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Observation of Trapping Sites of Hydrogen and Deuterium in High-Strength Steels by Usinp, Secondary Ion Mass Spectrometry

机译:用Usinp二次离子质谱法观察高强度钢中氢和氘的俘获位点

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Hydrogen and deuterium trapping sites in high-strength steels have been observed by secondary ion mass spectro-metry (SIMS). High-strength steels with 1400 MPa tensile strength are stressed and dipped in D_2O and 20 percent NH_4SCN solution at 323 K to occlude hydrogen and deuterium. Depth profiles by SIMS show the presence of deuterium, which indicates hydrogen trapping sites occluded during the delayed fracture test. Secondary ion image analysis by SIMS has made it possible to observe hydrogen and deuterium trapping sites in high-strength steels. Hydrogen tends to accumulate at grain boundaries, in segregation bands, and on inclusions. Line scans by SIMS have shown that the accumulation ratios of hydrogen for the grain boundaries, segregation bands of P and inclusions are 7.8, 5,0 and 11.0 times higher than that in the matrix, respectively. Hydrogen trapping sites at the grain boundaries can be observed by measuring within 24 h after the delayed fracture test.
机译:通过二次离子质谱(SIMS)可以观察到高强度钢中的氢和氘的俘获位点。拉伸强度为1400 MPa的高强度钢受到应力,并浸入323 K的D_2O和20%的NH_4SCN溶液中,以吸收氢和氘。 SIMS的深度剖面显示出氘的存在,这表明在延迟断裂试验中氢捕获位点被堵塞。 SIMS进行的二次离子图像分析使观察高强度钢中氢和氘的俘获位点成为可能。氢倾向于聚集在晶界,偏析带和夹杂物上。 SIMS的线扫描显示,氢在晶界,P的偏析带和夹杂物上的积累率分别比基体中高7.8倍,5.0倍和11.0倍。延迟断裂试验后24小时内可通过测量观察晶界处的氢俘获位点。

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