ADHESION INTERACTION IN HYBRID COMPOSITE. RELATION OF ENERGY CHARACTERISTICS OF PHASES WITH STRENGTH

A. Valiev, I. Starovoitova, A. Suleymanov
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Abstract

Improvement of stiffness characteristics of polymer composites is conditioned by the development of hybrid composites (containing more than one type of reinforcing continuous fiber) with the provision of effective stress transfer from fibers to binder through the interface. The study of mechanisms of formation of adhesion interaction in hybrid polymer composite consists in purposeful change of energy characteristics of phases in order to achieve the optimal level of adhesion, affecting the strength of composites while providing technological and other factors, predicting their durability. In this work the relationship between the energy characteristics of phases and the strength of hybrid polymer composite was investigated. Microphotographs of wetting of fibers of different nature by liquids were obtained by the optical method, by which the edge angles of wetting were determined, tests were carried out to determine the bending strength of polymer composites. A method for predicting the flexural strength of hybrid polymer composites made by vacuum infusion method has been proposed and experimentally confirmed, which consists in linking the adhesive interaction of components, structural components and flexural strength by determining the change in their energy characteristics of the filler by wetting method.
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混合复合材料中的粘附相互作用。相的能量特性与强度的关系
聚合物复合材料刚度特性的改善取决于混合复合材料(包含一种以上的连续增强纤维)的发展,其通过界面提供从纤维到粘合剂的有效应力传递。研究混合聚合物复合材料中粘附相互作用的形成机制,包括有目的地改变各相的能量特性,以达到最佳的粘附水平,从而影响复合材料的强度,同时提供技术和其他因素,预测其耐久性。在这项工作中,研究了相的能量特性与杂化聚合物复合材料强度之间的关系。通过光学方法获得了不同性质的纤维被液体润湿的显微照片,从而确定了润湿的边缘角,并进行了测定聚合物复合材料弯曲强度的试验。提出了一种预测真空灌注法制造的混合聚合物复合材料抗弯强度的方法,并得到了实验证实,该方法通过湿润法确定填料能量特性的变化,将各组分的粘合相互作用、结构组分和抗弯强度联系起来。
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