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Effect of hydrogen on the mechanical properties of alloy 945X (UNS N09945) and influence of microstructural features

机译:氢对945X合金(UNs N09945)力学性能的影响及显微组织特征的影响

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摘要

This study investigated the hydrogen embrittlement sensitivity of the precipitation hardened (PH) alloy 945X in three different metallurgical states. The three variants examined (obtained by different heat treatments) were the standard oil and gas industry condition, and two alternative microstructures with variations in fraction and morphology of γ′, γ″ and δ phases. For each metallurgical state, mechanical tests were carried out on both uncharged and hydrogen pre-charged specimens in order to evaluate the deleterious influence of hydrogen on mechanical properties. Material characterisation and post-test fractography was performed to understand the link between microstructural features, fracture behaviour, and susceptibility to hydrogen embrittlement. Fractographic analysis showed that, in the presence of hydrogen, intergranular fracture occurred for all the heat treatments, regardless the presence of δ-phase at grain boundaries. There was no simple correlation between the volume fraction of δ-phase and susceptibility to hydrogen assisted embrittlement. Rather, it was demonstrated that the morphology and distribution of δ-phase along grain boundaries plays a key role and the other precipitate phases also have an influence through their influence on the ease of strain localization.
机译:本研究研究了三种不同冶金状态下的沉淀硬化(PH)合金945X的氢脆敏感性。检验的三个变体(通过不同的热处理获得)是标准的石油和天然气工业条件,以及两个替代的微观结构,其γ',γ''和δ相的分数和形态均发生变化。对于每种冶金状态,都对不带电和带氢的样品进行了机械测试,以评估氢对机械性能的有害影响。进行了材料表征和测试后的fractography,以了解微观结构特征,断裂行为和氢脆敏感性之间的联系。分形分析表明,在氢存在下,所有热处理均发生晶间断裂,而与晶界处的δ相无关。 δ相的体积分数与氢辅助脆化的敏感性之间没有简单的相关性。相反,已证明δ相沿晶界的形态和分布起关键作用,而其他析出相也通过其对应变局部化的影响而产生影响。

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