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Physics of Failure(PoF)-Based Reliability and Performance Integrating Modeling Method and Software for Electromechanical Product

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【作者】 王增凯曾声奎郭健彬

【Author】 WANG Zeng-kai;ZENG Sheng-kui;GUO Jian-bin;School of Reliability and Systems Engineering,Beihang University;Science and Technology on Reliability and Environment Engineering Laboratory;

【机构】 School of Reliability and Systems Engineering,Beihang UniversityScience and Technology on Reliability and Environment Engineering Laboratory

【摘要】 Electromechanical product’s reliability is affected by uncertainty as well as performance degeneration during its life cycle.The present reliability and performance integrating modeling methods have obvious deficiencies in long period reliability analysis and assessment when applied to such system.A novel integrating modeling method based on physics of failure(PoF)and a simulation algorithm that considers uncertainty and degeneration are proposed in this paper to compute maintenance free operation period or maintenance free operation period survivability which is used to assess long period reliability of system.Furthermore,the concept design of this kind of software based on the above theory is also introduced.A case study of servo valve demonstrates the feasibility of the method and usability of the software in this research.

【Abstract】 Electromechanical product’s reliability is affected by uncertainty as well as performance degeneration during its life cycle.The present reliability and performance integrating modeling methods have obvious deficiencies in long period reliability analysis and assessment when applied to such system.A novel integrating modeling method based on physics of failure(PoF)and a simulation algorithm that considers uncertainty and degeneration are proposed in this paper to compute maintenance free operation period or maintenance free operation period survivability which is used to assess long period reliability of system.Furthermore,the concept design of this kind of software based on the above theory is also introduced.A case study of servo valve demonstrates the feasibility of the method and usability of the software in this research.

【基金】 National Natural Science Foundation of China(No.61304218);Beijing Natural Science Foundation,China(No.3153027)
  • 【文献出处】 Journal of Donghua University(English Edition) ,东华大学学报(英文版) , 编辑部邮箱 ,2015年06期
  • 【分类号】TB114.3
  • 【下载频次】81
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