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首页> 外文期刊>Journal of the European Ceramic Society >Micro- and macroscopic thermal expansion of stabilized aluminum titanate
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Micro- and macroscopic thermal expansion of stabilized aluminum titanate

机译:稳定钛酸铝的微观和宏观热膨胀

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摘要

The lattice expansion of aluminum titanate (AT) obtained by firing a mixture of alumina, rutile, strontium and calcium carbonate and silica was measured using neutron and laboratory X-ray diffraction. The microscopic data are compared with macroscopic measurement completed by dilatometry.A powder and a compact rod sample were compared to assess the influence of micro residual stresses locked into the solid structure at grain level, which could possibly be relieved upon grinding.Results show good correlation between neutron and X-ray diffraction techniques. They also show that a compact material behaves differently than a powder, contrary to what happens for other porous ceramics such as cordierite. The integrity factor model was used to rationalize the results and predict grain level stresses in all crystal directions and all phases (AT, Strontium aluminum silicate, alumina and residual glass). Calculation show that the AT c-axis is always under compression while all other crystal directions and phases are under tension. Those micro-stresses do not undermine the macroscopic mechanical properties of the material and confer to it its interesting properties like low thermal expansion and enhanced strain tolerance.
机译:使用中子和实验室X射线衍射测量通过烧制氧化铝,金红石,锶和碳酸钙和二氧化硅的混合物而获得的钛酸铝(AT)的晶格膨胀。将显微数据与通过膨胀法完成的宏观测量结果进行比较,比较粉末和紧凑的棒状样品,以评估在晶粒水平锁定在固体结构中的微小残余应力的影响,这些残余应力可能在磨削时得以缓解,结果显示出良好的相关性在中子和X射线衍射技术之间。他们还表明,致密材料的性能与粉末不同,这与堇青石等其他多孔陶瓷相反。完整性因子模型用于合理化结果并预测所有晶体方向和所有相(AT,硅酸锶铝,氧化铝和残留玻璃)的晶粒度应力。计算表明,AT c轴始终处于压缩状态,而所有其他晶体方向和相位都处于拉伸状态。这些微应力不会破坏材料的宏观机械性能,并赋予其有趣的性能,例如低热膨胀性和增强的应变容限。

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