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首页> 外文期刊>Journal of the European Ceramic Society >Piezo-spectroscopic characterization of alumina-aluminium titanate laminates
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Piezo-spectroscopic characterization of alumina-aluminium titanate laminates

机译:铝钛酸铝层压板的压电光谱表征

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A multilayered alumina-aluminium titanate composite was prepared by a colloidal route from aqueous suspensions. The structure of the laminate was symmetric and constituted of two external Al_2O_3 layers (width approx = 1750 mum), one central Al_2O_3 layer (width approx = 1200 mum) and two intermediate thin (width approx = 315-330 mum) Al_2O_3-Al_2TiO_5 layers. Additional monolithic materials with the same compositions as those of the layers were fabricated as reference materials. Young's modulus of the monoliths was determined by three point bending. Dilatometry determinations were performed on green specimens, following the same heating and cooling schedules as those used for sintering the laminate, in order to determine the actual dimensional changes on cooling after sintering. The dimensional changes of the sintered specimens on heating and on cooling were also determined. Microscopic distributions of residual stresses were evaluated by fluorescence piezo-spectroscopy, and they revealed the existence of weak tensile and compressive hydrostatic stresses in the aluminium titanate and alumina layers, respectively. The level and sign of these stresses was in good agreement with those predicted based on analysis of the Young's modulus and the dimensional variations during cooling after sintering of the monoliths with the same compositions as those of the layers. Dimensional variations during cooling after sintering were different from those for sintered materials, which presented hysteresis between heating and cooling. In spite of the presence of compressive residual stresses in the external layers of the laminate, strength values of notched samples of the laminated specimens were lower than those for monoliths of the same composition as the external layers.
机译:通过胶体路线由水性悬浮液制备多层氧化铝-钛酸铝复合物。层压板的结构是对称的,由两层外部Al_2O_3层(宽度约为1750微米),一层中央Al_2O_3层(宽度约为1200微米)和两层中间薄层(宽度约为315-330微米)组成Al_2O_3-Al_2TiO_5层。具有与层的组成相同的其他整体材料被制造为参考材料。整体的杨氏模量通过三点弯曲来确定。为了确定烧结后冷却时的实际尺寸变化,按照与烧结层压板相同的加热和冷却时间表对生坯进行了膨胀计测定。还确定了烧结样品在加热和冷却时的尺寸变化。残余应力的微观分布通过荧光压电光谱进行了评估,它们揭示了钛酸铝层和氧化铝层分别存在弱的拉伸和压缩静水应力。这些应力的水平和符号与基于杨氏模量的分析和在烧结具有与层的那些相同的组成的整料之后的冷却期间的尺寸变化的分析中所预测的那些应力和符号非常一致。烧结后冷却过程中的尺寸变化不同于烧结材料,后者在加热和冷却之间表现出滞后现象。尽管层压材料的外层中存在压缩残余应力,但层压样品的缺口样品的强度值仍低于组成与外层相同的整料的强度值。

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