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首页> 外文期刊>Journal of the European Ceramic Society >Colloidal processing and partial sintering of high-performance porous zirconia nanoceramics with hierarchical heterogeneities
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Colloidal processing and partial sintering of high-performance porous zirconia nanoceramics with hierarchical heterogeneities

机译:具有分层异质性的高性能多孔氧化锆纳米陶瓷的胶体加工和部分烧结

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摘要

High-performance, porous, Y-TZP nanoceramics with hierarchical heterogeneities originating from uniform, intra- and inter-particle packing were prepared by colloidal processing and partial sintering of a mesoporous powder. The powder consisted of 100-150-nanometer-sized secondary particles initially composed of smaller, loosely aggregated, primary, nanoscale crystallites. Green bodies were prepared by centrifugal slip casting of weakly flocculated suspensions. During the initial stage of sintering, necking between the secondary particles was accompanied by intra-particle pore coalescence, while the pores originating from the secondary particle packing remained intact. Such microstructures with porosity levels between 46 and 18.3% and pore areas between 18 and 4m~2/g led to attractive properties, i.e., much reduced thermal conductivities of 0.63-1.88 W m~(-1) K~(-1), high bending strengths of 70-540 MPa and lowered elastic moduli of 32-156 GPa, making them potentially ideal as thermal insulators and/or load-bearing porous biomaterials owing to the possibility of further impregnation with bioactive ingredients.
机译:通过中孔粉末的胶体加工和部分烧结,制备了具有均匀,颗粒内和颗粒间堆积的分层异质性的高性能,多孔,Y-TZP纳米陶瓷。粉末由100-150纳米大小的次级颗粒组成,这些颗粒最初由较小的,疏松聚集的初级纳米级微晶组成。通过离心滑铸弱絮凝的悬浮液制备生坯。在烧结的初始阶段,次级颗粒之间的颈缩伴随着颗粒内孔的聚结,而源自次级颗粒堆积的孔保持完整。这种孔隙率在46%至18.3%之间,孔隙面积在18至4m〜2 / g之间的微观结构导致了诱人的性能,即热导率大大降低,为0.63-1.88 W m〜(-1)K〜(-1), 70-540 MPa的高弯曲强度和32-156 GPa的降低的弹性模量,由于它们可能会进一步浸入生物活性成分,因此使其成为隔热材料和/或承重多孔生物材料的理想选择。

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