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首页> 外文期刊>Journal of Materials Science >Fabrication of semi-conductive ceramics by combination of gelcasting and reduction sintering
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Fabrication of semi-conductive ceramics by combination of gelcasting and reduction sintering

机译:凝胶铸造与还原烧结相结合的半导体陶瓷的制备

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In this study, we propose a new process to fabricate electrically semi-conductive alumina by the combination of gelcasting and reduction sintering. The process is similar to the conventional gelcasting method except for varying amounts of methacrylamide monomer dosages at 2.83, 5.50, and 8.04 wt% relative to the mass of the slurry. Correspondingly, the rheological evaluation of aqueous slurry was conducted. The resulting fluidity exhibited that monomer dosage until 8.04 wt% yielded slurry viscosity of 1628 MPA center dot s at shear rate of 20 s(-1), which was feasible for gelcasting without noticeable casting defects. The freshly gelled bodies were demolded, carefully dried, and then sintered at different schedules in nitrogen atmosphere. The reduction-sintered samples were re-sintered in air for comparative evaluation of physical property. The sintered alumina body was characterized by electrical resistance, X-ray diffraction, and scanning electron microscopy. The results showed that monomer additions and sintering schedule significantly affect in lowering electrical resistivity. The obtained lowest value was 3.6 x 10(6) Omega-cm with 8.04 wt% monomer dosage and sintering at 1550 degrees C with 2 h holding time. The resulting material is classified as semi-conductive, which is potential for electrostatic shielding applications. The effect of physical property and microstructure on electrical conductivity and the corresponding reaction mechanism were discussed in details. (c) 2006 Springer Science + Business Media, Inc.
机译:在这项研究中,我们提出了一种通过凝胶浇铸和还原烧结相结合的方法来制造半导体氧化铝的新工艺。该方法类似于常规的凝胶浇铸法,除了相对于浆料的质量以2.83、5.50和8.04wt%的量改变甲基丙烯酰胺单体的用量。相应地,进行了水性浆料的流变评价。产生的流动性表明,直至8.04 wt%的单体用量,在20 s(-1)的剪切速率下产生的浆液粘度为1628 MPA中心点s,这对于凝胶浇铸没有明显的浇铸缺陷是可行的。将新鲜胶凝的物体脱模,小心干燥,然后在氮气气氛中以不同的时间表进行烧结。将还原烧结的样品在空气中重新烧结,以进行物理性能的比较评估。氧化铝烧结体的特征在于电阻,X射线衍射和扫描电子显微镜。结果表明,单体的添加和烧结时间表显着影响了电阻率的降低。所获得的最低值为3.6 x 10(6)Ω-cm,单体用量为8.04 wt%,并在1550摄氏度下烧结2小时保持时间。所得到的材料被归类为半导体,这对于静电屏蔽应用来说是潜在的。详细讨论了物理性质和微观结构对电导率的影响以及相应的反应机理。 (c)2006年Springer Science + Business Media,Inc.

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