Probabilistic Model for Brittle Fracture and Statistical Characteristic of Absorbed Energy in Charpy Impact Test

被引:0
|
作者
Matsuda, Shinya [1 ]
Takahashi, Manabu [2 ]
机构
[1] Kagawa Univ, Fac Engn, Dept Adv Mat Sci, Takamatsu, Kagawa 7610396, Japan
[2] Ehime Univ, Fac Collaborat Reg Innovat, Dept Ind Innovat, Matsuyama, Ehime 7908577, Japan
关键词
Charpy absorbed energy; brittle fracture; Weibull distribution; local fracture criterion; ENGINEERING CERAMICS; STRENGTH; SIZE; TOUGHNESS;
D O I
10.2320/jinstmet.J2017049
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
This paper discusses a theoretical approach to evaluating the statistical characteristics of Charpy absorbed energy to brittle fracture at low temperature. First, the probability distribution of fracture toughness for V-notch specimen was derived by combining a local fracture criterion and Weibull distribution. Second, a probabilistic model for the Charpy absorbed energy was derived by relating the fracture toughness and the Charpy absorbed energy based on the concept of Griffith-Orowan-Irwin. The Charpy absorbed energy was related to the material strength and the material constant, obeying the two-parameter Weibull distribution with a shape parameter of 2. Third, the Weibull analysis of the Charpy absorbed energy for V-notch specimen of high strength steel at lower temperature than Ductile-Brittle Transition Temperature (DBTT) and the statistical characteristics obtained from the model were compared. As a result, the proposed model was supported the statistical characteristics of the Charpy absorbed energy at a temperature sufficiently lower than DBTT.
引用
收藏
页码:102 / 107
页数:6
相关论文
共 50 条
  • [21] Investigation of Energy Absorbed from an Instrumented Charpy Impact on Automotive Specimens
    Ali, M. B.
    Abdullah, S.
    Nuawi, M. Z.
    Ariffin, A. K.
    TRENDS IN AUTOMOTIVE RESEARCH, 2012, 165 : 182 - 186
  • [22] Application of Charpy impact absorbed energy to the safety assessment based on SINTAP
    Wang, Dongpo
    Deng, Caiyan
    Zhang, Yufeng
    Huo, Lixing
    Transactions of Tianjin University, 2006, 12 (02) : 116 - 120
  • [23] Application of Charpy Impact Absorbed Energy to the Safety Assessment Based on SINTAP
    王东坡
    邓彩艳
    张玉凤
    霍立兴
    Transactions of Tianjin University, 2006, (02) : 116 - 120
  • [24] THE MEASUREMENT OF ABSORBED CHARPY IMPACT ENERGY USING A VERTICAL DROP TOWER
    SERVER, WL
    HENDERSON, GR
    JOURNAL OF TESTING AND EVALUATION, 1981, 9 (03) : 210 - 213
  • [25] Fracture simulation model for API X80 Charpy test in Ductile-Brittle transition temperatures
    Kim, Ji-Su
    Kim, Yun-Jae
    Lee, Myeong-Woo
    Kim, Ki-Seok
    Shibanuma, Kazuki
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2020, 182
  • [26] Effects of striker edge radius on load-deflection curve and absorbed energy in instrumented charpy impact test
    Morita, S
    Kobayashi, T
    Niinomi, M
    Toda, H
    Akahori, T
    TETSU TO HAGANE-JOURNAL OF THE IRON AND STEEL INSTITUTE OF JAPAN, 2005, 91 (05): : 49 - 56
  • [27] Absorbed impact energy and mode of fracture: A statistical description of the micro-structural dispersion
    Pontikis, V.
    Gorse, D.
    JOURNAL OF NUCLEAR MATERIALS, 2009, 394 (01) : 109 - 113
  • [28] Application of coupled brittle-ductile model to study correlation between Charpy energy and fracture toughness values
    Folch, LCA
    Burdekin, FM
    ENGINEERING FRACTURE MECHANICS, 1999, 63 (01) : 57 - 80
  • [29] FRACTURE CHARACTERISTICS EVALUATION BY CHARPY IMPACT BENDING TEST.
    Nunomura, Shigetomo
    Nakashiro, Masashi
    Tetsu-To-Hagane/Journal of the Iron and Steel Institute of Japan, 1978, 64 (07): : 860 - 869
  • [30] TRANSITION BEHAVIOUR AND EVALUATION OF FRACTURE TOUGHNESS IN CHARPY IMPACT TEST
    KOBAYASH.T
    TAKAI, K
    MANIWA, H
    TRANSACTIONS OF THE IRON AND STEEL INSTITUTE OF JAPAN, 1967, 7 (03) : 115 - &