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Strengthening mechanisms in ultrafine grained Al-Mg-Si alloy processed by hydrostatic extrusion - Influence of ageing temperature

机译:静压挤压加工超细晶粒Al-Mg-Si合金的强化机理-时效温度的影响

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摘要

Microstructure of hydrostatically extruded Al-Mg-Si alloy was studied by the combination of electron backscattered diffraction and transmission electron microscopy. Three different grain types which feature various defects arrangements were detected. Post deformation ageing at two temperatures caused different precipitation phenomena which were strongly dependent on type of grain boundaries in the considered grain types. Thus, a combination of plastic deformation and ageing resulted in a material with complex microstructure. Based on transmission electron microscopy observations, contributions of different strengthening mechanisms were estimated and compared to experimental results. A good agreement between obtained data points confirmed that depending on grain type, different strengthening mechanisms are operative and the overall strength is a sum of hardening given by each of them. Ageing of ultrafine grain structure results in efficient precipitation strengthening. On the other hand ageing causes annihilation of low and high angle grains boundaries in which leads to softening of investigated material. This effect cannot be compensated by precipitation hardening.
机译:结合电子背散射衍射和透射电子显微镜研究了静压挤压Al-Mg-Si合金的显微组织。检测到三种具有不同缺陷排列特征的不同晶粒类型。在两个温度下的变形后时效会导致不同的析出现象,这在很大程度上取决于所考虑晶粒类型中的晶界类型。因此,塑性变形和时效的结合导致材料具有复杂的微观结构。基于透射电子显微镜观察,估计了不同强化机制的贡献并将其与实验结果进行了比较。获得的数据点之间的良好一致性证实,取决于晶粒类型,可以使用不同的强化机制,并且总强度是它们各自给出的硬化总和。超细晶粒结构的时效导致有效的沉淀强化。另一方面,时效会导致低角度和高角度晶界消失,从而导致所研究材料的软化。这种作用不能通过沉淀硬化来补偿。

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