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低溫反應(yīng)自熔法原位合成MgO顆粒增強(qiáng)鎂基復(fù)合材料
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TB331 TG146.2

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國家自然科學(xué)基金(50471032)及科技部重大基礎(chǔ)研究前期專項(xiàng)(2005CCA03800)資助


In-Situ Fabricated MgO Particulate Reinforced Magnesium Matrix Composite by Low Temperature Reaction Melting
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    摘要:

    采用低溫反應(yīng)自熔新工藝,由經(jīng)過預(yù)氧化的Mg粉原位合成了MgO顆粒增強(qiáng)鎂基復(fù)合材料,并對(duì)其顯微組織和力學(xué)性能進(jìn)行了檢測。結(jié)果表明:低溫反應(yīng)自熔時(shí),因Mg顆粒處于全熔或半熔狀態(tài),表面的氧化膜得到了有效地破碎、細(xì)化,并在液相熔蝕和自身表面張力的共同作用下,球化成微米和亞微米級(jí)MgO顆粒;形成的MgO顆粒不但與基體結(jié)合良好、分散均勻,而且因具有很高的強(qiáng)度和剛度,對(duì)基體產(chǎn)生了較好的增強(qiáng)效果。與粉末冶金法相比,采用低溫反應(yīng)自熔法制備的鎂基復(fù)合材料的組織和性能均顯示出明顯優(yōu)勢。

    Abstract:

    Adopting a novel synthesizing method-low temperature reaction melting (LRM), a MgO particulate reinforced magnesium matrix composite was in-situ fabricated using pre-oxidized Mg powders. The microstructures and mechanical properties of the composite were investigated by microstructure observation and tensile tests. The results showed that, due to the melting of Mg powders during LRM treatment, the oxide film on the surface of Mg powder was effectively broken into pieces, refined and subsequently, spheroidized into particulates with micron or sub-micron sizes by the joint effect of the liquid phase Mg and the surface tension of MgO itself. Moreover, The formed MgO particulates possess not only good interfacial bonding with the matrix and uniform distribution, but also high strength and stiffness, which is beneficial to improving the reinforcement effect to the matrix. As a result, the LRM method can bring better microstructures and mechanical properties to the composite compared to powder metallurgy process.

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郗雨林 柴東朗 王耀瑋.低溫反應(yīng)自熔法原位合成MgO顆粒增強(qiáng)鎂基復(fù)合材料[J].稀有金屬材料與工程,2007,36(3):554~558.[Xi Yulin, Chai Donglang, Wang Yaowei. In-Situ Fabricated MgO Particulate Reinforced Magnesium Matrix Composite by Low Temperature Reaction Melting[J]. Rare Metal Materials and Engineering,2007,36(3):554~558.]
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  • 最后修改日期:2006-03-09
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