期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Preparation of semi-solid A356 Al-alloy slurry by introducing grain process 被引量:6
1
作者 陈正周 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第6期1307-1312,共6页
A preparation technology of semi-solid metal slurry introducing grain process (IGP) was developed. The effects of processing parameters on the microstructures of the semi-solid A356 Al-alloy slurries were investigat... A preparation technology of semi-solid metal slurry introducing grain process (IGP) was developed. The effects of processing parameters on the microstructures of the semi-solid A356 Al-alloy slurries were investigated, and the formation mechanism and morphology controlling of the spherical primary a(A1) grains were discussed. The results show that when the preparing slurry is 4 kg, IG size is 10 mm, dosage is 3.5% and dumping temperature (DT) is 611-617 ℃, the mean diameter of the primary a(A1) grains in the semi-solid slurries can reach 40-75 μm and the shape factor can reach 0.82-0.89. When the IG size is 10 mm, DT is 613℃and dosage is 2%-4%, the mean diameter can reach 45-82 μm and the shape factors can reach 0.78-0.88. With decreasing DT or increasing dosage properly, the primary α(A1) grain morphology is better. When QR=QA and Rh=Rc, as long as the DT is suitable, excellent semi-solid slurry can be produced. As a result of the IG melting, a large amount of dendritic fragments can become the direct source of the primary a(A1) grains. Meanwhile, many undercooled areas are formed, where abundant primary α(A1) grains are multiplied by heterogeneous nucleation. 展开更多
关键词 A356 AI alloy SEMI-SOLID introducing grain primary a(A1)
下载PDF
稀土Er对共晶铝铁合金的变质作用 被引量:3
2
作者 梁亚红 史志铭 +2 位作者 孙丽 李国伟 王科 《金属热处理》 CAS CSCD 北大核心 2019年第11期14-19,共6页
采用热分析方法研究了稀土Er对共晶铝铁合金的变质作用。通过OM、XRD、SEM、EDS以及合金在凝固过程中的特征参数综合分析了稀土Er对共晶铝铁合金的作用机理。结果表明:冷却速率为33℃/s时,共晶铝铁合金的凝固过程为:先发生L→α-Al初转... 采用热分析方法研究了稀土Er对共晶铝铁合金的变质作用。通过OM、XRD、SEM、EDS以及合金在凝固过程中的特征参数综合分析了稀土Er对共晶铝铁合金的作用机理。结果表明:冷却速率为33℃/s时,共晶铝铁合金的凝固过程为:先发生L→α-Al初转变,然后发生L→Al+Al3Fe和L→Al+Al6Fe共晶转变,添加了稀土Er后,在凝固末期发生L→Al+Al3Er转变而生成铝稀土共晶相。初生的Al3Er可以作为初晶α-Al的非均质形核质点,增加了初晶α-Al的形核率,提高了铝铁合金中初晶α-Al开始形核温度,缩短了共晶转变时间。当Er添加量为0.3wt%时,初晶α-Al平均晶粒尺寸达到了最小值21.7μm。当Er添加量为0.5wt%时,初晶α-Al晶粒尺寸增大,且出现了离异共晶组织。 展开更多
关键词 铝铁合金 热分析方法 初晶α-al 变质作用
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部