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首页> 外文期刊>International Journal of Polymer Science >Use of Physicochemical Modification Methods for Producing Traditional and Nanomodified Polymeric Composites with Improved Operational Properties
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Use of Physicochemical Modification Methods for Producing Traditional and Nanomodified Polymeric Composites with Improved Operational Properties

机译:使用物理化学改性方法生产具有改进的操作性能的传统和纳米胺化聚合物复合材料

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摘要

Various aspects of the methods of physical and physicochemical modification of components of filled thermoplastic composite materials are analyzed, aimed at improving the surface properties of the fillers and the technological properties of the polymer matrix during their interaction. It is noted that the improvement of the interfacial interaction of the components of polymer reactoplastic composites, including adhesive strength, is a key factor for improving the reliability of the cured filled composite. As a promising area of research, a modification of the surface of the reinforcing fibrous filler and the technological characteristics of the liquid polymer binder, aimed at increasing their contact properties in the composite, was chosen. The effectiveness of the physical method of modifying the components of composites in the form of low-frequency ultrasonic processing is described. The peculiarities of cluster formation and physicochemical modification of epoxy polymers filled with dispersed fillers are analyzed. Attention is focused on the effectiveness of ultrasonic processing in the cavitation mode for deagglomeration and uniform distribution of nanoparticles in a liquid medium during the creation of nanocomposites. Experimentally confirmed is the improvement of the technological properties of liquid epoxy polymers, modified by ultrasound, used for the impregnation of oriented fibrous fillers, as well as the improvement of the physicomechanical properties of the sonicated epoxy matrices. Some issues of biological modifications of components of polymers for functional application are briefly reviewed.
机译:分析填充热塑性复合材料组分的物理和物理化学改性方法的各种方面,旨在改善填料的表面性质和聚合物基质的互动过程中的技术性质。应注意,改善聚合物反弹复合材料的组分的界面相互作用,包括粘合强度,是改善固化的填充复合材料的可靠性的关键因素。作为一个有希望的研究领域,选择了加强纤维填料表面的改性和液体聚合物粘合剂的技术特征,旨在增加复合材料中的接触性能。描述了改变复合材料组分以低频超声处理形式的物理方法的有效性。分析了填充有分散填料的环氧聚合物的簇形成和物理化学改性的特性。注意力集中在纳米复合材料中纳米复合材料中纳米液中纳米颗粒中纳米颗粒均匀分布的超声波处理的有效性。实验证实是通过超声改性的液体环氧聚合物的技术性质的改善,用于浸渍取向纤维填料,以及改善超声回形物基质的物理机械性能。简要综述了用于功能申请的聚合物组分的生物修饰的一些问题。

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