DFMEA Application in Rotor Design of Million-Kilowatt Nuclear Power Stream Turbine

Xue Binghan
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Abstract

DFMEA is a systematic and scientific method for new product design and development, which is applicable throughout the entire process of new product design and development. In this paper, DFMEA method is adopted in the systematic analyzing of the million-kilowatt nuclear power steam turbine rotor new product design and development process. On the basis of the introduction of product characteristics and current development requirement, DFMEA is introduced to the design and development process, applying the block diagram and structure-function matrix to locate the possible failure factors. Subsequently, the evaluation criteria of Severity (S), Occurrence (O), and Detection (D) are introduced and defined. According to the criteria, the Risk Priority Numbers (RPN) and Action Priority (AP) of key risks are sorted, therefore indicating the terms critical to product quality improvement. Through the application of DFMEA, an effective risk identification and analysis of the million-kilowatt nuclear power steam turbine rotor is carried out, achieving the results that operational failures are advanced to the design stage to implement countermeasures, therefore realizing the improvement of product and system operation reliability, optimization of project cycle and manufacturing cost reduction. DFMEA promotes the optimization of overall new product development process. Meanwhile it provides ideas for the subsequent design optimization methods of similar kinds.
DFMEA在百万千瓦核电汽轮机转子设计中的应用
DFMEA是一种系统的、科学的新产品设计开发方法,适用于新产品设计开发的全过程。本文采用DFMEA方法对百万千瓦级核电汽轮机转子新产品设计开发过程进行了系统分析。在介绍产品特性和当前开发需求的基础上,将DFMEA引入到设计开发过程中,运用方框图和结构功能矩阵对可能出现的失效因素进行定位。随后,引入并定义了严重性(S)、发生(O)和检测(D)的评价标准。根据标准,对关键风险的风险优先级编号(RPN)和行动优先级(AP)进行排序,从而指示对产品质量改进至关重要的术语。通过应用DFMEA对百万千瓦核电汽轮机转子进行有效的风险识别和分析,达到将运行故障提前到设计阶段实施对策的效果,从而实现提高产品和系统运行可靠性,优化项目周期,降低制造成本。DFMEA促进了整个新产品开发过程的优化。同时也为后续同类设计优化方法提供了思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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