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DEVELOPMENT OF THE NEW HIGH SHEAR TECHNOLOGY FOR CONTINUOUS PROCESSING OF Mg-ALLOYS FOR INGOT CASTING

机译:开发新型高剪切技术,用于连续加工Mg-合金铸造铸造

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Melt quality is crucial for both continuous and shape casting of Magnesium alloys. The recently developed melt conditioning technology where intensive shearing is applied to the melt either by twin-screw or rotor/stator type processing, in order to achieve uniform temperature and chemical composition, together with dispersion and distribution of the harmful inclusions such as oxides that already exist in the melt. Melt conditioning by application of intensive melt shearing of Mg-alloys has shown that MgO films/skins that already exist in the melt can be dispersed into individual particles which can act as potent nucleation sites for the a-Mg phase. Due to this enhanced nucleation during solidification, significant grain refinement is achieved in Mg-alloys including Mg-Al alloys without any specific chemical inoculation. Currently, the melt conditioning technology is limited to batch processing only, hence the need to further develop it into a continuous high shear processing technology which can be used in conjunction with various continuous casting processes such as ingot casting. Here, we report on the development of the new continuous type high shear device with grain refined microstructures of ingots cast after continuous shearing. The preservation of the grain refinement in the melt conditioned ingots after re-melting and casting again is also reported and discussed.
机译:熔体质量是镁合金的连续和形状铸造的关键。其中强剪切施加于最近开发的熔融调节技术熔化或者通过双螺杆或转子/定子型处理,以实现均匀的温度和化学组成,具有分散性和有害的夹杂物的分布一起如氧化物已经存在于熔体中。熔体通过调理的强熔体剪切镁合金的应用表明,已经在熔体中存在的MgO膜/皮可以分散到单个颗粒,可以作为有效的成核位点的α-Mg相作用。由于在凝固过程中这种增强的成核,显著晶粒细化在镁合金,包括镁铝合金,没有任何特定的化学接种实现。目前,熔体调节技术被限制为仅批次处理,因此需要进一步开发它成一个连续的高剪切处理技术可在各种连续铸造结合使用作为铸锭处理这样。在这里,我们在新的连续式高剪切装置的发展报告连续剪切后铸锭的晶粒细化的微观结构。晶粒细化的在再熔化和再浇铸后的熔融调节锭的保存也被报告和讨论。

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