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首页> 外文期刊>Journal of Materials Processing Technology >The influence of work roll roughness on the surfaceear-surface microstructure evolution of hot rolled aluminum-magnesium alloys
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The influence of work roll roughness on the surfaceear-surface microstructure evolution of hot rolled aluminum-magnesium alloys

机译:工作辊粗糙度对热轧铝镁合金表面/近表面微观组织演变的影响

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摘要

The effect of work roll roughness on the surfaceear-surface evolution of aluminum alloys during hot rolling was examined with the use of a rolling tribo-simulator. Work rolls made of steel alloy AISI 52100 with two different surface roughness (R-a) values, 0.1 mu m and 1.1 mu m, were used to hot roll Al-Mg alloy samples under similar laboratory conditions for one and ten passes. Surface features on both rolled samples included cracks, grooves, and rolling ridges, but shingles were only observed on the samples rolled with the rougher work roll. Near-surface damage was observed to increase with work roll roughness. Cross-sectional examinations revealed that transverse micro-cracks on the sample rolled with the smoother work roll extended to depths of 2.8 mu m, while cracks were 3.2 mu m in depth for the rougher work roll. In addition, the oxide-rich near-surface layers formed on the samples were thicker and more discontinuous for the rougher work roll. The oxide distribution in the transverse direction could be correlated to the size of the rolling ridges, which were larger for the samples rolled with the rougher work roll. A critical work roll surface roughness was proposed to influence the initiation of shingles on the aluminum alloy surfaces. The extent of the near-surface damage and the surface features formed on the rolled aluminum alloys were shown to be dependent on, but not limited to, the work roll surface topography. (C) 2016 Elsevier B.V. All rights reserved.
机译:使用轧制摩擦模拟器检查了工作辊粗糙度对热轧过程中铝合金表面/近表面演变的影响。使用具有两种不同表面粗糙度(R-a)值(0.1μm和1.1μm)的AISI 52100钢合金工作辊在相似的实验室条件下热轧Al-Mg合金样品一到十次。两种轧制样品的表面特征均包括裂纹,沟槽和轧制脊,但仅在使用较粗糙工作辊轧制的样品上观察到带状疱。观察到近表面损伤随工作辊粗糙度的增加而增加。横截面检查显示,用较光滑的工作辊轧制的样品上的横向微裂纹扩展到2.8微米的深度,而较粗糙的工作辊的裂纹深度为3.2微米。另外,在样品上形成的富含氧化物的近表面层对于较粗糙的工作辊而言更厚并且更不连续。横向上的氧化物分布可以与轧制脊的尺寸相关,该轧制脊的尺寸对于用较粗糙的工作辊轧制的样品而言更大。提出了一个重要的工作辊表面粗糙度,以影响铝合金表面带状疱的产生。示出了在轧制铝合金上形成的近表面损伤的程度和表面特征取决于但不限于工作辊表面形貌。 (C)2016 Elsevier B.V.保留所有权利。

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