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Effect of Grain Refinement on the Dendrite Coherency Point during Solidification of the A319 Aluminum Alloy

机译:细化对A319铝合金凝固过程中枝晶相干点的影响

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摘要

Dendrite coherency is important to the formation of the solidification structure and castability of alloys. The effects of grain refinement on the dendrite coherency in A319 aluminum alloy have been studied using the two-thermocouple thermal analysis technique in the solidifying sample. The fraction solid at the dendrite coherency point ( $ f_{s}^{text{DCP}} $ ) in the A319 alloy increases with increasing Al-5Ti-1B grain refiner, and varies from 16 to 21 pct when the amount of Al-5Ti-1B in the alloy is in the range of 0 to 4.6 wt pct. The results also indicate that the grain refinement increases the temperature interval of coherency (T N – T DCP) and coherency time (t DCP), and it can postpone dendrite coherency. These changes were interpreted based on the dendrite growth rate, the growth restriction factor, and the microstructure.
机译:树突的连贯性对于合金的凝固组织和铸造性的形成很重要。利用二热电偶热分析技术研究了凝固样品中晶粒细化对A319铝合金枝晶相干性的影响。随着Al-5Ti-1B晶粒细化剂的增加,A319合金中枝晶相干点($ f_ {s} ^ {text {DCP}} $)的固体分数随Al-5Ti-1B晶粒细化剂的增加而增加,当Al的含量从16%改变为21%时合金中的-5Ti-1B在0至4.6 wt pct的范围内。结果还表明,晶粒细化增加了相干温度间隔(T N – T DCP )和相干时间(t DCP ),并且可以推迟枝晶的相干性。这些变化是根据树枝状晶体的生长速率,生长限制因子和微观结构来解释的。

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