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Statistical process control for monitoring nonlinear profiles: a six sigma project on curing process

机译:用于监视非线性轮廓的统计过程控制:关于固化过程的六个西格玛项目

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摘要

Curing duration and target temperature are the most critical process parameters forhigh- pressure hose products. The air temperature collected in the curing chamber is represented in the form of a profile. A proper statistical process control (SPC)implementation needs to consider both numeric as well as profile quality characteristics. This paper describes a successful six sigma project in the context of statistical engineering for integrating SPC, a statistical method, to the existing practice of engineering process control (EPC) according to science. A case study on a real production curing process is thoroughly investigated. It is shown that the new findings could potentially result in significant energy savings. The solutions provided in this study can be generalized into other curing processes and applications subjected to both EPC and SPC.
机译:固化时间和目标温度是高压软管产品最关键的工艺参数。收集在固化室中的空气温度以轮廓的形式表示。适当的统计过程控制(SPC)实现需要同时考虑数字和轮廓质量特征。本文介绍了在统计工程领域中成功的六西格玛项目,该项目将统计方法SPC集成到根据科学原理的工程过程控制(EPC)的现有实践中。彻底研究了实际生产固化过程的案例研究。结果表明,新发现可能会导致大量节能。这项研究中提供的解决方案可以推广到同时经历EPC和SPC的其他固化工艺和应用中。

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