重离子辐照下ZrO2多晶陶瓷的相变过程及其影响的研究

IF 2.7 Q1 MATERIALS SCIENCE, CERAMICS
A. Kozlovskiy, Mahambet Alin, D. Borgekov
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引用次数: 6

摘要

本工作的目的是研究在重离子辐照下ZrO2陶瓷中的多晶型转变机制,并确定t-ZrO2情况下结构畸变的性质→ c-ZrO2型转变和相关的各向异性变形。用能量为150 MeV、通量为1011–1016离子/cm2的Kr15+重离子辐照ZrO2陶瓷样品。在评估取决于辐照通量的结构变化时,发现在低辐照通量(1011–1012离子/cm2)下,晶格的变形畸变起着主要作用,晶格具有明显的各向异性特征。同时,在1013离子/cm2以上的通量下,t-ZrO2的多晶型转化起主要作用→ c-ZrO2型,随后在高于1015离子/cm2的通量下使损伤层非晶化。已经确定,晶格的各向异性畸变沿着晶体学a轴以及(011)织构取向更加明显,这是t-ZrO2的特征。t-ZrO2的多态性转化过程→ c-ZrO2型发生在1013–1014离子/cm2的辐照通量下,其特征是沿着材料中离子的轨迹出现的缺陷的局部区域的重叠。获得了ZrO2陶瓷强度和热物理性能的变化与辐照通量的关系。建立了结构无序和多态性转变对强度和抗裂性降低的影响机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Polymorphic Transformation Processes and Their Influence in Polycrystalline ZrO2 Ceramics upon Irradiation with Heavy Ions
The aim of this work was to study the mechanisms of polymorphic transformations in ZrO2 ceramics under irradiation with heavy ions, as well as to determine the nature of structural distortions in the case of t-ZrO2 → c-ZrO2 type transformations and associated anisotropic deformations. The samples of ZrO2 ceramics were irradiated with Kr15+ heavy ions with an energy of 150 MeV and fluences of 1011–1016 ion/cm2. During evaluation of the structural changes depending on the irradiation fluence, it was found that at low irradiation fluences (1011–1012 ion/cm2), the main role is played by deformation distortions of the crystal lattice, which have a pronounced anisotropic character. Meanwhile, at fluences above 1013 ion/cm2, the main role is played by polymorphic transformations of the t-ZrO2 → c-ZrO2 type, followed by amorphization of the damaged layer at fluences above 1015 ion/cm2. It was established that the anisotropic distortion of the crystal lattice is more pronounced along the crystallographic a axis, as well as the (011) texture orientation, which is characteristic of t-ZrO2. The polymorphic transformation processes of the t-ZrO2 → c-ZrO2 type occur at irradiation fluences of 1013–1014 ions/cm2, which are characterized by the formation of an overlap of local areas of defects that appear along the trajectory of ions in the material. The dependences of changes in the strength and thermophysical properties of ZrO2 ceramics on the irradiation fluence were obtained. The mechanisms of influence of the structural disorder and polymorphic transformations on the decrease in strength and crack resistance were established.
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来源期刊
CiteScore
3.00
自引率
7.10%
发文量
66
审稿时长
10 weeks
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