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Microcapsule-Type Organogel-Based Self-Healing System Having Secondary Damage Preventing Capability

机译:基于微胶囊型有机凝胶的自愈系统,具有防止二次损伤的能力

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We have developed a novel microcapsule-type organogel-based self healing system in which secondary damage does not occur in the healed region. A mixture of an organogelator, poor and good solvents for, the gelator is used as the healing agent; when the good solvent evaporates from this agent, a viscoelastic organogel forms. The healing agent is microencapsulated with urea-formaldehyde polymer, and the resultant microcapsules are integrated into a polymer coating to prepare self-healing coatings. When the coatings are scratched, they self-heal, as demonstrated by means of corrosion testing, electrochemical testing, optical microscopy, and scanning electron microscopy (SEM). After the healed coatings are subjected to vigorous vibration, it is demonstrated that no secondary damage occurs in the healed region. The secondary damage preventing capability of the self healing coating is attributable to the viscoelasticity of the organogel. The result can give insight into the development of a "permanent" self-healing system.
机译:我们已经开发了一种新型的微胶囊型基于有机凝胶的自我修复系统,其中愈合区域不会发生继发性损伤。有机胶凝剂,不良和良好溶剂的混合物用作胶凝剂;当良好的溶剂从该试剂中蒸发时,形成粘弹性有机凝胶。将愈合剂用尿素-甲醛聚合物微囊化,然后将所得的微囊整合到聚合物涂层中以制备自愈涂层。刮擦涂层后,它们会自愈,如腐蚀测试,电化学测试,光学显微镜和扫描电子显微镜(SEM)所示。在使已修复的涂层经受剧烈的振动之后,证明了在已修复的区域中没有发生二次损坏。自愈涂层的防止二次破坏的能力归因于有机凝胶的粘弹性。结果可以洞察“永久”自我修复系统的开发。

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