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Texturing of 3Y-TZP zirconia by slip casting in a high magnetic field of 17.4T

机译:17.4T的高磁场滑倒纹理3Y-TZP氧化锆

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Ceramics can be textured in a strong magnetic field, by aligning the suspended particles during colloidal processing and retaining this alignment in the green body. Attempts to align tetragonal zirconia particles however were not successful, not even in a high magnetic field of 17.4T. In the current work, monoclinic zirconia was successfully aligned with its (100) plane perpendicular to the magnetic field direction by slip casting in a 17.4T field. Textured tetragonal zirconia was reactively synthesized during sintering of undoped pure monoclinic zirconia and co-precipitated 8 mol% yttria-stabilized zirconia. The sintered tetragonal zirconia inherited the alignment of the monoclinic zirconia particle precursor with a (100)(m)//(001)(t) orientation relationship. In other words, the t-ZrO2 grains were aligned with their (001) plane perpendicular to the magnetic field direction. The indentation toughness of the ceramic cast in the magnetic field is anisotropic and has an exceptionally high value of 14.6 MPa m(0.5) along the [001] direction. A 3-pt flexural strength of 968 +/- 77 MPa (load applied parallel to the magnetic field) was obtained for the ceramic cast in the strong magnetic field, which was 26% higher than for the ceramic cast without magnetic field. (C) 2015 Elsevier Ltd. All rights reserved.
机译:陶瓷可以在强磁场中变形,方法是在胶体加工过程中对齐悬浮颗粒,并将这种对齐保持在绿色体中。然而,对准四方氧化锆颗粒的尝试没有成功,即使在17.4T的高磁场中也没有成功。在目前的工作中,单斜氧化锆在17.4T磁场中通过滑动铸造成功地与其垂直于磁场方向的(100)平面对齐。在未掺杂纯单斜氧化锆和共沉淀8 mol%钇稳定氧化锆的烧结过程中,反应合成了织构四方氧化锆。烧结四方氧化锆继承了单斜氧化锆颗粒前体的排列,具有(100)(m)/(001)(t)取向关系。换句话说,t-ZrO2晶粒与垂直于磁场方向的(001)平面对齐。在磁场中铸造的陶瓷的压痕韧性是各向异性的,沿[001]方向的压痕韧性值非常高,为14.6 MPa m(0.5)。在强磁场中,陶瓷铸件的3-pt弯曲强度为968+/-77mpa(平行于磁场施加的载荷),比没有磁场的陶瓷铸件高26%。(C) 2015爱思唯尔有限公司版权所有。

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