Fault tree analysis of hydraulic power-steering system

被引:10
作者
Dobrivoje, Catic [1 ]
Milomir, Gasic [2 ]
Mile, Savkovic [2 ]
Jasna, Glisovic [3 ]
机构
[1] Fac Engn, Dept Mech Construct & Mechanizat, Kragujevac 34000, Serbia
[2] Fac Mech Engn, Dept Mechanizat Carrying Struct, Kraljevo 36000, Serbia
[3] Fac Engn, Dept Motor Vehicles & Motors, Kragujevac 34000, Serbia
关键词
reliability; FTA; fault tree analysis; methodology; industrial light vehicle; HPS; hydraulic power-steering system; qualitative analysis;
D O I
10.1504/IJVD.2014.057774
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The historical development is presented in the introductory part and it points out the importance of using the Fault Tree Analysis (FTA) method for analysis of the reliability and safety of technical systems. By analysing a number of references related to the FTA method, a FTA methodology is established, whose algorithm, with explanation of some steps, is given in this paper. As an example of the practical application of the method, the fault tree of the hydraulic power booster of the steering system of light commercial vehicles is qualitatively analysed. Based on data from the development phase and through a team approach, a fault tree for hydraulic power steering was developed. Along with an explanation of certain parts of the fault tree, the estimation of significance of certain events is done and the possibilities are considered to eliminate causes of failure or to minimise the consequences of failure.
引用
收藏
页码:26 / 45
页数:20
相关论文
共 50 条
[31]   The Implementation of Fault Tree Analysis Approaches in Nuclear Power Plant Probabilistic Safety Assessment [J].
Purba, Julwan Hendry ;
Tjahyani, Damianus Toersiwi Sony ;
Deswandri .
3RD INTERNATIONAL CONFERENCE ON NUCLEAR ENERGY TECHNOLOGIES AND SCIENCES (ICONETS) 2019, 2019, 2180
[32]   Assessing the Reliability of Power Transformer by Quantitative Fault Tree Analysis [J].
Sihite, Josep Franklin ;
Kohda, Takehisa .
MANUFACTURING PROCESS AND EQUIPMENT, PTS 1-4, 2013, 694-697 :901-906
[33]   System Modeling and Fault Tree Analysis Based on AltaRica [J].
Li, Zhen ;
Jiang, Zhengqi ;
Wang, Dongsheng ;
Wang, Zhaobin .
IEEE ACCESS, 2020, 8 :168879-168897
[34]   Computer Aided Visualized Analysis System of Fault Tree [J].
Su Xiaoqin ;
Nie Junlan .
PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON TECHNOLOGY MANAGEMENT AND INNOVATION (TMI 2010), 2010, :79-81
[35]   Formal fault tree construction and system safety analysis [J].
Xiang, JW ;
Futatsugi, K ;
He, YX .
PROCEEDINGS OF THE IASTED INTERNATIONAL CONFERENCE ON SOFTWARE ENGINEERING, 2004, :378-384
[36]   Failure Evaluation of the Level Crossing Protection System Based on Fault Tree Analysis [J].
Nowakowski, Waldemar ;
Ciszewski, Tomasz ;
Mlynczak, Jakub ;
Lukasik, Zbigniew .
RECENT ADVANCES IN TRAFFIC ENGINEERING FOR TRANSPORT NETWORKS AND SYSTEMS, 2018, 21 :107-115
[37]   Reliability Analysis of Computer Security System based on Intuitionistic Fuzzy Fault Tree [J].
Kumar, Mohit ;
Yadav, Shiv Prasad ;
Kumar, Surendra .
MEMS, NANO AND SMART SYSTEMS, PTS 1-6, 2012, 403-408 :3495-+
[38]   Fault Tree Analysis and Failure Diagnosis of Marine Diesel Engine Turbocharger System [J].
Knezevic, Vlatko ;
Orovic, Josip ;
Stazic, Ladislav ;
Culin, Jelena .
JOURNAL OF MARINE SCIENCE AND ENGINEERING, 2020, 8 (12) :1-19
[39]   Development of a new automatic system for fault tree analysis for chemical process industries [J].
Kim, Jiyong ;
Kim, Jinkyung ;
Lee, Younghee ;
Moon, Il .
KOREAN JOURNAL OF CHEMICAL ENGINEERING, 2009, 26 (06) :1429-1440
[40]   System-Level Electric Field Exposure Assessment by the Fault Tree Analysis [J].
Jin, Lijun ;
Peng, Chenyi ;
Jiang, Tao .
IEEE TRANSACTIONS ON ELECTROMAGNETIC COMPATIBILITY, 2017, 59 (04) :1095-1102