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首页> 外文期刊>International journal of hydrogen energy >Evaluation of the role of Mo2C in hydrogen induced ductility loss in Q&T Fe-C-Mo alloys
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Evaluation of the role of Mo2C in hydrogen induced ductility loss in Q&T Fe-C-Mo alloys

机译:Mo2C在Q&T Fe-C-Mo合金中氢诱导的延展性损失中的作用评估

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The hydrogen induced ductility loss of three Fe-C-Mo alloys is evaluated in this work and correlated with the hydrogen interaction of the Mo2C precipitates. Two thermal treatments are applied to compare two main conditions; i.e. an as-quenched and a quenched and tempered state in which Mo2C particles have precipitated. The susceptibility to hydrogen embrittlement is determined by performing tensile tests on both uncharged and hydrogen charged tensile specimen. Tempering appears to reduce the resistance against hydrogen embrittlement. Hot/melt extraction and thermal desorption spectroscopy are subsequently performed to determine the role of the Mo2C precipitates. Tempered induced Mo2C particles trap a considerable amount of hydrogen and a correlation between the hydrogen embrittlement susceptibility and the hydrogen mobility is confirmed. A slightly modified thermal treatment and charging procedure allows evaluating these interpretations. Moreover, the crucial role of hydrogen diffusion is tested by lowering the tensile test speed on hydrogen pre-charged and non-pre-charged specimens. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项工作中评估了三种Fe-C-Mo合金的氢诱导延展性损失,并将其与Mo2C沉淀物的氢相互作用相关。应用两种热处理来比较两个主要条件。即,Mo 2 C颗粒已经沉淀的淬火状态和淬火回火状态。氢脆的敏感性是通过在不带电和带氢的拉伸试样上进行拉伸试验来确定的。回火似乎降低了抗氢脆性。随后进行热/熔提取和热脱附光谱法以确定Mo2C沉淀物的作用。回火后的Mo2C颗粒会捕集大量的氢,并且证实了氢脆敏感性和氢迁移率之间的相关性。稍微修改的热处理和充电程序可以评估这些解释。此外,通过降低预充氢和未预充氢样品的拉伸测试速度,可以测试氢扩散的关键作用。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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