金属化过程中氧化铁膨胀的机理

IF 0.5 Q3 SOCIAL SCIENCES, INTERDISCIPLINARY
L. Azocar, Oscar Dam
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引用次数: 0

摘要

给出了用固态还原法制备的金属铁同素相点缺陷中溶解态氮原子解吸引起的应力结果。在铁素体和奥氏体相中,计算了溶解氮和真空的数量,提出了氮吸附的表面膨胀机理,通过吸附-解吸来确定其原子和分子的数量,调整到相内真空的空间,并得到了封闭气体产生的压力和作用力。铁素体和奥氏体晶体网络真空解吸三分子氮的计算值分别为621.2和727.6 Kgf/mm2,与已知的抗拉强度(断裂强度)28和105 Kgf/mm2相比,分别提高了22倍和7倍,有利于膨胀和突变开裂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanism of iron oxide swelling in metallization processes
The results of stresses caused by the desorption of dissolved nitrogen atoms in point defects of allotropic phases of metallic iron obtained by solid-state reduction processes are shown. In the ferrite and austenite phases, the amounts of dissolved nitrogen and vacuums were calculated and the expansion of the surface mechanism of nitrogen adsorption was proposed, with the absorption-desorption to determine the number of its atoms and molecules adjusted to the space of the vacuums located inside the phases and to obtain the pressures and efforts generated by the confined gas. The calculated values of the efforts for the desorption of three molecules of nitrogen in a vacuum of the ferrite and austenite crystalline network were 621.2 and 727.6 Kgf/mm2, and when compared with the known values of their tensile strength (breakage) of 28 and 105 Kgf/mm2, they were 22 and 7 times higher respectively, favoring their swelling and catastrophic cracking.
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来源期刊
Athenea Digital
Athenea Digital SOCIAL SCIENCES, INTERDISCIPLINARY-
CiteScore
0.80
自引率
0.00%
发文量
41
审稿时长
30 weeks
期刊介绍: Ahora que el fenómeno de la disciplinarización institucional está cada vez más marcado, Athenea Digital promueve la reflexión interdisciplinar en la tradición de las ciencias humanas y sociales. La revista aborda los fenómenos sociales contemporáneos en sus múltiples dimensiones (política, económica, cultural, comunicacional...) y valora la reflexión rigurosa sobre la articulación entre los diferentes dominios de la actividad humana. El principal objetivo de la revista es potenciar el diálogo y la innovación en los estudios sociales y culturales.
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