Investigation of negative temperature effect on impact strength of carbon fiber plastics with hybrid matrix

E. Kosenko, N. Baurova, V. Zorin
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Abstract

The production technology of carbon fiber plastics with a hybrid matrix formed by an epoxy binder and a material representing an independent «liquid» phase in the composite structure (anaerobic polymer material, silicone elastomer, synthetic wax) is described. The addition of the «liquid» phase components to the polymer matrix leads to a change in the property complex of the composite, and the features of the chemical and molecular structure of the materials of the «liquid» phase contribute to a change in the characteristics of the phase transition. The impact strength is one of the criteria for evaluating the properties of composites based on polymer matrices. The results of testing carbon fiber plastics with various types of hybrid matrices (formed by various components of the «liquid» phase) for impact strength after exposure at temperatures (20±2) and –30 °C are presented. The influence of the «liquid» phase components on an change in impact strength and loss of impact strength of the composite after exposure to negative temperature conditions was evaluated. Samples with an anaerobic polymer material as part of a hybrid matrix have the highest average impact strength, while the absence of loss of impact strength after exposure to negative temperatures is observed in samples with synthetic wax.
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负温度对混杂基碳纤维塑料冲击强度影响的研究
介绍了由环氧粘合剂和复合结构中代表独立“液体”相的材料(厌氧聚合物材料、硅弹性体、合成蜡)形成的混合基体的碳纤维塑料的生产技术。在聚合物基体中加入“液体”相成分会导致复合材料性质的变化,而“液体”相材料的化学和分子结构特征会导致相变特征的变化。冲击强度是评价聚合物基复合材料性能的标准之一。介绍了在温度(20±2)和-30°C下,用不同类型的混杂基体(由“液体”相的不同组分形成)测试碳纤维塑料的冲击强度的结果。评估了“液体”相组分对复合材料暴露于负温度条件后冲击强度变化和冲击强度损失的影响。以厌氧聚合物材料作为杂化基质的一部分的样品具有最高的平均冲击强度,而在使用合成蜡的样品中,在暴露于负温度后没有观察到冲击强度的损失。
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