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MoSi2-WSi2復(fù)合材料自蔓延熱爆合成反應(yīng)熱力學(xué)
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TG148

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國家自然科學(xué)基金資助項(xiàng)目(50472078)


Reaction Thermodynamics of MoSi2-WSi2 Composites in the Thermal Explosion Mode of SHS
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    摘要:

    對Mo-W-Si三元體系自蔓延熱爆合成MoSi2-WSi2復(fù)合材料的反應(yīng)吉布斯自由能、反應(yīng)生成焓和絕熱溫度進(jìn)行了理論分析和實(shí)驗(yàn)研究,并利用X射線衍射分析和掃描電鏡及微區(qū)成分分析(EDAX)技術(shù)對產(chǎn)物進(jìn)行了相組成和微區(qū)成分分析.結(jié)果表明在1685 K(Si熔點(diǎn))時(shí),MoSi2和WSi2的反應(yīng)生成焓最大,分別為234.645 KJ/mol和195.670 KJ/mol.當(dāng)初始溫度為1685 K時(shí),體系所有產(chǎn)物均完全熔融.利用自蔓延熱爆合成可制備純凈的MoSi2-WSi2復(fù)合材料.MoSi2和WSi2以固溶體(Mox,W1-x)Si2的形式存在,但每個(gè)晶粒內(nèi)的成分并不均勻.

    Abstract:

    The reactive Gibbs free energies, the reactive formation enthalpies and adiabatic temperatures concerning the preparation ofMoSi2-WSi2 composites using elemental powders of Mo, W and Si by the thermal explosion mode of SHS have been theoreticallycalculated and investigated by experiments. XRD, SEM and EDAX have analyzed the phase compositions and micro-area chemicalanalyses of the products. The results show that the reactive formation enthalpies of MoSi2 and WSi2 are biggest, 234.645 kJ/mol and195.670 kJ/mol respectively, when the reactions take place at 1685 K (the melting point of Si). And when the initial temperature is 1685 Kthe products of all systems have fused completely. Pure MoSi2-WSi2 composites are fabricated by the thermal explosion mode of SHS, andMoSi2-WSi2 exists as solid solution of (Mox,W1-x)Si2 while the chemical elements of every grain are not uniform.

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彭可 易茂中 冉麗萍. MoSi2-WSi2復(fù)合材料自蔓延熱爆合成反應(yīng)熱力學(xué)[J].稀有金屬材料與工程,2006,35(4):554~558.[Peng Ke, Yi Maozhong, Ran Liping. Reaction Thermodynamics of MoSi2-WSi2 Composites in the Thermal Explosion Mode of SHS[J]. Rare Metal Materials and Engineering,2006,35(4):554~558.]
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  • 最后修改日期:2005-01-07
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