Interfacial interactions in rubber-based composites

IF 2.1 4区 材料科学 Q3 MATERIALS SCIENCE, COMPOSITES
Andrés O. Garzón-Posada, D. L. Landínez Téllez, J. Roa-Rojas, José R. Ramos Barrado
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引用次数: 0

Abstract

ABSTRACT The interfacial region of nitrile butadiene rubber matrix composites filled with magnetite and carbon black particles was studied. Raman spectroscopy was used as an alternative to study the filler-matrix interface behaviour. It was found that the amount of magnetite and its size (nano or micro) induce variations in the stress transfer between the fillers and the matrix. Stress propagation altered the graphitic domains of the carbon black that fill the matrix and induced shifts in position, changes in width, and intensity of the D and G bands. The XPS high-resolution spectra corresponding to the Fe2p, C1s, and S2p regions of the composites confirmed chemical interactions at the interface of the nanosized magnetite-filled composites. Fe-C and Fe-S bonds were identified in those regions between the fillers and the NBR matrix. No chemical bonds were found at the interface of the composites filled with microsized magnetite.
橡胶基复合材料中的界面相互作用
研究了磁铁矿和炭黑颗粒填充丁腈橡胶基复合材料的界面区域。采用拉曼光谱作为替代方法研究填料-基质界面行为。结果表明,磁铁矿的添加量和大小(纳米或微米)会引起填料与基体之间应力传递的变化。应力传播改变了填充基体的炭黑的石墨畴,引起了D带和G带的位置、宽度和强度的变化。复合材料的Fe2p, C1s和S2p区域对应的XPS高分辨率光谱证实了纳米磁铁矿填充复合材料界面上的化学相互作用。在填料与NBR基体之间的区域发现了Fe-C和Fe-S键。在填充微磁铁矿的复合材料界面上没有发现化学键。
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来源期刊
Plastics, Rubber and Composites
Plastics, Rubber and Composites 工程技术-材料科学:复合
CiteScore
4.10
自引率
0.00%
发文量
24
审稿时长
4 months
期刊介绍: Plastics, Rubber and Composites: Macromolecular Engineering provides an international forum for the publication of original, peer-reviewed research on the macromolecular engineering of polymeric and related materials and polymer matrix composites. Modern polymer processing is increasingly focused on macromolecular engineering: the manipulation of structure at the molecular scale to control properties and fitness for purpose of the final component. Intimately linked to this are the objectives of predicting properties in the context of an optimised design and of establishing robust processing routes and process control systems allowing the desired properties to be achieved reliably.
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