Reliability-based numerical modeling of elastoplastic plane trusses

被引:0
|
作者
Silva T.B.D. [1 ]
Lima Junior E.T.D. [1 ]
机构
[1] Universidade Federal de Alagoas, Centro de Tecnologia, Avenida Lourival Melo Mota, s/n, Tabuleiro do Martins, Rio Largo, AL
来源
| 2016年 / University Federal de Uberlandia卷 / 25期
关键词
Finite Elements; Plasticity; Structural Reliability;
D O I
10.14393/19834071.2016.36312
中图分类号
学科分类号
摘要
The trusses stand out as a structural system widely applied in engineering solutions. In the field of Structural engineering, several efforts have been done to improve the theoretical and numerical representation of structural systems behavior. The development of computer models enables a robust assessment of the mechanical behavior of structures, both in the design phase and throughout its service life. Considering the nonlinearity observed in the response of most of the structural materials, elastoplastic models arise as a proper choice to the description of the behavior of several ductile materials. Reliability analysis allows the assessment of the structural probability of failure, so that it can be predicted since the design stage. This analysis can be built based on the evaluation of the uncertainties associated with design variables, which are described by random models. This paper addresses a reliability-based analysis applied to finite element models for steel plane trusses in elastoplastic regime, according to an isotropic hardening model. Some uncertainties related to the loads and to geometrical and mechanical properties of the bars are considered, in order to estimate the safety levels associated to ultimate and service limit states, such as cross-section rupture, buckling of bars and inadmissible displacements.
引用
收藏
页码:87 / 93
页数:6
相关论文
共 50 条
  • [42] Reliability-Based Fatigue Optimization of an Air Plane Slat Track with Respect to Manufacturing Tolerances
    Hack, Michael
    d'Ippolito, Roberto
    Donders, Stijn
    Van Der Linden, Geert
    MATERIALS TESTING, 2009, 51 (7-8) : 437 - 443
  • [43] Reliability-based turbine maintenance
    Badal, LJ
    Okazaki, M
    POWER, 2005, 149 (09) : 17 - 18
  • [44] ILLUSTRATIONS OF RELIABILITY-BASED DESIGN
    BJORHOVDE, R
    JOURNAL OF THE STRUCTURAL DIVISION-ASCE, 1975, 101 (08): : 1714 - 1716
  • [45] RELIABILITY-BASED COMPONENT DESIGN
    Osakue, Edward E.
    Anetor, Lucky
    Odetunde, Christopher
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2015, VOL. 11, 2016,
  • [46] Robust and reliability-based design
    Azarm, Shapour
    Mourelatos, Zissimos P.
    JOURNAL OF MECHANICAL DESIGN, 2006, 128 (04) : 829 - 831
  • [47] Inverse Reliability-based Optimization
    Lehky, David
    Slowik, Ondrej
    INTERNATIONAL CONFERENCE OF NUMERICAL ANALYSIS AND APPLIED MATHEMATICS (ICNAAM 2017), 2018, 1978
  • [48] ILLUSTRATIONS OF RELIABILITY-BASED DESIGN
    RAVINDRA, MK
    LIND, NC
    SIU, W
    JOURNAL OF THE STRUCTURAL DIVISION-ASCE, 1974, 100 (NST9): : 1789 - 1811
  • [49] Reliability-based hybrid ARQ
    Shea, JM
    ELECTRONICS LETTERS, 2002, 38 (13) : 644 - 645
  • [50] Reliability-Based Turbo Detection
    Tao, Jun
    Wu, Jingxian
    Zheng, Yahong Rosa
    IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2011, 10 (07) : 2352 - 2361