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Effect of nanofiber diameter and arrangement on fracture toughness of out of autoclave glass/phenolic composites - Experimental and numerical study

机译:纳米纤维直径和排列方式对高压釜玻璃/酚醛复合材料断裂韧性的影响-实验与数值研究

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摘要

In this study, the effect of (Polyvinyl butyral) PVB-nanofiber diameter and orientation on the mode II fracture toughness of laminated phenolic composite was investigated by means of experimental and numerical methods. The motivation was to explore the potential of nanofiber veils as an inter-laminar toughener of laminated composites in consideration of the importance of improving the inter-laminar fracture toughness of phenolic based composites. As regards the experimental investigation, the fracture behavior of glass/phenolic composites was determined by end notched flexure (ENF) test taking into account four different nanofiber diameters (100, 165, 314 and 500 nm) and two fiber orientations: random and aligned. In addition, a finite element model including cohesive elements was applied to investigate numerically the fracture behavior of composites during mode II loading. The results indicate that there is an optimal value of nanofiber diameter that maximizes the initial fracture toughness (G(IIC)). The outcome also shows that aligned nanofibers are not able to improve the fracture toughness under mode II loading. The G(IIC) value of optimal sample (fiber diameter 165 nm and random orientation) is 26% higher than the reference laminates. On the other hand, it is proven that the bi-linear traction-separation law is a suitable method to model PVB-modified laminates under mode II loading. The effect of nanofiber diameter and orientation on cohesive parameters (K-0 G(IIC), sigma(max)) was also studied.
机译:在这项研究中,通过实验和数值方法研究了(聚乙烯醇缩丁醛)PVB-纳米纤维的直径和取向对层压酚醛复合材料的II型断裂韧性的影响。考虑到提高酚基复合材料的层间断裂韧性的重要性,其动机是探索纳米纤维面纱作为层压复合材料的层间增韧剂的潜力。关于实验研究,考虑到四种不同的纳米纤维直径(100、165、314和500 nm)和两种纤维取向:无规和对齐,通过端切口挠曲(ENF)测试确定了玻璃/酚醛复合材料的断裂行为。此外,应用了包含内聚元素的有限元模型,以数值方式研究了复合材料在模式II加载过程中的断裂行为。结果表明,存在使初始断裂韧性(G(IIC))最大化的纳米纤维直径的最佳值。结果还表明,取向的纳米纤维在模式II加载下不能提高断裂韧性。最佳样品(纤维直径165 nm和随机取向)的G(IIC)值比参考层压板高26%。另一方面,已证明双线性牵引-分离定律是在模式II载荷下对PVB改性层压板进行建模的合适方法。还研究了纳米纤维直径和取向对内聚参数(K-0 G(IIC),sigma(max))的影响。

著录项

  • 来源
    《Thin-Walled Structures》 |2019年第10期|106251.1-106251.9|共9页
  • 作者单位

    Amirkabir Univ Technol Dept Text Engn 424 Hafez Ave Tehran 158754413 Iran|Univ Bologna Dept Ind Engn Viale Risorgirnento 2 I-40136 Bologna Italy;

    Iran Polymers & Petrochem Inst Pazhoohesh Blvd Tehran 1497713115 Iran;

    Amirkabir Univ Technol Dept Text Engn 424 Hafez Ave Tehran 158754413 Iran;

    Tafresh Univ Dept Mech Engn Tehran Rd Tehran 7961139518 Iran;

    Univ Bologna Dept Ind Engn Viale Risorgirnento 2 I-40136 Bologna Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Phenolic laminates; Fracture; Polyvinyl butyral; Nano-toughener; Cohesive zone model;

    机译:酚醛层压板;断裂;聚乙烯醇缩丁醛;纳米增韧剂;内聚区模型;

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