水对碎石颗粒/聚酯复合材料力学性能的影响

Abbas F. Essa, Ahmed Jadah, Najlaa Jerjack
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引用次数: 0

摘要

鉴于工业应用的发展,这是近年来发生的,一般需要使用复合材料,特别是高分子复合材料在各种工业应用中发展起来。本文研究了水对聚合物复合材料某些力学性能的影响,其基体材料为不饱和聚酯(UPE),以不同类型的砾石颗粒(粒径为(.7.121 nm)型(Ι)和(….1.1 nm)型(ΙI)作为填料,以不同的重量百分比(…..)7。, 0。(1) %制备聚酯复合材料。采用模压法制备了聚酯及其复合材料板材。研究了试样在正常条件下的力学性能,包括抗弯强度和杨氏模量。不饱和聚酯及其复合材料样品在水中浸泡约0。研究水对其抗弯强度和浸泡后杨氏模量(A.I)的影响。结果表明:UPE /砾石颗粒型ΙΙ复合材料在(N.C)处的抗折强度最高,达到11MPa; UPE /砾石颗粒型Ι复合材料在(N.C)处的杨氏模量最高,达到1111 GPa;最后,结果表明,浸泡后的所有样品的杨氏模量(A.I)与浸泡后(N.C)的样品相比都有所下降,除了UPE /砾石颗粒类型Ι的复合材料外,所有样品的抗弯强度值在重量百分比(..)下均有所下降。, 7) %,表明浸水后抗弯强度值(A.I)有所增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Water on Some Mechanical Properties for Gravel Particles/Polyester Composites
In view of the developments of industrial applications, this happened in recent years and the need to use composite materials in general and polymer composite especially in the various industrial applications developed. This research deals with the study of the effect of water on some mechanical properties of polymer composite and its matrix material is unsaturated polyester (UPE) reinforced by gravel particles (different types) with particles size of (.7.121 nm) for type (Ι) and (...1.1 nm) for type (ΙI) as a fillers with different weight percentages (.., 7., 0., 1.) % to prepare polyester composites. The molding method was used to prepare polyester and its composites sheets. The mechanical properties were studied including flexural strength and Young's modulus for the samples at normal conditions (N.C). unsaturated polyester and its composite samples were immersed in water for about 0. days to find the effect of water on their flexural strength and Young's modulus after immersion (A.I). The results showed that the samples of UPE / gravels particles type ΙΙ composite gained highest values of flexural strength (...11MPa) as compared with other composites at (N.C) and showed that the samples of UPE / gravels particles type Ι composite gained highest values of Young's modulus (1111 GPa) as compared with other composites at (N.C). Finally, The results showed decrease in values of Young's modulus for all the samples after immersion (A.I) as compared with the samples at (N.C) and showed decrease in values of flexural strength for all the samples except for the composite material of UPE / gravels particles type Ι at weight percent (.., 7.) % which showed an increase in the value of flexural strength after immersion (A.I).
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