Impact of proximity of hard and soft segment on IR frequency of carbamate links correlating the mechanical properties of surface-functionalized fly ash–reinforced polyurethane composites

IF 1.7 4区 工程技术 Q4 POLYMER SCIENCE
Ankit Sharma, Y. Paridwal, Shikha Sharma, Ashu Rani, Shobhana Sharma, Sushil K. Sharma
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引用次数: 0

Abstract

Polyurethane composites synthesized by interaction of fly ash filler with polyether polyol, cross-linking agent, and curing agent in a certain ratio. The study’s findings show that the mechanical properties of polyurethane composite are lowered by the hydroxyl moieties of surface-functionalized fly ash that are chemically or physically linked. The study also reveals that prior subjecting the samples of surface-functionalized fly ash–reinforced polyurethane composite material for destructive analysis by UTM for evaluating mechanical properties. The in-depth study of the IR spectroscopy data of the composites is done focusing onto the stretching frequency of carbonyl group of carbamate links the trend in mechanical behavior of the samples, the number of fly ash–carbamate links, and proximity of HS–SS (hard segment–soft segment) of fly ash–reinforced polyurethane composites can be foretold. By a detailed analysis of the patterns of carbonyl stretching frequencies of carbamate links, one can gain insight into the microphasic level of the separation and proximity of hard and soft segments in composites, which govern their mechanical properties. The relationships between carbamate carbonyl stretching frequencies and mechanical characteristics of composites have been found to be inversely correlated. In order to offset the excess hydroxyl group contribution due to OH-loaded fly ash, as indicated by the isocyanate (NCO) peak intensity (2,240–2,280 cm−1) in the composite’s infrared spectra, the studies were conducted at a higher index ratio (1.64).
表面功能化粉煤灰增强聚氨酯复合材料机械性能相关氨基甲酸酯链节的硬段和软段距离对红外频率的影响
粉煤灰填料与聚醚多元醇、交联剂和固化剂按一定比例作用合成的聚氨酯复合材料。研究结果表明,表面官能化粉煤灰的羟基分子通过化学或物理连接降低了聚氨酯复合材料的机械性能。研究还发现,在对表面官能化粉煤灰增强聚氨酯复合材料样品进行破坏性分析之前,应使用 UTM 评估其机械性能。通过深入研究复合材料的红外光谱数据,重点分析氨基甲酸酯链节羰基的伸展频率,可以预测样品机械性能的变化趋势、粉煤灰-氨基甲酸酯链节的数量以及粉煤灰增强聚氨酯复合材料的 HS-SS(硬段-软段)接近程度。通过详细分析氨基甲酸酯链节的羰基伸展频率模式,可以深入了解复合材料中硬段和软段分离和接近的微观层面,而这正是决定复合材料机械性能的因素。研究发现,氨基甲酸酯羰基伸展频率与复合材料的机械特性之间存在反比关系。为了抵消复合材料红外光谱中异氰酸酯(NCO)峰强度(2,240-2,280 cm-1)所显示的含有羟基的粉煤灰所产生的过量羟基,研究采用了较高的指数比(1.64)。
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来源期刊
Journal of Polymer Engineering
Journal of Polymer Engineering 工程技术-高分子科学
CiteScore
3.20
自引率
5.00%
发文量
95
审稿时长
2.5 months
期刊介绍: Journal of Polymer Engineering publishes reviews, original basic and applied research contributions as well as recent technological developments in polymer engineering. Polymer engineering is a strongly interdisciplinary field and papers published by the journal may span areas such as polymer physics, polymer processing and engineering of polymer-based materials and their applications. The editors and the publisher are committed to high quality standards and rapid handling of the peer review and publication processes.
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