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Microstructure Evolution in a 6082 Aluminium Alloy during Thermomechanical Treatment

机译:6082铝合金在热机械处理过程中的微观组织演变

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摘要

Thermomechanical treatments of age-hardenable wrought aluminium alloys provoke microstructural changes that involve the movement, arrangement, and annihilation of dislocations, the movement of boundaries, and the formation or dissolution of phases. Cold and hot compression tests are carried out using a Gleeble® 3800 machine to produce flow data as well as deformed samples for metallography. Electron backscattered diffraction and light optical microscopy were used to characterise the microstructure after plastic deformation and heat treatments. Models based on dislocation densities are developed to describe strain hardening, dynamic recovery, and static recrystallisation. The models can describe both the flow and the microstructure evolutions at deformations from room temperatures to 450 °C. The static recrystallisation and static recovery phenomena are modelled as a continuation of the deformation model. The recrystallisation model accounts also for the effect of the intermetallic particles in the movements of boundaries.
机译:时效硬化型铝合金的热机械处理引起了微观结构的变化,包括位错的移动,排列和an灭,边界的移动以及相的形成或溶解。使用Gleeble ® 3800机器进行冷和热压缩测试,以产生流量数据以及变形的金相样品。电子背散射衍射和光学显微镜用于表征塑性变形和热处理后的微观结构。开发了基于位错密度的模型来描述应变硬化,动态恢复和静态重结晶。这些模型可以描述从室温到450°C变形时的流动和微观结构演变。将静态再结晶和静态恢复现象建模为变形模型的延续。再结晶模型还考虑了金属间颗粒在边界运动中的作用。

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