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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Microsegregation and dendrite arm coarsening in tin bronze
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Microsegregation and dendrite arm coarsening in tin bronze

机译:锡青铜中的微偏析和枝晶臂粗化

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摘要

Specimens of the peritectic alloy Cu -10 wt-percent Sn were subjected to various cooling rates typically observed in industrial casting processes. Some of the specimens were quenched immediately after the end of solidification to avoid further solute homogenisation of the dendrite structure during cooling to room temperature. Characterisation of specimens was carried out by measuring the distribution of secondary arm spacings and two microsegregation indices, namely the volume fraction of non-equilibrium phase and the segregation deviation parameter, calculated from a large number of microanalyses at random points. A tendency of increasing microsegregation with an increase in cooling rate was observed. The microsegregation results were compared with those of a comprehensive micro-segregation model using different equations for coarsening of secondary dendrite arms. The comparison indicated that predictions are more accurate when an empirical equation for coarsening, based on the relationship between secondary arm spacing and cooling rate, is used.
机译:包晶合金Cu -10 wt%Sn的试样经受了通常在工业铸造过程中观察到的各种冷却速率。凝固结束后立即将一些样品淬火,以避免在冷却至室温期间树枝状晶体结构进一步溶质均质化。通过测量次级臂间距的分布和两个微观偏析指数(即非平衡相的体积分数和偏析偏差参数)来进行标本的表征,这是根据随机点的大量微观分析计算得出的。观察到随着冷却速率增加,微偏析增加的趋势。将微观偏析结果与使用不同方程式对二次枝晶臂进行粗化的综合微观偏析模型的结果进行比较。比较结果表明,当使用基于副臂间距和冷却速率之间的关系的粗化经验公式时,预测更为准确。

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