Physics-of-failure models of erosion wear in electrohydraulic servovalve, and erosion wear life prediction method

Mechatronics - Tập 23 - Trang 1202-1214 - 2013
Xin Fang1, Jinyong Yao2, Xizhong Yin3, Xun Chen1, Chunhua Zhang1
1Laboratory of Science and Technology on Integrated Logistics Support, National University of Defense Technology, Changsha 410073, Hunan, China
2Beijing University of Aeronautics and Astronautics, Beijing, 100191, China
3Shanxi Qinfeng Hydraulic Co., Ltd., Lianhu road, Hanzhong Shanxi, China

Tài liệu tham khảo

Dasgupta, 2011, Modelling and dynamics of a servo-valve controlled hydraulic motor by bondgraph, Mech Mach Theory, 46, 1016, 10.1016/j.mechmachtheory.2010.11.006 Akers, 1989, A dynamic model of the flapper-nozzle component of an electrohydraulic servovalve, ASME Trans J Dynam Syst Meas Control, 3, 105 El-Araby, 2011, Dynamic performance of a nonlinear non-dimensional two stage electrohydraulic servovalve model, Springer Int J Mech Mater Des, 7, 99, 10.1007/s10999-011-9150-x Dean H. Kim, Tsu-ChinTsao A. Linearized electrohydraulic servovalve model for valve dynamics sensitivity analysis and control system design. Dynam Syst Meas Control 2000;122:179–87. DOHTA, 2012, Development of small-sized digital servo valve for wearable pneumatic actuator, Proc Eng, 41, 97, 10.1016/j.proeng.2012.07.148 Kilic, 2012, Accurate pressure prediction of a servo-valve controlled hydraulic system, Mechatronics, 22, 997, 10.1016/j.mechatronics.2012.08.001 Elsayed A. Elsayed. Overview of reliability testing. IEEE Trans Reliab 2012;61(2). Handbook of reliability prediction procedures for mechanical equipment, machinery systems/programs & logistics R&D Directorate Research and Development Report; March 1994. Fitch EC, Hong IT. Hydraulic system design for service assurance. BarDyne Incorporated; 2004. Vaughan, 1998, The contribution of erosive wear to the performance degradation of sliding spool servovalves, J Eng Tribol, 212, 437 Huang xin, 2011, Research to the wear and geometric error relations of electro hydraulic servo valve, Proc Eng, 15, 891, 10.1016/j.proeng.2011.08.165 Marton, 2011, A practical method for friction identification in hydraulic actuators, Mechatronics, 21, 350, 10.1016/j.mechatronics.2010.08.010 Michael Pecht, Abhijit Dasgupta. Physics-of-failure: an approach to reliable product development. In: Proceeding of the environmental sciences; 1995. Pecht, 2009, Physics-of-failure-based prognostics for electronics products, Trans InstMeas Control, 31, 309, 10.1177/0142331208092031 Jata, 2011 Oka, 2005, Practical estimation of erosion damage caused by solid particle impact Part 1: effects of impact parameters on a predictive equation, Wear, 259, 95, 10.1016/j.wear.2005.01.039 Oka, 2005, Practical estimation of erosion damage caused by solid particle impact Part 2: mechanical properties of materials directly associated with erosion damage, Wear, 259, 102, 10.1016/j.wear.2005.01.040 Merritt, 1967 Manring, 2005 Hiremath, 2006, Steady-state analysis of a precision hydraulic flow controlservovalve using the finite element method, J Micromechatron, 3, 103, 10.1163/156856306777544952 Peng, 2012, The CFD analysis of main valve flow field and structural optimization for double-nozzle flapper servo valve, Proc Eng, 31, 115, 10.1016/j.proeng.2012.01.1000 Sekhavat, 2006, Impact stabilizing controller for hydraulic actuators with friction: theory and experiments, Control Eng Pract, 14, 1423, 10.1016/j.conengprac.2005.10.007 Vaughan, 1998, The contribution of erosive wear to the performance degradation of sliding spool servovalves, Proc Inst Mech Eng Part J: J Eng Tribol, 212, 437, 10.1243/1350650981542245 Majdic, 2013, Improving the performance of a proportional 4/3 water–hydraulic valve by using a diamond-like-carbon coating, Wear, 297, 1016, 10.1016/j.wear.2012.11.060