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首页> 外文期刊>Composites >Comparison of the crushing performance of hollow and foam-filled small-scale composite tubes with different geometrical shapes for use in sacrificial cladding structures
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Comparison of the crushing performance of hollow and foam-filled small-scale composite tubes with different geometrical shapes for use in sacrificial cladding structures

机译:牺牲覆层结构中空和填充不同几何形状的泡沫小型复合管的抗压性能比较

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摘要

This paper presents the quasi-static crushing performance of nine different geometrical shapes of small-scale glass/polyester composite tubes filled with polyurethane closed-cell foam for use in sacrificial cladding structures. The effect of polyurethane foam on the crushing characteristics and the corresponding energy absorption is addressed for each geometrical shape of the composite tube. Composite tubes with two different thicknesses (1 mm and 2 mm) have been considered to study the influence of polyurethane foam on the crushing performance. From the present study, it was found that the presence of polyurethane foam inside the composite tubes suppressed the circumferential delamination process and fibre fracturing; consequently, it reduced the specific energy absorption of composite tubes. Furthermore, the polyurethane foam attributed to a higher peak crush load for each composite tube. However, the presence of polyurethane foam inside the composite tubes significantly increased the stability of the crushing phenomena especially for the square and hexagonal cross-sectional composite tubes with 1 mm wall thickness. The results from this study are compared with our previous results for composite tubes without polyurethane foam [1].
机译:本文介绍了九种不同几何形状的小尺寸玻璃/聚酯复合管的准静态抗压性能,这些管填充有聚氨酯闭孔泡沫,用于牺牲性覆层结构。针对复合管的每种几何形状,解决了聚氨酯泡沫对破碎特性和相应能量吸收的影响。为了研究聚氨酯泡沫对破碎性能的影响,已经考虑使用两种不同厚度(1 mm和2 mm)的复合管。从本研究中发现,复合管内部聚氨酯泡沫的存在抑制了圆周分层过程和纤维断裂。因此,它降低了复合管的比能吸收。此外,聚氨酯泡沫归因于每个复合管的更高的峰值压碎负荷。然而,复合管内部聚氨酯泡沫的存在显着提高了压碎现象的稳定性,特别是对于壁厚为1 mm的方形和六边形复合管而言。这项研究的结果与我们以前没有聚氨酯泡沫的复合管的结果进行了比较[1]。

著录项

  • 来源
    《Composites》 |2010年第6期|P.434-445|共12页
  • 作者单位

    Department of Materials Science and Engineering, Ghent University, Sint-Pietersnieuwstraat 41, 9000 Gent, Belgium;

    rnDepartment of Materials Science and Engineering, Ghent University, Sint-Pietersnieuwstraat 41, 9000 Gent, Belgium;

    rnDepartment of Materials Science and Engineering, Ghent University, Sint-Pietersnieuwstraat 41, 9000 Gent, Belgium;

    rnRoyal Military Academy, Civil and Materials Engineering Department, Building G, Level 0, 8 Av. Hobbema B-1000, Brussels, Belgium;

    rnDepartment of Mechanics of Materials and Constructions, Vrije Universiteit Brussel, Pleinlaan 2, B-1050 Brussels, Belgium;

    rnDepartment of Mechanics of Materials and Constructions, Vrije Universiteit Brussel, Pleinlaan 2, B-1050 Brussels, Belgium;

    rnDepartment of Mechanics of Materials and Constructions, Vrije Universiteit Brussel, Pleinlaan 2, B-1050 Brussels, Belgium;

    rnDepartment of Mechanics of Materials and Constructions, Vrije Universiteit Brussel, Pleinlaan 2, B-1050 Brussels, Belgium;

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

    A.Glass fibres; A.Foams; B.Delamination; D.Mechanical testing;

    机译:A.玻璃纤维;A.泡沫;B.分层;D.机械测试;

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