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New Thinking and Methodologies on Reliability Engineering

机译:可靠性工程的新思路和新方法

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Traditional Reliability Engineering lacks powerful methods and tools on earlier development stages;it takes less effect on product conception definition and system design.There are also some tough problems for applying Traditional Reliability approaches on civil products,such as how to develop high reliable products with Commercial,off-the-shelf (COTS) components? How to greatly reduce the time and cost of ESS and reliability evaluation? How to make reliability engineering more effective on products? And so on.Based on the 25 years practices and experiences on Reliability Engineering,Quality Engineering and Robust Design, the author and his group bring forward many new thinking and methods for life cycle of product in this paper,such as QFD for customer requirements analysis; Axiomatic Design and TRIZ for conception definition and system design;set of methods for COTS component selection and Q&R management;DFX,DOE,parameter design and tolerance design for product detailed design and optimization;HALT,HASS,SPC, CPK and Signal to Noise Ratio for product verification and manufacturing, generalized FRACAS and eight Low-Cost Reliability Growth approaches for product life cycle,etc.These new thinking and methods have been integrated with a set of selected,effective and modified regular RAMS tools.Applying the above new thinking and methodologies,we can make the reliability of products up,cost down and lead time shortened simultaneously.We have practiced the above new thinking and methodologies for six or seven years.It is proved by a number of case studies that these new thinking and methodologies are correct and adequate for any products,especially for civil products, and will definitely find wide applications.
机译:传统可靠性工程在开发的早期阶段缺乏强大的方法和工具;对产品概念的定义和系统设计的影响较小。将传统可靠性方法应用于民用产品还存在一些棘手的问题,例如如何使用商业应用来开发高可靠性产品。 ,现成的(COTS)组件?如何大大减少ESS和可靠性评估的时间和成本?如何使可靠性工程对产品更有效?基于他在可靠性工程,质量工程和稳健设计方面的25年实践和经验,作者及其团队提出了许多产品生命周期的新思维和方法,例如用于客户需求分析的QFD。 ;用于概念定义和系统设计的公理设计和TRIZ;用于COTS组件选择和Q&R管理的方法集;用于产品详细设计和优化的DFX,DOE,参数设计和公差设计; HALT,HASS,SPC,CPK和信噪比用于产品验证和制造的通用FRACAS和用于产品生命周期的八种低成本可靠性增长方法等。这些新思想和方法已与一组精选,有效和经过修改的常规RAMS工具集成在一起。通过这种方法,我们可以同时提高产品的可靠性,降低成本和缩短交货时间。我们已经实践了六到七年的上述新思想和方法。大量案例研究证明,这些新思想和方法是有效的。对于任何产品(尤其是民用产品)都是正确且适当的,并且肯定会得到广泛的应用。

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