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Fire performance of composite laminates embedded with multi-ply carbon nanofiber sheets

机译:嵌入多层碳纳米纤维板的复合层压板的防火性能

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摘要

In this study, free-standing carbon nanofiber sheets (CNS) were incorporated into glass fiber reinforced polyester composites through resin transfer molding (RTM) process. These sheets were made of vapor grown carbon nanofibers. The composite laminates consisted of eight plies of CNS and eight plies of glass fiber mats. The fire retarding performance of the laminates was evaluated with cone calorimeter tests with an external radiated heat flux of 50 kW/m~2. The test results indicated that there was significant improvement in the fire retardancy of composite laminates due to the incorporation of CNS. It was found that the CNS plies survived the test except the one on the top surface of the laminates. The formation of compact char materials was observed on the surface of the CNS residues. The improvement in fire retarding performance was achieved through the barrier and insulator effects of the CNS and charred materials by restricting the migration of flammable products to the top surface of the laminates and preventing the transmission of external heat to the underlying polyester resin.
机译:在这项研究中,通过树脂传递模塑(RTM)工艺将独立式碳纳米纤维片(CNS)掺入玻璃纤维增​​强的聚酯复合材料中。这些片材由气相生长的碳纳米纤维制成。复合层压板由八层CNS和八层玻璃纤维毡组成。层压板的阻燃性能通过锥形量热仪测试进行了评估,外部辐射热通量为50 kW / m〜2。测试结果表明,由于引入了CNS,复合材料层压板的阻燃性有了显着改善。发现CNS层在测试中幸存下来,除了层压板顶面上的那一层。在CNS残余物的表面上观察到致密炭材料的形成。通过限制可燃产品迁移到层压板的顶面并防止外部热量传递到下面的聚酯树脂,通过CNS和炭化材料的阻隔和绝缘效果,可实现阻燃性能的提高。

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  • 作者单位

    Department of Mechanical, Materials and Aerospace Engineering, University of Central Florida, Orlando, FL 32816, United States;

    Department of Mechanical, Materials and Aerospace Engineering, University of Central Florida, Orlando, FL 32816, United States;

    Department of Mechanical, Materials and Aerospace Engineering, University of Central Florida, Orlando, FL 32816, United States;

    Department of Mechanical, Materials and Aerospace Engineering, University of Central Florida, Orlando, FL 32816, United States;

    Department of Mechanical, Materials and Aerospace Engineering, University of Central Florida, Orlando, FL 32816, United States;

    Department of Mechanical Engineering, University of New Orleans, New Orleans, LA 70148, United States;

    Center for Nanocomposites and Multifunctional Materials Pittsburgh State University, Pittsburgh, KS 66762, United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. Nano-structures; B. High-temperature properties; C. Hybrid;

    机译:A.纳米结构;B.高温特性;C.混合;

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