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Bio-Based Polyurethane Composites and Hybrid Composites Containing a New Type of Bio-Polyol and Addition of Natural and Synthetic Fibers

机译:生物基聚氨酯复合材料和含有新型生物多元醇的混合复合材料,并加入天然和合成纤维

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摘要

This article describes how new bio-based polyol during the liquefaction process can be obtained. Selected polyol was tested in the production of polyurethane resins. Moreover, this research describes the process of manufacturing polyurethane materials and the impact of two different types of fibers—synthetic and natural (glass and sisal fibers)—on the properties of composites. The best properties were achieved at a reaction temperature of 150 °C and a time of 6 h. The hydroxyl number of bio-based polyol was 475 mg KOH/g. Composites were obtained by hot pressing for 15 minutes at 100 °C and under a pressure of 10 MPa. Conducted researches show the improvement of flexural strength, impact strength, hardness, an increase of storage modulus of obtained materials, and an increase of glass transition temperature of hard segments with an increasing amount of fibers. SEM analysis determined better adhesion of sisal fiber to the matrix and presence of cracks, holes, and voids inside the structure of composites.
机译:本文介绍了可以获得液化过程中新的生物基多元醇。在聚氨酯树脂的生产中测试了选定的多元醇。此外,该研究描述了制造聚氨酯材料的过程和两种不同类型的纤维 - 合成和天然(玻璃和剑麻纤维)的影响 - 复合材料的性质。在150℃和6小时的时间的反应温度下实现了最佳性能。生物基多元醇的羟基数为475mg KOH / g。通过在100℃并在10MPa的压力下通过热压获得复合材料15分钟。进行的研究表明,弯曲强度,冲击强度,硬度,获得的材料的储存量模增加的提高,以及具有越来越多的纤维的硬链段的玻璃化转变温度的增加。 SEM分析确定了Sisal纤维在复合材料结构内的裂缝,孔和空隙中更好地粘附到基质和存在的裂缝,孔和空隙。

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