Ezperiment Study and Fatigue Life Prediction of Torsion Shaft of Self-propelled Gun Based on Stochastic Response Surface Method
The randomness of law cycle fatigue life of torsion shaft of self-propelled gun is the key factor affecting the reliability of the running system. A self-propelled gun experiment was carried through the field test to achieve the load spectrums of torsion shaft. The conclusion that the maximum tensile stress is the failure stress of torsion shaft was drawn. In order to predict the fatigue life of torsion shaft accurately, the stochastic response surface method was introduced to study low cycle fatigue life. The stochastic parameters of low cycle fatigue life were expressed to stochastic variables, and the structural stochastic response was fitted based on Hermite polynomials. By solving the coefficients of stochastic polynomials, the function of the law cycle fatigue life of torsion shaft was achieved, and the drawbacks of the classical response surface method which approaches the structural stochastic response using a group of general polynomials yet can not guarantee the convergence were overcome. The results show that the stochastic response surface method can achieve the statistical information of the structural stochastic response rapidly and accurately.
torsion shaft low cycle fatigue stochastic response surface method fatigue life
Li Yadong Zheng Jian Jia Changzhi
Department of Guns Engineering,Shijiazhuang Mechanical Engineering College Shijiazhuang 050003,China
国际会议
2009 9th International Conference on Electronic Measurement & Instruments(第九届电子测量与仪器国际会议 ICEMI2009)
北京
英文
3892-3896
2009-08-16(万方平台首次上网日期,不代表论文的发表时间)