Fully Plastic Failure Stresses and Allowable Crack Sizes for Circumferentially Surface-Cracked Pipes Subjected to Tensile Loading

被引:5
作者
Hasegawa, Kunio [1 ]
Dvorak, David [1 ]
Mares, Vratislav [1 ]
Strnadel, Bohumir [1 ]
Li, Yinsheng [2 ]
机构
[1] VSB Tech Univ Ostrava, Ctr Adv Innovat Technol, 17 Listopadu 2172-15, Ostrava 70800, Czech Republic
[2] Japan Atom Energy Agcy, Tokai 3191195, Japan
来源
JOURNAL OF PRESSURE VESSEL TECHNOLOGY-TRANSACTIONS OF THE ASME | 2022年 / 144卷 / 01期
关键词
fully plastic failure stress; allowable crack; circumferential crack; tensile stress; pipe; FRACTURE; BEHAVIOR;
D O I
10.1115/1.4050321
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Fully plastic failure stresses for circumferentially surface-cracked pipes subjected to tensile loading can be estimated by means of limit load criteria based on the net-section stress approach. Limit load criteria of the first type (labeled LLC-1) were derived from the balance of uniaxial forces. Limit load criteria of the second type are given in Section XI of the ASME (American Society of Mechanical Engineering) Code, and were derived from the balance of bending moment and axial force. These are labeled LLC-2. Fully plastic failure stresses estimated by using LLC-1 and LLC-2 were compared. The stresses estimated by LLC-1 are always larger than those estimated by LLC-2. From the literature survey of experimental data, failure stresses obtained by both types of LLC were compared with the experimental data. It can be stated that failure stresses calculated by LLC-1 are better than those calculated by LLC-2 for shallow cracks. On the contrary, for deep cracks, LLC-2 predictions of failure stresses are fairly close to the experimental data. Furthermore, allowable circumferential crack sizes obtained by LLC-1 were compared with the sizes given in Section XI of the ASME Code. The allowable crack sizes obtained by LLC-1 are larger than those obtained by LLC-2. It can be stated that the allowable crack size for tensile stress depends on the condition of constraint of the pipe, and the allowable cracks given in Section XI of the ASME Code are conservative.
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页数:6
相关论文
共 24 条
[1]  
ASME, 2019, RUL INS INSP NUCL PO
[2]  
Cofie N. G., 1988, ASME PVP, V95, P65
[3]  
Deardorff A. F., 2006, PVP2006ICPVT1193454
[4]  
Hasegawa K, 1983, ASME PVP 95, P65
[5]   Plastic Collapse Moment for Weld Overlay Pipe With Multiple Circumferential Flaws [J].
Hasegawa, Kunio ;
Li, Yinsheng ;
Shimomoto, Masayoshi .
JOURNAL OF PRESSURE VESSEL TECHNOLOGY-TRANSACTIONS OF THE ASME, 2013, 135 (05)
[6]   PIPE FRACTURE SAFETY ANALYSIS USING LIMIT LOAD AND J-INTEGRAL TECHNIQUES [J].
HAYS, RA ;
GUDAS, JP ;
VASSILAROS, MG .
NUCLEAR ENGINEERING AND DESIGN, 1986, 96 (2-3) :225-243
[7]  
Iwamatsu F., 2009, PVP200977924 ASME
[8]  
Japan Nuclear Safety Commission, 1992, CONS DES N BALL FRAG
[9]  
JSME, 2007, RUL FITN FOR SERV NU
[10]  
Kanninen MF, 1976, 1976NP192 EPRI