Zobrazeno 1 - 10
of 165
pro vyhledávání: '"F. Ashida"'
Autor:
Sei-ichiro Sakata, F. Ashida
Publikováno v:
Key Engineering Materials. :277-280
This paper discusses a stochastic microscopic stress analysis of a composite material for a microscopic random variation. The stochastic stress analysis is performed via a stochastic homogenization and multiscale analysis. The homogenization method i
Publikováno v:
Mathematical and Computer Modelling. 51:309-319
This paper discusses the accuracy of a gradient or Hessian estimation of an approximated surface for an unknown nonlinear function using the Kriging method and a hierarchical neural network. These methods will give a good global approximated response
Publikováno v:
Journal of Solid Mechanics and Materials Engineering. 4:446-459
Publikováno v:
Journal of Solid Mechanics and Materials Engineering. 4:568-577
This paper describes stochastic analysis of microscopic stresses in a fiber reinforced composite material caused by a random variation of an elastic property of a component material. The microscopic stress takes an influence of not only the microscop
Autor:
F. Ashida, T. R. Tauchert
Publikováno v:
Journal of Thermal Stresses. 27:513-536
Transient response of a piezothermoelastic plate subject to axisymmetric surface heating is investigated. The Laplace transform is employed to determine the temperature field satisfying the heat conduction equation that includes a relaxation time. Re
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Publikováno v:
Proceedings of 10th World Congress on Computational Mechanics.
This paper describes a new computational methodology for the inverse stochastic homogenization problem. The inverse stochastic homogenization analysis will be performed for identifying a microscopic random variation in a microstructure of a heterogen
Autor:
F. Ashida
Publikováno v:
Archive of Applied Mechanics (Ingenieur Archiv). 71:221-232
The present paper discusses a plane strain problem of transient thermoelasticity in a circular cylinder which is in partial contact with two heated rigid stamps, in the case where the coefficient of relative heat transfer on the contact surface of th
Autor:
F. Ashida
Publikováno v:
Archive of Applied Mechanics (Ingenieur Archiv). 69:443-454
The present paper discusses how to reduce the applied electric potential which controls a distribution of the elastic displacement, when temperature change induces elastic deformation in a piezoelectric-based solid state actuator. The actuator consis
Akademický článek
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