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Evolution of Oxide Structures of Low-Alloy Steel Surface During Short-Time Oxidation at High Temperature

机译:高温氧化期间低合金钢表面氧化物结构的演变

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During hot rolling, high-temperature oxidation has a direct effect on the thickness and structures of oxide scales of hot-rolled steel, even influences the descaling and the final surface quality of product. The GLEEBLE thermal simulator was used to investigate the short-time (30-900 s) oxidation of low-alloy steel Q345B in the temperature ranging from 850 to 1050°C. The structures, thickness and proportion of each layer were characterized by SEM and EDS. The research showed that the initial surface of the scale was in mesh pattern. The scale blistered with increasing time and the grown crystals surrounded by mesh-like gullies could be observed. The scale thickness increased with the elevating temperature, ranged from 5.19 to 207.59 μm depending on the experiments process. It was less than 10 μm within 60 s at 850°C, increased slowly with the oxidation time below 950°C, but increased sharply above 950°C before 120 s. The oxide scales had triple layers after oxidized at 850°C, and at 950°C for 30 s. The scale was a double-layer structure at high temperature, consisted of FeO and Fe_3O_4. With increasing temperature and time of oxidation, the proportion of loose layer (FeO) increased, but compact layer (Fe_3O_4) decreased from 70.13 to 7.30% in the two layers. The bottom oxide layer with main component of Fe_2SiO_4 was found between the scale and substrate. It can improve the scale adhesion and is bad for scale separation from substrate.
机译:在热轧过程中,高温氧化对热轧钢的氧化物鳞片的厚度和结构具有直接影响,甚至影响了产物的除垢和最终表面质量。 Gleeble热模拟器用于研究低合金钢Q345B的短时间(30-900秒)在850至1050℃的温度下进行氧化。每个层的结构,厚度和比例的特征在于SEM和EDS。研究表明,刻度的初始表面是网格图案。可以观察到随着时间的增加和由网状沟渠包围的生长晶体的鳞片。根据实验过程,尺度厚度随着升高的温度而增加,范围为5.19至207.59μm。在850℃的60秒内小于10μm,在950°C低于950℃的氧化时间缓慢增加,但在120秒之前急于950℃。氧化物鳞片在850℃下氧化后的三层,在950℃下氧化30秒。尺度在高温下是双层结构,由Feo和Fe_3O_4组成。随着氧化温度和时间的增加,松散层(FeO)的比例增加,但紧凑层(Fe_3O_4)在两层中的70.13降至7.30%。在刻度和衬底之间发现具有Fe_2SiO_4的主要成分的底部氧化物层。它可以提高尺度粘附,并且对于与基材的比例分离也很糟糕。

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