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首页> 外文期刊>Journal of Materials Science >Hydrogen embrittlement susceptibility of microstructures formed in multipass weld metal for HT780 class steel
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Hydrogen embrittlement susceptibility of microstructures formed in multipass weld metal for HT780 class steel

机译:HT780级钢在多道次焊缝金属中形成的氢脆敏感性

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The effect of reheating by following passes on the hydrogen embrittlement of MAG weld metal for HT780 class steels has been investigated by using specimens subjected to simulated thermal cycles. The hydrogen-charged specimens exhibited transgranular quasi-cleavage fracture and intergranular fracture along prior austenite grain boundaries on slow strain rate tensile (SSRT) tests, depending on the reheated temperature and charged hydrogen content. The reduction in elongation of hydrogen-charged specimens became more significant when intergranular fracture occurred. When specimens in as-welded state and precedently reheated at coarse grained HAZ temperature of 1,623 K were reheated at a tempering temperature of 873 K, significant amount of intergranular fracture occurred at charged hydrogen contents above 3 ppm in spite of the decrease in hardness. The specimen reheated at 1,173 K showed no intergranular fracture even after receiving the reheating at 873 K at a hydrogen content of 6 ppm, suggesting the strong influence of the prior austenite grain size on the hydrogen-induced intergranular embrittlement. The measurement of hydrogen content desorbed from the hydrogen-charged specimen at room temperature suggested that the intergranular fracture caused by the reheating at 873 K was associated with an increase in susceptibility to hydrogen embrittlement of the prior austenite grain boundary itself rather than a decrease in the amounts of trapping sites such as dislocation and retained austenite.
机译:通过使用经过模拟热循环的试样,已经研究了后续道次再加热对HT780级钢MAG焊缝金属的氢脆性的影响。在慢应变速率拉伸(SSRT)试验中,取决于再加热温度和带氢含量,带氢试样沿先前的奥氏体晶界显示出沿晶准断裂和沿晶间断裂。当晶间断裂发生时,带氢样品的伸长率降低变得更加明显。当将处于焊接状态并先于1,623 K的粗粒热影响区温度进行预热的样品在873 K的回火温度下再加热时,尽管硬度降低,但带电氢含量超过3 ppm时仍会发生大量的晶间断裂。即使在氢含量为6 ppm的情况下在873 K下再加热后,在1,173 K下再加热的试样也没有出现晶间断裂,这表明先前的奥氏体晶粒尺寸对氢诱导的晶间脆化有很大影响。在室温下从充氢样品中解吸的氢含量的测量表明,在873 K处再加热引起的晶间断裂与先前奥氏体晶界本身的氢脆敏感性增加有关,而不与合金奥氏体晶界本身的减少有关。大量的俘获部位,例如位错和残留奥氏体。

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