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COMPUTATIONAL ANALYSIS OF SELF-HEALING IN A POLYMER MATRIX WITH MICROVASCULAR NETWORKS

机译:微血管网络中聚合物基质自愈的计算分析

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For the last decade, many researchers have been working to develop self-healing materials, and have obtained good results in the field of polymers, these components with microencapsulated healing agent have exhibited noticeable mechanical performance and regenerative property The research described in this paper applies the concept of self healing to simulate self healing polymer matrix composites, with the aid of models developed by the authors for the manufacturing processes and self-healing behavior. The development of self-healing is a novel idea that has not been totally explored in great detail yet. The concept of self-healing described in this paper consists of simulation of a healing agent dicyclopentadiene (DCPD) inside of a microvascular network within a polymer matrix coating with catalyst forming a self-healing composite (SHC). When this SHC is damaged or cracked, the healing agent by capillary action will flow inside of the microvascular network; when the liquid enter in contact with the catalyst will form a polymer structure and sealing the crack. The study consists of theoretical analysis and Computational Fluid Dynamics of a self-healing polymer. The objective of the study reported here was to find the influence and efficiency of the microvascular network in healing a polymer matrix. To check this effect a computational model was created to simulate the healing treatment, thus a crack was created on the matrix surface piercing the microvascular network filled with healing agent and the method to simulate healing behavior of the composite allows assessment of the effects of the autonomously repairing repeated damage events.
机译:在过去的十年中,许多研究人员一直在努力开发自我愈合材料,并且在聚合物领域获得了良好的结果,这些组分具有微胶囊化愈合剂表现出明显的机械性能和再生性,本文描述的研究适用于此自我愈合的概念模拟自我愈合聚合物基质复合材料,借助于作者开发的模型,用于制造过程和自我愈合行为。自我治疗的发展是一种新颖的想法,尚未完全探索。本文中描述的自我愈合的概念包括在具有形成自愈合复合物(SHC)的催化剂的聚合物基质涂层内微血管网络内的愈合剂二环戊二烯(DCPD)的模拟。当该SHC损坏或破裂时,通过毛细管作用的愈合剂将在微血管网络内流动;当液体进入与催化剂接触时,将形成聚合物结构并密封裂缝。该研究包括自我愈合聚合物的理论分析和计算流体动力学。这里报告的研究目的是发现微血管网络在愈合聚合物基质中的影响和效率。为了检查该效果,创建计算模型以模拟愈合处理,因此在刺穿填充有愈合剂的微血管网络和模拟复合材料的愈合行为的方法上产生裂缝允许评估自主的效果修复重复损坏事件。

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