阐述镁及镁合金的特性。从非枝晶坯料的制备、坯料的重熔加热和半固态的成形工艺等三方面介绍镁合金半固态成形的研究现状。详细介绍采用机械搅拌法、电磁搅拌法、应变诱发熔化激活法(Strain-induced M elt ActivationProcess,SIMA)和...阐述镁及镁合金的特性。从非枝晶坯料的制备、坯料的重熔加热和半固态的成形工艺等三方面介绍镁合金半固态成形的研究现状。详细介绍采用机械搅拌法、电磁搅拌法、应变诱发熔化激活法(Strain-induced M elt ActivationProcess,SIMA)和半固态等温热处理法制备非枝晶坯料的最新研究成果。展望我国镁合金半固态成形技术的发展前景。展开更多
A novel process that combines squeeze casting with partial remelting to obtain AZ61 magnesium alloy with semi-solid microstructures was proposed. In this route, the squeeze casting was used to predeform the magnesium ...A novel process that combines squeeze casting with partial remelting to obtain AZ61 magnesium alloy with semi-solid microstructures was proposed. In this route, the squeeze casting was used to predeform the magnesium alloy billets to obtain small dendritic structures. During subsequent partial remelting, small dendritic structures transform into globular grains surrounded by liquid films. The results show that the squeeze casting AZ61 alloy after partial remelting produces more ideal, finer semi-solid microstructure compared with as-cast AZ61 alloy treated by the same isothermal holding conditions. Moreover, the mechanical properties of the thixoformed AZ61 alloy prepared by squeeze casting plus partial remelting are better than those of the thixoformed alloy prepared by conventional casting plus partial remelting.展开更多
文摘阐述镁及镁合金的特性。从非枝晶坯料的制备、坯料的重熔加热和半固态的成形工艺等三方面介绍镁合金半固态成形的研究现状。详细介绍采用机械搅拌法、电磁搅拌法、应变诱发熔化激活法(Strain-induced M elt ActivationProcess,SIMA)和半固态等温热处理法制备非枝晶坯料的最新研究成果。展望我国镁合金半固态成形技术的发展前景。
基金Project(51405466)supported by the National Natural Science Foundation of ChinaProject(Y32Z010F10)supported by the Western Light Program of the Chinese Academy of Sciences+1 种基金Project(cstc2014jcyj A50009)supported by Chongqing Research of Application Foundation and Advanced Technology,ChinaProject(cstc2014jcyj A50037)supported by Chongqing Research of Application Foundation and Advanced Technology,China
文摘A novel process that combines squeeze casting with partial remelting to obtain AZ61 magnesium alloy with semi-solid microstructures was proposed. In this route, the squeeze casting was used to predeform the magnesium alloy billets to obtain small dendritic structures. During subsequent partial remelting, small dendritic structures transform into globular grains surrounded by liquid films. The results show that the squeeze casting AZ61 alloy after partial remelting produces more ideal, finer semi-solid microstructure compared with as-cast AZ61 alloy treated by the same isothermal holding conditions. Moreover, the mechanical properties of the thixoformed AZ61 alloy prepared by squeeze casting plus partial remelting are better than those of the thixoformed alloy prepared by conventional casting plus partial remelting.