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Archipelago platform for skin-mounted wearable and stretchable electronics

机译:用于皮肤安装式可穿戴和可拉伸电子产品的Archipelago平台

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In this investigation, the “archipelago” design is presented as a platform for skin-mounted wearable and stretchable electronics. The electronic components of the design were distributed between islands connected by stretchable serpentine structures. The analytical results show that at 20% overall elongation, the serpentines stretch 60% due to the rigidity of the islands. This 20% elongation is defined as the system stretchability. The 60% elongation on the serpentines is defined as the effective stretchability. At 60% effective stretch, the calculated equivalent plastic strain in a serpentine interconnect is 0.67%, which is well below the fracture limit of copper. Elongation experiments show that the archipelago structure has the system stretchability up to 76% for one-time-stretching, translating to 228% of the effective stretchability on the serpentines. Fatigue-tension experiments show that at 20% system stretch, the archipelago structure can withstand on average 71,950 cycles without electrical or mechanical degradation.
机译:在这项调查中,“ archipelago”设计被展示为皮肤可穿戴和可拉伸电子产品的平台。设计的电子组件分布在由可伸展的蛇形结构连接的岛之间。分析结果表明,在整体伸长率为20%的情况下,由于岛的刚性,蛇纹石拉伸了60%。该20%的伸长率被定义为系统的可拉伸性。蛇纹石上60%的伸长率被定义为有效的可拉伸性。在有效拉伸率为60%时,蛇形互连中计算出的等效塑性应变为0.67%,远低于铜的断裂极限。伸长实验表明,群岛结构一次拉伸的系统可拉伸性高达76%,相当于蛇纹石有效拉伸性的228%。疲劳强度实验表明,在20%的系统拉伸下,群岛结构平均可以承受71,950个循环,而不会发生电气或机械降解。

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