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首页> 外文期刊>Journal of Materials Processing Technology >The evolution of surface morphologies and microstructures during cold rolling after hydrogen reduction
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The evolution of surface morphologies and microstructures during cold rolling after hydrogen reduction

机译:氢还原后冷轧过程中表面形貌和组织的演变

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摘要

The removal of oxide scale on a cold-rolled strip surface can completely eliminate environmental pollution by hydrogen reduction descaling instead of the traditional pickling descaling. However, the cold-rolled strip surface morphologies after hydrogen reduction are different from those that result from pickling. To investigate the effects of cold rolling on the surface morphologies, microstructures and properties of cold-rolled strip steel, a cold rolling experiment was performed using a 4-high mill after hydrogen reduction and after pickling. The surface morphologies and cross-section microstructures of the samples were observed by SEM, and the surface roughnesses were measured by a TR200 profilometer before and after cold rolling deformation. The evolution of the surface morphologies and cross-section microstructures of the samples after cold rolling were analyzed. The results show that the oxide scale formed on the surface turns into a metallic iron layer, and a large number of micro cracks, pores and bubbles appear on the surface of the sample after hydrogen reduction. The pores, bubbles and some smaller cracks were roll-flattened, and the larger cracks were turned into micro-traces remaining on the sample surface after five passes of cold rolling. Compared with the rolled sample after pickling, more micro-traces remained on the surface of the rolled sample after hydrogen reduction. The surface roughnesses of the reduced samples are slightly greater than that of the pickled samples. A metallic iron layer and a decarburization layer appear on the sample surface after hydrogen reduction. After the fifth pass, both layers became thinner, and the metallic iron layer is characterized by non-uniform thickness and discontinuity. The work hardening degree and mechanical properties of the reduced sample are similar to that of the pickled sample after cold rolling. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过减少氢的除氧化皮代替传统的酸洗除氧化皮,可以去除冷轧带钢表面的氧化皮,从而完全消除环境污染。但是,氢还原后的冷轧带钢表面形貌不同于酸洗所产生的形貌。为了研究冷轧对冷轧带钢的表面形貌,组织和性能的影响,在氢还原和酸洗后使用四辊轧机进行了冷轧实验。通过SEM观察样品的表面形态和截面显微结构,并在冷轧变形之前和之后通过TR200轮廓仪测量表面粗糙度。分析了冷轧后样品的表面形貌和横截面微观结构的演变。结果表明,氢还原后,样品表面形成的氧化皮变成金属铁层,样品表面出现大量微裂纹,细孔和气泡。孔,气泡和一些较小的裂纹被辊压平,在经过五次冷轧后,较大的裂纹变成残留在样品表面的微量痕迹。与酸洗后的轧制样品相比,氢还原后在轧制样品的表面上残留了更多的微量痕迹。还原样品的表面粗糙度略大于酸洗样品的表面粗糙度。氢还原后在样品表面出现金属铁层和脱碳层。在第五遍之后,两层都变薄了,金属铁层的特征是厚度不均匀和不连续。还原后样品的加工硬化度和机械性能与冷轧后的酸洗样品相似。 (C)2015 Elsevier B.V.保留所有权利。

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