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Preparation of hierarchical porous Al2TiO5-mullite ceramics by biological foaming and its microstructural characterization

机译:通过生物发泡制备分层多孔Al2TiO5-莫来石陶瓷及其微观结构特征

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摘要

Macroporous Al2TiO5-mullite (AT-M) ceramics with a controllable hierarchical pore structure were prepared by combining biological foaming and flour consolidation using an ice bath to improve pore distribution. The effects of flour, yeast, and solid contents on foaming ability and foam stability were evaluated. In addition, the related effect on pore size distribution, apparent porosity, and mechanical strength of the specimen were systematically investigated. Results indicated that the porosity, compressive strength, and pore structure of macroporous AT-M ceramics could be controlled by adjusting yeast, solid, and flour contents. The solid and flour contents significantly affected the pore size of the specimen. Macroporous AT-M ceramics with a macropore size of 200-400 mu m, porosity of 58.77-76.74%, and compressive strength of 3.2-13.98 MPa were obtained. The poreforming mechanism of the porous ceramics was determined.
机译:通过使用冰浴结合生物发泡和面粉固结来制备具有可控层叠孔结构的大孔Al2TiO5-Mullite(AT-M)陶瓷通过使用冰浴来改善孔径分布。 评价面粉,酵母和固体含量对发泡能力和泡沫稳定性的影响。 此外,系统地研究了对孔径分布,表观孔隙率和机械强度的相关效果。 结果表明,可以通过调节酵母,固体和面粉含量来控制大孔,抗压强度和大孔AT-M陶瓷的孔隙结构。 固体和面粉含量显着影响样品的孔径。 大孔AT-M陶瓷,大孔尺寸为200-400 mu m,孔隙率为58.77-76.74%,并获得3.2-13.98MPa的抗压强度。 测定多孔陶瓷的缩放机制。

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