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Forming Mullite-Ceramics Reinforced with ZrO2 -t Starting from Mullite-ZrO2 -t and Kyanite-Al2 O3 -ZrO2 -t Mixtures

机译:从莫勒钛矿 - ZrO2 -T和Kyanite-Al2 O3-Zro2 -T混合物开始,用ZrO2 -T加固莫来石陶瓷

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摘要

Mullite-ceramics reinforced with 8 and 10 vol. % YZT were prepared starting from two different powder mixtures. The first one was a mixture of pure mullite and YZT, and the other was a mixture of kyanite, alumina and YZT. The production of ceramics consisted of the pressureless-sintering of mixtures powders which were thoroughly mixed under high energy ball-milling. During sintering, kyanite and alumina of the second mixture react between them to form mullite. Measurements of density, microhardness and KIC were carry out in all produced materials, from it was obtained that samples produced with pure mullite reach major densities, microhardness and toughness in comparison with the values displayed for samples prepared with kyanite and alumina. The reason of this has its explanation since during sintering of the kyanite and alumina samples; there is a competition between two phenomena; the reaction to form mullite and the sintering of the product. As the reaction occurs at low temperature and has high energy consumption, the activation energy necessary for diffusion during sintering is not reached; therefore this phenomenon is the controlling agent during the processing.
机译:用8和10 Vol加固的莫来石陶瓷。从两种不同的粉末混合物开始制备%yzt。第一个是纯莫来石和yzt的混合物,另一个是kyanite,氧化铝和yzt的混合物。陶瓷的生产由混合物粉末的无压烧结组成,该粉末在高能量球磨下彻底混合。在烧结期间,第二混合物的血晶和氧化铝在它们之间反应以形成莫来石。密度,硬度和KIC的测量结果进行中的所有生产的材料,从中得到,与纯莫来石抵达主要密度,在与所述值相比显微硬度和韧性制备的样品显示样品蓝晶石和氧化铝制备。这是由于在烧结杀害盐酸和氧化铝样品期间的解释;两种现象之间存在竞争;形成莫来石的反应和产物的烧结。随着反应在低温下发生并具有高能耗,未达到烧结期间扩散所需的激活能量;因此,这种现象是加工过程中的控制剂。

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