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Surface and Interface Characterization of Untreated and SMA Imide-Treated Hemp Fiber/Acrylic Composites

机译:未经处理和SMA酰亚胺处理的大麻纤维/丙烯酸复合材料的表面和界面表征

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摘要

The hydrophilic nature of natural fibers adversely affects adhesion to a hydrophobic matrix, and consequently it may unfavorably influence the strength of the composite. Therefore, modifying the fiber or the matrix is essential to obtain optimum composite properties. In this work, hemp fibers were modified applying a paper sizing technique using SMA Imide resin (copolymer of styrene and dimethylaminopropylamine maleimide) as a surface modifying agent. The performance of the hemp/acrylic composite was improved significantly using the treated fibers. Inverse gas chromatography (IGC) and pull-out test were employed to study the hemp fiber/matrix interface and the surface characteristics of untreated and treated hemp fibers. The IGC results demonstrated that treated fibers had slightly higher dispersive force compared with untreated fibers. Moreover, modification of fibers with SMA Imide resin slightly decreased the basic character and significantly increased the acid character of hemp fibers. From the pull-out test, the average stress to pull the SMA-treated fibers out was 71% higher than that calculated for untreated fibers. The higher interfacial strength for the treated fibers shows that the SMA treatment had a beneficial influence on the adhesion of the acrylic resin to the hemp fibers.
机译:天然纤维的亲水性质不利地影响与疏水性基质的粘合性,因此可能不利地影响复合材料的强度。因此,改性纤维或基质对于获得最佳复合性能至关重要。在这项工作中,使用SMA酰亚胺树脂(苯乙烯和二甲基氨基丙胺马来酰亚胺的共聚物)作为表面改性剂,采用纸上浆技术对大麻纤维进行了改性。使用处理过的纤维,麻/丙烯酸复合材料的性能得到显着改善。用反相气相色谱(IGC)和拉出试验研究大麻纤维/基质界面以及未处理和处理过的大麻纤维的表面特性。 IGC结果表明,与未处理的纤维相比,处理过的纤维具有稍高的分散力。此外,用SMA酰亚胺树脂对纤维进行改性会稍微降低其基本特性,并显着提高大麻纤维的酸性。从拉出测试中,拉出SMA处理过的纤维的平均应力比未处理过的纤维高71%。经处理的纤维的较高的界面强度表明SMA处理对丙烯酸树脂对大麻纤维的粘合性具有有益的影响。

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