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纺织结构增强对聚合物复合材料力学行为的影响。

The Effect of Textile Structure Reinforcement on Polymer Composite Material Mechanical Behavior.

作者信息

Risteska Svetlana, Srebrenkoska Vineta, Zhezhova Silvana, Srebrenkoska Sara, Risteski Sanja, Jordeva Sonja, Golomeova Longurova Saska

机构信息

Faculty of Technology, Goce Delcev University, Krste Misirkov 10-A, P.O. Box 201, 2000 Shtip, North Macedonia.

Faculty of Mechanical Engineering, Goce Delcev University, Krste Misirkov 10-A, P.O. Box 201, 2000 Shtip, North Macedonia.

出版信息

Polymers (Basel). 2024 Dec 13;16(24):3478. doi: 10.3390/polym16243478.

Abstract

Investigating the impact of textile structure reinforcement on the mechanical characteristics of polymer composites produced by the compression molding technique was the goal of this work. An epoxy resin system served as the matrix, and various woven (plain, twill, basket), nonwoven (mat), and unidirectional (UD) textile structures made from E-glass fibers were employed as reinforcement elements. Compression molding of pre-impregnated textile materials (prepregs) was used to create the composites. The well-impregnated textile structures with resin into prepreg and the good interface between layers of the composites were verified during the manufacture of the polymer-textile composites using DSC thermal analysis and an SEM microscope. For the mechanical behavior, flexural properties were determined. The composite samples with unidirectional prepreg reinforcement have the highest longitudinal flexural strengths at roughly 900 MPa. The woven prepreg-based composite laminates show balanced flexural properties in both directions. Composites based on plane and basket prepregs have a flexural strength of about 450 MPa. Their flexural strength is over 20% lower than that of the samples made using twill prepreg. In both directions, nonwoven prepreg-reinforced composite samples show the least amount of resistance to bending stresses (flexural strength of roughly 150 MPa).

摘要

本研究旨在探究织物结构增强对采用模压成型技术制备的聚合物复合材料力学性能的影响。以环氧树脂体系作为基体,采用由E玻璃纤维制成的各种机织(平纹、斜纹、方平)、非织造(毡)和单向(UD)织物结构作为增强元件。通过对预浸渍织物材料(预浸料)进行模压成型来制备复合材料。在聚合物-织物复合材料的制造过程中,利用DSC热分析和扫描电子显微镜(SEM)验证了预浸料中树脂对织物结构的良好浸渍以及复合材料各层之间的良好界面。对于力学性能,测定了弯曲性能。单向预浸料增强的复合材料样品在纵向具有最高的弯曲强度,约为900MPa。基于机织预浸料的复合层压板在两个方向上均表现出平衡的弯曲性能。基于平纹和方平预浸料的复合材料的弯曲强度约为450MPa。它们的弯曲强度比使用斜纹预浸料制成的样品低20%以上。在两个方向上,非织造预浸料增强的复合材料样品表现出对弯曲应力的抵抗力最小(弯曲强度约为150MPa)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7476/11728738/f8812b354f20/polymers-16-03478-g001.jpg

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