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首页> 外文期刊>Journal of the European Ceramic Society >Single and polycrystalline mullite fibres grown by laser floating zone technique
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Single and polycrystalline mullite fibres grown by laser floating zone technique

机译:激光浮区技术生长的单晶和多晶莫来石纤维

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The laser floating zone technique was used to grow large 2Al2O3–SiO2 mullite fibres (up to 1.6mm in diameter and 40mm in length). The fibres grown at 10 mm/h are single crystalline in nature, while those pulled at higher rates (40 and 100 mm/h) are polycrystalline with a cellular microstructure. The crystals are highly [0 0 1] textured with respect to the fibre axis, as determined by X-ray diffraction analysis. The Raman spectra taken at different orientations corroborate the strong anisotropy observed by X-ray and SEM on both single crystalline and textured polycrystalline samples.Four point bending tests and ultramicroindentation Vickers experiments were performed at room temperature in order to characterize the mechanical properties. The presence of lamellar inclusions in the single crystalline fibres decreases the flexural strength (431MPa) and the fracture toughness (1.2MPa.m~(1/2)) compared to the polycrystalline ones (631MPa and 1.6MPa.m~(1/2)). However, the absence of grain boundaries in the single crystals leads to higher ultramicrohardness (H_V = 15.6 GPa) and Young’s modulus (E = 170 GPa) than those of the polycrystalline fibres (14.2 and 145 GPa), where a glassy intergranular phase exists.
机译:激光浮区技术用于生长大型2Al2O3-SiO2莫来石纤维(直径最大1.6mm,长度最大40mm)。以10 mm / h的速度生长的纤维本质上是单晶的,而以较高速度(40和100 mm / h)拉出的纤维是具有蜂窝微结构的多晶纤维。如通过X射线衍射分析所确定的,所述晶体相对于纤维轴具有高度[0 0 1]的织构。在不同方向上获得的拉曼光谱证实了X射线和SEM在单晶和织构多晶样品上观察到的强各向异性。在室温下进行了四点弯曲试验和超微压痕维氏试验,以表征机械性能。单晶纤维中存在层状夹杂物比多晶的夹杂物(631MPa和1.6MPa.m〜(1/2)降低了弯曲强度(431MPa)和断裂韧性(1.2MPa.m〜(1/2)) ))。但是,与存在玻璃状晶间相的多晶纤维(14.2和145 GPa)相比,单晶中不存在晶界会导致更高的超显微硬度(H_V = 15.6 GPa)和杨氏模量(E = 170 GPa)。

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