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Manufacturing challenges in self-healing technology for polymer composites — a review

机译:高分子复合材料自我修复技术中的制造挑战 - 综述

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Self-healing polymer materials have the functional characteristics of curing when a crack penetrates the material. Damage response, healing ability and healing performance are the most important healing characteristics of a self-healing material. Self-healing in a material system is employed through different methodologies, such as capsulation, vascular filling and intrinsic healing systems. The most challenging factor in fabrication of self-healing material is the ‘carrier filling’ in both the vascular and capsule type healing methods. The self-healing is either autonomic or external, depending on the actuation of the healing. This paper reviews the healing agent carrier preparation for vascular self-healing systems and compares the vascular healing system with intrinsic self-healing. The review revealed that, in most cases, preparation of healing agents is challenging greater than understanding the healing mechanism. The behaviour of self-healing material under fatigue, impact, and ballistic characterisation is also reviewed towards suggesting the self healing materials for aerospace applications.
机译:自愈合聚合物材料具有当裂纹渗透材料时固化的功能特性。损伤响应,愈合能力和愈合性能是自愈材料最重要的愈合特性。通过不同的方法使用材料系统中的自我愈合,例如胶囊,血管填充和固有愈合系统。制造自愈材料中最具挑战性的因素是血管和胶囊型愈合方法中的“载体填充”。自我修复是自主或外部,取决于愈合的致动。本文评论了血管自愈系统的治疗剂载体制剂,并将血管愈合系统与内在的自我愈合进行比较。审查显示,在大多数情况下,愈合剂的制备挑战大于了解愈合机制。还审查了疲劳,冲击和弹道特征下的自愈材料的行为,旨在暗示航空航天应用的自我愈合材料。

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