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THE EFFECT OF PORE STRUCTURE ON STRENGTH AND THERMAL CONDUCTIVITY OF POROUS ZrO_2 CERAMICS

机译:孔隙结构对多孔ZrO_2陶瓷强度和热导率的影响

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Porous yttria-stabilized zirconia (YSZ) ceramics with various pore structures were fabricated by various TBA-based gelcasting methods, including traditional gelcasting, gelcasting with pore-forming agent, gelcasting with pore-forming agent and fiber-reinforcement. The materials with different pore structures were obtained after sintering on high temperature. The room-temperature compressive strength and thermal conductivity were tested and analyzed. The results showed that although pore size of ceramics with nearly closed pores was larger than that of ceramics with connected pores, the strength of the former was much higher than that of the latter. And the thermal conductivity of the former was a little higher than that of the latter, so it is more suitable for application when strength is prior to thermal conductivity. The porosity was increased with the addition of YSZ fiber, and the strength of the materials still remained relatively high in high porosity level. The porous YSZ ceramics fabricated by the process above have both high strength and low thermal conductivity, and may be applied in thermal protection/insulation fields.
机译:通过各种基于TBA的凝胶浇铸方法,包括传统的凝胶浇铸,用成孔剂进行凝胶浇铸,用成孔剂进行凝胶浇铸和纤维增强,来制造具有各种孔结构的多孔氧化钇稳定的氧化锆(YSZ)陶瓷。高温烧结后得到具有不同孔结构的材料。对室温下的抗压强度和导热系数进行了测试和分析。结果表明,尽管具有近乎封闭孔的陶瓷的孔径大于具有连通孔的陶瓷的孔径,但前者的强度远高于后者。而且前者的导热系数略高于后者,因此它更适合于强度优先于导热系数的应用。随着YSZ纤维的加入,孔隙率增加,并且在高孔隙率水平下材料的强度仍然保持相对较高。通过上述方法制造的多孔YSZ陶瓷既具有高强度又具有低导热率,并且可以应用于热保护/隔热领域。

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