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MICROSTRUCTURE AND CASTABILITY OF Mg-Al-La ALLOYS FOR HIGH CONDUCTIVITY APPLICATIONS

机译:Mg-Al-La合金在高电导率应用中的组织和稳定性

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摘要

Magnesium die-casting alloys based on the Mg-Al (magnesium-aluminum) system have been used increasingly in many industrial applications for the main purpose of weight savings. However, relatively low conductivity of conventional Mg-Al casting alloys such as AZ91 often limits the application areas and attempts to improve the conductivity without losing excellent casting capabilities and other properties of the Mg-Al based alloys that have been made recently. In this research. aluminum content was restricted to a comparatively low level for improving the conductivity and lanthanum (La) was added to compensate for reduced casting capabilities. As the La content was increased, the mold filling ability measured using a fluidity serpentine test mold was gradually increased, however the hot cracking susceptibility was observed to he initially increased and then decreased. The relationship between solidification characteristics and castabilities of Mg-3Al-xLa alloys was determined based on the thermal and cooling curve analysis results and micro structural characterization.
机译:基于Mg-Al(镁铝)体系的镁压铸合金已在许多工业应用中越来越多地用于减轻重量的主要目的。然而,诸如AZ91之类的常规Mg-Al铸造合金的相对较低的电导率经常限制了应用领域,并且试图在不丧失最近已制成的Mg-Al基合金的优异铸造性能和其他性能的情况下提高电导率。在这项研究中。铝含量被限制在一个相对较低的水平以提高导电性,并添加镧(La)来补偿铸造能力的下降。随着La含量的增加,使用流动性蛇形测试模具测得的模具填充能力逐渐提高,但是观察到热裂纹敏感性首先增加然后降低。根据热和冷却曲线分析结果以及微观组织特征,确定了Mg-3Al-xLa合金的凝固特性与可铸性之间的关系。

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