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首页> 外文期刊>International Journal of Fracture >Small fatigue crack growth characteristics and fracture surface morphology of low carbon steel in hydrogen gas
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Small fatigue crack growth characteristics and fracture surface morphology of low carbon steel in hydrogen gas

机译:低碳钢在氢气中的小疲劳裂纹扩展特征和断口形貌

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摘要

Owing to energy conservation and environmental concerns, hydrogen has been suggested as a next-generation energy source. However, hydrogen known to seep into a metal, degrade its strength, and accelerate fatigue crack growth rates. We have investigated the effects of hydrogen gas on the small fatigue crack growth characteristics of low carbon steel JIS S10C by conducting bending fatigue tests on a specimen with a small blind hole and placed in a low-pressure hydrogen environment. The fatigue crack growth rate in hydrogen was higher than that in nitrogen. The fracture surface of the specimen in hydrogen showed intergranular facets in the low- growth-rate range and a quasi-cleavage fracture surface with brittle striations in the high-growth-rate range. The specimen only showed a ductile fracture surface for nitrogen. The small-fatigue-crack growth rate for nitrogen is given by dl/dN α Δε~n_pl, where l, N, and Δε_p represent the crack length, number of repetitions, and plastic strain range, respectively. This equation was also satisfied for hydrogen, but only over a short strain range from Δε_t — 0.25 to 0.37 % in which the fracture surface exhibited intergranular facets and a ductile morphology, but no quasi-cleavage fracture. The exponent n of the equation was 1.22 in nitrogen and 0.66 in hydrogen environment. The small-fatigue-crack growth law can be used for safe material designs in hydrogen environments.
机译:由于节约能源和环境问题,氢被建议作为下一代能源。但是,已知氢会渗入金属中,降低其强度,并加速疲劳裂纹的生长速度。我们通过对带有小盲孔并置于低压氢环境中的试样进行弯曲疲劳试验,研究了氢气对低碳钢JIS S10C的小疲劳裂纹扩展特性的影响。氢的疲劳裂纹扩展速率高于氮的疲劳裂纹扩展速率。氢气中样品的断裂面在低生长速率范围内显示出晶间小面,而在高生长速率范围内显示具有脆性条纹的准裂解断裂面。样品仅显示出韧性的断裂面,含氮。氮的小疲劳裂纹扩展速率由dl / dNαΔε〜n_pl给出,其中l,N和Δε_p分别代表裂纹长度,重复次数和塑性应变范围。对于氢也满足该方程,但是仅在Δε_t_0.25至0.37%的短应变范围内,其中断裂表面表现出晶间小面和韧性形态,但是没有准裂解断裂。该方程的指数n在氮中为1.22,在氢环境中为0.66。小疲劳裂纹生长定律可用于氢环境中的安全材料设计。

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