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Observation of small fatigue crack growth behavior in the extremely low growth rate region of low carbon steel in a hydrogen gas environment

机译:氢气环境下低碳钢极低生长率区的小疲劳裂纹扩展行为的观察

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摘要

To investigate the effects of hydrogen on crack propagation in the extremely low growth rate range, fully reversed bending fatigue tests were performed on low carbon steel (JIS S10C) in hydrogen and in nitrogen gas environments at a low pressure. A crack showed almost the same non-propagation behavior in nitrogen as that in air. However, a crack in hydrogen continued to propagate even near 10~7 cycles in the same testing strain range as that in nitrogen. In hydrogen gas, a crack grew intermittently by coalescing with a new micro-crack generated by slip behavior. This implies that hydrogen could inhibit the action of any factor affecting non-propagation.
机译:为了研究氢在极低的增长率范围内对裂纹扩展的影响,在氢气和氮气环境下,在低压下对低碳钢(JIS S10C)进行了完全反向弯曲疲劳试验。裂纹在氮气中的扩散性几乎与空气中相同。然而,在与氮相同的测试应变范围内,氢的裂纹甚至在接近10〜7个循环时仍继续传播。在氢气中,通过与滑动行为产生的新的微裂纹聚结,裂纹间歇性地增长。这意味着氢可以抑制任何影响不扩散的因素的作用。

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