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Sustainable self-healing at ultra-low temperatures in structural composites incorporating hollow vessels and heating elements

机译:具有空心容器和加热元件的结构复合材料在超低温下可持续的自我修复

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Self-healing composites are able to restore their properties automatically. Impressive healing efficiencies can be achieved when conditions are favourable. On the other hand, healing might not be possible under adverse circumstances such as very low ambient temperature. Here, we report a structural composite able to maintain its temperature to provide a sustainable self-healing capability—similar to that in the natural world where some animals keep a constant body temperature to allow enzymes to stay active. The composite embeds three-dimensional hollow vessels with the purpose of delivering and releasing healing agents, and a porous conductive element to provide heat internally to defrost and promote healing reactions. A healing efficiency over 100% at around ?60°C was obtained. The effects of the sheets on the interlaminar and tensile properties have been investigated experimentally. The proposed technique can be implemented in a majority of extrinsic self-healing composites to enable automatic recovery at ultra-low temperatures.
机译:自修复复合材料能够自动恢复其特性。当条件有利时,可以达到令人印象深刻的治愈效率。另一方面,在不利的情况下(例如非常低的环境温度),可能无法治愈。在这里,我们报告了一种能够保持其温度以提供可持续的自我修复能力的结构复合材料,这与自然界中的某些动物保持恒定的体温以允许酶保持活性的自然状态相似。该复合材料嵌入了三维空心容器,目的是传递和释放愈合剂,以及一个多孔导电元件,可在内部提供热量以解冻并促进愈合反应。在约60℃下获得了超过100%的治愈率。实验研究了片材对层间和拉伸性能的影响。所提出的技术可以在大多数非本征自修复复合材料中实施,以实现在超低温下的自动恢复。

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