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首页> 外文期刊>Journal of Composite Materials >Multifunctional polymer composites: Antibacterial, flame retardant, radar absorbing and self-healing
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Multifunctional polymer composites: Antibacterial, flame retardant, radar absorbing and self-healing

机译:多功能聚合物复合材料:抗菌,阻燃,雷达吸收和自我愈合

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摘要

Multifunctional materials are able to respond to environmental stimuli by exhibiting particular changes in some of their properties. Desired properties can be combined to create a new item with composite materials due to their suitability for achieving multi-functionality with the best characteristics of different materials. In this study, the aim is to further the investigations of these types of materials and to advance the molecular understanding of novel multifunctional materials for applications across different scientific disciplines. Regarding the production of multifunctional materials, four types of materials were added to the polymer matrix to obtain the following properties: antibacterial, radar absorbing, self-healing, and flame retardant. In this research, an epoxy dye was converted to a multifunctional material which is capable of performing multiple functions. In order to reinforce an epoxy dye, Ag nanoparticles, huntite/hydromagnesite minerals, barium hexaferrite particles, and chitosan were utilized for multifunction property. By adding those materials to the polymer matrix with different loading level, different types of coated samples were obtained. Subsequently, the samples were characterized by antibacterial tests, flame-retardant tests, radar absorbing tests, and self-healing tests besides other characterization tests; FTIR, SEM, XRD, scratch, surface profilometer, etc. It was concluded that these materials exhibited a synergetic beneficial effects.
机译:多功能材料通过表现出一些特性的特殊变化,能够响应环境刺激。可以将所需的性能组合以创建具有复合材料的新项目,因为它们适用于实现具有不同材料的最佳特性的多功能性。在这项研究中,目的是进一步调查这些类型的材料,并推进对不同科学学科的应用对新型多功能材料的分子理解。关于多官能材料的生产,将四种类型的材料加入聚合物基质中以获得以下性质:抗菌,雷达吸收,自愈和阻燃剂。在该研究中,将环氧染料转化为能够进行多功能的多官能材料。为了加强环氧染料,Ag纳米颗粒,Huntite /肼矿石,六氢钡粒子和壳聚糖用于多功能性。通过用不同的负载水平向聚合物基质中加入那些材料,得到不同类型的涂覆样品。随后,通过抗菌试验,阻燃试验,雷达吸收试验以及除其他表征试验之外的自愈试验表征样品; FTIR,SEM,XRD,划痕,表面轮廓仪等得出结论,这些材料表现出协同的有益效果。

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