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Coarsening of equiaxed microstructure in the semisolid state of aluminum 7075 alloy through SIMA processing

机译:通过SIMA处理对7075铝合金半固态等轴组织进行粗化

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摘要

In the present study, the coarsening mechanism of equiaxed grains in the semisolid state of aluminum 7075 alloy, treated via strain induced melting activation process, was investigated. The kinetics of equiaxed grain growth in the semisolid state of the experimental alloy was determined. The results revealed that when the holding temperature increased, the coarsening rate constant (K) showed a precipitously increasing character in the range of 590-610 °C. This was attributed to the extensive effect of the coalescence mechanism on the grain growth at the high solid fractions. By further increasing the holding temperature to 620 and 625 °C (increasing the liquid fraction), the effect of coalescence on the grain growth appeared to be weakened, that is, although there was a slight decrease at 620 °C, a gently increasing character could be generally supposed. Severe segregation of Zn and Cu alloying elements at grain boundaries and intragranular droplets was detected at 620 and 625 °C after 15 and 10 min, respectively.
机译:在本研究中,研究了7075铝合金的半固态等轴晶晶粒的粗化机理,该工艺是通过应变诱导熔化活化工艺进行处理的。确定了实验合金半固态等轴晶粒生长的动力学。结果表明,当保温温度升高时,粗化速率常数(K)在590-610°C范围内显示出急剧增加的特性。这归因于聚结机理对高固含量下晶粒长大的广泛影响。通过将保持温度进一步提高到620和625°C(增加液体分数),聚结对晶粒长大的作用似乎减弱了,也就是说,尽管在620°C时有轻微降低,但特性却逐渐升高可以普遍认为。分别在15分钟和10分钟后分别在620和625°C下检测到锌和铜合金元素在晶界和颗粒内小滴的严重偏析。

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