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The combined effect of stress and corrosion on mild steel

机译:压力和腐蚀对温和钢的综合作用

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This paper reports confirmation of the effect of different levels of tensile stress caused by quasi-static loading on corrosion growth and the mechanical properties of corroded steel. Plastic stressed, elastic stressed and non -stressed specimens have been immersed into hydrochloride acid with acidity ranging from 0.00001 to 1 Molar. Corrosion behaviours of the test specimens are measured after 7,14 and 28 days. The mechanical properties of steel are then measured at three grinding thicknesses (0, 0.5 mm, and 1.5 mm) at different stress and corrosion combined environments to determine the effect of stress and corrosion on mechanical properties of steel and the corrosion penetration depth. Results show that the applied stress, especially plastic stress, can accelerate corro-sion and contribute to the growth of corrosion-induced delamination. The results demonstrate that there are higher degrees of degradation in mechanical properties and faster growth of corrosion penetration depth for plastic stressed steel than elastic stressed and non-stressed specimens over time. The relevant mechanisms are summarized in this paper. This paper attempts to explain of cause-effect relationships between the level of im-posed stress, the level of corrosion and the mechanical properties of corroded steel. Crown Copyright (c) 2021 Published by Elsevier Ltd. All rights reserved.
机译:本文报告了对腐蚀生长的腐蚀生长和腐蚀钢的力学性能产生了不同水平的拉伸应力的效果。塑料胁迫,弹性应力和非职工标本已浸入盐酸盐中,酸度范围为0.00001至1摩尔。在7,14和28天后测量试样的腐蚀行为。然后在不同应力和腐蚀组合环境下以三种研磨厚度(0,0.5mm,1.5mm)以三种研磨厚度(0,0.5mm,1.5mm)测量钢的机械性能,以确定应力和腐蚀对钢的机械性能的影响和腐蚀穿透深度。结果表明,施加的应力,尤其是塑性应力,可以加速腐蚀和促进腐蚀诱导分层的生长。结果表明,机械性能较高的降解程度较高,塑料应力钢的腐蚀穿透深度的速度增长比弹性应力和非应激样本随着时间的推移。相关机制总结在本文中。本文试图解释IM构成应力水平,腐蚀水平与腐蚀钢的机械性能之间的造成关系。皇冠版权(c)2021由elestvier有限公司出版。保留所有权利。

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