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Reliability Information and Testing Integration for New Product Design.

机译:新产品设计的可靠性信息和测试集成。

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摘要

In the three phases of the engineering design process (conceptual design, embodiment design and detailed design), traditional reliability information is scarce. However, there are different sources of information that provide reliability inputs while designing a new product. This research considered these sources to be further analyzed: reliability information from similar existing products denominated as parents, elicited experts' opinions, initial testing and the customer voice for creating design requirements. These sources were integrated with three novels approaches to produce reliability insights in the engineering design process, all under the Design for Reliability (DFR) philosophy. Firstly, an enhanced parenting process to assess reliability was presented. Using reliability information from parents it was possible to create a failure structure (parent matrix) to be compared against the new product. Then, expert opinions were elicited to provide the effects of the new design changes (parent factor). Combining those two elements resulted in a reliability assessment in early design process. Extending this approach into the conceptual design phase, a methodology was created to obtain a graphical reliability insight of a new product's concept. The approach can be summarized by three sequential steps: functional analysis, cognitive maps and Bayesian networks. These tools integrated the available information, created a graphical representation of the concept and provided quantitative reliability assessments. Lastly, to optimize resources when product testing is viable (e.g., detailed design) a type of accelerated life testing was recommended: the accelerated degradation tests. The potential for robust design engineering for this type of test was exploited. Then, robust design was achieved by setting the design factors at some levels such that the impact of stress factor variation on the degradation rate can be minimized. Finally, to validate the proposed approaches and methods, different case studies were presented.
机译:在工程设计过程的三个阶段(概念设计,实施设计和详细设计)中,传统的可靠性信息很少。但是,在设计新产品时,有不同的信息来源可提供可靠性输入。这项研究认为这些来源有待进一步分析:来自类似现有产品的可靠性信息(以父母为单位),引起了专家的意见,初步测试以及提出设计要求的客户意见。这些信息源与三种新颖的方法集成在一起,以在工程设计过程中产生可靠性见解,所有这些方法都是在可靠性设计(DFR)理念下进行的。首先,提出了一种改进的育儿过程以评估可靠性。使用来自父母的可靠性信息,可以创建要与新产品进行比较的故障结构(父母矩阵)。然后,引起专家意见以提供新设计更改的效果(父因子)。将这两个要素结合在一起,可以在早期设计过程中进行可靠性评估。将这种方法扩展到概念设计阶段,创建了一种方法来获得新产品概念的图形可靠性见解。该方法可以通过三个连续步骤进行总结:功能分析,认知图和贝叶斯网络。这些工具集成了可用信息,创建了该概念的图形表示,并提供了定量的可靠性评估。最后,为了在可行的产品测试(例如,详细设计)时优化资源,建议使用一种加速寿命测试:加速降解测试。这种类型的测试具有强大的设计工程潜力。然后,通过将设计因子设置为一定水平来实现稳健的设计,从而可以最大程度地降低应力因子变化对降解速率的影响。最后,为了验证所提出的方法和方法,提出了不同的案例研究。

著录项

  • 作者

    Mejia Sanchez, Luis.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Engineering Industrial.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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