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Internal Strain Behavior Exerted on YBCO Layer in the YBCO Coated Conductor

机译:YBCO涂层导体的YBCO层具有内部应变行为

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The stress/strain dependence of elastic property of the surround Cu stabilized YBCO coated conductor was precisely investigated by means of white X-ray and pulsed neutrons. Multiple diffraction peaks were observed along axial and lateral directions with the tape axis as a function of tensile load. The following unusual stress/strain behaviors exerted on the YBCO layer were made clear. Pairs of (020)/(200) and (040)/(400) were observed side by side in two rows and their diffraction intensity was almost constant with increasing tensile load. The ratio of diffraction strain to external strain became less than unity. The diffraction elastic constants estimated from $(0k0)$ diffraction peaks were larger than from $(h00)$ peaks. Their observations strongly suggest that the micro twin structure is key nanostructure to understand the microscopic elastic constant and strain obtained from the diffraction experiments.
机译:借助白色X射线和脉冲中子精确研究了环绕Cu稳定的YBCO涂层导体的弹性/应力/应变相关性。沿着轴向和横向观察到多个衍射峰,其中带轴是拉伸载荷的函数。明确了施加在YBCO层上的以下异常应力/应变行为。并排观察了两对(020)/(200)和(040)/(400),其衍射强度随着拉伸载荷的增加而几乎恒定。衍射应变与外部应变之比变得小于1。从$(0k0)$个衍射峰估计的衍射弹性常数大于从$(h00)$个峰估计的衍射弹性常数。他们的观察结果强烈表明,微孪晶结构是关键的纳米结构,有助于理解从衍射实验获得的微观弹性常数和应变。

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