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Peeling Experiments of Double Side Adhesive Tapes Suggests the Feasibility of Graphene Nanocomposites with Gigantic Toughness

机译:双面胶带的剥离实验表明,具有巨大韧性的石墨烯纳米复合材料的可行性

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摘要

Using a MTS micro-tensile testing machine equipped with a video camera, we studied the peeling dynamics of double sided adhesive tapes under imposed displacement. A standard T-peel test was considered for the tape system in order to assess its toughness and strength. The force necessary to separate the folds and the total energy required to detach them were thus measured. The effects of the fold length and width both on the strength and energy adsorption were also evaluated, suggesting new strategies for the design of super-tough bio-inspired materials, mainly the need of a nanoscopic thickness thus suggesting graphene as the ideal candidate to produce super-tough nanomaterials.
机译:使用配备视频摄像机的MTS微拉伸试验机,我们研究了施加位移后双面胶带的剥离动力学。为了评估胶带的韧性和强度,考虑对胶带系统进行标准的T型剥离试验。因此测量了分离折痕所需的力和分离折痕所需的总能量。还评估了折叠长度和宽度对强度和能量吸附的影响,提出了设计超韧生物启发材料的新策略,主要是需要纳米级厚度,因此表明石墨烯是生产该材料的理想选择超级坚韧的纳米材料。

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