A NEW APPROACH FOR CTOD EVALUATION IN SLOW CRACK-GROWTH SITUATIONS

被引:5
作者
BHATTACHARYA, S
KUMAR, AN
机构
[1] Centre for Materials Science and Technology, Indian Institute of Technology, Delhi, New Delhi, 110 016, Hauz Khas
关键词
D O I
10.1016/0013-7944(91)90174-Y
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
In ductile materials slow crack growth often follows crack initiation, and the R-curve analysis characterizes both the crack initiation and crack growth behaviour of a material. The existing standards determine the crack tip opening displacement (CTOD) from the total clip gauge output by separating it into elastic and plastic components. The present work outlines the need for further separation of the plastic part of CMOD into the displacements due to slow crack growth and true plastic yielding. While the CTOD values for the elastic and true plastic yielding parts may be inferred according to the present methods, a new and simplified approach is proposed to infer crack growth CTOD from the corresponding displacement. The crack growth displacements may be obtained by using unloading compliance variation with crack growth. The present work is conducted on two materials, namely a steel and a 7004 grade aluminium alloy. The crack growth displacement in aluminium is found to be three times that in steel for a given crack growth. Geometrical as well as analytical comparison between the CTOD values obtained by the standard method and the proposed method is made. The comparison reveals that the existing method overestimates the CTOD value as reported by others. However, as the crack growth continues, the difference in CTOD values is found to diminish.
引用
收藏
页码:1089 / 1103
页数:15
相关论文
共 22 条
[1]   EXPLANATORY BACKGROUND NOTES TO THE CEGB PROCEDURE FOR THE DETERMINATION OF THE FRACTURE-RESISTANCE OF DUCTILE STEELS [J].
AKHURST, KN ;
GREEN, G ;
HAIGH, JR ;
NEALE, BK .
INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING, 1985, 20 (03) :181-205
[2]  
BERGER C, 1979, ASTM STP, V668, P378
[3]  
DANOBREGA AF, 1980, 6TH P NAT WELD C, P269
[4]   R-CURVE BEHAVIOR OF A STRUCTURAL-STEEL [J].
DECASTRO, PMST .
ENGINEERING FRACTURE MECHANICS, 1984, 19 (02) :341-357
[5]  
HARRISON JD, 1980, WELDING I RES REPORT, P108
[6]  
HELLMANN D, 1986, J TEST EVAL, V14, P292, DOI 10.1520/JTE10345J
[7]  
JUNIOR HMC, 1983, ENG FRACT MECH, V18, P717
[8]   ON THE CALCULATION OF COD FROM THE CLIP-GAUGE DISPLACEMENT IN CT AND BEND SPECIMENS [J].
KOLEDNIK, O .
ENGINEERING FRACTURE MECHANICS, 1988, 29 (02) :173-188
[9]   AN IMPROVED PROCEDURE FOR CALCULATING COD IN BEND AND CT-SPECIMENS [J].
KOLEDNIK, O .
ENGINEERING FRACTURE MECHANICS, 1989, 33 (05) :813-826
[10]   DETERMINATION OF J-INTEGRAL R-CURVES FOR THE PRESSURE-VESSEL MATERIAL A533-B1 USING THE POTENTIAL-DROP TECHNIQUE AND THE MULTISPECIMEN METHOD [J].
KROMPHOLZ, K ;
ULLRICH, G .
ENGINEERING FRACTURE MECHANICS, 1986, 23 (05) :803-820