Drvna industrija, Vol. 66 No. 4, 2015.
Prethodno priopćenje
https://doi.org/10.5552/drind.2015.1445
Application of Reduced Stiffness of Complex Laminate in Finite Elements for Chair Analysis
Biserka Nestorović
; Šumarski fakultet Sveučilišta u Beogradu, Beograd, Srbija
Ivica Grbac
; Šumarski fakultet Sveučilišta u Zagrebu, Zagreb, Hrvatska
Predrag Nestorović
; Fakultet arhitekture Sveučilišta u Beogradu, Beograd, Srbija
Jelena Milošević
; Fakultet arhitekture Sveučilišta u Beogradu, Beograd, Srbija
Sažetak
This paper presents a numerical procedure for the analysis of complex laminate structures. The procedure is based on the application of reduced stiffness of complex laminate. Introduction of reduced stiffness of composite facilitates both linear and nonlinear numerical integration, i.e. the tangential stiffness matrix is translated in the classical plate theory problem. The formulated numerical procedure was implemented in the program system KOMIPS. Special subroutine REDKRUT that calculates reduced stiffness of the laminate was written, and its application in numerical verification of experiments conducted on chairs was presented in (Nestorovic, 2010). At the end of this work, for 3D stress and strain analysis of veneer composites, recommendations were given for experimental determination of all nine independent material constants Ex, Ey, Ez, vxy, vxz, Gxy, Gxz, Gyz, fi ve of which were determined in the previous paper of the author (Nestorović, 2010).
Ključne riječi
reduced stiffness; finite elements; composite; material constants; shell; chair
Hrčak ID:
150814
URI
Datum izdavanja:
7.1.2016.
Posjeta: 2.919 *