首页> 外文期刊>Journal of Composite Materials >Modeling and optimization of electrospinning conditions of PVB nanofiber by RSM and PSO-LSSVM models for improved interlaminar fracture toughness of laminated composites
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Modeling and optimization of electrospinning conditions of PVB nanofiber by RSM and PSO-LSSVM models for improved interlaminar fracture toughness of laminated composites

机译:RSM和PSO-LSSVM模型改善层压复合材料层间断裂韧性PVB纳米纤维静电素条件的建模与优化

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In this study, the diameter of polyvinyl butyral nanofibers was modeled using response surface method based on three variables, at three levels of central composite design and particle swarm optimization-least squares support vector machine. Under optimal conditions, the measured mean diameter of the nanofibers was 175 nm. Sensitivity analysis in both models showed that polyvinyl butyral concentration in the solution was found to be the most effective parameter on the nanofiber diameter. The voltage is placed in the next. Fracture toughness under Mode I condition shows that the use of electrospun nanowebs as an interlayer in the structure of multi-layers composite has a positive effect on the G_(Ic)which values for the oriented and random nanofibers modified samples increased by 60% and 55%, respectively. According to SEM images, the main mechanism of fracture toughness in these samples was crack deflection and nanofibers crack bridging.
机译:在这项研究中,使用基于三个变量的响应表面法对聚乙烯丁醛纳米纤维的直径进行了建模,在三级中央复合设计和粒子群优化 - 最小二乘支持向量机。 在最佳条件下,纳米纤维的测量平均直径为175nm。 两种模型中的敏感性分析表明,发现溶液中的聚乙烯醇缩丁浓度是纳米纤维直径上最有效的参数。 电压放置在下一个。 模式I条件下的断裂韧性表明,在多层复合材料结构中使用Electrom annaWeb作为中间层对G_(IC)具有阳性作用,该G_(IC)定向和随机纳米纤维改性样品的值增加了60%和55 %, 分别。 根据SEM图像,这些样品中断裂韧性的主要机制是裂缝偏转和纳米纤维裂纹桥接。

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