吉林大学学报(工学版) ›› 2013, Vol. 43 ›› Issue (增刊1): 138-142.

Previous Articles     Next Articles

Reliability Analysis of piezoceramics composite plate under bending vibration model

ZHOU Zhi-guo1, LU Jiang-yue2   

  1. 1. Zhejiang Institute of Communications, Hangzhou 311112, China;
    2. Key Lab.for Precision and Non-traditional Machining Technology of Ministry of Education, Dalian University of Technology, Dalian 116085, China
  • Received:2012-10-12 Published:2013-06-01

Abstract:

In order to speed up the process of the orthogonal test for determining structure parameters of piezoceramics composite plate.Based on the Monte Carlo methods of reliability analysis,the determination of parameters of piezoceramics composite under the bending vibration model in the piezoelectric nozzles-flapper structure was studied.The probability design system in the ANSYS software was applied to calculate the impact of the non-deterministic input parameters on the structural properties.The ANSYS analysis results show that the largest sensitivity on the nozzle-flapper structure is the radius R-1 of piezoelectric ceramic and then followed by the copper electrode thickness T-2.The both impacts are negative.It indicates that they have the inverse relation to the structural properties of the nozzle-flapper.While the influence of the thickness T-1 of the piezoelectric ceramic is positive.It indicates that it has the proportional relation to the nozzle-flapper performance.And the quantitative relationship among the three parameters is R-1>T-2>T-1.The study results provide a basis for speeding up the process of the orthogonal test and improving test accuracy.

Key words: piezoceramics, composite plate, reliability analysis, monte carlo methods, ANSYS

CLC Number: 

  • TH703

[1] Ichinose N,Miyamoto N,Takahashi S.Ultrasonic transducers with functionally graded piezoelectric ceramics[J].Journal of the European Ceramic Society,2004,24(6):1681-1685.

[2] Zhu X H,Meng Z Y.Operational principle,fabrication and displacement characteristics of a functionally gradient piezoelectric ceramic actuator[J].Sensors and Actuators A:Physical,1995,48(3):169-176.

[3] 陈辉,谭永红,周杏鹏,等.压电陶瓷执行器的动态模型辨识与控制[J].光学精密工程,2012,20(1):88-95. Chen Hui,Tan Yong-hong,Zhou Xing-peng,et al.Identification and control of dynamic modeling for piezoceramic actuator[J].Optics and Precision Engineering,2012,20(1):88-95.

[4] 赖志林,刘向东,耿洁.压电陶瓷执行器的类Hammerstein模型及其参数辨识[J]. 光学精密工程,2012,20(9):2087-2094. Lai Zhi-lin,Liu Xiang-dong,Geng Jie.Hammerstein-based model of piezoceramic actuator and its identification[J].Optics and Precision Engineering,2012,20(9):2087-2094.

[5] 廖文义,王鉴翔.应用压电陶瓷传感器于桥墩的损坏诊断[J].土木工程学报,2012,45(S2):197-201. Liao Wen-yi,Wang Jian-xiang.Application of piezoceramic-based sensors to the structural health monitoring of bridge piers[J].China Civil Engineering Journal,2012,45(S2):197-201.

[6] Wixom A S,Anderson M J,Bahr David,et al.A new acoustic transducer with a pressure-deformed piezoelectric diaphragm[J].Sensors and Actuators A:Physical,2012,179(6):204-210.

[7] Lin S Y.Study on the radial composite piezoelectric ceramic transducer in radial vibration[J].Ultrasonics,2007,46(1):51-59.

[8] Nguyen Q,Tong L Y.Shape control of smart composite plate with non-rectangular piezoelectric actuators[J].Composite Structures,2004,66(4):207-214.

[9] Wang S Y,Quek S T,Ang K K.Dynamic stability analysis of finite element modeling of piezoelectric composite plates[J].International Journal of Solids and Structures,2004,41(3):745-764.

[10] 杨长松,孙宝元,钱敏,等.压电式电/气转换器挡板的疲劳性能实验研究[J].压电与声光,2008,30(6):715-717. Yang Chang-song,Sun Bao-yuan,Qian Min,et al.The experimental research of electrical fatigue performance of piezoelectric composite discs in EPI[J].Piezoelectrics & Acoustooptics,2008,30(6):715-717.

[11] 金伟娅,张康达.可靠性工程[M].北京:化学工业出版社,2005.

[12] 苏春,王圣金,许映秋.基于蒙特卡洛仿真的液压系统动态可靠性[J]. 东南大学学报:自然科学版,2006,36(3):370-373. Su Chun,Wang Sheng-jin,Xu Ying-qiu.Dynamic reliability of hydraulic system based on Monte Carlo simulation[J].Journal of Southeast University:Natural Science Edition,2006,36(3):370-373.

