Adhesion of thermal oxide scale formed on silicon-containing hot-rolled steel oxidised in oxygen

IF 0.7 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of metals, materials and minerals Pub Date : 2023-06-27 DOI:10.55713/jmmm.v33i2.1575
Wannapha Issaard, T. Nilsonthi
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Abstract

Defects can be caused by the thermal oxide scale that forms on the surface of steel during the hot rolling process. The oxidation and adhesion of scale on silicon-containing hot-rolled steel were investigated in a flowing 20% O2-N2 gas mixture at 900°C. Scale spallation was observed using a tensile testing machine equipped with a CCD camera. The thickness of the scale was 3.45 μm for the higher silicon steel and 4.86 μm for the lower silicon steel. The oxide scale consists of hematite, magnetite, wustite, and iron. The strain that caused the first spallation was used to calculate the mechanical adhesion energy, which indicated the behaviour of the scale adhesion on a steel substrate. The strain initiation of the first spallation of scale on higher silicon steel was 5.57% which was higher than 4.57% for lower silicon hot-rolled steel. The calculated adhesion energy on the studied steel was shown to be in the range of 281 J.m-2 to 334 J.m-2. It can be noted that the higher amounts of silicon content in hot-rolled steel increased steel-scale interface adherence. This was due to the precipitated silicon oxide near steel-scale interface might be exhibited as a reinforcing phase.
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含硅热轧钢氧氧化后形成的热氧化垢的粘附性
在热轧过程中,钢表面形成的热氧化皮会引起缺陷。研究了含硅热轧钢在900℃流动的20% O2-N2混合气中氧化和结垢的粘附情况。用配有CCD相机的拉力试验机观察鳞片剥落。高硅钢的水垢厚度为3.45 μm,低硅钢的水垢厚度为4.86 μm。氧化垢由赤铁矿、磁铁矿、浮士铁矿和铁组成。利用引起第一次剥落的应变来计算机械黏附能,该黏附能反映了水垢在钢基体上的黏附行为。高硅热轧钢第一次剥落的应变起裂率为5.57%,高于低硅热轧钢的4.57%。计算得到的粘着能在281 j - m-2 ~ 334 j - m-2之间。可以注意到,热轧钢中硅含量的增加增加了钢尺度界面的粘附性。这是由于在钢尺度界面附近析出的氧化硅可能表现为增强相。
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来源期刊
Journal of metals, materials and minerals
Journal of metals, materials and minerals MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
1.40
自引率
11.10%
发文量
0
期刊介绍: Journal of Metals, Materials and Minerals (JMMM) is a double-blind peer-reviewed international journal published 4 issues per year (starting from 2019), in March, June, September, and December, aims at disseminating advanced knowledge in the fields to academia, professionals and industrialists. JMMM publishes original research articles as well as review articles related to research and development in science, technology and engineering of metals, materials and minerals, including composite & hybrid materials, concrete and cement-based systems, ceramics, glass, refractory, semiconductors, polymeric & polymer-based materials, conventional & technical textiles, nanomaterials, thin films, biomaterials, and functional materials.
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