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Deformation of rectangular thin glass plate coated with magnetostrictive material

机译:涂有磁致伸缩材料的矩形薄玻璃板的变形

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摘要

As magnetic smart materials (MSMs), magnetostrictive materials have great potential to be selected as coating materials for lightweight x-ray telescope mirrors due to their capability to tune the mirror profile to the desired shape under a magnetic field. To realize this potential, it is necessary to study the deformation of the mirror substrate with the MSM coating subjected to a localized magnetic field. In this paper, an analytical model is developed to calculate the deformation of rectangular coated samples locally affected by magnetostrictive strains driven by an external magnetic field. As a specific case to validate the model, a square glass sample coated with MSMs is prepared, and its deformation is measured in a designed experimental setup by applying a magnetic field. The measured deformation of the sample is compared with the results calculated from the analytical model. The comparison results demonstrate that the analytical model is effective in calculating the deformation of a coated sample with the localized mismatch strains between the film and the substrate. In the experiments, different shape patterns of surface profile changes are achieved by varying the direction of the magnetic field. The analytical model and the experimental method proposed in this paper can be utilized to further guide the application of magnetostrictive coating to deformable lightweight x-ray mirrors in the future.
机译:作为磁性智能材料(MSM),磁致伸缩材料由于具有在磁场下将镜面轮廓调整到所需形状的能力,因此有很大的潜力被选作轻型X射线望远镜镜的涂层材料。为了实现这一潜力,有必要研究带有MSM涂层的反射镜基板在局部磁场作用下的变形。在本文中,建立了一个分析模型来计算矩形涂层样品的变形,该变形局部受外部磁场驱动的磁致伸缩应变影响。作为验证模型的特定情况,准备了涂有MSM的方形玻璃样品,并在设计的实验装置中通过施加磁场来测量其变形。将测得的样品变形与从分析模型计算出的结果进行比较。比较结果表明,该分析模型可以有效地计算涂层样品在薄膜与基材之间的局部失配应变时的变形。在实验中,通过改变磁场的方向可以实现表面轮廓变化的不同形状模式。本文提出的分析模型和实验方法可用于进一步指导磁致伸缩涂层在可变形轻型X射线镜上的应用。

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