A Developed Transfer Matrix Method for Analysis of Elastic-Plastic Behavior of Structures

被引:8
|
作者
Sun, Jianpeng [1 ]
Liu, Kai [1 ]
Liu, Guangmeng [1 ]
Li, Hui [1 ]
机构
[1] Xian Univ Architecture & Technol, Sch Civil Engn, Xian 710055, Peoples R China
基金
中国国家自然科学基金;
关键词
Elastic-plastic element; Transfer matrix; Mechanical behavior; Exponential matrix; Taylor series; DUCTILE-BRITTLE TRANSITION; DAMAGE MODEL; DESIGN; FRACTURE; COMBINATION; CRITERION; DEMAND;
D O I
10.1007/s13296-021-00524-8
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The ductility of structure or component is particularly important when it encounters earthquake or other sudden disasters. It can reduce the damage of structure to a certain extent. The ductility mechanism of structure is closely related to the analysis of elastic-plastic behavior of structure. Therefore, an improved transfer matrix method based on elastic-plastic transfer element is proposed to analyze the elastic-plastic behavior of structures. The elastic-plastic element consists of two parts, elastic region and plastic region. According to the section stress analysis, the ratio of elastic zone to plastic zone can be determined to reflect the elastic-plastic behavior. The analysis process is as follows: firstly, the elastic-plastic part of the structure is determined according to the mechanical behavior of the whole structure, then the elastic-plastic transfer unit is proposed according to the determined proportion of the elastic-plastic zone, and finally the mechanical behavior of the whole structure is analyzed. Through numerical examples, the correctness and effectiveness of the proposed method are verified by comparing the analytical model with the theoretical solution. The results show that this method provides a new way for the further study of engineering structure mutation process.
引用
收藏
页码:1620 / 1629
页数:10
相关论文
共 50 条
  • [31] A method for the assessment of hyperstatic cracked structures in the elastic-plastic regime
    Gorrochategui, I
    Gutiérrez-Solana, F
    ENGINEERING FRACTURE MECHANICS, 1998, 61 (5-6) : 519 - 535
  • [32] METHOD OF SUBSTITUTIVE PLASTIC ROTATION APPLIED TO ELASTIC-PLASTIC STRUCTURES WITH AXIAL FORCES
    DOROSZ, S
    KONIG, JA
    INGENIEUR ARCHIV, 1988, 58 (03): : 229 - 239
  • [33] Numerical Analysis Programming on the Concrete Elastic-Plastic Behavior
    Wang, Hong
    Jin, Chong
    Xia, X. Z.
    Wang, Z. P.
    NEW MATERIALS, APPLICATIONS AND PROCESSES, PTS 1-3, 2012, 399-401 : 1268 - +
  • [34] COLLAPSE MODE OF ELASTIC-PLASTIC STRUCTURES
    GIAMBANCO, F
    PANZECA, T
    ZITO, M
    JOURNAL OF ENGINEERING MECHANICS-ASCE, 1992, 118 (06): : 1083 - 1092
  • [35] THEORY OF SHAKEDOWN OF ELASTIC-PLASTIC STRUCTURES
    KONIG, JA
    ARCHIWUM MECHANIKI STOSOWANEJ, 1966, 18 (02): : 227 - &
  • [36] Topology optimization of elastic-plastic structures
    Leu, LJ
    Huang, CW
    Chou, JJ
    CHINESE JOURNAL OF MECHANICS-SERIES A, 2003, 19 (04): : 431 - 442
  • [37] ELASTIC-PLASTIC BEHAVIOR OF OFFSHORE STEEL STRUCTURES UNDER IMPACT LOADS
    BAI, Y
    PEDERSEN, PT
    INTERNATIONAL JOURNAL OF IMPACT ENGINEERING, 1993, 13 (01) : 99 - 115
  • [38] Mathematical Programming Methods in Elastic-Plastic Structures Analysis.
    Maier, Giulio
    Archiwum Inzynierii Ladowej, 1975, 21 (03): : 387 - 411
  • [39] ELASTIC-PLASTIC ANALYSIS OF SLENDER FIRST WALL STRUCTURES.
    Orient, G.E.
    Gierszewski, P.J.
    Garner, J.K.
    Fusion Technology, 1985, 8 (1 pt 2(A)): : 586 - 591
  • [40] ELASTIC-PLASTIC ANALYSIS OF CRACK IN THERMALLY-LOADED STRUCTURES
    AOKI, S
    KISHIMOTO, K
    SAKATA, M
    ENGINEERING FRACTURE MECHANICS, 1982, 16 (03) : 405 - 413