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Grain refinement and modification of Al-Si foundry alloys with B and Sr additions

机译:添加B和Sr的Al-Si铸造合金的晶粒细化和改性。

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摘要

The effect of B and Sr additions on the grain refinement and modification processes was investigated in the popular AlSi7Mg0.3 alloy to identify the optimum melt treatment to ensure a very fine grained matrix and a fine fibrous eutectic. B and Sr recoveries are low when B and Sr are employed together owing to the formation of the SrB_6 compound. This is particularly a concern for Sr when it is introduced into the melt before B. Sr concentrations of the solidified samples are too low to offer modification at an addition rate of 200 ppm Sr. While Sr additions reduce the B recovery in grain refined samples, this is apparently not reflected in the overall grain refining performance. Exceptionally small grains can be obtained at B levels that fail to offer grain refinement when B is added alone. SrB_6 particles are believed to compensate for the reduced B concentrations. While the SrB_6 compound helps with the grain refinement, they are not involved in the modification process. B (300 ppm) and Sr (300 ppm) provide exceptionally small grains and an adequate modification of the eutectic silicon in a commercial AlSi7Mg0.3 alloy. Increasing the B and Sr addition rates does not provide further improvement in either grain refinement or modification.
机译:在流行的AlSi7Mg0.3合金中研究了B和Sr的添加对晶粒细化和改性过程的影响,以确定最佳的熔体处理工艺,以确保非常细的基体和细纤维共晶。当B和Sr一起使用时,由于形成SrB_6化合物,B和Sr的回收率低。当Sr在B之前被引入熔体中时,这尤其令人担忧。固化样品中Sr的浓度太低,无法以200 ppm Sr的添加速率进行改性。尽管Sr的添加会降低晶粒细化样品中的B回收率,这显然没有反映在总体晶粒细化性能上。当单独添加B时,在B含量下可获得极小的晶粒,这些晶粒无法提供晶粒细化作用。据信SrB_6颗粒可补偿降低的B浓度。尽管SrB_6化合物有助于细化晶粒,但它们不参与改性过程。 B(300 ppm)和Sr(300 ppm)可以提供非常小的晶粒,并且可以对商用AlSi7Mg0.3合金中的共晶硅进行适当的改性。增加B和Sr的添加率不能在晶粒细化或改性方面提供进一步的改善。

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