Structural Engineering and Mechanics
Volume 56, Number 5, 2015, pages 767-785
DOI: 10.12989/sem.2015.56.5.767
Stochastic elastic wave analysis of angled beams
Changqing Bai, Hualin Ma and Victor P.W. Shim
Abstract
The stochastic finite element method is employed to obtain a stochastic dynamic model of angled beams subjected to impact loads when uncertain material properties are described by random fields. Using the perturbation technique in conjunction with a precise time integration method, a random analysis approach is developed for efficient analysis of random elastic waves. Formulas for the mean, variance and covariance of displacement, strain and stress are introduced. Statistics of displacement and stress waves is analyzed and effects of bend angle and material stochasticity on wave propagation are studied. It is found that the elastic wave correlation in the angled section is the most significant. The mean, variance and covariance of the stress wave amplitude decrease with an increase in bend angle. The standard deviation of the beam material density plays an important role in longitudinal displacement wave covariance.
Key Words
elastic wave; stochastic finite element; angled beam; impact; random parameter; uncertainty
Address
Changqing Bai: State Key Laboratory of Mechanical Structure Strength and Vibration/ School of Aerospace, Xi\'an Jiaotong University, Xi\'an 710049, China
Hualin Ma: China Construction Technology Group limited Company, Lanzhou 730080, China
Victor P.W. Shim: Department of Mechanical Engineering, National University of Singapore, 9 Engineering Drive 1, Singapore 117576, Singapore