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首页> 外文期刊>Journal of Applied Polymer Science >Stearic acid as coupling agent in fly ash reinforced recycled polypropylene matrix composites: Structural, mechanical, and thermal characterizations
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Stearic acid as coupling agent in fly ash reinforced recycled polypropylene matrix composites: Structural, mechanical, and thermal characterizations

机译:硬脂酸作为粉煤灰增强的再生聚丙烯基复合材料的偶联剂:结构,机械和热学特性

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摘要

Two industrial wastes, fly ash (FA) and recycled polypropylene (RPP) were used to prepare a value-added, sustainable, low cost composite material. Improving the interfacial interaction between the hydrophobic RPP matrix and the hydrophilic FA particles is important to get a good combination of properties. In order to tailor the interface, stearic acid was used as the coupling agent. The FA particles were coated with a saturated fatty acid, stearic acid (SA), in different weight % like 1, 2, 3, and 5. The SA coated fly ash particles were incorporated as filler in RPP matrix composites by melt mixing in 1: 1 weight ratio. The composites were tested for their flexural properties, impact behavior, dynamic mechanical properties, fracture surface analysis, X-ray diffraction (XRD) study, and differential scanning calorimetry (DSC). An increase in flexural modulus and impact strength was observed in the stearic acid coated FA/RPP composites. In 1 wt % SA treated FA/RPP (RFASA1) composites, a significant increase in glass transition temperature was observed along with an increase in crystallinity. A green, renewable, inexpensive chemical like stearic acid was thus found to be an effective coupling agent in fabrication of a composite with 50 wt % filler loading.
机译:粉煤灰(FA)和再生聚丙烯(RPP)两种工业废料用于制备增值,可持续,低成本的复合材料。改善疏水性RPP基质和亲水性FA颗粒之间的界面相互作用对于获得良好的性能组合非常重要。为了调整界面,硬脂酸用作偶联剂。 FA颗粒涂有不同重量百分比的饱和脂肪酸,硬脂酸(SA),如1、2、3和5。将SA涂覆的粉煤灰颗粒通过1熔融混合作为填料掺入RPP基体复合材料中。 :1重量比。测试了复合材料的挠曲性能,冲击性能,动态力学性能,断裂表面分析,X射线衍射(XRD)研究和差示扫描量热法(DSC)。在硬脂酸涂覆的FA / RPP复合材料中观察到弯曲模量和冲击强度的增加。在1 wt%SA处理的FA / RPP(RFASA1)复合材料中,观察到玻璃化转变温度显着增加,同时结晶度也增加。因此,发现绿色,可再生,廉价的化学品(如硬脂酸)是制造填充剂含量为50 wt%的复合材料的有效偶联剂。

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