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Excellent thermal shock resistant materials with low thermal expansion coefficients

机译:具有低热膨胀系数的出色的抗热震材料

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摘要

The high performance of advanced ceramics, fuel cells, and also precision devices for semiconductor systems have been limited by the problem of thermal stresses induced by the thermal expansion between different materials. To avoid this problem, one of the choices is to develop a low or zero-level thermal expansion material, to be used, for instance in diesel particulate filter applications, in which the original dimension of the material is maintained, without being influenced by thermal shock at high temperatures. It appears that the negative thermal expansion of Al2TiO5 ceramics are due to the effects of grain boundary micro- cracking caused by the large thermal expansion anisotropy of the crystal axes of the Al2TiO5 phase. During a reheating run, the individual crystallites expand at low temperature; thus, the solid volume of the specimen expands into the micro cracks, where as the macroscopic dimensions remain mostly unchanged. As a result, the material expanded very little up to 1000 °C and the micro cracks closed at higher temperatures. This result is closely related to thermal expansion curves that were relatively steep, A characterization of the damage induced by thermal shock was conducted by measuring the evolution of the Young's modulus using ultrasonic analysis, aided by the density and thermal expansion coefficients.
机译:先进陶瓷,燃料电池以及半导体系统精密设备的高性能受到不同材料之间热膨胀引起的热应力问题的限制。为避免此问题,一种选择是开发一种低水平或零水平的热膨胀材料,例如在柴油机微粒过滤器应用中使用,其中材料的原始尺寸得以保持,而不受热的影响高温冲击。看来,Al2TiO5陶瓷的负热膨胀是由于Al2TiO5相的晶轴的大的热膨胀各向异性引起的晶界微裂纹的影响。在重新加热过程中,单个微晶在低温下膨胀;因此,试样的固体体积膨胀到微裂纹中,而在宏观上,尺寸几乎保持不变。结果,材料在高达1000°C时几乎没有膨胀,并且在较高温度下微裂纹闭合。该结果与相对陡峭的热膨胀曲线密切相关。在密度和热膨胀系数的辅助下,通过使用超声分析测量杨氏模量的演变,对由热冲击引起的破坏进行了表征。

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