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首页> 外文期刊>Journal of prosthodontics: official journal of the American College of Prosthodontists >Effect of sintering temperature on flexural properties of alumina fiber-reinforced, alumina-based ceramics prepared by tape casting technique.
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Effect of sintering temperature on flexural properties of alumina fiber-reinforced, alumina-based ceramics prepared by tape casting technique.

机译:烧结温度对氧化铝纤维增强氧化铝纤维增强抗弯曲性能的影响。

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PURPOSE: The purpose of this study was to investigate the effect of sintering temperature on flexural properties of an alumina fiber-reinforced, alumina-based ceramic (alumina-fiber/alumina composite) prepared by a tape casting technique. MATERIALS AND METHODS: The alumina-based ceramic used a matrix consisting of 60 wt% Al(2)O(3) powder and 40 wt% SiO(2)-B(2)O(3) glass powder with the following composition in terms of wt%: 33 SiO(2), 32 B(2)O(3), 20 CaO, and 15 MgO. Prepreg sheets of alumina-fiber/alumina composite in which uniaxial aligned alumina fibers were infiltrated with the alumina-based matrix were fabricated continuously using a tape casting technique employing a doctor blade system. Four sintering temperatures were investigated: 900 degrees C, 1000 degrees C, 1100 degrees C, and 1200 degrees C, all for 4 hours under atmospheric pressure in a furnace. The surface of the alumina-fiber/alumina composite after sintering was observed with a field-emission scanning electron microscope (FE-SEM). A three-point bending test was carried out to measure the flexural strength and modulus of alumina-fiber/alumina composite specimens. In addition, sintered alumina fiber was characterized by X-ray diffraction (XRD). RESULTS: FE-SEM observation showed that alumina-fiber/alumina composite was confirmed to be densely sintered for all sintering temperatures. Three-point bending measurement revealed that alumina-fiber/alumina composite produced at sintering temperatures of 1100 degrees C and 1200 degrees C exhibit flexural strengths lower than those of alumina-fiber/alumina composite produced at sintering temperatures of 900 degrees C and 1000 degrees C; alumina-fiber/alumina composite produced at sintering temperatures of 1100 degrees C and 1200 degrees C exhibit flexural moduli lower than that of alumina-fiber/alumina composite produced at a sintering temperature of 1000 degrees C. Additional XRD pattern of alumina fiber indicated that with increasing sintering temperature, the crystallographic structure of gamma-alumina transformed to mullite. CONCLUSIONS: There were significant differences in the flexural properties between the alumina-fiber/alumina composite sintered at the four temperatures. This indicates that the choice of optimum sintering temperature is an important factor for successful dental applications of alumina-fiber/alumina composite developed by the tape casting system.
机译:目的:本研究的目的是探讨烧结温度对通过胶带铸造技术制备的氧化铝纤维增强,氧化铝基陶瓷(氧化铝纤维/氧化铝复合材料)的弯曲性能的影响。材料和方法:基于氧化铝的陶瓷使用由60wt%Al(2)O(3)粉末和40wt%SiO(2)-B(2)O(2)O(3)玻璃粉末组成的基质,其具有以下组成WT%:33 SiO(2),32b(2)O(3),20 caO和15 MgO。使用采用刮刀系统的胶带铸造技术,使用采用刮刀系统的胶带铸造技术连续地制造具有基于氧化铝基质的单轴对准氧化铝纤维的氧化铝 - 纤维/氧化铝复合物的预浸料片。研究了四个烧结温度:900℃,1000℃,1100℃,1200℃,炉内大气压下均为4小时。用现场发射扫描电子显微镜(Fe-SEM)观察烧结后的氧化铝 - 纤维/氧化铝复合物的表面。进行三点弯曲试验以测量氧化铝 - 纤维/氧化铝复合标本的弯曲强度和模量。此外,烧结氧化铝纤维的特征在于X射线衍射(XRD)。结果:Fe-SEM观察结果表明,确认氧化铝 - 纤维/氧化铝复合物在所有烧结温度下均匀烧结。三点弯曲测量表明,在1100℃和1200摄氏度的烧结温度下产生的氧化铝 - 纤维/氧化铝复合材料表现出低于900℃和1000摄氏度的氧化铝 - 纤维/氧化铝复合材料的弯曲强度;氧化铝 - 纤维/氧化铝复合材料在1100℃和1200摄氏度的烧结温度下产生的弯曲模量低于1000℃的烧结温度下产生的氧化铝 - 纤维/氧化铝复合材料的弯曲模量。氧化铝纤维的附加XRD图案表明增加烧结温度,γ-氧化铝转化为莫来石的晶体结构。结论:在四个温度下烧结氧化铝 - 纤维/氧化铝复合材料之间的弯曲性能存在显着差异。这表明最佳烧结温度的选择是磁带铸造系统开发的氧化铝 - 纤维/氧化铝复合材料成功牙科应用的重要因素。

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