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Mechanical property and microstructure evolution of aged 6063 aluminum alloy under high strain rate deformation

机译:高应变率变形下老年6063铝合金的力学性能和微观结构演化

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The dynamic impact tests were performed on 6063 alloy with different initial aging conditions of under-aged (UA), peak-aged (PA) and over-aged (OA) at different strain rates ranging from 1 x 10(3) to 5 x 10(3) s(-1) by split Hopkinson pressure bar. The results show that dynamic deformation behavior is affected by initial aging condition, as well as strain rate. The PA alloy exhibits the highest flow stress and strain rate sensitivity (SRS), while the UA alloy displays the lowest flow stress and SRS. The dislocation and precipitate evolution were analyzed by TEM observations. During high strain rate deformation, the density of the dislocation increases with strain rate, the GP zones in the UA alloy are almost dissolved into the matrix, the number density of the beta" precipitates in the PA alloy decreases with increasing strain rate due to the dynamic dissolution. The impact deformation results in a great energy differences between precipitates and matrix, precipitates dissolution occurs in order to balance the disrupted thermodynamic equilibrium. The dynamic evolution of the precipitates has a great effect on the mechanical property of the impacted 6063 alloy, it is necessary to consider the microstructure evolution in material selection and structure design.
机译:在6063合金中对具有不同初始(UA),峰值(PA)和过老化(OA)的不同初始变化的初始衰老条件进行动态冲击试验,其不同的应变率范围为1×10(3)至5 x 10(3)秒(-1)通过拆分霍普金森压杆。结果表明,动态变形行为受初始老化条件的影响,以及应变率。 PA合金具有最高的流量应力和应变率灵敏度(SRS),而UA合金显示最低的流量应力和SRS。通过TEM观察分析脱位和沉淀的进化。在高应变速率变形期间,脱位的密度随应变率的增加,UA合金中的GP区几乎溶解到基质中,β“在PA合金中沉淀物的数量密度随着应变速率的增加而降低动态溶解。沉淀物和基质之间的抗冲变形导致沉淀物和基质之间的能量差异,发生沉淀物溶解,以平衡破坏的热力学平衡。沉淀物的动态演化对受冲击的6063合金的机械性能有很大的影响是需要考虑材料选择和结构设计中的微观结构演变。

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