[13] 王丹,周亮,孙志礼,等.基于蒙特卡洛方法的滚珠丝杠副运动可靠性分析[J].东北大学学报:自然科学版,2012,33(8):1179-1181,1185. Wang Dan,Zhou Liang,Sun Zhi-li,et al. Motion reliability analysis of ball screw pair based on Monte Carlo method[J].Journal of Northeastern University:Natural Science,2012,33(8):1179-1181,1185.

[14] 李育超,凌道盛,陈云敏,等.蒙特卡洛法与有限元相结合分析边坡稳定性[J].岩石力学与工程学报,2005,24(11):1933-1941. Li Yu-chao,Ling Dao-sheng,Chen Yun-min,et al.Slope stability analysis using Monte Carlo technique with FEM[J].Chinese Journal of Rock Mechanics and Engineering,2005,24(11):1933-1941.

[1] CHEN Jiang-yi, LIU Bao-yuan. Influence of fiber fracture damage on dispersion characteristic of guided wave in composite plate [J]. 吉林大学学报(工学版), 2017, 47(1): 180-184.
[2] MENG Guang-wei, FENG Xin-yu, ZHOU Li-ming, Li Feng. Structural reliability analysis based on dimension reduction algorithm [J]. 吉林大学学报(工学版), 2017, 47(1): 174-179.
[3] SI Wei, MA Biao, REN Jun-ping, WANG Hai-nian, GE-Sang Ze-ren. Analysis of asphalt pavement performance under freeze-thaw cycles using reliability method [J]. 吉林大学学报(工学版), 2016, 46(1): 126-132.
[4] DONG Li-chun, HAN Zhi-wu, ZHANG Lei, NIU Shi-chao, MA Rong-feng, REN Lu-quan. Numerical simulation on contact problem of ring model with bionic concave morphology [J]. 吉林大学学报(工学版), 2013, 43(增刊1): 543-546.
[5] JIAO Xiao-yang, LIU Jian-fang, LIU Xiao-lun, SUN Xu-guang. Ultrasonic standing wave levitation ability [J]. 吉林大学学报(工学版), 2013, 43(02): 340-345.
[6] WANG Xiao-yan, SHEN Gui-xiang, ZHANG Ying-zhi, ZHENG Shan, NIU Xu-lei, LIANG Dong. Analysis about failure correlation of CNC equipment base on DEMATEL [J]. 吉林大学学报(工学版), 2012, 42(增刊1): 100-103.
[7] ZHANG Ying-zhi, ZHENG Rui, SHEN Gui-xiang, WANG Zhi-qiong, LI Huai-yang, et al. Failure dependency of CNC equipment based on copula theory [J]. 吉林大学学报(工学版), 2011, 41(6): 1636-1640.
[8] ZHANG Jun-qiu, HAN Zhi-wu,JIANG Jia-lian,GE Chao, Lü You,WANG Chao-fei. Three dimensional numerical simulation on antierosion of |coupling bionics of flexibility and configuration [J]. 吉林大学学报(工学版), 2011, 41(01): 139-0143.
[9] ZHANG Qi-Xun, YU Hai-Ye. Simulation analysis of the security of transmission mechanism of automatic [J]. 吉林大学学报(工学版), 2010, 40(02): 480-0484.
[10] SUN Rui-heng,XU Tao,ZHANG Hao,LV Gang,QIU Bing. Secondary development of ANSYS of combined approximations method [J]. 吉林大学学报(工学版), 2009, 39(增刊2): 396-0400.
[11] LI Yi , YAN Yun-qi,ZHAO Wen . Time-dependent reliability analysis of stiffness of
adding storey onto inservice structure
[J]. 吉林大学学报(工学版), 2009, 39(02): 398-0401.
[12] SHI Gang,SHI Yong-jiu,WANG Yuan-qing . Analysis on overall buckling behaviour of ultra-high strength steel columns by ANSYS [J]. 吉林大学学报(工学版), 2009, 39(01): 113-118.
[13] Li Cheng;Zheng Yan-ping;Tie Ying . Simulation on effect of fiber orientation on stress field of orthotropic composite plate with circular holes [J]. 吉林大学学报(工学版), 2008, 38(03): 544-0547.
[14] Li Rui,Ma Hong-an,Yin Bin-hua,Han Qi-gang,Liu Wan-qiang,Jia Xiao-peng . Finite element analysis on pressuretransmitting behavior of
pyrophyllite block based on ANSYS/LS-DYNA
[J]. 吉林大学学报(工学版), 2008, 38(02): 292-0297.
[15] Guo Wei, Zhao Xi-hua, Song Min-xia, Feng Ji-cai, Yang Biao . Influence of gap on diffusion stress in expansion stress diffusion bonding [J]. 吉林大学学报(工学版), 2007, 37(01): 22-24.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!