not used. Operators are not able to assess a large production process holistically, and so may not be aware that they form the current bottleneck – or that they have free time available due to interruptions elsewhere. A real-time method is developed to accurately calculate and display free time in location and magnitude, and efficiency improvements are demonstrated in large-scale production runs.?.
机译:大型串行耦合生产过程的保守工程设计规则导致机器具有锁定的空闲时间(也称为“关键停机时间”或“维护机会窗口”),如果不使用,则会导致空闲时间。操作员无法从整体上评估大型生产过程,因此可能不知道它们构成了当前的瓶颈,或者由于其他地方的中断而没有空闲时间。开发了一种实时方法来准确计算和显示位置和大小的空闲时间,并在大规模生产中证明了效率的提高。

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