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首页> 外文期刊>International Journal of Fatigue >Effect of hydrogen on the fatigue crack growth rate of quenched and tempered CrMo and CrMoV steels
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Effect of hydrogen on the fatigue crack growth rate of quenched and tempered CrMo and CrMoV steels

机译:氢对CrMo和CrMoV调质钢疲劳裂纹扩展速率的影响

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In order to select the most appropriate steel to deal with pressurized hydrogen over long periods of time, the fatigue crack propagation rate of quenched and tempered CrMo and CrMoV steel grades was assessed by means of tests performed on thermally pre-charged specimens in a hydrogen reactor at 195 bar and 450 degrees C during 21 h. Cylindrical samples were used to measure the hydrogen content and their desorption kinetics at room temperature and compact tensile specimens to determine the fatigue crack growth rate. Under the aforementioned pre-charging conditions, significant amounts of hydrogen were introduced, being much larger in the CrMoV steel grades, which also have much lower apparent diffusion coefficients, as precipitation of fine vanadium carbides during tempering provides strong hydrogen traps. Moreover, the fatigue crack growth rate increased significantly due to the presence of internal hydrogen in the CrMo grades for test frequencies lower than 10 Hz in comparison with tests performed in air. Furthermore, the presence of vanadium carbides in the CrMoV steel significantly improved fatigue crack growth performance, the effective hydrogen diffusion distance per cycle and the hydrogen concentration in the process zone ahead of the advancing crack being considerably reduced.
机译:为了选择最适合长时间处理加压氢气的钢,通过在氢气反应器中对预热试件进行的测试,评估了调质CrMo和CrMoV钢的疲劳裂纹扩展速率在21小时内于195巴和450摄氏度的温度下。圆柱形样品用于测量氢含量及其在室温下的解吸动力学,而紧凑的拉伸样品用于确定疲劳裂纹的增长率。在上述预充电条件下,引入了大量的氢气,这在CrMoV钢种中要大得多,而且表观扩散系数也要低得多,因为回火过程中细小的碳化钒的析出提供了强大的氢陷阱。此外,与在空气中进行的测试相比,由于在低于10 Hz的测试频率下CrMo级中存在内部氢,因此疲劳裂纹的生长速率显着提高。此外,CrMoV钢中碳化钒的存在显着改善了疲劳裂纹扩展性能,大大降低了每个循环的有效氢扩散距离和行进前裂纹在加工区中的氢浓度。

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