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Influence of dispersoids on grain subdivision and texture evolution in aluminium alloys during cold rolling

机译:分散质对铝合金冷轧过程中晶粒细分和织构演变的影响

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摘要

Al-Mn alloys containing similar amounts of solutes but various dispersoid densities were cold rolled. The grain subdivision and micro-texture were examined by electron backscatter diffraction and orientation imaging microscopy. Macro-texture was measured by X-ray diffraction. It is found that a high density of fine dispersoids enhances the development of the copper and S textures at large strains (∼3), and also induces a higher fraction of high-angle grain boundaries. At smaller strains, the texture and high-angle grain boundaries are not evidently influenced by the density of dispersoids. It is suggested that the texture evolution, which is enhanced by dispersoid pinning effect, contributes to the grain subdivision and the formation of high-angle grain boundaries.
机译:Al-Mn合金含有相似数量的溶质,但具有不同的弥散体密度,需进行冷轧。通过电子反向散射衍射和取向成像显微镜检查了晶​​粒细化和微观结构。通过X射线衍射测量宏观纹理。发现高密度的细弥散体在大应变(〜3)下促进了铜和S织构的发展,并且还诱导了更大比例的高角度晶界。在较小的应变下,质构和高角度晶界不受弥散体密度的明显影响。可以认为,通过弥散分散钉扎效应增强的组织演化有助于晶粒细分和高角度晶界的形成。

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