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AlMgB_(14)-30%TiB_2复合材料的高温氧化行为
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作者 庄蕾 戴红霞 孟庆森 《材料保护》 CSCD 北大核心 2017年第9期10-12,共3页
为了探讨AlMgB_(14)-30%TiB_2(质量分数)复合材料的高温氧化行为,采用电场激活与压力辅助烧结(FAPAS)法制备了这一复合材料。以SX2-4-10箱式电阻炉高温氧化10 h(600~1 000℃),研究了其不同温度下的氧化行为;采用X射线衍射仪(XRD)分析了... 为了探讨AlMgB_(14)-30%TiB_2(质量分数)复合材料的高温氧化行为,采用电场激活与压力辅助烧结(FAPAS)法制备了这一复合材料。以SX2-4-10箱式电阻炉高温氧化10 h(600~1 000℃),研究了其不同温度下的氧化行为;采用X射线衍射仪(XRD)分析了其氧化表面的相结构,以扫描电子显微镜(SEM)观察氧化后的表面和截面形貌。结果表明:AlMgB_(14)-30%TiB_2复合材料在600℃时发生氧化反应,相为TiB_2,AlMgB_(14)相发生氧化反应的温度为800℃;氧化温度达到1 000℃时,氧化层表面由一层玻璃状的B2O3组成。 展开更多
关键词 aimgb14-TiB2复合材料 电场激活与辅助烧结法 高温氧化 氧化行为
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Structural Characterization of AlMgB_(14) Prepared by Field-activated, Pressure-assisted Synthesis
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作者 Wen Liu Yang Miao +1 位作者 Qingsen Meng Shaoping Chen 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2013年第1期77-81,共5页
Mechanical alloying (MA) and field-activated, pressure-assisted synthesis (FAPAS) were used for the in situ synthesis and densification of ultra-hard, super-abrasive AIMgB14 metallic ceramic, performed at 1500 ℃ ... Mechanical alloying (MA) and field-activated, pressure-assisted synthesis (FAPAS) were used for the in situ synthesis and densification of ultra-hard, super-abrasive AIMgB14 metallic ceramic, performed at 1500 ℃ under a pressure of 60 MPa with the elemental constituents of aluminum, magnesium, and boron. The microstructure and components of synthesized metallic ceramic were observed and determined by scanning electron microscopy (SEM), energy dispersive X-ray analysis (EDX), X-ray diffraction (XRD), and transmission electron microscopy (TEM). The results showed that the main components of the samples were AIMgB14 with a few MgAI204.MgAI204 was derived from the contamination of the preliminary powders and the milling process. The average hardness of the samples that provided the results was 26.1 GPa. The average density of the samples was 2.62 g/cm^3, which is 98% of its theoretical density. The sample of AIMgB14-TiB2 composite with 30 wt% TiB2 had a hardness of 29.5 GPa, which is consistent with that of AIMgB14-TiB2 composite with 30 wt% TiB2 prepared by mechanical alloying/hot uniaxial pressing. Thus, a new approach was developed using the mechanical alloying and FAPAS process to synthesize AIMgB14 with fast heating, high efficiency, energy saving, and high yield. 展开更多
关键词 Field-activated and Pressure-assisted synthesis (FAPAS) aimgb14 Borides MICROSTRUCTURE
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