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Effect of heating rate during solution treatment on microstructure, mechanical property and corrosion resistance of high-strength AA 7075 alloy

机译:溶液处理过程中加热速率对高强度AA 7075合金微观结构,力学性能和耐腐蚀性的影响

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摘要

The heating rate during solution treatment exerted great influence on the final grain structure of AA 7075 alloy processed by thermo-mechanical treatment (TMT). In case of rapid heating rate, particle-stimulated nucleation (PSN) of recrystallization occurred and fine equi-axed structure with an average grain size of similar to 9 mu m was obtained. On the contrary, when a slow heating rate was adopted, the resulting recrystallized grains were rather coarse and elongated (average grain length > 100 mu m). After peak-ageing treatment, the mechanical property and corrosion resistance of 7075 sheets were closely associated with those grain structures. Specifically, two kinds of sheets exhibited equivalent strength while the ductility of fine-grained sample is considerably increased to 18.5%, 49% higher than that (12.4%) of coarse-grained sheet. Meanwhile, inter-granular corrosion (IGC) and exfoliation corrosion (EXCO) tests certify that the fine-grained sheet exhibited significantly enhanced corrosion resistance. Effective grain refinement induced by rapid solution treatment accounts for the notable increment in both ductility and corrosion resistance. Our results demonstrate that the comprehensive properties of 7000 alloys might be tailored by adopting proper heating rate when the alloys are subjected to solution treatment.
机译:溶液处理期间的加热速率对热机械处理(TMT)加工的AA 7075合金的最终晶粒结构产生了很大影响。在快速加热速率的情况下,获得的粒子刺激成核(PSN)发生并获得平均晶粒尺寸与9μm的细平轴轴结构。相反,当采用缓慢的加热速率时,得到的再结晶晶粒相当粗糙并且细长(平均粒度长>100μm)。在峰值衰老后,7075片的机​​械性能和耐腐蚀性与那些晶粒结构密切相关。具体地,两种薄片表现出相同的强度,而细粒样品的延展性显着增加至比粗粒片的(12.4%)高出18.5%,49%。同时,颗粒间腐蚀(IGC)和剥离腐蚀(ECCO)试验证明细粒片表现出显着提高的耐腐蚀性。快速溶液处理诱导的有效晶粒细化占延展性和耐腐蚀性的显着增量。我们的结果表明,当合金经受溶液处理时采用适当的加热速率,可以根据适当的加热速度来定制7000合金的综合性质。

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