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Tool maintenance optimization for multi-station machining systems with economic consideration of quality loss and obsolescence

机译:考虑到质量损失和过时的经济因素,优化多工位加工系统的刀具维护

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摘要

Tools used in a machining process are vulnerable to frequent wear-outs and failures during their useful life. Maintenance is thus considered essential under such conditions. Additionally, it is widely recognized that the maintenance of manufacturing equipments and the quality of manufactured product are highly interrelated. However, few detailed study has been found in the literature dealing with the effects of maintenance policies on the operational performance of such a system, especially the long-term average cost. The need for a method to determine the optimal tool maintenance policy has become increasingly important. Since the multiple tools in a multi-station machining system generally have significant interactive impacts on the product quality loss, the optimal multi-component maintenance models for several policies are investigated to address the interdependence among these tools. Three distinctive multi-component maintenance policies, i.e., age replacement, block replacement, and block replacement with minimal repair, are identified and analyzed. The proposed approach focuses on these maintenance policies with consideration of both component catastrophic failures, and the interdependence of component degradations on the product quality loss as well as the obsolescence cost. The effects of various maintenance policies on the system performance are simulated, and they are used to determine the best policy for a given system. An illustrative example is used to demonstrate effectiveness and applicability of the proposed approach. The results presented a comparative analysis of specified maintenance policies with respect to the total maintenance cost with consideration of the product quality loss and the obsolescence cost.
机译:在加工过程中使用的刀具在使用寿命期间容易遭受频繁的磨损和故障的影响。因此,在这种情况下必须进行维护。另外,众所周知的是,制造设备的维护与制成品的质量高度相关。但是,在有关维护策略对这种系统的操作性能,特别是长期平均成本的影响的文献中,很少有详细的研究。对确定最佳工具维护策略的方法的需求变得越来越重要。由于多工位加工系统中的多个工具通常会对产品质量损失产生重大的交互影响,因此,针对几种策略研究了最优的多组件维护模型,以解决这些工具之间的相互依赖性。确定并分析了三种独特的多组件维护策略,即年龄更换,块更换和最少维修的块更换。提出的方法着重于这些维护策略,同时考虑了组件的灾难性故障以及组件退化与产品质量损失以及报废成本之间的相互依赖性。模拟了各种维护策略对系统性能的影响,并将它们用于确定给定系统的最佳策略。一个说明性示例用于证明所提出方法的有效性和适用性。结果提供了针对特定维护策略的相对于总维护成本的比较分析,其中考虑了产品质量损失和过时成本。

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