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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Evaluation of porosity in lotus-type porous magnesium fabricated by metal/gas eutectic unidirectional solidification
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Evaluation of porosity in lotus-type porous magnesium fabricated by metal/gas eutectic unidirectional solidification

机译:金属/气体共晶单向凝固法制备的莲花型多孔镁的孔隙率评估

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摘要

Lotus-type porous magnesium with elongated pores has been fabricated by a metal/gas eutectic unidirectional solidification method (Gasar process) under a pressurized hydrogen and argon gas mixture. Through solving the steady-state solute distribution function before the solidification front, a theoretical model was developed to calculate the hydrogen content in the solid metal and then a new theoretical relation was attained to predict porosity. The porosity is significantly affected by the partial pressures of hydrogen and argon. The calculated values are in good agreement with the experimental results. Additionally, the pressure condition for the formation of the lotus-type porous structure was also investigated through analyzing the solute concentration condition for the growth of a gas bubble.
机译:通过在加压的氢气和氩气混合物下通过金属/气体共晶单向凝固方法(Gasar工艺)制造了具有细长孔的莲花型多孔镁。通过求解凝固前沿之前的稳态溶质分布函数,建立了理论模型来计算固体金属中的氢含量,然后建立了新的理论关系来预测孔隙率。氢气和氩气的分压显着影响孔隙率。计算值与实验结果吻合良好。另外,还通过分析气泡生长的溶质浓度条件,研究了形成莲花型多孔结构的压力条件。

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