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Mechanical properties of lanthanum zirconate-based composite thermal barrier coatings

机译:基于镧系元素的复合热阻挡涂层的力学性能

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摘要

Lanthanum zirconate is a promising candidate material for thermal barrier coating (TBC) applications due to its low thermal conductivity and high temperature phase stability. However, its application is limited by thermal durability caused by low fracture toughness and low coefficient of thermal expansion. We recently developed LZ/8YSZ composite TBC systems using blended LZ and 8YSZ powders, which have demonstrated excellent thermal cycling performance. In this study, the mechanical properties of the composite TBCs were characterised using both nanoindentation and Vicker's microhardness tests. The nanoindentation results show that both Young's modulus and nanohardness increase with increasing 8YSZ content, suggesting the mechanical properties can be tailored by changing the volume ratio of 8YSZ. The ratios of Young's modulus to nanohardness remain constant, similar to 18, irrespective to the coating's composition. The microhardness results show the same dependence with 8YSZ content, which is confirmed by the analytic models based on composite theory.
机译:由于其低导热率和高温相位稳定性,镧锆锆是热障涂层(TBC)应用的有希望的候选材料。然而,其应用受到由于低断裂韧性和低热膨胀系数引起的热耐久性的限制。我们最近开发了使用混纺LZ和8€SZ粉末的LZ / 8YSZ复合TBC系统,该系统已经表现出出色的热循环性能。在该研究中,使用纳米茚满和维氏微硬度测试表征复合TBC的机械性能。纳米indentation结果表明,杨氏模量和纳米型均随着8毫升含量的增加而增加,表明可以通过改变8倍的体积比来定制机械性能。杨氏模量与纳米纳米的比率保持恒定,类似于18,与涂层的组合物无关。显微硬度结果显示了与8YSZ含量相同的依赖性,该含量由基于复合理论的分析模型确认。

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