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Multi-step Functional Process Adjustments to Reduce No-fault-found Product Failures in Service Caused by In-tolerance Faults

机译:多步骤功能过程调整,以减少因容错故障而导致的服务中无故障发现的产品故障

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This paper proposes a methodology to eliminate or reduce No-Fault-Found (NFF) Product failure in field by adjusting manufacturing processes. No-Fault-Found (NFF) failures can be frequently characterized by in-tolerance faults, i.e., faults occur when design parameters represented by Key Product Characteristics (KPCs) and process variables represented by Key Control Characteristics (KCCs) are within the tolerance limits (in-spec) and therefore they cannot be eliminated by standard process control and adjustment methods. Literature in the area of statistical process and control are unable to monitor and adjust the NFF failures as these methodologies are based on design template itself. Also, all the adjustments strategies consider in process adjustment domain are single-step or adjustments are performed instantaneously. However, the single-step adjustment from process nominal (ud) to functional nominal (uf) is not always possible due to presence of system or resource constraints limiting the amount of adjustment that can be made in a given time such scenario in this paper is refer as multi-step adjustment scenario. This paper proposes a methodology for the multi-step functional process adjustment by identifying the adjustment paths that will minimize the total cost associated with product failure and adjustment cost. The proposed methodology includes: (i) discretization of space from ud to uf, orthogonally, with defined resolution; (ii) identification of warranty cost at each discretised node based on overlap between manufacturing distribution and in-tolerance NFF regions considering node as production nominal; and (iii) determination of the multi-step function process adjustment between ud and uf using recursive dynamic programming formulation. The methodology is illustrated through numerical simulation.
机译:本文提出了一种通过调整制造工艺来消除或减少无故障发现(NFF)产品故障的方法。无故障发现(NFF)故障通常可以通过公差内故障来表征,即,当以关键产品特性(KPC)表示的设计参数和以关键控制特性(KCC)表示的过程变量在公差范围内时,就会发生故障。 (规格),因此无法通过标准的过程控制和调整方法消除它们。统计过程和控制领域的文献无法监视和调整NFF故障,因为这些方法基于设计模板本身。同样,在过程调整域中考虑的所有调整策略都是单步执行,或立即执行调整。但是,由于存在系统或资源限制,限制了在给定时间内可以进行的调整量,因此从过程标称(ud)到功能标称(uf)的单步调整并不总是可能的。称为多步调整方案。本文通过确定可将与产品故障和调整成本相关的总成本降至最低的调整路径,提出了用于多步骤功能过程调整的方法。拟议的方法包括:(i)以定义的分辨率将ud到uf正交地离散化; (ii)根据制造分布和公差范围内的NFF区域之间的重叠(在将节点作为生产标称的基础上),确定每个离散节点的保修成本; (iii)使用递归动态规划公式确定ud和uf之间的多步函数过程调整。通过数值模拟说明了该方法。

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