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首页> 外文期刊>Journal of Applied Polymer Science >Application of various carboxylic acids modified walnut shell waste as natural filler for epoxy-based composites
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Application of various carboxylic acids modified walnut shell waste as natural filler for epoxy-based composites

机译:各种羧酸改性核桃壳废料作为环氧基复合材料的天然填料

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In this study, chemically modified walnut shells (WS) were used as the filling material for synthesis of bio-based epoxy composites and added to the matrix at varied mass ratios (10%-50%). The shells were initially treated with alkali and then modified with three different organic acids (citric acid [CA], oxalic acid [OA], and formic acid [FA]). The WS were characterized by Fourier transform infrared spectroscopy, scanning electron microscopy (SEM)/energy-dispersive X-ray spectroscopy (EDX) and thermo gravimetric analyzer. The SEM and X-ray diffraction were employed to observe the morphology of the composites. The influences of acid type and WS percentages on the mechanical, thermal and water sorption properties were investigated. The maximum tensile strength (124.8 MPa) was obtained with CA-treated shells (CA-WS) and followed by OA-treated shells (OA-WS) (117 MPa) and FA-treated shells (FA-WS) (96.5 MPa). Acid modification had a positive effect on Young's modulus as that of epoxy resins increased by 5.45%-50.91%. The treatment did not significantly affect hardness. The optimum amount of modified shells in the composites was found to be 20 wt%. Water sorption values changed in the range of 2.78%-3.42% for composites with 20 wt% WS and observed to increase with the filler amount in the composite. However, this trend and the slight decrease in thermal properties are not critical obstacles for the use of modified WS in the manufacture of inexpensive epoxy- and bio-based eco-friendly products.
机译:在本研究中,化学改性核桃壳(WS)被用作合成生物基环氧复合材料的填充材料,并以不同的质量比(10%-50%)添加到基体中。贝壳最初用碱处理,然后用三种不同的有机酸(柠檬酸[CA]、草酸[OA]和甲酸[FA])进行改性。采用傅里叶变换红外光谱、扫描电子显微镜(SEM)/能量色散X射线光谱(EDX)和热重分析仪对WS进行了表征。利用SEM和X射线衍射观察了复合材料的形貌。研究了酸种类和WS含量对其机械性能、热性能和吸水性能的影响。CA处理的壳体(CA-WS)获得了最大抗拉强度(124.8 MPa),其次是OA处理的壳体(OA-WS)(117 MPa)和FA处理的壳体(FA-WS)(96.5 MPa)。酸改性对杨氏模量有积极影响,环氧树脂的杨氏模量提高了5.45%-50.91%。处理对硬度没有显著影响。复合材料中改性壳的最佳用量为20 wt%。对于含20 wt%WS的复合材料,吸水值在2.78%-3.42%的范围内变化,并观察到随着复合材料中的填料量增加而增加。然而,这种趋势和热性能的轻微下降并不是改性WS用于制造廉价环氧树脂和生物基环保产品的关键障碍。

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