上海交通大学学报(英文版) ›› 2017, Vol. 22 ›› Issue (3): 361-364.doi: 10.1007/s12204-017-1844-2
KOU Haixia (寇海霞), AN Zongwen* (安宗文), SUN Daoming (孙道明)
出版日期:
2017-06-02
发布日期:
2017-06-04
通讯作者:
AN Zongwen (安宗文)
E-mail:anzongwen@163.com
KOU Haixia (寇海霞), AN Zongwen* (安宗文), SUN Daoming (孙道明)
Online:
2017-06-02
Published:
2017-06-04
Contact:
AN Zongwen (安宗文)
E-mail:anzongwen@163.com
摘要: Double-crossed-step-stress (DCSS) accelerated life test (ALT) method is widely used for estimating the lifetime of products with high reliability and long lifetime. In order to further reduce the test time and test cost, a double-synchronous-step-stress (DSSS) ALT method which combines a double-synchronous-step-downstress (DSSDS) ALT method and a double-synchronous-step-up-stress (DSSUS) ALT method is proposed. The accelerated stresses decrease and increase in a synchronous way with one step in the DSSDS-ALT and DSSUSALT methods, respectively. Monte Carlo method is adopted to simulate the two methods, and the validity and efficiency of them are demonstrated by the simulation results. In addition, a comparison analysis of efficiency between DSSDS-ALT method and DSSUS-ALT method is carried out. The result shows that the DSSDS-ALT method compared with the DSSUS-ALT method can significantly improve the test efficiency under the same test condition.
中图分类号:
KOU Haixia (寇海霞), AN Zongwen* (安宗文), SUN Daoming (孙道明). Comparison Analysis of Efficiency Between Double-Synchronous Step-Down-Stress and Step-Up-Stress Accelerated Life Tests[J]. 上海交通大学学报(英文版), 2017, 22(3): 361-364.
KOU Haixia (寇海霞), AN Zongwen* (安宗文), SUN Daoming (孙道明). Comparison Analysis of Efficiency Between Double-Synchronous Step-Down-Stress and Step-Up-Stress Accelerated Life Tests[J]. Journal of shanghai Jiaotong University (Science), 2017, 22(3): 361-364.
[1] | CHEN W H, LIU J, GAO L, et al. Step-stress accelerateddegradation test modeling and statistical analysismethods [J]. Chinese Journal of Mechanical Engineering,2013, 26(6): 1154-1159. |
[2] | NELSONW. Accelerated life testing: Step-stress modelsand data analysis [J]. IEEE Transactions on Reliability,1980, R-29(2): 103-108. |
[3] | MEEKER W Q, ESCOBAR L A. Statistical methodsfor reliability data [M]. New York: Wiley, 1998. |
[4] | ESCOBAR L A, MEEKER W Q. A review of acceleratedtest models [J]. Statistical Science, 2006, 21(4):552-577. |
[5] | BAGDONAVICIUS V, NIKULIN M. Accelerated lifemodels: Modeling and statistical analysis [M]. NewYork: Chapman & Hall, 2002. |
[6] | ZHANG C H, CHEN X, WEN X S. Step-down-stressaccelerated life testing: Methodology [J]. Acta Armamentarii,2005, 26(5): 661-665 (in Chinese). |
[7] | XU X L,WANG R H, YU S, et al. Comparison analysisof efficiencies for lognormal distribution based on stepacceleration test and step deceleration test [J]. Journalof Mechanical Engineering, 2009, 45(4): 56-63 (inChinese). |
[8] | JIA Z Q, LIANG Y Y. New research about doublestressaccelerated life testing-methodology [J]. Journalof Ordnance Engineering College, 2007, 19(3): 9-12 (inChinese). |
[9] | CHEN J, WANG D Y, FU Y L, et al. Doublecrossedstep-stress accelerated life testing for pneumaticcylinder [J]. Applied Mechanics and Materials,2011, 121/122/123/124/125/126: 1274-1278. |
[10] | CHEN J, LI J, WANG D Y, et al. Double-crossedstep-down-stress accelerated life testing for pneumaticcylinder based on cumulative damage model [J]. AdvancedMaterials Research, 2014, 871: 56-63. |
[11] | LI K. Statistical analysis of censoring data from alternatestepwise stress accelerated life testing method undertwo-parameter exponential distribution [D]. Nanjing:College of Sciences, Nanjing Agriculture University,2008 (in Chinese). |
