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Modelling of ductile crack growth in welded joints using micromechanical failure criterion

机译:微机械故障标准焊接关节延性裂纹增长的建模

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In this paper, ductile crack growth in strength mismatched welded joints is considered. High-strength low-alloyed (HSLA) steel in quenched and tempered condition is used as the base metal. Two different fillers are selected to obtain over- and undermatched weld metal. The flux-cored arc-welding process in shielding gas is applied. Constraint effect is tested by varying widths of the welded joints - three different weld metal widths are used: 6, 12 and 18 mm. Single-edged notched bend specimens (SENB) are experimentally and numerically analysed. Fatigue pre-crack is located in weld metal for all tested specimens (a_0/W = 0.32). Ductile crack growth initiation and stable crack growth are modelled using the coupled micromechanical model proposed by Gurson, Tvergaard and Needleman (GTN model). A comparison of force F vs. crack tip opening displacement (CTOD) curves during crack growth is given as determined both experimentally and numerically using the GTN model for the later. Failure criterion used in numerical analysis is discussed in detail.
机译:本文认为,考虑强度不匹配焊接接头的延性裂纹生长。淬火和回火条件下的高强度低合金(HSLA)钢用作基础金属。选择两种不同的填料以获得过度和支撑的焊接金属。施加屏蔽气体的磁通芯弧焊工艺。通过焊接接头的变化宽度测试约束效果 - 使用三种不同的焊接金属宽度:6,12和18mm。单边缘切口弯曲标本(SENB)在实验上和数值分析。疲劳前裂缝位于所有测试样品的焊缝金属中(A_0 / W = 0.32)。使用Gurson,Tvergaard和ConseLeman(GTN模型)提出的耦合的微机械模型进行模拟延性裂纹生长起始和稳定裂纹生长。在裂缝生长期间的力F与裂纹尖端打开位移(CTOD)曲线的比较是在实验和数值上使用GTN模型来确定的。详细讨论了数值分析中使用的故障标准。

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