Effect of graphite filler on the physiochemical properties of graphite reinforced thermoset rooflite – unsaturated polyester resin composites

Q4 Materials Science
M. Karunakaran, Ravi Subban, A. Thangamani, C. Thangavel
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引用次数: 0

Abstract

It is well known that many polymers are insulators with poor mechanical properties, which limit their use in fuel cell applications. Physicochemical properties of the polymers can be improved by adding conductive fillers. Carbon-based materials like graphite, which provides excellent mechanical strength and thermal conductivity to the polymer matrices, is of special interest because of its abundance, low cost and light weight when compared to other carbon allotropes. In the present work we describe the physicochemical properties of rooflite unsaturated polyester resin/graphite composites. Rooflite resin and three of its composites containing 1%, 3% and 5% of graphite by weight (C-2, C-3, and C-4, respectively) were synthesized and characterized by FTIR spectral data. XRD showed two peaks at 2q = 27.37°and 55.40° with d spacing value of 3.2559 nm and 1.6571 nm, respectively, indicating the change in degree of crystallinity of the composite. The calculated crystallinity for the resin is 7.3%, and for C-2, C-3 and C-4 its values are 12.1%, 14.3%, 17.1%, respectively, evidencing the interactions between the graphite and polymer matrix. The composites showed fractured surfaces and porous rough structure with randomly distributed vascularized cavities. Agglomeration occurs, when the concentration of graphite increases. The glass transition temperature for the pure resin is 65.9 °C and increases when the resin is filled with graphite. Thermogravimetric analysis (TGA) of the composites showed no marked difference between Tmax and Tfinal, and LOI values of C-3 and C-4 are above 21%, making them self-extinguishable materials that could be used for making bipolar plates. The chemical resistance investigation against water, NaCl, NaOH, acetic acid, and toluene showed more resistance to acid than alkali solutions. These rooflite resin/graphite composites could be further studied to explore the possibility of making bipolar plates, which are an essential component of fuel cells.
石墨填料对石墨增强热固性屋顶石墨-不饱和聚酯树脂复合材料理化性能的影响
众所周知,许多聚合物都是机械性能较差的绝缘体,这限制了它们在燃料电池中的应用。通过添加导电填料可以改善聚合物的物理化学特性。石墨等碳基材料可为聚合物基质提供出色的机械强度和导热性能,与其他碳同素异形体相比,石墨资源丰富、成本低、重量轻,因此特别受到关注。在本研究中,我们介绍了 Rooflite 不饱和聚酯树脂/石墨复合材料的物理化学特性。我们合成了 Rooflite 树脂和三种石墨含量分别为 1%、3% 和 5%(C-2、C-3 和 C-4)的复合材料,并利用傅立叶变换红外光谱数据对其进行了表征。XRD 显示在 2q = 27.37°和 55.40°处有两个峰,d 间距值分别为 3.2559 nm 和 1.6571 nm,表明复合材料的结晶度发生了变化。计算得出的树脂结晶度为 7.3%,C-2、C-3 和 C-4 的结晶度分别为 12.1%、14.3% 和 17.1%,这表明石墨与聚合物基体之间存在相互作用。复合材料显示出断裂的表面和多孔粗糙的结构,以及随机分布的血管化空腔。当石墨浓度增加时,会出现团聚现象。纯树脂的玻璃化温度为 65.9 °C,当树脂中填充石墨时,玻璃化温度升高。复合材料的热重分析(TGA)显示,Tmax 和 Tfinal 之间没有明显差异,C-3 和 C-4 的 LOI 值高于 21%,使其成为可用于制造双极板的自熄材料。对水、NaCl、NaOH、醋酸和甲苯的耐化学性研究表明,它们对酸性溶液的耐受性高于碱性溶液。可以进一步研究这些屋顶石墨树脂/石墨复合材料,以探索制造双极板的可能性,双极板是燃料电池的重要组成部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chimica Techno Acta
Chimica Techno Acta Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
67
审稿时长
4 weeks
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