info:eu-repo/semantics/article
Buckling analysis of laminated composite beams by using an improved first order formulation
Fecha
2021-01-01Registro en:
02555476
10.4028/www.scientific.net/MSF.1033.156
16629752
Materials Science Forum
2-s2.0-85120474017
SCOPUS_ID:85120474017
0000 0001 2196 144X
Autor
Ayala, Shammely
Vallejos, Augusto
Arciniega, Roman
Institución
Resumen
In this work, a finite element model based on an improved first-order formulation (IFSDT) is developed to analyze buckling phenomenon in laminated composite beams. The formulation has five independent variables and takes into account thickness stretching. Threedimensional constitutive equations are employed to define the material properties. The Trefftz criterion is used for the stability analysis. The finite element model is derived from the principle of virtual work with high-order Lagrange polynomials to interpolate the field variables and to prevent shear locking. Numerical results are compared and validated with those available in literature. Furthermore, a parametric study is presented.