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首页> 外文期刊>Journal of synchrotron radiation >A sample cell for in situ electric-field-dependent structural characterization and macroscopic strain measurements
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A sample cell for in situ electric-field-dependent structural characterization and macroscopic strain measurements

机译:用于原位电场依赖性结构表征和宏观应变测量的样品池

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When studying electro-mechanical materials, observing the structural changes during the actuation process is necessary for gaining a complete picture of the structure-property relationship as certain mechanisms may be meta-stable during actuation. In situ diffraction methods offer a powerful and direct means of quantifying the structural contributions to the macroscopic strain of these materials. Here, a sample cell is demonstrated capable of measuring the structural variations of electro-mechanical materials under applied electric potentials up to 10 kV. The cell is designed for use with X-ray scattering techniques in reflection geometry, while simultaneously collecting macroscopic strain data using a linear displacement sensor. The results show that the macroscopic strain measured using the cell can be directly correlated with the microscopic response of the material obtained from diffraction data. The capabilities of the cell have been successfully demonstrated at the Powder Diffraction beamline of the Australian Synchrotron and the potential implementation of this cell with laboratory X-ray diffraction instrumentation is also discussed.
机译:在研究机电材料时,必须对驱动过程中的结构变化进行观察,以获取结构-特性关系的完整图像,因为某些机制在驱动过程中可能是亚稳定的。原位衍射方法提供了一种强大而直接的方法,可以量化这些材料对宏观应变的结构贡献。在此,一个样品池被证明能够在高达10 kV的施加电势下测量机电材料的结构变化。该单元设计用于反射几何中的X射线散射技术,同时使用线性位移传感器收集宏观应变数据。结果表明,使用该单元测得的宏观应变可以与从衍射数据获得的材料的微观响应直接相关。该电池的功能已在澳大利亚同步加速器的粉末衍射光束线上成功展示,并且还讨论了该电池在实验室X射线衍射仪器上的潜在实现方式。

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