Please wait a minute...
Chinese Journal of Engineering Design  2009, Vol. 16 Issue (2): 84-87    DOI:
    
Analysis on reliability of main motion mechanism of internal combustion engine
GAO Yi-chao, ZHOU Zhi-hong, LIU Juan
Department of Vehicle Engineering, University of Science and Technology Beijing, Beijing 100083, China
Download: HTML     PDF(473KB)
Export: BibTeX | EndNote (RIS)      

Abstract  By applying reliability theory of mechanism kinematics accuracy (MKA) in design of main motion mechanism of internal combustion engine (ICE), analysis on the reliability of main motion MKA of ICE was carried out. Accuracy error expression was derived by the first order Taylor expansion, and then the limit state function expression according with engineering practice was established combining with reliability theory. In the case of given characteristics of random parameters distribution, analysis on the reliability of main motion MKA of ICE by computer program was done, which could be utilized to obtain reliability information of planar linkage machine accurately and quickly. The results demonstrate that the proposed method is effective and practical, and has important theoretical value and practical significance.

Key wordsinternal combustion engine (ICE)      crank and connecting rod mechanism      kinematic accuracy      reliability     
Published: 28 April 2009
CLC:  TH112.1  
Cite this article:

GAO Yi-chao, ZHOU Zhi-hong, LIU Juan. Analysis on reliability of main motion mechanism of internal combustion engine. Chinese Journal of Engineering Design, 2009, 16(2): 84-87.

URL:

https://www.zjujournals.com/gcsjxb/     OR     https://www.zjujournals.com/gcsjxb/Y2009/V16/I2/84


内燃机主运动机构可靠性分析

运用机构运动精度可靠性理论到内燃机主运动机构设计中,讨论了内燃机主运动机构运动精度可靠性分析问题.利用一阶Taylor展开方法推导机构运动精度误差表达式,并且引入可靠性理论建立了符合工程实际的极限状态函数表达式.在随机参数分布特性给定的情况下,通过计算机程序可以实现内燃机主运动机构的可靠性分析,迅速、准确地得到平面连杆机构运动精度可靠度.计算表明,所述方法是实用、有效的,具有重要的理论价值和实用意义.

关键词: 内燃机,  曲柄连杆机构,  运动精度,  可靠性 
[1] Yuchun KUANG,Hui ZHONG,Liangchun ZHONG. Design and research of screw motor with quasi circular-arc contour-pattern[J]. Chinese Journal of Engineering Design, 2023, 30(5): 640-649.
[2] Jianghao LI,Wensheng XIAO,Wentai YU,Hongyan WANG,Shunqing LIU,Youfu SUN. Reliability analysis and allocation research of ultra-deep water pile hammer system[J]. Chinese Journal of Engineering Design, 2023, 30(4): 485-494.
[3] Hongjie GUO,Shuya LIANG,Wenhua CHEN,Liqiang ZHONG,Zhewen CHEN,Jiahui YAN. Research on influence of wire spring inclination angle on storage life of wire spring hole electrical connector[J]. Chinese Journal of Engineering Design, 2023, 30(3): 390-398.
[4] Zheng-feng ZHANG,Xiao-yu SONG,Xiao-lei YUAN,Wen-juan CHEN,Wei-dong ZHANG. Reliability optimization design for crashworthiness of Al/CFRP hybrid thin-walled structure[J]. Chinese Journal of Engineering Design, 2022, 29(6): 720-730.
[5] Jiang LIU,Zheng-ming XIAO,Long-long ZHANG,Wei-biao LIU. Transmission accuracy reliability analysis and parameter optimization of RV reducer considering cycloid gear wear[J]. Chinese Journal of Engineering Design, 2022, 29(6): 739-747.
[6] CHEN Zhen, LI Tao, XUE Xiao-wei, ZHOU Yang, JING Shuang, CHEN Yan. Fatigue reliability analysis and optimization of vibroseis vibrator baseplate based on fuzzy comprehensive evaluation method[J]. Chinese Journal of Engineering Design, 2021, 28(4): 415-425.
[7] WANG Ai-lun, LIU Le, LIU Qing-ya. Research on strength reliability of pull rod combined rotor based on Kriging surrogate model[J]. Chinese Journal of Engineering Design, 2019, 26(4): 433-440.
[8] CUI Guo-hua, CUI Kang-kang, WU Hai-miao, ZHANG Yan-wei, LIU Jian. Reliability analysis for pressing force of prestressed concrete cylinder pipe port grinding robot[J]. Chinese Journal of Engineering Design, 2018, 25(6): 647-654.
[9] XIE Jing-wei, LI Fang, CHEN Tong, YIN Dong-liang. Analysis of cold standby system reliability model considering use and repair priority[J]. Chinese Journal of Engineering Design, 2018, 25(3): 315-320.
[10] WEN Rui-qiao, YANG Meng-ou, LIU Tao, ZHANG Jun-fu. Time-dependent kinematic reliability analysis of robot manipulators[J]. Chinese Journal of Engineering Design, 2018, 25(1): 50-55.
[11] LU Feng-yi, ZHAO Ke-yuan, XU Ge-ning, QI Qi-song. Reliability assessment of small sample based on multiple source information fusion and fuzzy fault tree[J]. Chinese Journal of Engineering Design, 2017, 24(6): 609-617.
[12] ZHANG Gen-bao, XU Fu-wei, RAN Yan, ZHANG Xiao-gang. Research on similarity evaluation and reliability prediction of mechanical structure[J]. Chinese Journal of Engineering Design, 2017, 24(3): 264-272.
[13] CHEN Wen-hua, DU Sheng-li, YANG Fan, PAN Jun, QIAN Ping. Unlocking reliability analysis of the ball locking mechanism for separating electrical connector[J]. Chinese Journal of Engineering Design, 2017, 24(3): 280-285.
[14] YIN Dong-liang, LI Fang, CHEN Tong. Analysis of parallel system reliability model withtwo unitsbased on Phase-type distribution[J]. Chinese Journal of Engineering Design, 2016, 23(2): 130-135.
[15] CHEN Wen-hua, ZHENG Chao-peng, LI Qi-zhi, PAN Jun, HE Qing-chuan, PAN Xiao-dong. Gear reliability analysis of 2.5 MW wind turbine gearboxbased on Copula function[J]. Chinese Journal of Engineering Design, 2015, 22(5): 425-430.