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Ductility-dip cracking susceptibility in dissimilar weld metals of alloy 690 filler metal and low alloy steel

机译:合金690填料和低合金钢不同焊接金属的延展性浸渍易感性

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摘要

The effect of dilution ratio and chemical composition on the ductility-dip cracking (DDC) susceptibility of dissimilar overlay welds of Alloy 690 filler wire and low alloy steel (LAS) was investigated. We measured the hot ductility curve using a hot tensile test coupled with an in-situ measurement system. The minimum critical strain of Alloy 690 was 4.0% at 943 degrees C. The minimum strain and the temperature decreased with increasing LAS content from 3.2% (901 degrees C) to 2.4% (842 degrees C) and 2.2% (802 degrees C) at LAS contents of 25%, 50%, and 75%, respectively. The formation of tortuous grains resulting from microconstituents containing niobium improved the DDC susceptibility. With increasing dilution of LAS, the niobium content decreased, resulting in a reduction in the tortuosity ratio at the cracked grain boundaries. In addition, the grain boundaries embrittled with increased dilution ratio owing to an increased phosphorous and sulfur content. Therefore, at high LAS content, the combination of low tortuosity ratio of the grain boundaries and high phosphorous and sulfur content increases DDC susceptibility.
机译:研究了稀释比和化学成分对合金690填料和低合金钢(LAS)不同覆盖焊缝的延展性浸渍裂纹(DDC)易感性的影响。我们使用与原位测量系统耦合的热拉伸试验测量热延展性曲线。合金690的最小临界应变为943℃。最小菌株和温度随着3.2%(901℃)的LAS含量增加到2.4%(842℃)和2.2%(802℃)在LAS含量分别为25%,50%和75%。含有铌含有铌的微频率产生曲折的形成改善了DDC易感性。随着LAS的增加,铌含量下降,导致裂纹晶界处的曲折比降低。此外,由于磷和硫含量增加,晶界脆性增加了稀释比。因此,在高LAS含量下,晶界和高磷和硫含量的低曲纹比的组合增加了DDC易感性。

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