[12] | L¨U M, CAI J Y, PAN G, et al. Optimal design ofdouble-crossed step-down-stress accelerated life testbased on Monte Carlo simulation [J]. Electronics Optics& Control, 2013, 20(10): 96-101 (in Chinese). |
[13] | SUN Y D, SHI Y M. Numerical simulation of doublecrossedstep-down-stress accelerated life test under lognormaldistribution [J]. Fire Control & Command Control,2012, 37(9): 23-26 (in Chinese). |
[1] | ZHAO Yong, JI Xiaojun, DAI Ming, QI Hongli, GAO Junkai. Analysis of Transmission Power and Efficiency of Side-Mounted Inductive Power Supply System for Metal Rotary Shafts[J]. Journal of Shanghai Jiaotong University(Science), 2020, 25(3): 273-280. |
[2] | 周苏,胡哲,高扬,姜缜. 基于晶格化的动力学Monte Carlo方法研究钛酞菁配合物氧化还原反应催化能力[J]. 上海交通大学学报(自然版), 2019, 53(4): 497-503. |
[3] | WANG Shaohua *(王少华), ZHANG Shixin (张仕新), XU Longyang (徐隆洋), XING Ruxin (邢汝鑫). Optimal Research on Equipment Maintenance Unequal Time-Interval Based on Simulation[J]. Journal of Shanghai Jiao Tong University (Science), 2019, 24(4): 485-489. |
[4] | ZHANG Ying* (张瑛), LI Zeyou (李泽有), LI Xin (李鑫), YANG Hua (杨华). Efficient Design and Optimization Method for Distributed Amplifiers[J]. Journal of Shanghai Jiao Tong University (Science), 2019, 24(3): 281-286. |
[5] | JIANG Zhao (姜朝), HUA Xueming* (华学明), HUANG Lijin (黄立进),WU Dongsheng (吴东升), LI Fa. High Efficiency and Quality of Multi-Pass Tandem Gas Metal Arc Welding for Thick Al 5083 Alloy Plates[J]. Journal of Shanghai Jiao Tong University (Science), 2019, 24(2): 148-157. |
[6] | CAO Junhai (曹军海), XING Biao (邢彪), DU Haidong (杜海东), SHEN Ying (申莹). Monte Carlo Based Analysis and Validation Method for Time for Single Vehicle Combat Preparation of Armored Vehicle[J]. sa, 2018, 23(2): 244-249. |
[7] | XING Biao (邢彪), SONG Tailiang (宋太亮), CAO Junhai (曹军海),DONG Yuansheng (董原生), LI K. Research on Equipment Support Activity Process Simulation Based on Monte Carlo Method[J]. sa, 2018, 23(2): 250-255. |
[8] | WEN Kai (温凯), LI Yichen (李熠辰), YANG Yang (杨洋), GONG Jing (宫敬). Reliability Evaluation of Compressor Systems Based on Universal Generating Function Method[J]. sa, 2018, 23(2): 291-296. |
[9] | XU Yong1 (徐勇), TANG Qian2 (唐倩), HOU Linzao2 (候林早), LI Mian2* (李冕). Decision Model for Market of Performing Arts with Factorization Machine[J]. sa, 2018, 23(1): 74-84. |
[10] | LIANG Qingxue (梁晴雪), HU Hao* (胡昊). Uncertainty Analysis of Value for Money Assessment for Public-Private Partnership Projects[J]. 上海交通大学学报(英文版), 2017, 22(6): 672-681. |
[11] | WANG Tiantian1 (王天田), LIN Feng1* (林峰), HU Jie1 (胡杰),KE Yuqiang2 (柯于强), ZHANG Yue. Control Strategy Research of a Selective Catalytic Reduction System for Heavy-Duty Application[J]. 上海交通大学学报(英文版), 2017, 22(5): 577-588. |
[12] | ZHU Yinghua (朱莹华), XU Feng* (徐 峰), HU Hao (胡 昊). A Stochastic Concession Model for Infrastructure Projects Under Build-Operate-Transfer Schemes[J]. 上海交通大学学报(英文版), 2016, 21(3): 320-327. |
[13] | LUO Zhi (罗智), HAO Zhi-yong* (郝志勇), ZHENG Xu (郑 旭). Precision Improvement of the Discrete Calculation Method for Sound Radiation Research[J]. 上海交通大学学报(英文版), 2015, 20(4): 415-419. |
[14] | GAO Xin-ke1,2* (高新科), LIU Ya-peng3 (刘玡朋). Influence of the Inverse-Time Protection Relays on the Voltage Dip Index[J]. 上海交通大学学报(英文版), 2014, 19(3): 354-360. |
[15] | LI He1 (李 鹤), GAN Xiao-ying1,2* (甘小莺), CHEN Shi-yang1 (陈时阳), FENG Xin-xin1 (冯心欣). Multi-Channel Spectrum Sensing in Cognitive Ad-hoc Networks: An Energy-Efficient Manner[J]. 上海交通大学学报(英文版), 2013, 18(5): 513-519. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||