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Evolution of Near-Surface Deformed Layers on AA3104 Aluminium Alloy

机译:AA3104铝合金上近表面变形层的演变

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The present work studied the microstructure of near-surface deformed layers and their evolution from the transfer slab to the cold rolled final gauge sheet of an AA3104 aluminium alloy. Electron microscopy of ultramicrotomed cross-sections revealed two types of near-surface deformed layers, i.e. type A and type B, both with different microstructures to the underlying bulk alloy. A typical feature of the deformed layers is the nano-sized ultrafine gralns, with diameters < 200 nm for the type A and ≤ 500 nm for the type B deformed layer. Electron energy loss spectroscopy (EELS) indicated that oxide particles are present along graln boundaries within the type A deformed layer, while the type B deformed layer is free of oxide particles. The type A deformed layer is malnly generated at elevated temperatures during the early stages of hot rolling. Its thickness is non-uniform across the surface, with a maximum of ~4 μm on the transfer slab, ~1 μm on the re-roll gauge sheet and ~0.8 μm on the final gauge sheet. While the surface of the hot rolled sheet is malnly covered by the type A deformed layer, the surface undergone cold rolling is alternately covered by the type A and the type B deformed layers.
机译:本工作研究了近表面形变层的微观结构及其从转移板到AA3104铝合金冷轧最终规格薄板的演变。超细切片的电子显微镜检查显示出两种类型的近表面形变层,即A型和B型,两者与下面的整体合金具有不同的微观结构。变形层的典型特征是纳米尺寸的超细晶粒,A型的直径小于200 nm,B型的厚度小于500 nm。电子能量损失光谱法(EELS)表明,沿着A型变形层内的晶粒边界存在氧化物颗粒,而B型变形层不含氧化物颗粒。在热轧的早期阶段,高温下会有害地产生A型变形层。其厚度在整个表面上是不均匀的,在转移平板上最大〜4μm,在重新轧制量规片上最大〜1μm,在最终量规片上最大〜0.8μm。在热轧板的表面被A型变形层覆盖的同时,经受冷轧的表面被A型和B型变形层交替覆盖。

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