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Observation of hydrogen effects on fatigue crack growth behaviour in an 18Cr-8Ni austenitic stainless steel

机译:氢对18Cr-8Ni奥氏体不锈钢疲劳裂纹扩展行为的影响

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The hydrogen effect on crack growth behaviour in a type 304 austenitic stainless steel was investigated and the following results were obtained. The crack growth rate in hydrogen gas is accelerated compared with that in air. In order to clarify the mechanism of the acceleration, the growth behaviours of a crack propagating in a grain and propagating along the boundary to be a fracture facet were investigated. Slip behaviour, opening displacement and fractography showed that the slip-off mechanism in fatigue crack growth is valid even in hydrogen gas. Hydrogen mainly affects slip behaviour such that slip bands concentrate at a crack tip and result in acceleration of the growth rate. The facets are not significantly responsible for the acceleration. The ratio of facets to the entire area is low, and a crack nearly compensates for the temporary acceleration by the facets with subsequent deceleration.
机译:研究了氢对304型奥氏体不锈钢中裂纹扩展行为的影响,并获得了以下结果。与空气相比,氢气中的裂纹扩展速度加快。为了阐明加速的机理,研究了裂纹在晶粒中传播并沿边界扩展为断裂面的扩展行为。滑移行为,张开位移和断裂形貌表明,即使在氢气中,疲劳裂纹扩展中的滑移机制也是有效的。氢主要影响滑移行为,使得滑移带集中在裂纹尖端并导致生长速率的加速。这些方面对加速没有明显的影响。刻面与整个区域的比率低,并且裂纹几乎补偿了刻面的暂时加速以及随后的减速。

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