不同类型杂化基质聚合物复合材料力学性能的形成

E. Kosenko, P. E. Demin
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引用次数: 0

摘要

高分子复合材料的力学性能在很大程度上取决于基体与增强材料界面上发生的界面现象。在聚合物复合材料的基体中添加组分,使其在产品成型过程中保持粘弹性状态,从而可以局部改变成品的变形和强度特性,使其适应规定的操作条件。杂化基体中的粘弹性组分形成聚合物复合材料的第三相。提高不同类型杂化基质聚合物复合材料界面层的效率是其发展的重要课题。在BT400双轴玄武岩织物的基础上,采用预浸料真空成型技术,制备了具有不同混合基体的高分子复合材料结构微分析样品。选择技术蜡、厌氧(Loctite 638)和有机硅(Yunisil-9628)聚合物材料作为杂化基质的粘弹性组分。为了解释混合基体中含有不同粘弹性组分的玄武岩塑料变形强度性能变化的原因,对其结构进行了微观分析。描述了一种基于组合优化规定的聚合物复合材料基质中粘弹性构件定位方案的选择机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formation of mechanical properties of polymer composite materials with different types of hybrid matrices
The mechanical properties of polymer composite materials largely depend on the interfacial phenomena occurring on the interface between the matrix and reinforcing material. The addition of components to the matrix of polymer composite materials that retain their viscoelastic state during the molding process of the products makes possible to locally change the deformation-and-strength properties of a finished product, adapting it to the specified operating conditions. The viscoelastic components in the hybrid matrix form the third phase of the polymer composite material. Increasing the efficiency of interfacial layers of polymer composite materials with various types of hybrid matrices is the most important task of their development. The samples for microanalysis of the polymer composite material structure with various types of hybrid matrices were molded using the prepreg technology by vacuum molding on the basis of BT400 biaxial basalt fabric. Technical wax, anaerobic (Loctite 638) and organosilicon (Yunisil-9628) polymer materials were selected as the viscoelastic components of the hybrid matrix. In order to explain the reasons for the change in the deformation-and-strength properties of the obtained basalt plastics with various viscoelastic components in the composition of the hybrid matrix, microanalysis of their structure was carried out. A mechanism for choosing a scheme for the location of viscoelastic components in a matrix of polymer composite materials based on the provisions of combinatorial optimization is described.
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