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CRACK GROWTH BY THE ISOTHERMAL MARTENSITIC PHASE TRANSFORMATION IN TETRAGONAL ZIRCONIA POLYCRYSTALS

机译:四边形氧化锆多晶中的等温马氏体相转化的裂纹增长

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In this study, we investigated the crack nucleation, growth and propagation on the surface of Y-TZP (yttria-stabilized tetragonal zirconia polycrystals, noted by Y-TZP) during isothermal phase transformation by low temperature ageing. Crack initiation and growth on the surface of Y-TZP specimen was dependent on the sintered microstructure, i.e, sintered density, grain size, pore structure, and residual stress etc.. In the case of Y-TZP with 2mol % yttria content, the phase transformation of tetragonal to monoclinic phase began on the surface and it induced a crack nucleation in the specimen at the initial stage of low temperature ageing. Most of cracks in 2Y-TZP by low temperature ageing were firstly formed on the surface of specimens (free surface, weak bonding grains, etc.) where the change of strain free energy for a tetragonal to monoclinic transformation was small, and surface cracks grew into the bulk interior through the grain boundaries.
机译:在该研究中,通过低温老化在等温相变期间,研究了Y-TZP(YTTRIA稳定的四方氧化锆多晶,Y-TZP)表面上的裂缝成核,生长和繁殖。 Y-TZP样本表面上的裂纹引发和生长依赖于烧结的微观结构,即烧结密度,粒度,孔隙结构和残余应力等。在Y-TZP具有2mol%的ytTRIa含量的情况下,四边形对单斜相的相转化开始于表面,并在低温老化的初始阶段诱导样品中的裂纹成核。首先在标本(自由表面,弱粘接颗粒等)的表面上形成2Y-TZP中2Y-TZP中的大部分裂缝,其中菌株对单斜晶体转化的无应变能量的变化很小,并且表面裂缝增长通过谷物边界进入散装内部。

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