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首页> 外文期刊>CERAMICS INTERNATIONAL >Effect of sub and above-curie temperature annealing on the nanomechanical properties of PMN-PT piezoceramics
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Effect of sub and above-curie temperature annealing on the nanomechanical properties of PMN-PT piezoceramics

机译:副静脉温度退火对PMN-PT压电陶瓷纳米力学性能的影响

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摘要

The domain configurations such as domain size, orientation, and interdomain spacing have a significant influence on the electromechanical properties of piezoelectric materials though their role on mechanical properties is not well understood. In this manuscript, we have systematically varied the domain configuration of polycrystalline lead magnesium niobate-lead titanate (PMN-PT) piezoceramics (by annealing them below and slightly above the Curie temperature, T-c) and determined the nanomechanical properties. Nanoindentation experiments performed on pristine, sub and above-T-c annealed samples in the peak load range of 1 mN-5 mN reveals a strong indentation size effect (ISE) in hardness, H. Further, it is observed that the sub-T-c annealed samples exhibit higher H and elastic modulus, E compared to the above-T-c annealed and pristine samples. In contrast to this, the piezoelectric constant, d(33), decreases with increase in annealing temperature eventually approaches to "zero" for the above-T-c annealed samples, though both sub and above-T-c annealed samples have similar crystal structure. The microstructure and domain characterization indicate discernable differences in the domain structure suggesting that the differences in nano-mechanical and piezoelectric properties can be attributed to the changes in domain configurations. These results provide new insights about the novel way to engineer the domain configurations for tailoring mechanical and piezoelectric properties of the piezoceramics.
机译:域尺寸,方向和互联间距等域配置对压电材料的机电特性产生了显着影响,尽管它们对机械性能的作用并不了解。在该稿件中,我们系统地改变了多晶铅镁铌酸铅钛酸铅(PMN-PT)压电陶瓷的结构域构型(通过在低于和略高于居里温度,T-C)并确定纳米机械性质。在1mN-5Mn的峰值负荷范围内进行的纳米茚,亚和高于TC退火样品的实验显示出硬度,H的强凹凸尺寸效应(ISE)。此外,据观察到亚TC退火样品与上述TC退火和原始样品相比,表现出更高的H和弹性模量。与此相反,压电常数D(33)随着退火温度的增加而降低,最终对上述T-C退火样品的“零”接近,但是Sub和上C退火样品具有相似的晶体结构。微结构和畴表征表示域结构的可辨别差异,表明纳米机械和压电性能的差异可归因于域配置的变化。这些结果提供了关于工程师域配置的新方法,以剪裁压电陶瓷的机械和压电性能的域配置。

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