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Electrospinning of Cellulose Nanofibers Mat for Laminated Epoxy Composite Production

机译:纤维素纳米纤维毡的静电纺丝,用于层压环氧复合材料的生产

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In this study, a new approach consisting of chemical treatment steps followed by electrospinning process was applied to produce cellulose nanofibers from wheat straws. Wheat straws were initially pretreated by NaOH solution to open the complex structure of raw materials and remove non-cellulosic materials. Then, acid and alkali hydrolysis was separately performed to eliminate hemicellulose and soluble lignin. Also, bleaching processes were implemented to remove the insoluble lignin. Cellulose nanofibers were produced by electrospinning of various concentrations of cellulose in different solvents including sodium hydroxide/urea/thiourea, pure trifluoroacetic acid (TFA), and TFA/methylene chloride. Images obtained by Scanning Electron Microscope (SEM) showed long and uniform nanofibers produced from electrospinning of cellulose/TFA/methylene chloride solution. An epoxy based laminated composite was prepared by a lamina of cellulose microflber and electrospun nanofiber mat using hand lay-up composite manufacturing method. The fracture surface of the epoxy nanocomposite was analyzed by SEM images. In addition, the mechanical properties of laminated epoxy composites were compared with pure epoxy by conducting tensile and impact tests. Tensile test results showed that the ultimate tensile strength, elongation, and modulus of laminated epoxy nanocomposites were significantly increased. Moreover, it was found that by adding a nanofiber lamina in the epoxy composite, the impact resistance was significantly improved as a result of crack growth prevention.
机译:在这项研究中,采用了一种新方法,该方法包括化学处理步骤和静电纺丝工艺,以从麦草生产纤维素纳米纤维。首先用NaOH溶液对麦秸进行预处理,以打开原料的复杂结构并除去非纤维素材料。然后,分别进行酸和碱水解以消除半纤维素和可溶性木质素。另外,实施了漂白过程以除去不溶性木质素。纤维素纳米纤维是通过在不同溶剂(包括氢氧化钠/尿素/硫脲,纯三氟乙酸(TFA)和TFA /二氯甲烷)中静电纺丝不同浓度的纤维素制成的。通过扫描电子显微镜(SEM)获得的图像显示了由纤维素/ TFA /二氯甲烷溶液的电纺丝产生的长而均匀的纳米纤维。使用手糊复合材料制造方法,通过纤维素微纤维的薄片和电纺纳米纤维垫制备环氧基层压复合材料。通过SEM图像分析环氧纳米复合材料的断裂表面。此外,通过进行拉伸和冲击试验,将层压环氧复合材料的机械性能与纯环氧材料进行了比较。拉伸试验结果表明,层压的环氧纳米复合材料的极限拉伸强度,伸长率和模量显着提高。此外,发现通过在环氧树脂复合物中添加纳米纤维薄层,由于防止了裂纹增长,抗冲击性显着提高。

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