Effect of pre-strain on fracture toughness of ductile structural steels under static and dynamic loading

被引:17
|
作者
Qiu, H
Enoki, M
Hiraoka, K
Kishi, T
机构
[1] Natl Inst Mat Sci, Steel Res Ctr, Tsukuba, Ibaraki 3050047, Japan
[2] Univ Tokyo, Dept Mat Engn, Bunkyo Ku, Tokyo 1138656, Japan
关键词
pre-strain; fracture toughness; ductile fracture; structural steel;
D O I
10.1016/j.engfracmech.2004.11.003
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
The ductile fracture process consists of void nucleation, growth and coalescence. The whole ductile process can be divided into two successive steps: (I) the initial state to void nucleation, followed by (II) void growth up to void coalescence. Based on this suggestion, resistance to ductile fracture could be divided into the resistance to stage I and stage II, and accordingly the whole fracture toughness could be regarded to be due to contributions from stages I and II. The fracture toughness contributed from the two steps is, respectively, denoted as void nucleation-contributed fracture toughness and void growth-contributed fracture toughness. The effect of plastic pre-strain on the fracture toughness of ductile structural steels under static and dynamic loading (4.9 m/s) within the ductile fracture range was evaluated by summing contributions due to void nucleation-contributed and void growth-contributed fracture toughness. The effect of strain rate on fracture toughness was also investigated by the same means. The results show that both plastic pre-strain and high-speed loading decrease the void nucleation-contributed fracture toughness while their effects on the void growth-contributed fracture toughness depend on the variations in strength and ductility. Moreover, fracture toughness of structural steels generally decreases with increasing strain rate. (c) 2004 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1624 / 1633
页数:10
相关论文
共 50 条
  • [1] THE EFFECT OF PRE-STRAIN ON DUCTILE FRACTURE TOUGHNESS OF REELED PIPELINE STEELS
    Tkaczyk, Tomasz
    O'Dowd, Noel P.
    Nikbin, Kamran
    Howard, Brett P.
    PROCEEDINGS OF THE ASME PRESSURE VESSELS AND PIPING CONFERENCE, VOL 6, PTS A AND B, 2010, : 1203 - 1212
  • [2] WES 2808 for brittle fracture assessment of steel components under seismic conditions Part III: Change in CTOD fracture toughness of structural steels by pre-strain and dynamic loading
    Igi, Satoshi
    Shimada, Yusuke
    Kinefuchi, Masao
    Minami, Fumiyoshi
    21ST EUROPEAN CONFERENCE ON FRACTURE, (ECF21), 2016, 2 : 1601 - 1609
  • [3] THE EFFECT OF PRE-STRAIN AND TEMPERATURE ON FRACTURE-TOUGHNESS OF PEARLITE
    JUHAS, MC
    BERNSTEIN, IM
    STONE, DH
    JOURNAL OF METALS, 1980, 32 (08): : 74 - 74
  • [4] A model of pre-strain effects on fracture toughness
    Cosham, A
    JOURNAL OF OFFSHORE MECHANICS AND ARCTIC ENGINEERING-TRANSACTIONS OF THE ASME, 2001, 123 (04): : 182 - 190
  • [5] Effect of strain rate and plastic pre-strain on the ductility of structural steels
    Qiu, H
    Enoki, M
    Mori, H
    Takeda, N
    Kishi, T
    ISIJ INTERNATIONAL, 1999, 39 (09) : 955 - 960
  • [6] Influence of pre-strain on fracture toughness and stable crack growth in low carbon steels
    Miyata, T
    Tagawa, T
    Aihara, S
    FATIGUE AND FRACTURE MECHANICS: 28TH VOL, 1997, 1321 : 167 - 176
  • [7] Toughness increasing or decreasing effect of hard rock fracture with pre-static loading under dynamic disturbance
    Gong, Fengqiang
    Lu, Daohui
    Li, Xibing
    Rao, Qiuhua
    Fu, Zhentao
    Gong, Fengqiang, 1905, Academia Sinica (33): : 1905 - 1915
  • [8] Quantification of pre-strain effect on ductile fracture and application to irradiation embrittlement problems
    Seo, Ki-Wan
    Kim, Yun-Jae
    Kim, Ki-Seok
    ENGINEERING FRACTURE MECHANICS, 2024, 300
  • [9] Ductile fracture toughness under biaxial loading
    Arndt, S
    Atkins, AG
    ECF 12: FRACTURE FROM DEFECTS, VOLS. I-III, 1998, : 679 - 684
  • [10] WES 2808 for Brittle Fracture Assessment of Steel Components Under Seismic Conditions Part II: Change in Mechanical Properties of Structural Steels by Pre-strain and Dynamic Loading
    Shimada, Y.
    Shimanuki, H.
    Igi, S.
    Minami, F.
    21ST EUROPEAN CONFERENCE ON FRACTURE, (ECF21), 2016, 2 : 1593 - 1600