Synthesis of MoSi2-TiSi2 pseudobinary alloys by reactive sintering

Synthesis of MoSi2-TiSi2 pseudobinary alloys by reactive sintering
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反应烧结合成MoSi2-TiSi2准二元合金

DOI:
10.1007/s11661-000-0016-3
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发表时间:
2000
期刊:
Metallurgical and Materials Transactions A
影响因子:
--
通讯作者:
Tohru Hasegawa
Tohru Hasegawa
中科院分区:
--
文献类型:
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作者:
K. Matsuura;T. Ohmi;M. Kudoh;Tohru Hasegawa

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mosi2 - tisi2伪二元合金是在150 MPa的假等静压下,由钼、硅和钛元素粉末的混合物进行反应烧结合成的。当合金中钛含量从0增加到33 at时。随着钛含量的增加,合金密度从约6 g/cm3下降到4 g/cm3,而相对密度大于95 Pct。当合金为α- mosi2或β- mosi2单相组织时,合金的维氏硬度约为800。然而,当合金由(α-MoSi2+β-MoSi2)或(β-MoSi2+γ-TiSi2)双相结构组成时,硬度增加到950左右。当钛含量从0增加到1.7 at时,合金在773 K时的抗氧化性能提高了近三倍。随着钛含量的增加,钛含量对抗氧化性能的影响逐渐减弱。
MoSi2-TiSi2pseudobinary alloys are synthesized from mixtures of elemental powders of molybdenum, silicon, and titanium by reactive sintering under a pseudoisostatic pressure of 150 MPa. When the titanium content in the alloy increases from 0 to 33 at. pct, the density of the alloy decreases from approximately 6 to 4 g/cm3, while the relative density is more than 95 pct independent of the titanium content. Vickers hardness of the alloy is approximately 800 when the alloy consists of a monophase structure ofα-MoSi2orβ-MoSi2. However, the hardness increases to approximately 950 when the alloy consists of a dual-phase structure of (α-MoSi2+β-MoSi2) or (β-MoSi2+γ-TiSi2). The oxidation resistance of the alloy at 773 K is approximately tripled when the titanium content increases from 0 to 1.7 at. pct, but the effect of the titanium content on the oxidation resistance becomes less remarkable as the titanium content increases.