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Relation between the elasticstretchability of stretchable electronics and the cell size of the cellular substrate

机译:可拉伸电子器件的弹性伸缩性与细胞基板的细胞尺寸之间的关系

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With high permeability and low modulus, the cellular substrate can achieve larger elasticstretchability and better wearing comfort than the solid substrate used for stretchable electronics. Since the porosity of the cellular substrate is a dimensionless ratio value, a fixed porosity can result in innumerable cell sizes. And different cell sizes will bring different stiffness, which has a strong impact on the elasticstretchability of stretchable electronics. In this paper, a numerical model is established for a particular structure where the serpentine interconnect is bonded on cellular substrates with the fixed porosity (?=80%). Eight different cell sizes are selected for this porosity and two stretching directions, along and normal to the cell walls, are studied. Base on the results from the model, the curves of elastic stretchability versus the ratio of wall width to serpentine width ratio (δ/w) can be obtained. Results demonstrate that the appropriate ratioδ/w≈1yields significantly larger elastic stretchability than other cell sizes of cellular substrates. This finding can provide an engineering design regulation for stretchable electronics based on cellular substrates.
机译:具有高渗透性和低模量,细胞基板可以实现更大的弹性伸缩性和比可拉伸电子器件的固体基材更好地佩戴舒适性。由于细胞基板的孔隙率为无量纲比值,因此固定孔隙率可导致无数的电池尺寸。不同的电池尺寸将带来不同的刚度,这对可拉伸电子器件的弹性充值性产生了强烈影响。在本文中,为特定结构建立了数值模型,其中蛇形互连在具有固定孔隙率的细胞基材上粘合(α= 80%)。研究了八种不同的电池尺寸,用于该孔隙率和两个拉伸方向,沿着和垂直于电池壁。基于模型的结果,可以获得弹性拉伸性的曲线与壁宽与蛇形宽度比(δ/ W)的比率。结果表明,适当的比率Δ/w≈1尤德利的弹性拉伸性明显较大,而不是细胞基材的其他电池尺寸。该发现可以为基于细胞基材的可拉伸电子设备提供工程设计调节。

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