Effect of Structure on Creep Strength of a Low-Alloy Cr-Mo-V Steel

J. Barford, G. Willoughby
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引用次数: 14

Abstract

Abstract The published data on the creep and rupture strength of low-alloy ferritic steels are critically examined and it is concluded that there is no evidence that maximum strength accrues from a fully upper bainite structure. The creep strength, over a range of stress, of samples of one cast of low-alloy Cr-Mo-V steel in various structural conditions has been examined. It is shown that there is no gain in strength (primary creep strain or secondary-creep rate) to be obtained by increasing the bainite content above ∼20% at 11 hbar and 575°C (848 K). At higher stresses, creep strength improves up to ∼60% bainite. The stress-dependence of creep is structure-sensitive and its variation indicates that at itresses <∼11 hbar material containing ∼20–30 % bainite will have a lower secondary-creep rate than fully bainitic structures.
组织对低合金Cr-Mo-V钢蠕变强度的影响
摘要:对已发表的低合金铁素体钢的蠕变和断裂强度数据进行了严格的研究,得出的结论是,没有证据表明完全的上贝氏体组织具有最大的强度。本文研究了一种低合金Cr-Mo-V钢铸件在不同结构条件下的蠕变强度。结果表明,在11 hbar和575°C (848 K)下,将贝氏体含量增加到20%以上,强度(一次蠕变应变或二次蠕变速率)并没有增加。在更高的应力下,贝氏体的蠕变强度提高到60%。蠕变的应力依赖性是结构敏感的,其变化表明,在应力< ~ 11 hbar时,含有~ 20 - 30%贝氏体的材料的二次蠕变速率低于完全贝氏体结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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