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Machining conditions-based preventive maintenance

机译:基于加工条件的预防性维护

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In this study we propose an operating conditions-based preventive maintenance (PM) approach for computer numerical control (CNC) turning machines. A CNC machine wears according to how much it is used and the conditions under which it is used. Higher power or production rates result in more wear and higher failure rates. This relationship between the operating conditions and maintenance requirements is usually overlooked in the literature. On CNC turning machines we can control the machining conditions such as cutting speed and feed rate, which in turn affect the PM requirements of the CNC machine. We provide a new model to link the PM decisions to the machining conditions selection decisions, so that these two decision-making problems can be solved together by considering their impact on each other. We establish that our proposed geometric programming model captures the related cost terms along with the technological restrictions of CNC machines. The proposed preventive maintenance index function can be used to provide an intelligent CNC machine degradation assessment.
机译:在这项研究中,我们提出了一种基于操作条件的计算机数控(CNC)车床预防性维护(PM)方法。数控机床的磨损取决于其使用量和使用条件。更高的功率或生产率会导致更多的磨损和更高的故障率。工作条件和维护要求之间的这种关系通常在文献中被忽略。在CNC车床上,我们可以控制加工条件,例如切削速度和进给速度,这反过来会影响CNC机床的PM要求。我们提供了一个新模型,将PM决策与加工条件选择决策联系起来,从而可以通过考虑它们彼此之间的影响来一起解决这两个决策问题。我们确定,我们提出的几何编程模型可以捕获相关的成本条款以及CNC机床的技术限制。所提出的预防性维护指标函数可用于提供智能的CNC机器退化评估。

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