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冷卻方式對Mg-Nd-Pr合金的顯微組織與物相構(gòu)成的影響
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吉林省杰出青年基金(20030128);吉林省工業(yè)引導(dǎo)項目(20030331)


Effect of Cooling Method on the Microstructure and Phase Composition of Mg-Nd-Pr Alloy
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    摘要:

    采用不同的冷卻方式獲得了兩種狀態(tài)的Mg-Nd-Pr合金,利用電子探針、透射電子顯微鏡、X射線衍射分析儀等設(shè)備,系統(tǒng)分析了相應(yīng)合金的顯微組織和相結(jié)構(gòu)。證明急冷的方法可以大幅度減小晶粒尺度,形成單相的過飽和α-Mg(Nd、Pr)固溶體,能夠顯著提高Mg-Nd-Pr合金的力學(xué)性能,Mg-Nd-Pr合金通過固溶強化能獲得較高的強度。室溫下Nd、Pr元素在α-Mg中的固溶度很小,緩慢冷卻會導(dǎo)致合金元素在晶界析出,緩冷合金由α-Mg、Mg41Nd5和Mg12Pr等相組成,Mg41Nd5和Mg12Pr分布于α-Mg的晶界處,同時在α-Mg晶粒內(nèi)部產(chǎn)生孿晶。

    Abstract:

    Two Mg-Nd-Pr alloys were prepared adopting different cooling methods, and the microstructural characteristics and phase structure of both alloys were examined by transmission electron microscopy (TEM), energy dispersive spectroscopy (EDS) and X-ray diffraction (XRD). The results show that the crystalline grain size is decreased greatly under the condition of melt-spin, the supersaturated α-Mg solid solution is developed, and the mechanical properties of Mg-Nd-Pr alloy are increased remarkably. The alloying elements will precipitate along the grain boundaries in a state of slow cooling owing to lower solubility for Nd, Pr in α-Mg phase at room temperature. The phase composition of such alloy includes α-Mg, Mg41Nd5 and Mg12Pr. Mg41Nd5 and Mg12Pr are distributed in the grain boundaries. At the same time, many twins within the grains are observed.

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劉喜明.冷卻方式對Mg-Nd-Pr合金的顯微組織與物相構(gòu)成的影響[J].稀有金屬材料與工程,2009,38(4):677~680.[Liu Ximing. Effect of Cooling Method on the Microstructure and Phase Composition of Mg-Nd-Pr Alloy[J]. Rare Metal Materials and Engineering,2009,38(4):677~680.]
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  • 收稿日期:2008-03-29
  • 最后修改日期:2008-06-30
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