A Creep Non-Linear FEM Analysis of Glulam Timber

被引:13
|
作者
De Luca, V. [1 ]
Della Chiesa, A. [1 ]
机构
[1] Univ Basilicata, DITEC, I-85100 Potenza, Italy
关键词
glue-laminated timber; power creep law; FEM model; non-linear analysis; geometrical non-linearity; material non-linearity; STRUCTURAL LUMBER; BEHAVIOR; MODEL; DEFLECTIONS;
D O I
10.1080/15376494.2011.627643
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This work is focused on a creep formulation in bending for timber beams, of glue laminated (glulam) type, which is suited to be implemented in both geometrical and material non-linear finite element method (FEM) models. It studies the performance of timber beams by accounting the deformation under increments of time and stress in the long term. The proposed creep formulation uses a power-law function expressing the creep strain by means of one coefficient and two exponents. This function needs a fewer number of material coefficients than a classical mathematical analysis of non-linear viscoelasticity, so design applications, such as FEM codes, may more simply describe the deformations in the long term. The formulation has been developed for cantilever beams made of glulam timber using experimental tests in bending and accounting the relations between strains, and both time and tension progresses. Also, the timber creep law has been numerically tested by FEM code runs, with large displacements and large strains assumptions, and further compared with a Navier analytical model. The scatters between experimental and analytical values, and FEM numerical values have reached a standard deviation of 4.06 and of 7.66%, respectively. The acceptable agreement in the comparison between experimental, analytical, and FEM numerical results have demonstrated the capability of the creep formulation to model the behavior in bending of a glulam timber. Also, the proposed creep model has shown an interesting ability to be employed in a FEM code to analyze a timber beam in bending, along time and load evolutions.
引用
收藏
页码:489 / 496
页数:8
相关论文
共 50 条
  • [1] A non-linear 3D FEM model to simulate timber-concrete joints
    Dias, A. M. P. G.
    Van de Kullen, J. W.
    Lopes, S.
    Cruz, H.
    ADVANCES IN ENGINEERING SOFTWARE, 2007, 38 (8-9) : 522 - 530
  • [2] A positional FEM Formulation for geometrical non-linear analysis of shells
    Coda, Humberto Breves
    Paccola, Rodrigo Ribeiro
    LATIN AMERICAN JOURNAL OF SOLIDS AND STRUCTURES, 2008, 5 (03): : 205 - 223
  • [3] Energy analysis of a non-linear dynamic impact using FEM
    Lund, Espen
    Jecmenica, Mladen
    Karimi, Hamid Reza
    Robbersmyr, Kjell G.
    Melteig, Ole
    2014 11TH WORLD CONGRESS ON INTELLIGENT CONTROL AND AUTOMATION (WCICA), 2014, : 6075 - 6080
  • [4] Non-linear analysis of cable networks by FEM and experimental validation
    del Coz Diaz, J. J.
    Garcia Nieto, P. J.
    Castro Fresno, D.
    Blanco Fernandez, E.
    INTERNATIONAL JOURNAL OF COMPUTER MATHEMATICS, 2009, 86 (02) : 301 - 313
  • [5] Non-linear analysis of the flexural-torsional stability of slender tropical glulam beams
    Bikanda, Louis Elvis
    Lissouck, Rene Oum
    Massaga, Morel Junior Angouah
    Ohandja, Louis Max Ayina
    JOURNAL OF STRAIN ANALYSIS FOR ENGINEERING DESIGN, 2024, 59 (02): : 108 - 122
  • [6] Non-linear numerical analysis of plywood board timber connections by DOE-FEM and full-scale experimental validation
    del Coz Diaz, J. J.
    Garcia Nieto, P. J.
    Lozano Martinez-Luengas, A.
    Suarez Dominguez, F. J.
    Dominguez Hernandez, J.
    ENGINEERING STRUCTURES, 2013, 49 : 76 - 90
  • [7] A model for non-linear creep in polypropylene
    Dean, G. D.
    Broughton, W.
    POLYMER TESTING, 2007, 26 (08) : 1068 - 1081
  • [8] ON THE PREDICTION OF NON-LINEAR CREEP STRAINS
    Balevicius, Robertas
    Dulinskas, Eugedijus
    JOURNAL OF CIVIL ENGINEERING AND MANAGEMENT, 2010, 16 (03) : 382 - 386
  • [9] Non-linear analysis and calculation of the performance of a shelving protection system by FEM
    del Coz Diaz, J. J.
    Garcia Nieto, P. J.
    Vilan Vilan, J. A.
    Suarez Sierra, J. L.
    APPLIED MATHEMATICS AND COMPUTATION, 2011, 218 (06) : 2365 - 2376
  • [10] Non-linear analysis of unbolted base plates by the FEM and experimental validation
    del Coz Diaz, J. J.
    Garcia Nieto, P. J.
    Betegon Biempica, C.
    Fernandez Rougeot, G.
    THIN-WALLED STRUCTURES, 2006, 44 (05) : 529 - 541