Home|News|Literature|Journal|Instruction|Forum|Member|Introduction

Chinese  Old version

By    In    Search 

  HomeContents of Chinese Journal of Mechanical Engineering 2008 No.1Dissimilar-dimension Interference Model of Fatigue Reliability Under Uncertain Cyclic Load

Dissimilar-dimension Interference Model of Fatigue

Reliability Under Uncertain Cyclic Load

 

XIE Liyang  WANG Zheng

(College of Mechanical Engineering & Automation, Northeastern University, Shenyang 110004)

 

Abstract: The stress-strength interference model for static strength failure is well developed, while difficulties still exist when use the concept of stress-strength interference to calculate the reliability of time-dependent failure modes such as fatigue, abrasion, corrosion, etc. There is not yet a straight forward and effective model such as stress-strength interference model even for fatigue under constant amplitude cyclic stress with uncertainty in stress amplitude. Traditional stress-strength interference model is interpreted as that to express the statistical average of the probability that strength is greater than stress, or vice versa. Thus, the same model format, which traditionally can only be used for the situation of the parameters (load and stress) of the same unit, can be applied to more general situation. In other words, the traditional model was extended to the situation of any two variables, as long as one of the variables can be expressed as a function of the other. By such a model, fatigue failure probability/reliability can be calculated with known load distribution and fatigue life distribution.

Key words: Fatigue  Reliability  Uncertain cyclic stress  Dissimilar-dimension interference model

CLC No: V215.5 O346.1

国家高技术研究发展计划(863计划,2006AA04Z408)和国家重点基础 研究发展计划(973计划,2006CB605000)资助项目. Received 20070127, received in revised form 20070828

 
Open or Download Full Text of this Paper (PDF File)
 
  About us-Contact us-Site map-Advertisement service-Cooperation-Legal statement  

Address: 22 Baiwanzhuang Dajie, Beijing 100037 China    Tel: 8610-88379907    Fax: 8610-68994557

E-mail: cjme@mail.machineinfo.gov.cn  http: //www.cjmenet.com
©2006 Editorial Office of CJME. All Right Reserved