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Grain Boundary Energy and Tensile Ductility in Superplastic Cation-doped TZP

机译:超塑性阳离子掺杂TZP的晶界能和拉伸延性

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摘要

Fine-grained 3Y-TZP has been known to show high superplasticity. Addition of a small amount of metal oxide influences the superplastic behavior in 3Y-TZP. In this study, 3Y-TZP doped with 1 mol percent GeO_2, TiO_2 or BaO were fabricated, and respective grain boundary energy has been systematically measured by a thermal grooving technique with atomic force microscopy. It has been found that addition of Ge~(4+) or Ti~(4+) ions decreases the grain boundary energy to stabilize the grain boundaries in TZP whereas doping of Ba~(2+) ion increases the grain boundary energy to destabilize the grain boundaries. A change in the grain boundary energy should be due to segregation of dopant at grain boundaries. It has been also found that the elongation to failure of cation-doped 3Y-TZP is directly proportional to the stability of grain boundary. Grain boundary energy is thus one of the principal factors to determine the tensile ductility of TZP. In order to reveal the effect of dopant on the grain boundary energy, lattice static calculations and first principles molecular orbital calculations have been performed for supercells and model clusters including the present dopant, respectively. A series of results shows that substitution of Ge~(4+) or Ti~(4+) ion for Zr~(4+) ion increases the covalency of TZP, but the covalency of TZP is reduced by addition of Ba~(2+) ions. The grain boundary energy is found to have a relationship with covalency nearby grain boundaries in TZP.
机译:已知细粒3Y-TZP具有高超塑性。少量金属氧化物的加入会影响3Y-TZP中的超塑性行为。在这项研究中,制备了掺有1 mol%GeO_2,TiO_2或BaO的3Y-TZP,并通过热切槽技术和原子力显微镜系统地测量了各自的晶界能。已经发现,添加Ge〜(4+)或Ti〜(4+)离子会降低晶界能,从而稳定TZP中的晶界,而掺杂Ba〜(2+)离子会增加晶界能,从而使稳定化晶界。晶界能量的变化应归因于掺杂剂在晶界处的偏析。还已经发现,阳离子掺杂的3Y-TZP的断裂伸长率与晶界的稳定性成正比。因此,晶界能是决定TZP拉伸延展性的主要因素之一。为了揭示掺杂剂对晶界能的影响,已经分别对包括本发明的掺杂剂的超晶胞和模型簇进行了晶格静态计算和第一原理的分子轨道计算。一系列结果表明,用Ge〜(4+)或Ti〜(4+)离子代替Zr〜(4+)离子会增加TZP的共价性,但是通过添加Ba〜(2)会降低TZP的共价性+)离子。发现在TZP中,晶界能与附近晶界的共价关系。

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