基于聚酯树脂与氧化铜(I)颗粒的组合物的机械特性

IF 0.58 Q4 Materials Science
E. A. Bobina, M. P. Danilaev, T. Ya. Deberdeev, S. V. Drobyshev, S. A. Karandashov, M. A. Klabukov, V. A. Kuklin, K. V. Faizullin
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引用次数: 0

摘要

摘要 在这项工作中,研究了一种基于聚酯树脂的聚合物组合物的机械特性变化,其中填充了封装的聚乳酸和非封装的氧化铜(I)颗粒,以及这些颗粒被树脂成分溶解的情况。研究结果表明,与未封装颗粒相比,封装填充颗粒与基体聚合物的相互作用更好。这导致聚合物复合材料(PCM)的极限强度和硬度增加,极限变形量减少。在聚酯树脂成分部分溶解氧化铜(I)颗粒的情况下,PCM 的强度特性有所下降。强度特性发生变化的原因是苯乙烯的损失导致聚合物粘合剂网络密度降低,以及铜盐络合物的形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mechanical Properties of a Composition Based on Polyester Resin with Copper(I) Oxide Particles

Mechanical Properties of a Composition Based on Polyester Resin with Copper(I) Oxide Particles

Mechanical Properties of a Composition Based on Polyester Resin with Copper(I) Oxide Particles

In the work, changes in the mechanical characteristics of a polymer composition based on polyester resin filled with encapsulated polylactide and nonencapsulated copper(I) oxide particles have been studied, as well as these particles dissolved by the resin components. It has been shown that encapsulated filler particles interact better with the matrix polymer than do nonencapsulated particles. This causes an increase in the ultimate strength and hardness of polymer composite material (PCMs), as well as a decrease in the magnitude of the ultimate deformation. A decrease in the strength characteristics of PCMs was noted in the case of partial dissolution of copper(I) oxide particles by components of the polyester resin. The reason for the change in strength characteristics is a decrease in the density of the polymer binder network due to the loss of styrene, as well as the formation of the complexes of copper salts.

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来源期刊
Polymer Science, Series D
Polymer Science, Series D Materials Science-Polymers and Plastics
CiteScore
0.80
自引率
0.00%
发文量
87
期刊介绍: Polymer Science, Series D  publishes useful description of engineering developments that are related to the preparation and application of glues, compounds, sealing materials, and binding agents, articles on the adhesion theory, prediction of the strength of adhesive joints, methods for the control of their properties, synthesis, and methods of structural modeling of glued joints and constructions, original articles with new scientific results, analytical reviews of the modern state in the field.
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