高磁场下滑移铸造织构多孔Ti3SiC2及其高温变形组织演化

N. Hashimoto, K. Ikeda, S. Miura, K. Morita, Tohru S. Suzuki, Y. Sakka
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引用次数: 1

摘要

为了明确约束条件对扭结形成的影响,研究了织构和孔隙度控制的Ti3SiC2多晶的制备工艺,并在1200℃高温单轴压缩试验中考察了高温变形过程中的显微组织演变。在12 T强磁场条件下,采用滑铸法制备了致密织构Ti3SiC2烧结体,并在1400℃无压烧结1 h。通过将聚甲基丙烯酸甲酯(PMMA)颗粒分散到织构Ti3SiC2中作为间隔介质,控制了织构Ti3SiC2的孔隙率。在强磁场条件下成功制备了孔隙率分别为8.4%和16.7%的高织构Ti3SiC2多晶。垂直于织构结构c轴的高温单轴压缩后,多孔和致密的Ti3SiC2均出现扭结形成,这是各向异性层状材料常见的变形模式。然而,多孔试件的扭结边界的平均旋转角度要高于致密试件。由于晶体旋转是扭结形成的必要条件,由于多孔区比致密区约束弱,扭结带在多孔区更容易发育。从显微组织分析可以得出,相邻晶粒产生的约束因子影响晶体旋转,导致不同旋转角度的扭结边界形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fabrication of Textured Porous Ti3SiC2 by Slip Casting under High Magnetic Field and Microstructural Evolution through High Temperature Deformation
To clarify the effect of constraint conditions on the kink formation, fabrication process of the texture and porosity controlled Ti3SiC2 polycrystals was investigated and microstructural evolution during high temperature deformation was examined in it under high temperature uniaxial compression tests at 1200℃. Dense textured Ti3SiC2 sintered body was fabricated by slip casting in the high magnetic field of 12 T and following pressureless sintering at 1400℃ for 1 h. The porosity of the textured Ti3SiC2 was controlled by dispersing polymethyl methacrylate (PMMA) particles into the textured Ti3SiC2 as a spacer media. The highly textured Ti3SiC2 polycrystals with porosity of 8.4 vol% and 16.7 vol%, respectively, were successfully fabricated by the slip casting in the high magnetic field. After the high temperature uniaxial compression perpendicular to the c-axis of the textured structure, both the porous and dense Ti3SiC2 showed kink formation, which is a common deformation mode for anisotropic layered materials. However, the average rotation angles of the kink boundaries were higher in the porous specimen than in the dense specimen. Since the crystal rotation is necessary for the kink formation, kink bands would be preferably developed in the porous area due to its weaker constraint than in the dense area. It can be concluded from the microstructural analysis that the constrain factor caused by the neighbor grains affects the crystalline rotation, resulting in the kink boundary formation with different rotation angles.
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