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Local damage to Ultra High Performance Concrete structures caused by an impact of aircraft engine missiles

机译:飞机发动机导弹的撞击对超高性能混凝土结构的局部损坏

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摘要

The impact of an aircraft engine missile causes high stresses, deformations and a severe local damage to conventional reinforced concrete. As a consequence the design of R/C protective structural elements results in components with rather large dimensions. Fiber reinforced Ultra High Performance Concrete (UHPC) is a concrete based material which combines ultra high strength, high packing density and an improved ductility with a significantly increased energy dissipation capacity due to the addition of fiber reinforcement. With those attributes the material is potentially suitable for improved protective structural elements with a reduced need for material resources. The presented paper reports on an experimental series of scaled aircraft engine impact tests with reinforced UHPC panels. The investigations are focused on the material behavior and the damage intensity in comparison to conventional concrete. The fundamental work of Sugano et al. (1993a,b) is taken as reference for the evaluation of the results. The impactor model of a Phantom F4 GE-J79 engine developed and validated by Sugano et al. is used as defined in the original work. In order to achieve best comparability, the experimental configuration and method are adapted for the UHPC experiments. With 'penetration', 'scabbing' and 'perforation' all relevant damage modes defined in Sugano et al. (1993a,b) are investigated so that a full set of results are provided for a representative UHPC structural configuration.
机译:飞机发动机导弹的撞击会给传统的钢筋混凝土造成高应力,变形和严重的局部损坏。结果,R / C保护性结构元件的设计导致部件具有相当大的尺寸。纤维增强超高性能混凝土(UHPC)是一种混凝土基材料,由于添加了纤维增强材料,因此具有超高强度,高堆积密度和改善的延展性以及显着提高的能量消散能力。具有这些属性,该材料潜在地适合于具有减少的材料资源需求的改进的保护性结构元件。提出的论文报告了一系列实验,这些实验采用增强的UHPC面板进行了规模化的飞机发动机冲击试验。与传统混凝土相比,研究的重点是材料性能和破坏强度。 Sugano等人的基础工作。 (1993a,b)作为评价结果的参考。由Sugano等人开发和验证的Phantom F4 GE-J79发动机的撞击器模型。按照原始作品的定义使用。为了获得最佳的可比性,实验配置和方法适用于UHPC实验。通过“穿透”,“刮擦”和“穿孔”,Sugano等人定义了所有相关的损坏模式。 (1993a,b)进行了研究,以便为代表性的UHPC结构配置提供完整的结果。

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  • 来源
    《Nuclear Engineering and Design》 |2010年第10期|p.2633-2642|共10页
  • 作者单位

    Fraunhofer Institute for High-Speed Dynamics, Ernst-Mach-Institute, Eckerstraβe 4, D-79104 Freiburg, Germany;

    Fraunhofer Institute for High-Speed Dynamics, Ernst-Mach-Institute, Eckerstraβe 4, D-79104 Freiburg, Germany ,Schuessler-Plan Engineering Ltd., Sl-Franziskus-Str. 148, D-40470 Duesseldorf, Germany;

    Fraunhofer Institute for High-Speed Dynamics, Ernst-Mach-Institute, Eckerstraβe 4, D-79104 Freiburg, Germany;

    Fraunhofer Institute for High-Speed Dynamics, Ernst-Mach-Institute, Eckerstraβe 4, D-79104 Freiburg, Germany;

    University ofKassel, Chair of Structural Concrete, Kurt-Wolters Str. 3, D-34109 Kassel, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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