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Practical application of DFSS with a focus on axiomatic design - A transmission planetary case study

机译:DFSS与专注于公理设计的实际应用 - 一种传输行星箱案例研究

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The objective of this paper is to present a simple and comprehensive integrated Design for Six Sigma (DFSS) approach to design robustness. The approach is hinged on conceptual components for axiomatic design, robust design and Six Sigma. An automatic transmission planetary case study is provided as an illustration vehicle. Specifically, this paper will explore the cascading process of functional requirements to design parameters and features while providing an initial robustness assessment against the common sources of variation. A Six Sigma design quality level is pursued as an objective. The approach presented in this paper represents a stream of development to achieve excellence by improving customer satisfaction through quality enhancement efforts. It can be viewed as a process with detailed steps needed to cast a complete understanding of how to achieve desired breakthrough design improvement. The method presented here relies heavily on the DFSS theory highlighted by Yang and El-Haik (2003).
机译:本文的目的是为六西格玛(DFSS)方法提供简单而全面的综合设计,以设计稳健性。该方法在概念性组件上铰接,用于公理设计,强大的设计和六西格玛。提供自动变速器行星壳体研究作为图形车辆。具体而言,本文将探索功能要求的级联过程,以设计参数和特征,同时为常见的变化来源提供初始鲁棒性评估。追求六西格玛设计质量水平作为目标。本文提出的方法代表了一种发展流,通过提高客户满意度通过质量增强努力来实现卓越。它可以被视为一个流程,需要完全了解如何实现期望的突破性设计改进。这里介绍的方法严重依赖于阳和埃尔 - HAIK(2003)突出的DFSS理论。

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