首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Porous Si3N4 ceramics with hierarchical pore structures prepared by gelcasting using DMAA as gelling agent and PS as pore-forming agent
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Porous Si3N4 ceramics with hierarchical pore structures prepared by gelcasting using DMAA as gelling agent and PS as pore-forming agent

机译:具有使用DMAA作为胶凝剂和PS作为孔成型剂的凝胶制备的具有等级孔结构的多孔Si3N4陶瓷。

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Porous Si3N4 ceramics with bimodal hierarchical pore structures were fabricated through combining aqueous gelcasting and adding poreeforming agent method wherein a lowetoxic monomer N, N-dimethylacrylamide (DMAA) and spherical poreeforming agent polystyrene sphere (PS) were respectively applied. The results demonstrated that PS size and content played an important function in regulating microstructure and properties of slurries, green and sintered bodies. The slurry viscosity increased sharply with the introduction of fine PS and reached a maximum of 1.78 Pa.s when adopting 7 wt% PS with d(50) = 2.51 mu m. Fine PS addition caused higher porosity in green bodies than coarse one, resulting in a significant reduction in bending strength from 28.50 MPa to 11.50 MPa, however, overall, demonstrating high enough strength for mechanical processing. The formed spherical pores from PS in ceramic matrix facilitated high porosity and highly crosslinked microstructure, thus contributing to lowering dielectric constant and loss. With PS size increasing, the dominant role in mechanical properties was transferred from porosity to microstructure, whilst dielectric properties were merely controlled by porosity and spherical pores. The porosity, bending strength, fracture toughness, dielectric constant and loss at 15 GHz varied in ranges of 36.34-52.91%, 258.42-101.21 MPa, 6.02-3.38 MPa.m(1/2), 4.29-2.98 and 1.48-1.18 x 10(-3), respectively, displaying an excellent comprehensive properties. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过组合含水凝胶和添加孔隙形成剂方法,制造具有双峰等级孔结构的多孔Si3N4陶瓷,分别施加了低氧基单体N,N-二甲基丙烯酰胺(DMAA)和球形偏心剂聚苯乙烯球(PS)。结果表明,PS尺寸和内容在调节浆料,绿色和烧结体的微观结构和性质方面发挥了重要作用。由于采用D(50)=2.51μm,浆料粘度随着细胞的引入并最大达到1.78Pa,最多达到1.78Pa。细胞添加引起的绿色体中的孔隙率高于粗糙度,导致弯曲强度从28.50MPa的弯曲强度显着降低,然而整体而言,展示了足够高的机械加工强度。来自PS的形成的球形孔在陶瓷基质中促进了高孔隙率和高度交联的微观结构,从而有助于降低介电常数和损失。对于PS尺寸的增加,机械性能中的主要作用从孔隙率转移到微观结构,而介电性质仅由孔隙率和球形孔控制。孔隙率,弯曲强度,断裂韧性,15GHz的介电常数和损失在36.34-52.91%,258.42-101.21MPa,6.02-3.38MPa.m(1/2),4.29-2.98和1.48-1.8 x分别为10(-3),分别显示出优异的综合性质。 (c)2019 Elsevier B.v.保留所有权利。

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