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Investigation on residual stress and stress-optical coefficient for flexible electronics by photoelasticity

机译:用光弹性研究柔性电子器件的残余应力和应力-光学系数

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For flexible electronics in manufacture, the full-field stress measurement is an important issue for the film deposited on the flexible substrate. In this work, the two-dimensional photoelasticity is proposed to measure stress-optical coefficients and an analytical derivation is carried out for investigation on full-field residual stresses under tensional forces. In experimental setup, a polarization beam splitter (PBS) is used to connect with two CCD cameras that are used to capture the intensity of right-hand and left-hand circular polarization separately. It has higher measured speed and better uniformity than a direct rotation method. Stress-optical coefficients can be calculated by extracting the slope from tensional stress versus optical retardation curve. Experimental results show that optical retardations for indium-tin-oxide (ITO)-coated PET (polyethylene terephthalate) substrates can be affected more easily than PET substrates under tensional forces. The difference of stress-optical coefficients between 0 deg and 90 deg orientations for PEN (polyethylene naphtha-late) substrates is smaller than that for PET substrates. Furthermore, it shows residual stresses for ITO-coated PET substrates in 0 deg and 90 deg orientations are different under tensional stress.
机译:对于制造中的柔性电子设备,全场应力测量对于沉积在柔性基板上的薄膜而言是重要的问题。在这项工作中,提出了二维光弹性来测量应力-光学系数,并进行了分析推导,以研究在拉力作用下的全场残余应力。在实验设置中,使用偏振分束器(PBS)与两个CCD摄像机连接,这两个摄像机分别用于捕获右旋和左旋圆偏振的强度。与直接旋转方法相比,它具有更高的测量速度和更好的均匀性。应力-光学系数可以通过从张应力与光学延迟曲线中提取斜率来计算。实验结果表明,在张力下,氧化铟锡(ITO)涂层的PET(聚对苯二甲酸乙二酯)基材的光学延迟比PET基材更容易受到影响。对于PEN(聚萘二甲酸乙二醇酯)基板,在0度和90度方向之间的应力光学系数差异要小于PET基板。此外,它显示了在0度和90度方向上涂有ITO的PET基材的残余应力在拉应力下是不同的。

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