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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Investigating the Self-Healing of Dynamic Covalent Thermoset Polyimine and Its Nanocomposites
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Investigating the Self-Healing of Dynamic Covalent Thermoset Polyimine and Its Nanocomposites

机译:调查动态共价热固性聚亚胺及其纳米复合材料的自我愈合

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Self-healable and recyclable materials and electronics can improve the reliability and repairability and can reduce environmental pollution; therefore, they promise very broad applications. In this study, we investigated the self-healing performance of dynamic covalent thermoset polyimine and its nanocomposites based on the dynamic covalent chemistry. Heat press was applied to two laminating films of polyimine and its nanocomposites to induce self-healing. The effects of heat press time, temperature, and load on the interfacial shear strength of the rehealed films were investigated. The results showed that increasing the heat press time, temperature, and load can significantly improve the interfacial shear strength and thus the self-healing effect. For polyimine nanocomposites, increasing the heat press time, temperature, and load led to the improved electrical conductivity of the rehealed films.
机译:自我康复和可回收的材料和电子产品可以提高可靠性和可修复性,可以减少环境污染; 因此,他们承诺非常广泛的应用。 在这项研究中,我们研究了基于动态共价化学的动态共价热固性聚亚胺及其纳米复合材料的自我愈合性能。 将热压液施加到两个层叠膜的聚亚胺及其纳米复合材料中,以诱导自愈合。 研究了热压时间,温度和负荷对再膜膜的界面剪切强度的影响。 结果表明,增加热压时间,温度和负荷可以显着提高界面剪切强度,从而显着提高界面剪切强度,从而提高自我愈合效果。 对于聚酰亚胺纳米复合材料,增加热压时间,温度和负载导致改善再热薄膜的电导率。

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