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Effect of cooling rates of production process of Al-3%B-3%Sr master alloy on grain refinement and eutectic modification efficiency in cast A356 alloy

机译:Al-3%B-3%Sr中间合金生产工艺的冷却速度对铸造A356合金晶粒细化和共晶改性效率的影响

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In this paper, size and morphology of the grain refiner and modifier particles in the Al-3%B-3%Sr master alloy production by using different cooling rates were investigated. Two Al-3%B-3%Sr master alloys were produced with 0.2 and 10°C/s, respectively. The grain refinement and eutectic modification efficiency of the Al-3%B-3%Sr master alloy were tested in casting process of A356 alloy by addition of 4wt.% and holding times for 10-120 min. The experimental result showed that microstructure of the M1 alloy (Slow cooling) consisted of larger solidified particles of AlB_(2), SrB_(6)and Al_(4)Sr in the matrix of α-Al compared to the M2 alloy (Rapid cooling). The addition of the M1 alloy in cast A356 alloy, it was found that small grain size and fully modify eutectic silicon were obtained from the holding time in a range of 10-60 min. While the addition of M2 alloy, a small grain size was achieved in shorter holding time in a range of 10-30 min but the eutectic silicon was partly modify. From the thermal analyzed result, solidification of un-modified A356 alloy was changed after addition of Al-3%B-3%Sr master alloy. It was clearly observed that both the undercooling of nucleation and eutectic reaction was reduced and the solidification time was shifted to longer.
机译:本文研究了不同冷却速率下Al-3%B-3%Sr中间合金生产中晶粒细化剂和改性剂颗粒的尺寸和形貌。分别以0.2和10°C / s的速度生产了两种Al-3%B-3%Sr中间合金。在A356合金的铸造过程中,通过添加4wt。%的铝和保持10-120分钟的时间,测试了Al-3%B-3%Sr中间合金的晶粒细化和共晶改性效率。实验结果表明,与M2合金(快速冷却)相比,M1合金(缓慢冷却)的微观结构由α-Al基体中较大的AlB_(2),SrB_(6)和Al_(4)Sr凝固颗粒组成。 )。在铸造的A356合金中添加M1合金后,发现在10-60分钟的保持时间内可获得较小的晶粒尺寸并充分改性了共晶硅。虽然添加了M2合金,但在10-30分钟的较短保持时间内实现了较小的晶粒尺寸,但共晶硅已部分改性。根据热分析结果,添加Al-3%B-3%Sr中间合金后,未改性的A356合金的凝固发生了变化。清楚地观察到,成核的过冷和共晶反应都减少了,凝固时间变长了。

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