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超快自修复聚合物以实现强度恢复。

Ultrafast self-healing of polymer toward strength restoration.

机构信息

Key Laboratory for Polymeric Composite and Functional Materials of Ministry of Education, GD HPPC Lab, School of Chemistry and Chemical Engineering, Sun Yat-Sen University , Guangzhou 510275, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2014 Mar 12;6(5):3661-70. doi: 10.1021/am405989b. Epub 2014 Feb 20.

Abstract

Self-healing materials should take effect immediately following crack generation in principle, but the speed of autonomic recovery of mechanical properties through either extrinsic or intrinsic healing strategy reported so far is not that fast. Mostly, a couple of hours are taken for reaching steady state or maximum healing. To accelerate the healing process, the authors of this work make use of antimony pentafluoride as instant hardener of epoxy and successfully encapsulate the highly active antimony pentafluoride-ethanol complex in terms of hollow silica spheres. Accordingly, self-healing agent based on microencapsulated antimony pentafluoride-ethanol complex and epoxy monomer is developed. Epoxy material with the embedded healant capsules can thus be healed within a few seconds, as demonstrated by impact and fatigue tests. It is believed that the outcome presented here might help to move the self-healing technique closer to practical application, especially when the engineering significance of epoxy material is concerned.

摘要

自修复材料原则上应在产生裂纹后立即生效,但迄今为止报道的通过外在或内在修复策略实现机械性能自动恢复的速度还不够快。大多数情况下,需要几个小时才能达到稳定状态或最大修复程度。为了加速修复过程,这项工作的作者利用五氟化锑作为环氧树脂的即时硬化剂,并成功地将高活性五氟化锑-乙醇配合物封装在空心硅球中。因此,基于微封装五氟化锑-乙醇配合物和环氧树脂单体的自修复剂被开发出来。通过冲击和疲劳测试证明,含有嵌入修复胶囊的环氧树脂材料可以在几秒钟内修复。相信这里呈现的结果可能有助于将自修复技术更接近实际应用,特别是在考虑到环氧树脂材料的工程意义时。

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