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Development of Mg–Zn–Mn–Y magnesium alloy with high thermal conductivity and compression properties via injection molding

机译:通过注塑成型开发具有高导热性和压缩性能的Mg-Zn-Mn-Y镁合金

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In this study, a magnesium alloy injection molding device was designed based on the principle of indirect squeeze casting. The alloy system of Mg–Zn–Mn–Y was manufactured using the injection molding technology. The injection molding samples exhibit a significantly refined microstructure compared to gravity casting samples. Furthermore, the compressibility of the injection molding samples displays notable improvement over gravity casting samples. In addition, the compressive strength increases gradually with higher Y content. However, the thermal conductivity continuously declines after adding Y, and the thermal conductivity of the injection sample is lower than that of the gravity casting sample. Additionally, the T6 treatment leads to further improvements in both the compressibility and thermal conductivity of the alloy. Overall, the experiment successfully designed a magnesium alloy system with high strength and thermal conductivity. Moreover, the injection molding device has proved effective in improving compression performance and rapidly designing new alloy compositions in a laboratory setting.
机译:本研究基于间接挤压铸造原理设计了一种镁合金注塑装置。Mg-Zn-Mn-Y的合金体系采用注塑技术制造。与重力铸造样品相比,注塑成型样品表现出显着精细的微观结构。此外,注塑成型样品的可压缩性比重力铸造样品有显著改善。此外,抗压强度随着Y含量的增加而逐渐增加。但加入Y后导热系数不断下降,进样试样的导热系数低于重力铸造试样的导热系数。此外,T6处理进一步改善了合金的可压缩性和导热性。总体而言,该实验成功地设计了一种具有高强度和导热性的镁合金体系。此外,注塑成型装置已被证明可有效提高压缩性能,并在实验室环境中快速设计新的合金成分。

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