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首页> 外文期刊>International Journal of Production Research >Integrated predictive maintenance strategy for manufacturing systems by combining quality control and mission reliability analysis
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Integrated predictive maintenance strategy for manufacturing systems by combining quality control and mission reliability analysis

机译:通过质量控制和任务可靠性分析相结合的制造系统集成预测性维护策略

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摘要

Predictive maintenance (PdM) is an effective means to eliminate potential failures, ensure stable equipment operation and improve the mission reliability of manufacturing systems and the quality of products, which is the premise of intelligent manufacturing. Therefore, an integrated PdM strategy considering product quality level and mission reliability state is proposed regarding the intelligent manufacturing philosophy of prediction and manufacturing'. First, the key process variables are identified and integrated into the evaluation of the equipment degradation state. Second, the quality deviation index is defined to describe the quality of the product quantitatively according to the co-effect of manufacturing system component reliability and product quality in the quality-reliability chain. Third, to achieve changeable production task demands, mission reliability is defined to characterise the equipment production states comprehensively. The optimal integrated PdM strategy, which combines quality control and mission reliability analysis, is obtained by minimising the total cost. Finally, a case study on decision-making with the integrated PdM strategy for a cylinder head manufacturing system is presented to validate the effectiveness of the proposed method. The final results shows that proposed method achieves approximately 26.02 and 20.54% cost improvement over periodic preventive maintenance and conventional condition-based maintenance respectively.
机译:预测性维护(PdM)是消除潜在故障,确保设备稳定运行并提高制造系统的任务可靠性和产品质量的有效手段,这是智能制造的前提。因此,针对预测和制造的智能制造理念,提出了一种考虑产品质量水平和任务可靠性状态的集成PdM策略。首先,确定关键过程变量并将其集成到设备退化状态评估中。其次,定义质量偏差指数,以根据质量可靠性链中制造系统组件可靠性和产品质量的共同影响来定量描述产品质量。第三,为了实现变化的生产任务需求,定义了任务可靠性以全面表征设备的生产状态。通过将总成本降至最低,可以获得结合了质量控制和任务可靠性分析的最佳集成PdM策略。最后,以汽缸盖制造系统的集成PdM策略决策为例,验证了该方法的有效性。最终结果表明,与定期的预防性维护和常规的基于状态的维护相比,所提出的方法分别实现了约26.02%和20.54%的成本降低。

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