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首页> 外文期刊>JOM >Oxidation Resistant Mo-Mo_2B-Silica and Mo-Mo_2B-Silicate Composites for High Temperature Applications
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Oxidation Resistant Mo-Mo_2B-Silica and Mo-Mo_2B-Silicate Composites for High Temperature Applications

机译:耐高温应用的抗氧化Mo-Mo_2B-二氧化硅和Mo-Mo_2B-硅酸盐复合材料

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摘要

Development of Mo composites based on the Mo-Si-B system has been demonstrated as a possible new route to achieving a high temperature Mobased material. In this new system, the silicide phases are replaced directly with silica or other silicate materials. These composites avoid the high ductile to brittle transition temperature observed for Mo-Si-B alloys by removing the Si that exists in solid solution in Mo at equilibrium with its silicides. A variety of compositions is tested for room temperature ductility and oxidation resistance. A system based upon Mo, Mo_2B, and SrO2Al_2O_3·(SiO_2)_2 is shown to possess both ductility at 80 vol.% Mo and oxidation resistance at 60 vol.%. These composites can be produced using a powder processing approach and fired to greater than 95% theoretical density with a desirable microstructure of isolated boride and silicate phases within a ductile Mo matrix.
机译:已经证明基于Mo-Si-B系统的Mo复合材料的开发是获得高温Mo基材料的一种可能的新途径。在这个新系统中,硅化物相直接用二氧化硅或其他硅酸盐材料代替。这些复合材料通过除去固溶在Mo中的硅及其硅化物平衡,从而避免了Mo-Si-B合金所观察到的高延性至脆性转变温度。测试了各种组合物的室温延展性和抗氧化性。已显示基于Mo,Mo_2B和SrO2Al_2O_3·(SiO_2)_2的系统既具有80%(体积)Mo的延展性,又具有60%(体积)的抗氧化性。可以使用粉末加工方法生产这些复合材料,并焙烧至大于95%的理论密度,并在可延展的Mo基体中以理想的微结构分离硼化物和硅酸盐相。

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